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TP, TPD, TPE - Databook

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GRUNDFOS DATA BOOKLET TP, TPD, TPE In-line circulator pumps 60 Hz
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Page 1: TP, TPD, TPE - Databook

GRUNDFOS DATA BOOKLET

TP, TPD, TPEIn-line circulator pumps60 Hz

Page 2: TP, TPD, TPE - Databook

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TP, TPD, TPE

1. Pump data 4Introduction 4Type key 5Codes for shaft seal 5

2. Performance range 6Performance range, 2-pole, PN 6, 10, 16 6Performance range, 4-pole, PN 6, 10, 16 7Performance range, 2-pole, PN 25 8Performance range, 4-pole, PN 25 9

3. Product range 10Product range, 2-pole, PN 6, 10, 16 10Product range, 4-pole, PN 6, 10, 16 12Product range, 2-pole, PN 25 14Product range, 4-pole, PN 25 15

4. Operating conditions 16System and test pressures 16Sound pressure level 16Ambient temperature 16Installation altitude 17

5. Pumped liquids 18Liquid temperature 18List of pumped liquids 19

6. TP Series 200 pumps 21Technical data 21Construction 21Materials 21Mechanical shaft seal 22Connections 22Features and benefits 22

7. TP Series 300 pumps 23Technical data 23Construction 23Materials 23Mechanical shaft seal 24Connections 24Features and benefits 24

8. TP Series 400 pumps 25Technical data 25Construction 25Materials 25Mechanical shaft seal 26Connections 26Features and benefits 26

9. TPE Series 1000 pumps 27Technical data 27Construction 27Applications 27

10. Overview of functions 30

11. User interfaces for TPE pumps 32Description of selected functions 37

12. Communication 55Communication with TPE pumps 55

13. Speed regulation of TPE pumps 56Affinity equations 56

14. TP, TPE pumps in parallel 57Control of TP, TPE pumps connected in parallel 57

15. Grundfos CUE 58TP pumps connected to Grundfos CUE, external frequency converters 58

16. Motor data 59Motor 59Electrical data, mains-operated motors 60Electrical data, speed-controlled motors 63

17. Installation 64Mechanical installation 64Electrical installation 67

18. MGE motors 68

19. EMC 78EMC and proper installation 78

20. Flanges for TP pumps 79Flange dimensions 79

21. Curve charts 80How to read the curve charts 80Curve conditions 81

22. Performance curves/technical data 82TP, TPD, TPE 2-pole, PN 6, 10, 16 82TP, TPD, TPE, 4-pole, PN 6, 10, 16 98TP, 2-pole, PN 25 130TP, 4-pole, PN 25 132

23. Weights and shipping volume 142TP, TPD, TPE, 2-pole, PN 6, 10, 16 142TP, TPD, TPE, 4-pole, PN 6, 10, 16 144TP, 2-pole, PN 25 146TP, 4-pole, PN 25 146

24. Minimum efficiency index 147TP, TPD, TPE, 2-pole, PN 6, 10, 16 147TP, TPD, TPE, 4-pole, PN 6, 10, 16 149TP, PN 25 150

25. Accessories 151Counter flanges 151Base plates 154Blanking flanges 156Insulating kits 158Sensors 159MP 204 - advanced motor protection 161Control MP 204 161Potentiometer 162Grundfos GO Remote 162CIU communication interface units 163CIM communication interface modules 164EMC filter 164

Page 3: TP, TPD, TPE - Databook

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TP, TPD, TPE

26. Minimum inlet pressure - NPSH 165TP, TPD 2-pole, PN 6, 10, 16 166TP, TPD 4-pole, PN 6, 10, 16 167TP Series 400, 2-pole, PN 25 168TP Series 400, 4-pole, PN 25 168

27. Key application data 169Operating conditions 169

28. Further product documentation 171WebCAPS 171WinCAPS 172GO CAPS 173

3

Page 4: TP, TPD, TPE - Databook

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TP, TPD, TPE1

1. Pump data

IntroductionTP pumps are designed for applications such as

• district heating systems

• heating systems

• air-conditioning systems

• district cooling systems

• water supply

• industrial processes

• industrial cooling.

Most of the pumps are available with either mains-operated motors (TP and TPD) or electronically speed-controlled motors (TPE).

The pumps are all single-stage, in-line centrifugal pumps with mechanical shaft seal. The pumps are of the close-coupled type, i.e. pump and motor are separate units.

TP pumps - mains-operated pumpsThe TP range is divided into the following four groups based on their construction: TP Series 100, 200, 300 and 400 pumps.

TP Series 200 with flange connection

DN 32 to DN 100 and motor sizes from 0.12 to 3 kW.

For further information, see page 21.

TP Series 300 with flange connection

DN 32 to DN 200 and motor sizes from 0.55 to 160 kW.

For further information, see page 23.

TP Series 400 with flange connection

Grundfos offers two TP Series 400 versions:

• 10 bar version with DN 150 to DN 250 flange and motor sizes from 37 to 132 kW.

• 25 bar version with DN 100 to DN 250 and motor sizes from 7.5 to 315 kW.

For further information about TP Series 400 pumps, see page 25.

TPE pumps - speed-controlled pumpsBased on the construction and choice of material of TP pumps, Grundfos offers speed-controlled TPE Series 1000 pumps.

TPE pumps with 2-pole motors below 3 kW and 4-pole motors below 1.5 kW are fitted with permanent-magnet motors which have an efficiency that exceeds the IE4 demands - including the energy consumption of the integrated frequency converter (compared to IE levels in IEC 60034-30-1 Ed. 1 (CD)).

TPE Series 1000 pumps

The motors of TPE Series 1000 pumps have a built-in frequency converter.

Via an external signal (from a sensor or a controller), TPE Series 1000 pumps allow for any configuration and control method required: Constant pressure, constant temperature or constant flow.

For further information, see page 27.

Why select a TPE pump?

A TPE pump with electronic speed control offers these obvious benefits:

• energy savings

• increased comfort

• control and monitoring of the pump performance

• communication with the pump.

ATEX-approved TP pumps

On request, Grundfos offers TP and TPD pumps with ATEX-approval.

See Key application data, page 169.

High-efficiency motors, IE3

TP pumps are fitted with high-efficiency motors.

TP pumps are primarily fitted with motors that meet the legislative requirements of the EuP IE3 or IE2 grade depending on voltage and motor size. For further information, see Motor, pages 59 to 63.

Energy-optimised pumps

TP pumps are energy-optimised and comply with the EuP Directive (Commission Regulation (EC) No. 547/2012) in which most pumps are classified/graduated in a minimum efficiency index (MEI). See also page 147.

Page 5: TP, TPD, TPE - Databook

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Type key

Codes for shaft seal

Example TP E D 65 -120 /2 -A -F -A -BUBE

Pump range

Electronically speed-controlled pump, Series 1000

Twin-head pump

Nominal diameter of suction and discharge ports (DN)

Maximum head [dm]

Pole number

Code for pump version:A = Basic versionI = PN 6 flangeX = Special version

Code for pipework connection:F = DIN flangeO = Union

Code for materials:A = Basic versionZ = Bronze pump housing and motor stoolB = Bronze impeller

Code for shaft seal(incl. other plastic and rubber components in the pump except the neck ring)

Example B U B E

Grundfos type designationA = O-ring seal with fixed seal driverB = Rubber bellows sealD = O-ring seal, balancedG = Bellows seal with reduced seal facesR = O-ring seal with reduced seal faces

Material of rotating faceA = Carbon, antimony-impregnatedB = Carbon, resin-impregnatedQ = Silicon carbideU = Tungsten carbide

Material of stationary seatB = Carbon, resin-impregnatedQ = Silicon carbideU = Tungsten carbide

Material of secondary sealE = EPDMP = NBR rubberV = FKM

5

Page 6: TP, TPD, TPE - Databook

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TP, TPD, TPE2

2. Performance range

Performance range, 2-pole, PN 6, 10, 16(See page 82 for performance curves.)

Note: All QH curves apply to single-head pumps. For further information about curve conditions, see page 81.The hatched area shows the performance range of TPE pumps.

TM

02

51

01

32

13

45

68

1012

1520

3040

5060

8010

012

015

020

030

0

Q [m

³/h]

345681015203040506080100

[m]

H

23

45

67

89

101020

3040

5060

Q [l

/s]

30405060708090100

100

200

300

400

500

600

700

800

900

1000

1000

[kP

a]p

TP

(D),

TP

EP

N 6

-16,

2-p

ole,

60

Hz

65-9

20

100-

230

80-7

50

80-6

40

80-5

3080

-480

80-4

00

80-3

3080

-290

80-2

40

80-2

00

65-2

20

65-1

050

65-2

60

65-3

40

65-3

90

65-4

8065-5

4065

-63065

-740

65-9

10

50-1

050

50-2

5050

-300

50-

350

50-4

10

50-7

20

50-7

90

50-

880

40-3

70

40-7

4040

-850

40-9

30

32-3

0032

-360

32-4

50

32-5

50

32-6

80

32-8

20

80-1

60

65-2

40 65-1

60

65-8

0

50-2

40

50-1

60

50-8

0

40-3

30

40-2

70

40-2

40

40-1

60

40-8

0

32-3

30

32-2

60

32-2

20

32-1

60

32-8

0

40

-39

0

100-

300

100-

37010

0-35

0

100-

380

100-

530

100-

630

100-

700

420

020

0

Q [m

³/h]

3

Page 7: TP, TPD, TPE - Databook

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TP, TPD, TPE 2

Performance range, 4-pole, PN 6, 10, 16(See page 98 for performance curves.)

Note: All QH curves apply to single-head pumps. For further information about curve conditions, see page 81.The hatched area shows the performance range of TPE pumps.

TM

02

89

31

32

13

46

810

1520

3040

6080

100

150

200

300

400

600

800

1000

1500

Q [m

³/h]

2345681015203040506080[m]

H

23

45

67

89

101020

3040

5060

7080

100

100

200

Q [l

/s]

2030405060708090100

100

200

300

400

500

600

700

[kP

a]p

TP

(D),

TP

EP

N 6

-16,

4-p

ole,

60

Hz

150-

340

125-

230

100-

350

100-

260

100-

150

125-

13012

5-16

0

200-

250

200-

280

200-

320

200-

360

200-

390

200-

80

200-

11020

0-140

200-

190200-210

150-

440

150-

480

150-

610

150-

700

150-

170

150-

150-

230

150-

250

100-

100

200-

770

200-

600

200-

680

200-

540

200-

490

200-

430

200-

500

200-

400

200-

440

150-

210

150-

180

125-

490

125-

430

125-

360

125-

320

100-

470

100-

390

100-

340

100-

290

100-

240

100-

200

100-

170

100-

130

80-5

10

80-4

60

80-4

10

80-3

40

80-2

80

80-2

30

80-1

70

80-1

50

80-1

10

65-1

50

65-1

30

65-1

9065-2

30

65-3

10

65-3

30

50-1

10

50-1

20

50-1

40

50-1

90

50-2

40

50-2

70

50-3

40

40-1

20

40-

160

40-1

90

40-2

203

2- 1

90

32-1

20

32-1

40

100-

80

100-

40

80-8

0

80-4

0

65-8

0

65-4

0

50-8

0

50-4

0

40-8

0

40-4

0

32-8

0

32-4

0

150-

240

150-

300

250-450250-530

250-580

150-

400

150-

360

190

4

2

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Page 8: TP, TPD, TPE - Databook

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TP, TPD, TPE2

Performance range, 2-pole, PN 25(See page 130 for performance curves.)

TM

02

68

70

50

10

2530

4050

6080

100

150

200

300

400

500

Q [m

³/h]

405060708090100

150

200

300

[m]

H

78

91010

2030

4050

6070

8090

100

100

Q [l

/s]

400

500

600

700

800

900

1000

1000

2000

3000

[kP

a]pTP

PN

25,

2-p

ole,

60

Hz

100-

2350

100-

2100

100-

1700

100-

1560

100-

1450

100-

1350

100-

1250

100-

1100

100-

1000

Page 9: TP, TPD, TPE - Databook

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TP, TPD, TPE 2

Performance range, 4-pole, PN 25(See page 132 for performance curves.)

TM

02

70

03

50

10

2030

4050

6080

100

150

200

300

400

500

600

800

1000

1500

Q [m

³/h]

10152030405060708090100

[m]

H

67

89

101020

3040

5060

7080

100

100

200

300

Q [l

/s]

100

100

200

300

400

500

600

700

800

900

1000

1000

[kP

a]pTP

PN

25,

4-p

ole,

60

Hz

250-

1020

250-

910

250-

800

250-7

20

250-550

250-500

250-

430

200-

930

200-

840 20

0-76

0

200-

670

200-

560

200-

520

200-370

200-

350

150-

930

150-

800

150-

710

150-4

90

150-450

150-

370

150-330

125-

620

125-

570

125-

500

125-

440

125-350

125-370

125-310

125-27

0

125-

240

100-

590

100-

530

100-

450

100-

420

100-

360

100-

330

100-

250

100-

210

9

Page 10: TP, TPD, TPE - Databook

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TP, TPD, TPE3

3. Product range

Product range, 2-pole, PN 6, 10, 16

Pump type

TP

E S

eri

es

10

00

1Design Shaft seal

Pressure stage

Materials Mains-operated motorElectronically

speed-controlled motor

TP

Se

rie

s 2

00

TP

Se

rie

s 3

00

TP

Se

rie

s 4

00

BU

BE

AU

UE

RU

UE

BA

QE

BQ

QE

GQ

QE

DB

UE

PN

6,

10

co

mb

ina

tio

n f

lan

ge

PN

10

PN

16

PN

25

Pump housing Impeller Voltage [V] Voltage [V]

Ca

st

iro

nE

N-G

JL

-25

0

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

8

Bro

nze

Sta

inle

ss

ste

el

Ca

st

iro

n

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

5

Bro

nze

3 x

22

0-2

55

∆V

/3

x 3

80

-44

0 Y

V

3 x

22

0-2

77

∆V

/3

x 3

80

-48

0 Y

V

3 x

38

0-4

80

∆V

3 x

38

0-4

80

∆V

/3

x 6

60

-69

0 Y

V2

3 x

38

0-4

80

V

3 x

38

0-5

00

V

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

TP 32-80/2 ● ● ● ● ● ● ● ● 0.37

TP 32-160/2 ● ● ● ● ● ● ● ● 0.55

TP 32-220/2 ● ● ● ● ● ● ● ● 0.75

TP 32-260/2 ● ● ● ● ● ● ● ● 1.1

TP 32-330/2 ● ● ● ● ● ● ● ● 1.5

TP, TPD 32-300/2 ● ● ● ● ● ● ● ● ● 2.2 2.2 2.2

TP, TPD 32-360/2 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 32-450/2 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 32-550/2 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 32-680/2 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 32-820/2 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP 40-80/2 ● ● ● ● ● ● ● ● 0.55

TP 40-160/2 ● ● ● ● ● ● ● ● 0.75

TP 40-240/2 ● ● ● ● ● ● ● ● 1.1

TP 40-270/2 ● ● ● ● ● ● ● ● 1.5

TP 40-330/2 ● ● ● ● ● ● ● ● 2.2

TP 40-390/2 ● ● ● ● ● ● ● ● 3.0

TP, TPD 40-370/2 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 40-450/2 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 40-550/2 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 40-740/2 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 40-850/2 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 40-930/2 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP 50-80/2 ● ● ● ● ● ● ● ● 0.55

TP 50-160/2 ● ● ● ● ● ● ● ● 1.1

TP 50-240/2 ● ● ● ● ● ● ● ● 1.5

TP, TPD 50-250/2 ● ● ● ● ● ● ● ● ● 2.2 2.2 2.2

TP, TPD 50-300/2 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 50-350/2 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 50-410/2 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 50-720/2 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 50-790/2 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 50-880/2 ● ● ● ● ● ● ● ● ● 22.0 22.0 22.0

TP, TPD 50-1050/2 ● ● ● ● ● ● ● ● 30.0 30.0

TP 65-80/2 ● ● ● ● ● ● ● ● 1.1

TP 65-160/2 ● ● ● ● ● ● ● ● 1.5

TP 65-240/2 ● ● ● ● ● ● ● ● 2.2

TP, TPD 65-220/2 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 65-260/2 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 65-340/2 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 65-390/2 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 65-480/2 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 65-540/2 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 65-630/2 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 65-740/2 ● ● ● ● ● ● ● ● ● 22.0 22.0 22.0

TP, TPD 65-910/2 ● ● ● ● ● ● ● ● 30.0 30.0

TP, TPD 65-920/2 ● ● ● ● ● ● ● ● 37.0 37.0

TP, TPD 65-1050/2 ● ● ● ● ● ● ● ● 37.0 37.0

TP 80-160/2 ● ● ● ● ● ● ● ● 3.0

TP, TPD 80-200/2 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 80-240/2 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 80-290/2 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 80-330/2 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

Page 11: TP, TPD, TPE - Databook

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TP, TPD, TPE 3

● Standard1 TPE pumps are not available in twin-head versions.2 2-pole motors above 7.5 kW can be operated at 3 x 660-690 YV. Smaller motor sizes cannot.

TP, TPD 80-400/2 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 80-480/2 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 80-530/2 ● ● ● ● ● ● ● ● ● 22.0 22.0 22.0

TP, TPD 80-640/2 ● ● ● ● ● ● ● ● 30.0 30.0

TP, TPD 80-750/2 ● ● ● ● ● ● ● ● 37.0 37.0

TP, TPD 100-230/2 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 100-300/2 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 100-370/2 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 100-350/2 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 100-380/2 ● ● ● ● ● ● ● ● ● 22.0 22.0 22.0

TP, TPD 100-530/2 ● ● ● ● ● ● ● ● 30.0 30.0

TP, TPD 100-630/2 ● ● ● ● ● ● ● ● 37.0 37.0

TP, TPD 100-700/2 ● ● ● ● ● ● ● ● 45.0 45.0

Pump typeT

PE

Se

rie

s 1

00

01

Design Shaft sealPressure

stageMaterials Mains-operated motor

Electronically speed-controlled

motor

TP

Se

rie

s 2

00

TP

Se

rie

s 3

00

TP

Se

rie

s 4

00

BU

BE

AU

UE

RU

UE

BA

QE

BQ

QE

GQ

QE

DB

UE

PN

6,

10

co

mb

ina

tio

n f

lan

ge

PN

10

PN

16

PN

25

Pump housing Impeller Voltage [V] Voltage [V]

Ca

st

iro

nE

N-G

JL

-25

0

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

8

Bro

nze

Sta

inle

ss

ste

el

Ca

st

iro

n

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

5

Bro

nze

3 x

22

0-2

55

∆V

/3

x 3

80

-44

0 Y

V

3 x

22

0-2

77

∆V

/3

x 3

80

-48

0 Y

V

3 x

38

0-4

80

∆V

3 x

38

0-4

80

∆V

/3

x 6

60

-69

0 Y

V2

3 x

38

0-4

80

V

3 x

38

0-5

00

V

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

11

Page 12: TP, TPD, TPE - Databook

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12

TP, TPD, TPE3

Product range, 4-pole, PN 6, 10, 16

Pump type

TP

E S

eri

es

10

00

1

Design Shaft sealPressure

stageMaterials Mains-operated motor

Electronically speed-controlle

d motor

TP

Se

rie

s 2

00

TP

Se

rie

s 3

00

TP

Se

rie

s 4

00

BU

BE

AU

UE

RU

UE

BA

QE

BQ

QE

GQ

QE

DB

UE

PN

6,

10

co

mb

ina

tio

n f

lan

ge

PN

10

PN

16

PN

25

Pump housing

Impeller Voltage [V] Voltage [V]

Ca

st

iro

nE

N-G

JL

-25

0

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

8

Bro

nze

Sta

inle

ss

ste

el

Ca

st

iro

n

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

5

Bro

nze

3 x

22

0-2

55

ΔV

/3

x 3

80

-44

0 Y

V

3 x

22

0-2

77

ΔV

/3

x 3

80

-48

0 Y

V

3 x

38

0-4

80

ΔV

3 x

38

0-4

80

∆V

/3

x 6

60

-69

0 Y

V2

3 x

38

0-4

80

V

3 x

38

0-5

00

V

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

TP 32-40/4 ● ● ● ● ● ● ● ● 0.12

TP 32-80/4 ● ● ● ● ● ● ● ● 0.25

TP, TPD 32-120/4 ● ● ● ● ● ● ● ● 0.55

TP, TPD 32-140/4 ● ● ● ● ● ● ● ● 0.75

TP, TPD 32-190/4 ● ● ● ● ● ● ● ● ● 1.1 1.1

TP 40-40/4 ● ● ● ● ● ● ● ● 0.25

TP 40-80/4 ● ● ● ● ● ● ● ● 0.55

TP, TPD 40-120/4 ● ● ● ● ● ● ● ● ● 0.75

TP, TPD 40-160/4 ● ● ● ● ● ● ● ● ● 1.1 1.1

TP, TPD 40-190/4 ● ● ● ● ● ● ● ● ● 1.5 1.5

TP, TPD 40-220/4 ● ● ● ● ● ● ● ● ● 2.2 2.2 2.2

TP 50-40/4 ● ● ● ● ● ● ● ● 0.25

TP 50-80/4 ● ● ● ● ● ● ● ● 0.55

TP, TPD 50-110/4 ● ● ● ● ● ● ● ● 0.75

TP, TPD 50-120/4 ● ● ● ● ● ● ● ● ● 1.1 1.1

TP, TPD 50-140/4 ● ● ● ● ● ● ● ● ● 1.5 1.5

TP, TPD 50-190/4 ● ● ● ● ● ● ● ● ● 2.2 2.2 2.2

TP, TPD 50-240/4 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 50-270/4 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 50-340/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP 65-40/4 ● ● ● ● ● ● ● ● 0.37

TP 65-80/4 ● ● ● ● ● ● ● ● 1.1

TP, TPD 65-130/4 ● ● ● ● ● ● ● ● ● 1.5 1.5

TP, TPD 65-150/4 ● ● ● ● ● ● ● ● ● 2.2 2.2 2.2

TP, TPD 65-190/4 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 65-230/4 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 65-310/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 65-330/4 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP 80-40/4 ● ● ● ● ● ● ● ● 0.75

TP 80-80/4 ● ● ● ● ● ● ● ● 1.5 1.5

TP, TPD 80-110/4 ● ● ● ● ● ● ● ● ● 2.2 1.1 2.2

TP, TPD 80-150/4 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 80-170/4 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 80-230/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 80-280/4 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 80-340/4 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 80-410/4 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 80-460/4 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 80-510/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP 100-40/4 ● ● ● ● ● ● ● ● 1.1

TP 100-80/4 ● ● ● ● ● ● ● ● 2.2

TP, TPD 100-100/4 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP, TPD 100-130/4 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP, TPD 100-150/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 100-170/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 100-200/4 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 100-240/4 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 100-260/4 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 100-290/4 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 100-340/4 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 100-350/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP, TPD 100-390/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP, TPD 100-470/4 ● ● ● ● ● ● ● ● 30.0 30.0

Page 13: TP, TPD, TPE - Databook

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TP, TPD, TPE 3

● Standard1 TPE pumps are not available in twin-head versions.2 4-pole motors above 4 kW can be operated at 3 x 660-690 YV. Smaller motor sizes cannot.

TP 125-100/4 ● ● ● ● ● ● ● ● ● 3.0 3.0 3.0

TP 125-120/4 ● ● ● ● ● ● ● ● ● 4.0 4.0 4.0

TP 125-140/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 125-130/4 ● ● ● ● ● ● ● ● ● 5.5 5.5 5.5

TP, TPD 125-160/4 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP, TPD 125-230/4 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 125-320/4 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 125-360/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP, TPD 125-430/4 ● ● ● ● ● ● ● ● 30.0 30.0

TP, TPD 125-490/4 ● ● ● ● ● ● ● ● 37.0 37.0

TP 150-170/4 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP, TPD 150-180/4 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP 150-190/4 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP, TPD 150-210/4 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP 150-230/4 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP, TPD 150-240/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP 150-250/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP, TPD 150-300/4 ● ● ● ● ● ● ● ● 30.0 30.0

TP, TPD 150-340/4 ● ● ● ● ● ● ● ● 37.0 37.0

TP 150-360/4 ● ● ● ● ● ● ● ● 30.0

TP 150-400/4 ● ● ● ● ● ● ● ● 37.0

TP 150-440/4 ● ● ● ● ● ● ● ● 45.0

TP 150-480/4 ● ● ● ● ● ● ● ● 55.0

TP 150-610/4 ● ● ● ● ● ● ● ● 75.0

TP 150-700/4 ● ● ● ● ● ● ● ● 90.0

TP 200-80/4 ● ● ● ● ● ● ● ● ● 7.5 7.5 7.5

TP 200-110/4 ● ● ● ● ● ● ● ● ● 11.0 11.0 11.0

TP 200-140/4 ● ● ● ● ● ● ● ● ● 15.0 15.0 15.0

TP 200-190/4 ● ● ● ● ● ● ● ● ● 18.5 18.5 18.5

TP 200-210/4 ● ● ● ● ● ● ● ● 22.0 22.0

TP 200-250/4 ● ● ● ● ● ● ● ● 30.0 30.0

TP 200-280/4 ● ● ● ● ● ● ● ● 37.0

TP 200-320/4 ● ● ● ● ● ● ● ● 45.0

TP 200-360/4 ● ● ● ● ● ● ● ● 55.0

TP 200-390/4 ● ● ● ● ● ● ● ● 75.0

TP 200-400/4 ● ● ● ● ● ● ● ● 75.0

TP 200-430/4 ● ● ● ● ● ● ● ● 55.0

TP 200-440/4 ● ● ● ● ● ● ● ● 90.0

TP 200-490/4 ● ● ● ● ● ● ● ● 90.0

TP 200-500/4 ● ● ● ● ● ● ● ● 110.0

TP 200-540/4 ● ● ● ● ● ● ● ● 90.0

TP 200-600/4 ● ● ● ● ● ● ● ● 110.0

TP 200-680/4 ● ● ● ● ● ● ● ● 132.0

TP 200-770/4 ● ● ● ● ● ● ● ● 160.0

TP 250-450/4 ● ● ● ● ● ● ● ● 90.0

TP 250-530/4 ● ● ● ● ● ● ● ● 110.0

TP 250-580/4 ● ● ● ● ● ● ● ● 132.0

Pump typeT

PE

Se

rie

s 1

00

01

Design Shaft sealPressure

stageMaterials Mains-operated motor

Electronically speed-controlle

d motor

TP

Se

rie

s 2

00

TP

Se

rie

s 3

00

TP

Se

rie

s 4

00

BU

BE

AU

UE

RU

UE

BA

QE

BQ

QE

GQ

QE

DB

UE

PN

6,

10

co

mb

ina

tio

n f

lan

ge

PN

10

PN

16

PN

25

Pump housing

Impeller Voltage [V] Voltage [V]

Ca

st

iro

nE

N-G

JL

-25

0

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

8

Bro

nze

Sta

inle

ss

ste

el

Ca

st

iro

n

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

5

Bro

nze

3 x

22

0-2

55

ΔV

/3

x 3

80

-44

0 Y

V

3 x

22

0-2

77

ΔV

/3

x 3

80

-48

0 Y

V

3 x

38

0-4

80

ΔV

3 x

38

0-4

80

∆V

/3

x 6

60

-69

0 Y

V2

3 x

38

0-4

80

V

3 x

38

0-5

00

V

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

13

Page 14: TP, TPD, TPE - Databook

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14

TP, TPD, TPE3

Product range, 2-pole, PN 25

● Standard

Pump type

TP

E S

eri

es

10

00

Design Shaft seal Pressure stage Materials Mains-operated motorElectronically

speed-controlled motor

TP

Se

rie

s 2

00

TP

Se

rie

s 3

00

TP

Se

rie

s 4

00

BU

BE

AU

UE

RU

UE

BA

QE

BQ

QE

GQ

QE

DB

UE

PN

6,

10

co

mb

ina

tio

n f

lan

ge

PN

10

PN

16

PN

25

Pump housing

Impeller Voltage [V] Voltage [V]

Ca

st

iro

nE

N-G

JL

-25

0

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

8

Bro

nze

Sta

inle

ss

ste

el

Ca

st

iro

n

No

du

lar

ca

st

iro

nE

N-

GJ

S-4

00

-15

Bro

nze

3 x

22

0-2

55

ΔV

/3

x 3

80

-44

0 Y

V

3 x

22

0-2

77

ΔV

/3

x 3

80

-48

0 Y

V

3 x

38

0-4

80

ΔV

3 x

38

0-4

80

ΔV

/3

x 6

60

-69

0 Y

V

3 x

38

0-4

80

V

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

TP 100-1000/2 ● ● ● ● ● ● 75.0

TP 100-1100/2 ● ● ● ● ● ● 90.0

TP 100-1250/2 ● ● ● ● ● ● 110.0

TP 100-1350/2 ● ● ● ● ● ● 132.0

TP 100-1450/2 ● ● ● ● ● ● 110.0

TP 100-1560/2 ● ● ● ● ● ● 132.0

TP 100-1700/2 ● ● ● ● ● ● 160.0

TP 100-2100/2 ● ● ● ● ● ● 200.0

TP 100-2350/2 ● ● ● ● ● ● 250.0

Page 15: TP, TPD, TPE - Databook

Pro

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TP, TPD, TPE 3

Product range, 4-pole, PN 25

● Standard

Pump type

TP

E S

eri

es

10

00

Design Shaft sealPressure

stageMaterials Mains-operated motor

Electronically speed-controlled

motor

TP

Se

rie

s 2

00

TP

Se

rie

s 3

00

TP

Se

rie

s 4

00

BU

BE

AU

UE

RU

UE

BA

QE

BQ

QE

GQ

QE

DB

UE

PN

6,

10

co

mb

ina

tio

n f

lan

ge

PN

10

PN

16

PN

25

Pump housing

Impeller Voltage [V] Voltage [V]

Ca

st

iro

nE

N-G

JL

-25

0

No

du

lar

ca

st

iro

nE

N-G

JS

-40

0-1

8

Bro

nze

Sta

inle

ss

ste

el

Ca

st

iro

n

No

du

lar

ca

st

iro

nE

N-

GJ

S-4

00

-15

Bro

nze

3 x

22

0-2

55

ΔV

/3

x 3

80

-44

0 Y

V

3 x

22

0-2

77

ΔV

/3

x 3

80

-48

0 Y

V

3 x

38

0-4

80

ΔV

3 x

38

0-4

80

ΔV

/3

x 6

60

-69

0 Y

V

3 x

38

0-4

80

V

P2[kW]

P2[kW]

P2[kW]

P2[kW]

P2[kW]

TP 100-210/4 ● ● ● ● ● ● 7.5

TP 100-250/4 ● ● ● ● ● ● 11.0

TP 100-330/4 ● ● ● ● ● ● 15.0

TP 100-360/4 ● ● ● ● ● ● 18.5

TP 100-420/4 ● ● ● ● ● ● 18.5

TP 100-450/4 ● ● ● ● ● ● 22.0

TP 100-530/4 ● ● ● ● ● ● 30.0

TP 100-590/4 ● ● ● ● ● ● 37.0

TP 125-240/4 ● ● ● ● ● ● 15.0

TP 125-270/4 ● ● ● ● ● ● 18.5

TP 125-310/4 ● ● ● ● ● ● 22.0

TP 125-370/4 ● ● ● ● ● ● 30.0

TP 125-350/4 ● ● ● ● ● ● 22.0

TP 125-440/4 ● ● ● ● ● ● 30.0

TP 125-500/4 ● ● ● ● ● ● 37.0

TP 125-570/4 ● ● ● ● ● ● 45.0

TP 125-620/4 ● ● ● ● ● ● 55.0

TP 150-330/4 ● ● ● ● ● ● 30.0

TP 150-370/4 ● ● ● ● ● ● 37.0

TP 150-450/4 ● ● ● ● ● ● 45.0

TP 150-490/4 ● ● ● ● ● ● 55.0

TP 150-710/4 ● ● ● ● ● ● 90.0

TP 150-800/4 ● ● ● ● ● ● 110.0

TP 150-930/4 ● ● ● ● ● ● 132.0

TP 200-350/4 ● ● ● ● ● ● 45.0

TP 200-370/4 ● ● ● ● ● ● 55.0

TP 200-520/4 ● ● ● ● ● ● 75.0

TP 200-560/4 ● ● ● ● ● ● 90.0

TP 200-670/4 ● ● ● ● ● ● 110.0

TP 200-760/4 ● ● ● ● ● ● 132.0

TP 200-840/4 ● ● ● ● ● ● 160.0

TP 200-930/4 ● ● ● ● ● ● 200.0

TP 250-430/4 ● ● ● ● ● ● 90.0

TP 250-500/4 ● ● ● ● ● ● 110.0

TP 250-550/4 ● ● ● ● ● ● 132.0

TP 250-720/4 ● ● ● ● ● ● 160.0

TP 250-800/4 ● ● ● ● ● ● 200.0

TP 250-910/4 ● ● ● ● ● ● 250.0

TP 250-1020/4 ● ● ● ● ● ● 315.0

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4. Operating conditions

System and test pressures

Sound pressure level

The values apply only to MG and Siemens motors. The values have a tolerance of 3 dB according to EN ISO 4871. The tolerance is not added to the values in the table.

The audible noise from TP pumps is primarily noise from the motor fan. The selection of TPE pumps will reduce the noise at partial load, as the motor and, consequently, the motor fan runs at a lower speed. Possible flow noise from control valves is also reduced at partial load in the case of the TPE pump.

Ambient temperature

PressureSystem pressure Test pressure

[bar] [MPa] [bar] [MPa]

PN 6 6 0.6 10 1.0

PN 6 / PN 10 10 1.0 16 1.6

PN 16 16 1.6 24 2.4

PN 25 25 2.5 38 3.8

Motor[kW]

Max. sound pressure level [dB(A)] - ISO 3743

Three-phase motors

2-pole 4-pole

0.12 - -

0.25 - 45

0.37 57 45

0.55 56 45

0.75 57 50.5

1.1 58 50.5

1.5 64 51.5

2.2 65 54.5

3.0 53.5 57

4.0 67.5 56

5.5 68 55

7.5 65 56

11.0 64.5 58

15.0 65 58

18.5 65.5 65

22.0 70.5 65

30.0 75 66

37.0 75 65

45.0 75 65

55.0 75 68

75.0 77 71

90.0 77 71

110.0 81 75

132.0 81 75

160.0 81 75

200.0 81 75

250.0 86 77

315.0 - 77

MG IE2 and IE3 motors:0.75 - 22 kW motors, 2-pole0.75 - 15 kW motors, 4-pole

-30 - +60 °C

Siemens IE2 and IE3 motors:30 - 315 kW motors, 2-pole18.5 - 315 kW motors, 4-pole

-20 - +55 °C

MGE motors:0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

-20 - +50 °C

MGE motors:3 - 22 kW, 2 pole1.5 - 18.5 kW, 4-pole

-20 - +40 °C

Storage: Down to -30 °C

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Installation altitudeIf the ambient temperature exceeds maximum values or if the motor is located more than 1000 metres above sea level, the motor output (P2) must be reduced due to the low density and consequent low cooling effect of the air. In such cases, it may be necessary to use an oversize motor with a higher rated output.

Fig. 1 Relationship between motor output (P2) and altitude

Fig. 2 Derating of motor output (P2) in relation to altitude above sea level

Note: If the motor is to operate at ambient temperatures between 50 and 60 °C, an oversized motor must be selected. Contact Grundfos.

Pos. Description

1Siemens IE2 and IE3 motors:30 - 315 kW motors, 2-pole18.5 - 315 kW motors, 4-pole

2MG IE2 and IE3 motors:0.75 - 22 kW motors, 2-pole0.75 - 15 kW motors, 4-pole

3

MGE motors:3 - 22 kW, 2 pole1.5 - 18.5 kW, 4-pole

Other motor sizes

TM

03

24

79

44

05

Description

MGE motors:0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

TM

05

64

00

47

12

20 25 30 35 40 45 50 55 60 65 70 75 80

50

60

70

80

90

100

[%]P2

3

2

1

t [°C]

1000 2250 3500 4750 m

10.990.980.970.960.950.940.930.920.910.900.890.88

00

1000 1200 1400 1600 1800 2000 2200Altitude [m]

P2 [%]

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5. Pumped liquids

Thin, clean, non-aggressive and non-explosive liquids, not containing solid particles or fibres that may mechanically or chemically attack the pump.See List of pumped liquids, page 19.

Examples of liquids:

• central heating system water (the water should meet the requirements of accepted standards on water quality in heating systems)

• cooling liquids

• domestic hot water

• industrial liquids

• softened water.

If glycol or another antifreeze agent is added to the pumped liquid, the pump must have a shaft seal of the RUUE or GQQE type.

The pumping of liquids with densities or kinematic viscosities higher than those of water can cause

• a considerable pressure drop

• a drop in the hydraulic performance

• a rise in the power consumption.

In these situations, equip the pump with an oversize motor. If in doubt, contact Grundfos.

If the water contains mineral oils or chemicals, or if other liquids than water are pumped, the O-rings should be chosen accordingly.

Liquid temperatureLiquid temperature: -25 - +150 °C.

Please note that shaft seals operating close to their maximum temperature will require regular maintenance, i.e. replacement.

1 TP Series 300 pumps are designed for a maximum operating temperature of 140 °C. For operation above 120 °C, an alternative shaft seal is to be selected. Contact Grundfos.

2 The below TP Series 300 pumps with GQQE shaft seals are designed for a maximum operating temperature of 60 °C.

3 At 120-150 °C, the maximum operating pressure is ≤ 23 bar.

Depending on the type of cast iron used and the pump application, the maximum liquid temperature may be limited by local regulations and laws.

Pump type Shaft seal Temperature

TP Series 100

BUBE 0-110 °C

BQQE 0-90 °C

GQQE -25 - +90 °C

TP Series 200

BUBE 0-140 °C

AUUE 0-90 °C

RUUE -25 - +90 °C

TP Series 300

BAQE 0-120 °C (140 °C)1

BQQE 0-90 °C

GQQE -25 - +90 °C (60 °C)2

TP Series 400.10 bar version

BAQE 0-120 °C

BQQE 0-90 °C

GQQE -25-90 °C

TP Series 400:25 bar version

DBUE 0-150 °C3

TP 150-360/4 TP 200-400/4

TP 150-400/4 TP 200-430/4

TP 150-440/4 TP 200-440/4

TP 150-480/4 TP 200-490/4

TP 150-610/4 TP 200-500/4

TP 150-700/4 TP 200-540/4

TP 150-810/4 TP 200-600/4

TP 150-960/4 TP 200-680/4

TP 200-770/4

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List of pumped liquidsGrundfos TP and TPD pumps are designed for circulation systems with constant flow, TPE pumps for systems with variable flow.

Thanks to their design, the pumps can be used in a wider liquid temperature range than pumps of the canned rotor type.

A number of typical liquids are listed below.

Other pump versions may be used, but we consider the ones stated in the list to be the best choices.

The list is intended as a general guide only, and it cannot replace actual testing of the pumped liquids and pump materials under specific working conditions. If in doubt, we recommend that you fill in the form shown on page 169 and contact Grundfos.

Use the list with some caution, as factors such as concentration of the pumped liquid, liquid temperature or pressure may affect the chemical resistance of a specific pump version.

Legend

AMay contain additives or impurities that may cause shaft seal problems.

BThe density and/or viscosity differ from those of water.Consider this when calculating motor and pump performance.

C The liquid must be oxygen-free (anaerobic).

D Risk of crystallisation/precipitation in shaft seal.

E Insoluble in water.

F The shaft seal rubber parts must be replaced with FKM rubber.

G Bronze housing/impeller required.

HRisk of formation of ice on the standby pump.(The risk only applies to TP, TPE Series 200 pumps).

Pumped liquids Notes Additional information

Shaft seal

TP Series 200 TP Series 300TP Series 400

PN 10TP Series 400

PN 25

Water

Groundwater

< 90 °C AUUE BQQE

BAQE DBUE> 90 °C BUBE

BAQE1

BBQE2

Boiler-feed water

< 20 °C BUBE BAQE BAQE DBUE

< 40 °C BUBE DAQF2 DBUE

< 150 °C DBUE

District heating water < 120 °C BUBE BAQE BAQE DBUE

Condensate< 90 °C AUUE BQQE

BAQE DBUE> 90 °C BUBE BAQE

Softened water C< 90 °C AUUE BQQE

BAQE DBUE> 90 °C BUBE BAQE

Brackish water GpH > 6.5, 40 °C,

1000 ppm Cl-BUBEAUUE

BQQE BQQE DBUE

Coolants

Ethylene glycol B, D, H< 120 °C DQQE

< 90 °C RUUE GQQE GQQE DQQE2

Glycerine (glycerol) B, D, H< 120 °C DQQE

< 90 °C RUUE GQQE GQQE DQQE2

Potassium acetate B, D, C, H< 120 °C DQQE

< 90 °C RUUE GQQE GQQE DQQE2

Potassium formate B, D, C, H< 120 °C DQQE

< 90 °C RUUE GQQE GQQE DQQE2

Propylene glycol B, D, H< 120 °C DQQE

< 90 °C RUUE GQQE GQQE DQQE2

Brine sodium chloride B, D, C, H < 5 °C, 30 % RUUE GQQE GQQE DQQE2

Synthetic oils

Silicone oil B, EBUBEAUUE

BAQEBQQE

BAQE DBUE

(To be continued)

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1 BAQE must not be used for potable water. For potable water, Grundfos recommends a BBQE shaft seal.2 The shaft seal is not standard, but available on request.3 Maximum 110 °C.

Vegetable oils

Corn oil B, F, EBUBV2

AUUV2BAQV2

BQQV2 BAQV2 DBUV2

Olive oil B, F, E < 80 °CBUBV2

AUUV2BAQV2

BQQV2 BAQV2 DBUV2

Peanut oil B, F, EBUBV2

AUUV2BAQV2

BQQV2 BAQV2 DBUV2

Rapeseed oil D, B, F, EBUBV2

AUUV2BAQV2

BQQV2 BAQV2 DBUV2

Soybean oil B, F, EBUBV2

AUUV2BAQV2

BQQV2 BAQV2 DBUV2

Cleaning agents

Soap (salts of fatty acids) A, E, (F) < 80 °CAUUE

(AUUV)2 BQQE

(BQQV)2 GQQE DQQE2

Alkaline degreasing agent A, E, (F) < 80 °CAUUE

(AUUV)2 BQQE

(BQQV)2 GQQE DQQE2

Oxidants

Hydrogen peroxide < 40 °C, < 2 %BUBEAUUE

BQQE BQQV2 DQQE2

Salts

Ammonium bicarbonate A < 20 °C, < 15 % AUUE BQQE GQQE DQQE2

Calcium acetate A, B < 20 °C, < 30 % AUUE BQQE GQQE DQQE2

Potassium bicarbonate A < 20 °C, < 20 % AUUE BQQE GQQE DQQE2

Potassium carbonate A < 20 °C, < 20 % AUUE BQQE GQQE DQQE2

Potassium permanganate A < 20 °C, < 10 % AUUE BQQE GQQE DQQE2

Potassium sulphate A < 20 °C, < 20 % AUUE BQQE GQQE DQQE2

Sodium acetate A < 20 °C, < 100 % AUUE BQQE GQQE DQQE2

Sodium bicarbonate A < 20 °C, < 2 % AUUE BQQE GQQE DQQE2

Sodium carbonate A < 20 °C, < 20 % AUUE BQQE GQQE DQQE2

Sodium nitrate A < 20 °C, < 40 % AUUE BQQE GQQE DQQE2

Sodium nitrite A < 20 °C, < 40 % AUUE BQQE GQQE DQQE2

Sodium phosphate (di) A < 100 °C, < 30 % AUUE BQQE GQQE DQQE2

Sodium phosphate (tri) A < 90 °C, < 20 % AUUE BQQE GQQE DQQE2

Sodium sulphate A < 20 °C, < 20 % AUUE BQQE GQQE DQQE2

Sodium sulphite A < 20 °C, < 1 % AUUE BQQE GQQE DQQE2

Alkalis

Ammonium hydroxide < 100 °C, < 30 % AUUE BQQE GQQE DQQE2

Calcium hydroxide A < 100 °C, < 10 % AUUE BQQE GQQE DQQE2

Potassium hydroxide A < 20 °C, < 20 % AUUE BQQE GQQE DQQE2

Sodium hydroxide A < 40 °C, < 20 % AUUE BQQE GQQE DQQE2

Pumped liquids Notes Additional information

Shaft seal

TP Series 200 TP Series 300TP Series 400

PN 10TP Series 400

PN 25

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6. TP Series 200 pumps

Fig. 3 TP Series 200

Technical data

ConstructionGrundfos TP Series 200 pumps are single-stage, close-coupled pumps with inline suction and discharge ports of identical diameter.

The pumps are equipped with a fan-cooled asynchronous motor. Motor and pump shafts are connected via a rigid two-part coupling.

TP Series 200 pumps have flange connection and are equipped with PN 6 or PN 10 flanges.

The pumps are equipped with an unbalanced mechanical shaft seal.

The pumps are of the top-pull-out design, i.e. the power head (motor, pump head and impeller) can be removed for maintenance or service while the pump housing remains in the pipework.

As radial and axial forces are absorbed by the fixed bearing in the motor drive-end, the pump requires no bearing.

TP Series 200 pumps are equipped with high-efficiency motors.

Pumps with bronze pump housing (version B) are suitable for circulation of domestic hot water.

Materials

TP, TPE Series 200

Fig. 4 Sectional drawing of a TPE Series 200 (flanged model)

Material specification, Series 200

GR

82

61

Flow rate: Up to 90 m3/hHead: Up to 27 mLiquid temperature: -25 - +140 °CMax. operating pressure: Up to 16 barDirection of rotation: Counter-clockwise

TM

03

12

11 1

40

5

Pos. Component Material EN/DIN

1 Pump housingCast iron EN-GJL-250, bronze CuSn10

0.60202.1093

2 Impeller Stainless steel 1.4301

3 Shaft Stainless steel 1.4305

4 Coupling Cast iron EN-GJL-400 0.7040

5 Pump headCast iron EN-GJL-250, bronze

0.60252.1093

Secondary seals EPDM

Rotating seal face

Tungsten carbide

Stationary seatCarbon (resin-impregnated), silicon carbide

5 4

3

21

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Mechanical shaft sealThree types of unbalanced mechanical shaft seals are available as standard:

• BUBEThe BUBE shaft seal is a Grundfos rubber bellows seal with tungsten carbide/carbon seal faces and secondary seals of EPDM.

• RUUE/GQQEThe RUUE shaft seal is a Grundfos O-ring seal with reduced tungsten carbide/tungsten carbide seal faces and secondary seals of EPDM.The GQQE shaft seal is a Grundfos rubber bellows seal with reduced silicon carbide/silicon carbide seal faces and secondary seals of EPDM.

• AUUE/BQQEThe AUUE shaft seal is a Grundfos O-ring seal with fixed seal driver, tungsten carbide/tungsten carbide seal faces and secondary seals of EPDM.The BQQE shaft seal is a Grundfos rubber bellows seal with silicon carbide/silicon carbide seal faces and secondary seals of EPDM.

Information on a selection of common pumped liquids with recommended shaft seals is shown on page 19.

Shaft seal specification

Special shaft seals are available for partly conditioned water or other liquids containing abrasive or crystallising particles. See page 19.

ConnectionsTP Series 200 pumps up to DN 65 are equipped with combination flanges PN 6/PN 10. DN 80 or DN 100 pumps have either PN 6 or PN 10 flanges. All flanges can be connected to flanges in accordance with EN 1092-2 and ISO 7005-2.

Features and benefitsTP Series 200 pumps have the following product features and benefits:

Unbalanced shaft seal

TP, TPDSeries 200

Version NU according to EN 12756

Shaft diameter 12 and 16 mm

Rubber bellows EPDM

Seal faces

Tungsten carbide/carbon

Tungsten carbide/tungsten carbide

Silicon carbide/silicon carbide

Optimised hydraulics for high efficiency

- reduced power consumption.

High-efficiency motors

- TP pumps are fitted with high-efficiency motors.

High-efficiency motors offer reduced energy consumption.

TP pumps are primarily fitted with motors that meet the legislative requirements of the EuP IE3 grade. For further information, see Motor, pages 59 to 63.

Top-pull-out design

- easy dismantling in case of service.

In-line design

- contrary to end-suction pumps, in-line pumps allow a straight pipework and thus often reduced installation costs.

Pump housing and pump head are electrocoated to improve the corrosion resistance

- Electrocoating includes:

Alkaline cleaning

Pre-treatment with zinc phosphate coating

Cathodic electrocoating (epoxy)

Curing of paint film at 200-250 °C.

For low-temperature applications at a high humidity, Grundfos offers TP pumps with extra surface treatment to avoid corrosion.

These pumps are available on request.

Stainless steel impeller and neck ring

- wear-free operation with high efficiency.

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7. TP Series 300 pumps

Fig. 5 TP Series 300

Technical data

ConstructionGrundfos TP, TPD Series 300 pumps are single-stage, close-coupled pumps with in-line suction and discharge ports of identical diameter.

The pumps are equipped with a fan-cooled asynchronous motor. Motor and pump shafts are connected via a rigid sleeve coupling.

Most TP Series 300 pumps are available as single-head (TP) and twin-head (TPD) models.

TP Series 300 pumps have flange connection and are equipped with PN 16 flanges.

The pumps are equipped with an unbalanced mechanical shaft seal.

The pumps are of the top-pull-out design, i.e. the power head (motor, pump head and/or motor stool and impeller) can be removed for maintenance or service while the pump housing remains in the pipework.

The pump housing is provided with replaceable wear rings to ensure high pump efficiency for life.

The twin-head pumps are designed with two parallel power heads. A non-return flap valve in the common discharge port is opened by the flow of the pumped liquid and prevents backflow of liquid into the idle pump head.

As radial and axial forces are absorbed by the fixed bearing in the motor drive-end, the pump requires no bearing.

The impeller is hydraulically balanced to minimise axial forces.

TP, TPD, TPE Series 300 pumps are equipped with high-efficiency motors.

TP Series 300 pumps with bronze impeller are suitable for pumping brine.

Materials

Fig. 6 Sectional drawing of TP Series 300

Material specification

GR

82

59

Flow rate: Up to 850 m3/hHead: Up to 93 mLiquid temperature: -25 - +140 °CMax. operating pressure: 16 barDirection of rotation: Clockwise

TM

04

95

86

46

10

Pos. Component Material EN/DIN

1 Pump housing Cast iron EN-GJL-250 EN-JL 1040

2 ImpellerCast iron EN-GJL-200, bronze CuSn5Zn5Pb

EN-JL 10302.1096.01

3Stub shaft2-part stub shaft

Stainless steelStainless steel/steel

1.43011.4301/1.0301

4Pump head/motor stool

Cast iron EN-GJL-250 EN-JL 1040

Secondary seals EPDM

Rotating seal faceMetal-impregnated carbon, silicon carbide

Stationary seat Silicon carbide

5 Wear rings Bronze CuSn10 2.1093

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Mechanical shaft sealThree types of unbalanced mechanical shaft seal are available as standard:

• BAQEThe BAQE shaft seal is a Grundfos rubber bellows seal with carbon/silicon carbide seal faces and secondary seals of EPDM.

• GQQEThe GQQE shaft seal is a Grundfos rubber bellows seal with reduced silicon carbide/silicon carbide seal faces and secondary seals of EPDM.

• BQQEThe BQQE shaft seal is a Grundfos rubber bellows seal with silicon carbide/silicon carbide seal faces and secondary seals of EPDM.

Information on a selection of common pumped liquids with recommended shaft seals is shown on page 19.

Shaft seal specification

Special shaft seals are available for partly conditioned water or other liquids containing abrasive or crystallising particles. See page 19.

ConnectionsTP, TPD Series 300 pumps are equipped with PN 16 flanges. All dimensions are according to ISO 7005-2 or EN 1092-2.

Features and benefitsTP Series 300 pumps have the following features and benefits:

Unbalanced shaft sealVersion NU according to EN 12756

Shaft diameter 28, 38, 48 and 55 mm

Rubber bellows EPDM

Seal facesCarbon/silicon carbide

Silicon carbide/silicon carbide

Optimised hydraulics for high efficiency

- reduced power consumption.

High-efficiency motors

- TP pumps are fitted with high-efficiency motors.

High-efficiency motors offer reduced energy consumption.

TP pumps are primarily fitted with motors that meet the legislative requirements of the EuP IE3 grade. For further information, see Motor, pages 59 to 63.

Top-pull-out design

- easy dismantling in case of service.

In-line design

- contrary to end-suction pumps, in-line pumps allow a straight pipework and thus often reduced installation costs.

Motor-pump shaft with sleeve coupling

-

-

stable and quiet operation.

easy dismantling in case of service.

Hydraulically and mechanically balanced impeller

- The impeller is hydraulically and mechanically balanced to increase the life of motor bearings and shaft seal.

Pump housing and motor stool are electrocoated to improve the corrosion resistance

- Electrocoating includes:

Alkaline cleaning

Pre-treatment with zinc phosphate coating

Cathodic electrocoating (epoxy)

Curing of paint film at 200-250 °C.

For low-temperature applications at a high humidity, Grundfos offers TP pumps with extra surface treatment to avoid corrosion.

These pumps are available on request.

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8. TP Series 400 pumps

Fig. 7 TP Series 400

Technical data

ConstructionGrundfos TP Series 400 pumps are single-stage, close-coupled pumps with in-line suction and discharge ports.

The pumps are equipped with a fan-cooled asynchronous motor. Motor and pump shafts are connected via a rigid flange coupling.

TP Series 400 pumps are available as single-head (TP) models. All TP Series 400 pumps have flange connection PN 10 or PN 25.

The pumps are equipped with an unbalanced mechanical shaft seal.

The pumps are of the top-pull-out design, i.e. the power head (motor, motor stool, pump head and impeller) can be removed for maintenance or service while the pump housing remains in the pipework.

The pump housing is provided with replaceable wear rings to ensure high pump efficiency for life.

As radial and axial forces are absorbed by the fixed bearing in the motor drive-end, the pump requires no bearing.

TP Series 400 pumps are equipped with high-efficiency motors.

Materials

Fig. 8 Sectional drawing of TP Series 400

Material specification

TP Series 400, PN 10

TP Series 400, PN 25

GR

75

39

Flow rate: PN 10 version:

PN 25 version:

up to 1230 m3/h

up to 1280 m3/h

Head: PN 10 version:

PN 25 version:

up to 55 m

up to 235 m

Liquid temperature:

PN 10 version:

PN 25 version:

-25 - +120 °C

0-150 °C*

* From +120 to +150 °C, max. 23 bar

Max. operating pressure:

10 bar version:

25 bar version:

10 bar

25 bar

Direction of rotation: Clockwise

TM

04

95

87

46

10

Pos. Component Material EN/DIN

1 Pump housing Cast iron EN-GJL-250 EN-JL1040

2 ImpellerDuctile cast iron EN-GJS-400 EN-JL1030

Bronze 2.1096.01

3 Pump shaft Stainless steel 1.4436

4 Coupling Cast iron EN-GJL-250 EN-JL1040

5 Motor stool Cast iron EN-GJL-250 EN-JL1040

Secondary seals EPDM rubber

Rotating seal faceCarbon, metal-impregnatedSilicon carbide

Stationary seat Silicon carbide

6 Wear rings Bronze CuSn10 2.1093

Pos. Component Material EN/DIN

1 Pump housingDuctile cast iron EN-GJS-400-18 (A-LT)

EN-JS1020

2Impeller Ductile cast iron EN-GJS-400 EN-JS1030

Bronze 2.1096.01

3 Pump shaft Stainless steel 1.4436

4 Coupling Cast iron EN-GJL-250 EN-JL1040

5 Motor stool Cast iron EN-GJL-250 EN-JL1040

Secondary seals EPDM rubber

Rotating seal face Carbon, resin-impregnated

Stationary seat Tungsten carbide

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Mechanical shaft sealFor 10 bar versions, the following three types of unbalanced mechanical shaft seals are available as standard:

• BAQEThe BAQE shaft seal is a Grundfos rubber bellows seal with carbon/silicon carbide seal faces and secondary seals of EPDM.

• GQQEThe GQQE shaft seal is a Grundfos rubber bellows seal with reduced silicon carbide/silicon carbide seal faces and secondary seals of EPDM.

• BQQEThe BQQE shaft seal is a Grundfos rubber bellows seal with silicon carbide/silicon carbide seal faces and secondary seals of EPDM.

For 25 bar versions, the following mechanical shaft seal is available as standard:

• DBUEThe DBUE shaft seal is a Grundfos balanced O-ring seal with carbon/tungsten carbide seal faces and secondary seals of EPDM.

Information on a selection of common pumped liquids with recommended shaft seals is shown on page 19.

Special shaft seals are available for partly conditioned water or other liquids containing abrasive or crystallising particles. See page 19.

ConnectionsTP Series 400 pumps are the only TP pumps with suction and discharge ports of different diameters.

The suction port is one dimension larger than the discharge port in order to obtain a low inlet velocity. This reduces the risk of cavitation and noise.

TP Series 400 pumps have flanges according to ISO 7005-2 or EN 1092-2.

Features and benefitsTP Series 400 pumps have the following features and benefits:

Optimised hydraulics for high efficiency

- reduced power consumption.

High-efficiency motors

- TP pumps are fitted with high-efficiency motors.

High-efficiency motors offer reduced energy consumption.

TP pumps are primarily fitted with motors that meet the legislative requirements of the EuP IE3 grade. For further information, see Motor, pages 59 to 63.

Top-pull-out design

- easy dismantling in case of service.

In-line design

- contrary to end-suction pumps, in-line pumps allow a straight pipework and thus often reduced installation costs.

Motor-pump shaft with flanged coupling

--

stable and quiet operationeasy dismantling in case of service.

Supported flange connection

- The pump housing has flange connections with integrated feet in order to stabilise the pump.

Surface treatment

TP Series 400 pumps are given the following surface treatment:

Pump type Electrocoating Spray painting

TP Series 400 x x

Electrocoating includes:

Alkaline cleaning

Pre-treatment with zinc phosphate coating

Cathodic electrocoating (epoxy)

Curing of paint film at 200-250 °C.

For low-temperature applications at a high humidity, Grundfos offers TP pumps with extra surface treatment to avoid corrosion.

These pumps are available on request.

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9. TPE Series 1000 pumps

Fig. 9 TPE Series 1000

Technical data

ConstructionTPE Series 1000 pumps are based on TP Series 100, 200 and 300 pumps.

The main difference between the TP and the TPE Series 1000 pump range is the motor. The MGE motor of TPE Series 1000 pumps a has built-in frequency converter for continuous adjustment of the pressure to the flow rate. TPE pumps with 2-pole motors below 3 kW and 4-pole motors below 1.5 kW are fitted with permanent-magnet motors which have an efficiency that exceeds the IE4 demands - including the energy consumption of the integrated frequency converter (compared to IE levels in IEC 60034-30-1 Ed. 1 (CD)).

TPE Series 1000 pumps are suitable for applications where the pressure, temperature, flow rate or another parameter is to be controlled on the basis of signals from a sensor at some point in the system.

Note: TPE Series 1000 pumps are not fitted with a sensor from factory.

For further information on construction and materials of TPE Series 1000 pumps, see pages 21 to 24.

ApplicationsTPE Series 1000 pumps have integrated speed control for automatic adaptation of performance to current conditions.

This ensures that the energy consumption is kept at a minimum.

TPE pumps can operate at any duty point within the range between 25 % and 100 % speed.

Fig. 10 Duty range of TPE Series 1000 pumps

The 100 % curve corresponds to the curve of a pump with a mains-operated motor.

Depending on the application, TPE Series 1000 pumps offer energy savings, increased comfort or improved processing.

The pumps can be fitted with sensor types meeting the requirements mentioned in section 25. Accessories.

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Flow rate: Up to 340 m3/hHead: Up to 90 mLiquid temperature: -25 - +140 °CMax. operating pressure: 16 barMotor sizes (three-phase): 1.1 to 22 kW

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25 %

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The charts below show possible control modes of TPE Series 1000 pumps in different applications.

System application Select this control mode Pump type

In systems with relatively large pressure losses in the distribution pipes and in air-conditioning and cooling systems.• Two-pipe heating systems with thermostatic valves and

– very long distribution pipes– strongly throttled pipe balancing valves– differential-pressure regulators– large pressure losses in those parts of the system through which the total

quantity of water flows (for example boiler, heat exchanger and distribution pipe up to the first branching).

• Primary circuit pumps in systems with large pressure losses in the primary circuit.

• Air-conditioning systems with– heat exchangers (fan coils)– cooling ceilings– cooling surfaces.

Constant differential pressure (with differential-pressure sensor located in

the system)

All

In systems with relatively small pressure losses in the distribution pipes.• Two-pipe heating systems with thermostatic valves and

– dimensioned for natural circulation– small pressure losses in those parts of the system through which the total

quantity of water flows (for example boiler, heat exchanger and distribution pipe up to the first branching), or

– modified to a high differential temperature between flow pipe and return pipe (for example district heating).

• Underfloor heating systems with thermostatic valves.• One-pipe heating systems with thermostatic valves or pipe balancing valves.• Primary circuit pumps in systems with small pressure losses in the primary

circuit.

Constant differential pressure

All

In systems with a fixed system characteristic.Examples:• one-pipe heating systems• boiler shunts• systems with three-way valves• domestic hot-water circulation.

Constant temperature

All

Constant differential temperature

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

If an external controller is installed, the pump is able to change from one constant curve to another, depending on the value of the external signal.The pump can also be set to operate according to the max. or min. curve:• The max. curve mode can be used in periods in which a maximum flow is

required.This operating mode is suitable e.g. for hot-water priority.

• The min. curve mode can be used in periods in which a minimum flow is required.

Constant curve

All

In systems requiring a constant flow, independently of pressure drop.Examples:• chillers for air-conditioning• heating surfaces• cooling surfaces.

Constant flow rate

All

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H

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Qset

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Control optionsCommunication with TPE Series 1000 pumps is possible via a central building management system, remote control (Grundfos GO Remote) or control panel.

The purpose of controlling a TPE Series 1000 pump is to monitor and control the pressure, temperature, flow rate and liquid level of the system.

For further information on control options of TPE pumps, see page 55.

In systems requiring a constant tank level, independently of the flow rate.Examples:• process water tanks• boiler condensate tanks.

Constant level

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

In systems with pumps operating in parallel.The multi-pump function enables the control of single-head pumps connected in parallel (two to four pumps) and twin-head pumps without the use of external controllers. The pumps in a multi-pump system communicate with each other via the wireless GENIair connection or the wired GENI connection.

"Assist" menu, "Multi-pump setup"0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

System application Select this control mode Pump type

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10. Overview of functions

Control panel E-pump functions

E-pump type

TPESeries 1000

TPESeries 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

Setting via standard control panel

Setpoint ●Start/stop ●Max. curve ●Min. curve ●Alarm reset ●Enable radio communication ●

Status readings via standard control panel

Setpoint ●Operating indication ●Fault indication ●Operating mode: MIN, MAX, STOP ●

Setting via standard control panel

Setpoint ●Start/stop ●Max. curve ●Min. curve ●Alarm reset ●

Status readings via standard control panel

Setpoint ●Operating indication ●Fault indication ●

Operating mode: MIN, MAX, STOP ●

Settings via Grundfos GO Remote

Setpoint ● ●Operating mode ● ●Control mode ● ●

Date and time ●3)

Buttons on product ● ●Controller ● ●Operating range ● ●Pump number ● ●Radio communication ●Sensor type ●Analog input 1 ●Analog input 2 ●

Analog input 3 ●3)

Pt100/1000 input 1 ●3)

Pt100/1000 input 2 ●3)

Digital input 1 ●

Digital input 2 ●3) ●

Digital input/output 3 ●

Digital input/output 4 ●3)

Analog output ●3)

External setpoint function ● ●Signal relay 1 ● ●

Signal relay 2 ● ●1)

Limit 1 exceeded ●Limit 2 exceeded ●Standstill heating ● ●

Motor bearing monitoring ● ●2)

Service ●Store settings ● ●Recall settings ● ●Undo ● ●Pump name ●Unit configuration ● ●

● Available.1) Only 11-22 kW.2) Lubricated, only 11-22 kW.3) Only available if an advanced functional module is fitted.

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Status readings via Grundfos GO Remote

Resulting setpoint ● ●Actual controlled value ● ●Motor speed (rpm, %) ● ●Power consumption ● ●Energy consumption ● ●Acc. flow, specific energy ●Operating hours ● ●

Pt100/1000 input 1 ●3)

Pt100/1000 input 2 ●3)

Analog output ●3)

Analog input 1 ●Analog input 2 ●

Analog input 3 ●3)

Digital input 1 ●

Digital input 2 ●3) ●

Digital input/output 3 ●

Digital input/output 4 ●3)

Fitted modules ●

Setting via GENIbus

Setpoint ● ●Start/stop ● ●Max. curve ● ●Min. curve ● ●Constant pressure, proportional pressure or constant curve ● ●

Reading via GENIbus

Setpoint ● ●Operating indication ● ●

Pump status ● ●

Setting via external signal

Setpoint ● ●Predefined setpoint ●Start/stop ● ●Min./max. curve via digital input ● ●Alarm resetting ●

Reading via external signal

Fault, Operation, Ready, Pump running, Bearing lubrication, Warning (signal relay)

● ●

Limit exceeded 1 and 2 (signal relay) ●

Optional functions Optional functions with advanced functional module

Real-time clock ●Analog output ●Additional analog, digital and PT100/1000 inputs ●

Control panel E-pump functions

E-pump type

TPESeries 1000

TPESeries 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

● Available.1) Only 11-22 kW.2) Lubricated, only 11-22 kW.3) Only available if an advanced functional module is fitted.

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11. User interfaces for TPE pumps

Pump settings can be made by means of the following user interfaces:

Control panels

• TPE Series 1000 pumps, 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole. See page 32.

• TPE Series 1000 pumps, 3-22 kW, 2-pole, and 1.5 - 18.5 kW, 4-pole. See page 34.

Remote controls

• Grundfos GO Remote.See Grundfos GO Remote, page 35.

If the power supply to the pump is switched off, the settings will be stored.

Control panel for TPE Series 1000 pumps, 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole

Fig. 11 Standard control panel

Setpoint settingSet the desired setpoint of the pump by pressing or

. The light fields on the control panel will indicate the setpoint set.

Pump in differential-pressure control mode

The following example applies to a pump in an application where a pressure sensor gives feedback to the pump. If the sensor is retrofitted to the pump, it must be set up manually as the pump does not automatically register a connected sensor.

Figure 12 shows that the light fields 5 and 6 are activated, indicating a desired setpoint of 3 metres with a sensor measuring range from 0 to 6 metres. The setting range is equal to the sensor measuring range.

Fig. 12 Setpoint set to 3 metres, differential-pressure control

Pump variantFitted as standard

Option

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

● -

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

- -

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1

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3

4

5Stop

Pos. Symbol Description

1Grundfos EyeShows the operating status of the pump.See page 51 for further information.

2 - Light fields for indication of setpoint.

3Changes the setpoint and reset of alarms and warnings.

4Enables radio communication with the Grundfos GO Remote and other products of the same type.

5

Makes the pump ready for operation/starts and stops the pump.Start:If the button is pressed when the pump is stopped, the pump will only start if no other functions with higher priority have been enabled.Stop:If the button is pressed when the pump is running, the pump will always be stopped. When the pump is stopped via this button, the "Stop" text next to the button will illuminate.

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Pump in constant-curve control mode

In constant-curve control mode, the pump performance will be between the max. and min. curve of the pump. See fig. 13.

Fig. 13 Pump in constant-curve control mode

Setting to max. curve:

• Press continuously to change over to the max. curve of the pump (top light field flashes). When the top light field is on, press for 3 seconds until the light field starts flashing.

• To change back, press continuously until the desired setpoint is indicated.

Example: Pump set to max. curve.

Figure 14 shows that the top light field is flashing, indicating max. curve.

Fig. 14 Max. curve duty

Setting to min. curve:

• Press continuously to change over to the min. curve of the pump (bottom light field flashes). When the bottom light field is on, press for 3 seconds until the light field starts flashing.

• To change back, press continuously until the desired setpoint is indicated.

Example: Pump set to min. curve.

Figure 15 shows that the bottom light field is flashing, indicating min. curve.

Fig. 15 Min. curve duty

Start/stop of pump

Start the pump by pressing or by continuously pressing until the desired setpoint is indicated.

Stop the pump by pressing . When the pump is stopped, the "Stop" text next to the button will illuminate. The pump can also be stopped by continuously pressing until none of the light fields are on.

If the pump has been stopped by pressing , it can only be released for operation by pressing again.

If the pump has been stopped by pressing , it can only be restarted by pressing .

The pump can also be stopped with the Grundfos GO Remote or via a digital input set to "External stop".

Resetting of fault indications

A fault indication can be reset in one of the following ways:

• Via the digital input if it has been set to "Alarm resetting".

• Briefly press or on the pump. This will not change the setting of the pump.A fault indication cannot be reset by pressing or

if the buttons have been locked.

• Switch off the power supply until the indicator lights are off.

• Switch the external start/stop input off and then on again.

• With the Grundfos GO Remote.

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Control panel for TPE Series 1000 pumps, 3-22 kW, 2-pole, and 1.5 - 18.5 kW, 4-pole

The pump control panel (fig. 16) incorporates the following buttons and indicator lights:

• buttons, and , for setpoint setting

• light fields, yellow, for setpoint indication

• Indicator lights, green (operation) and red (fault).

Fig. 16 Control panel for TPE Series 1000 pumps, 3-22 kW, 2-pole, and 1.5 - 18.5 kW, 4-pole

Setpoint settingNote: The setpoint can only be set when the operating mode is "Normal".

Set the desired setpoint by pressing or .

The light fields on the control panel will indicate the setpoint set.

"Differential-pressure control" mode

Example

Figure 17 shows that light fields 5 and 6 are activated, indicating a desired setpoint of 3.4 m. The sensor measuring range is 0 to 6 m. The setting range is equal to the sensor measuring range (see sensor nameplate).

Fig. 17 Setpoint set to 3.4 m (differential-pressure control)

"Constant curve" control mode

Example

In this control mode, the pump performance is set within the range from min. to max. curve. See fig. 18.

Fig. 18 Pump performance setting, "Constant curve" control mode

Setting to max. curve dutyPress continuously to change to the max. curve of the pump (top light field flashes). See fig. 19.

To change back, press continuously until the desired setpoint is indicated.

Fig. 19 Max. curve duty

Setting to min. curve dutyPress continuously to change to the min. curve of the pump (bottom light field flashes). See fig. 20.

To change back, press continuously until the desired setpoint is indicated.

Fig. 20 Min. curve duty

Start/stop of pump Start the pump by continuously pressing until the desired setpoint is indicated.

Stop the pump by continuously pressing until none of the light fields are activated and the green indicator light flashes.

Pump variantFitted as standard

Option

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

- -

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

● -

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Buttons

Indicator lights

Light fields

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04

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04

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Grundfos GO RemoteThe pump is designed for wireless radio or infrared communication with the Grundfos GO Remote.

The Grundfos GO Remote enables setting of functions and gives access to status overviews, technical product information and actual operating parameters.

The Grundfos GO Remote offers three different mobile interfaces (MI). See fig. 21.

Fig. 21 Grundfos GO Remote communicating with the pump via radio or infrared light

CommunicationWhen the Grundfos GO Remote communicates with the pump, the indicator light in the middle of the Grundfos Eye will flash green. See Grundfos Eye, page 51.

Communication must be established using one of these communication types:

• radio communication

• infrared communication.

Radio communication

Radio communication can take place at distances up to 30 metres. It is necessary to enable communication by pressing or on the pump control panel.

Infrared communication

When communicating via infrared light, the Grundfos GO Remote must be pointed at the pump control panel.

Menu overview for Grundfos GO Remote

Main menus

1) Only available if an advanced functional module is fitted.

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Pos. Description

1Grundfos MI 201:Consists of an Apple iPod touch 4G and a Grundfos cover.

2

Grundfos MI 202:Add-on module which can be used in conjunction with an Apple iPod touch 4G, iPhone 4G or 4GS.

Grundfos MI 204:Add-on module which can be used in conjunction with an Apple iPod touch 5G or iPhone 5.

3

Grundfos MI 301:Separate module enabling radio or infrared communication. The module can be used in conjunction with an Android or iOS-based Smartphone with Bluetooth connection.

+

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Resulting setpoint ●

Actual setpoint ●

External setpoint ●

Actual controlled value ●

Sensor value ●

Motor speed (rpm %) ● ●

Power consumption ● ●

Energy consumption ● ●

Acc. flow, specific energy ● -

Operating hours ● ●

Pt100/1000 input 1 ●1) -

Pt100/1000 input 2 ●1) -

Analog output ●1) -

Analog input 1 ● -

Analog input 2 ● -

Analog input 3 ●1)

Digital input 1 ●

Digital input 2 ●1) ●

Digital input/output 3 ●

Digital input/output 4 ●1)

Fitted modules ● ●

Controlled from ●

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1) Only available if an advanced functional module is fitted.2) Only 11-22 kW.

Settings

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Section Page

Setpoint ● ● Setpoint 37

Operating mode ● ● Operating mode 37

Control mode ● ● Control mode 37

Date and time ●1)

Buttons on product ● ●

Controller ● ● Controller settings 44

Operating range ● ● Operating range 45

Ramps ● Ramps 49

Pump number ● ● Pump number 49

Radio communication ●

Sensor type ● Sensor type 41

Analog input 1 ●

Analog inputs 41Analog input 2 ●

Analog input 3 ●1)

Pt100/1000 input 1 ●1)

Pt100/1000 inputs 41Pt100/1000 input 2 ●1)

Digital input 1 ●Digital inputs 41

Digital input 2 ●1) ●

Digital input/output 3 ●Digital inputs/outputs 42

Digital input/output 4 ●1)

Predefined setpoint ●1) Predefined setpoints 48

Analog output ●1) Analog output 43

External setpoint function ● ● External setpoint influence 45

Signal relay 1 ● ●Relay outputs 43

Signal relay 2 ● ●2)

Limit 1 exceeded ●Limit-exceeded function 48

Limit 2 exceeded ●

Standstill heating ● ●

Motor bearing monitoring ● ●

Service ●

Store settings ● ●

Recall settings ● ●

Undo ● ●

Pump name ●

Unit configuration ● ●

Alarms and warnings

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Warning log ●

"Reset alarm" button ●

Assist

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Assisted pump setup ●

Assisted fault advice ●

Multi-pump setup ● Multi-pump setup 49

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Description of selected functions

SetpointThe setpoint for all control modes can be set in this submenu when the desired control mode has been selected. See Control mode, page 37.

Operating modePossible operating modes:

• NormalThe pump runs according to the selected control mode.

• StopThe pump stops.

• Min.The min. curve mode can be used in periods in which a minimum flow is required.

• Max.The max. curve mode can be used in periods in which a maximum flow is required.This operating mode is suitable e.g. for hot-water priority.

• ManualThe pump is operating at a manually set speed. See Set manual speed, page 37.

The pump can be set to operate according to the max. or min. curve. See fig. 22.

Fig. 22 Max. and min. curves

Set manual speedThe pump speed can be set in %. When the operating mode has been set to "Manual", the pump will run at the set speed.

Control modePossible control modes:

• Const. pressure (constant pressure)

• Const. temp. (constant temperature)

• Con. diff. press. (constant differential pressure)

• Con. diff. temp. (constant differential temperature)

• Const. flow rate (constant flow rate)

• Const. level (constant level)

• Const. other val. (constant other value)

• Const. curve (constant curve).

The setpoint for all control modes, except AUTOADAPT and FLOWADAPT, can be changed in the "Setpoint" submenu under "Settings" when the desired control mode has been selected.

Constant pressure

The pump maintains a constant discharge pressure, independently of the flow rate. See fig. 23.

Fig. 23 Constant pressure

This control mode requires an external differential-pressure sensor as shown in the examples below:

Fig. 24 Constant pressure

TM

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Max.

Min.

Pump variant Constant pressure

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

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79

01

16

13

Examples• One external differential-pressure sensor.

H

Q

p

p

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Constant temperature

This control mode ensures a constant temperature. Constant temperature is a comfort control mode that can be used in domestic hot-water systems to control the flow to maintain a fixed temperature in the system. See fig. 25. When this control mode is used, no balancing valves must be installed in the system.

Fig. 25 Constant temperature

This control mode requires an external temperature sensor as shown in the examples below:

Fig. 26 Constant temperature

Constant differential pressure

The pump maintains a constant differential pressure, independently of the flow in the system. See fig. 27. This control mode is primarily suitable for systems with relatively small pressure losses.

Fig. 27 Constant differential pressure

This control mode requires an external differential-pressure sensor or two external pressure sensors as shown in the examples below.

Fig. 28 Constant differential pressure

Pump variant Constant temperature

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

TM

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16

13

Examples• One external temperature sensor.

H

Q

t

t

t

Pump variantConstant differential

pressure

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

TM

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16

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Examples• One external differential-pressure sensor.

• Two external pressure sensors.(Applies only to TPE pumps with motor sizes from 0.12 to 2.2 kW.)

H

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Constant differential temperature

The pump maintains a constant differential temperature in the system and the pump performance is controlled according to this. See fig. 29.

Fig. 29 Constant differential temperature

This control mode requires either two temperature sensors or one external differential-temperature sensor as shown in the examples below:

Fig. 30 Constant differential temperature

Constant flow rate

The pump maintains a constant flow in the system, independently of the head. See fig. 31.

Fig. 31 Constant flow rate

This control mode requires an external flow sensor as shown below:

Fig. 32 Constant flow rate

Constant level

The pump maintains a constant level, independently of the flow rate. See fig. 33.

Fig. 33 Constant level

Pump variantConstant differential

temperature

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

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54

17

13

Examples• Two external temperature sensors.

(Applies only to TPE pumps with motor sizes from 0.12 to 2.2 kW.)

• One external differential-temperature sensor.

H

Q

△t

t

t

t

t

Pump variant Constant flow rate

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

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17

13

Example• One external flow sensor.

Pump variant Constant level

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

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16

13

H

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Q

H

Q

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This control mode requires an external level sensor.

The pump can control the level in a tank in two ways:

• as an emptying function where the pump draws the liquid from the tank

• as a filling function where the pump pumps the liquid into the tank.

See fig. 34.

The type of level control function depends on the setting of the built-in controller. See Controller settings, page 44.

Fig. 34 Constant level

Constant other value

Any other value is kept constant.

Constant curve

The pump can be set to operate according to a constant curve. See fig. 35.

The desired speed can be set in % of maximum speed in the range from 25 to 100 %.

Fig. 35 Constant curve

Note: Depending on the system characteristics and the duty point, the 100 % setting may be slightly smaller than the pump’s actual max. curve, even though the display shows 100 %. This is due to power and pressure limitations built into the pump. The deviation varies according to pump type and pressure loss in the pipes.

Fig. 36 Power and pressure limitations influencing the max. curve

Examples• One external level sensor

– emptying function.

• One external level sensor

– filling function.

Pump variant Constant other value

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

L

L

Pump variant Constant curve

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

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16

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H

Q

H [%]

Q [m3/h]80 %

100 %Limited max. curve

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Sensor type

The setting of the sensor is only relevant in the case of controlled operation.

Select among the following values:

• Sensor output signal0-10 V0-20 mA4-20 mA.

• Unit of measurement of sensor:bar, mbar, m, kPa, psi, ft, m³/h, m³/s, l/s, gpm, °C, °F, %.

• Sensor measuring range.

Analog inputs

Available inputs depending on the functional module fitted in the pump:

To set up an analog input, make the settings below.

Function

The analog inputs can be set to these functions:

• Not active

• Feedback sensor

• Ext. setpoint influenceSee Setpoint influence, page 45.

• Other function.

Measured parameter

Select one of the parameters, i.e. the parameter to be measured in the system by the sensor connected to the actual analog input.

Unit

Available measuring units:

Electrical signal

Select signal type (0.5 - 3.5 V, 0-5 V, 0-10 V, 0-20 mA or 4-20 mA).

Sensor range, min. value

Set the min. value of the connected sensor.

Sensor range, max. value

Set the max. value of the connected sensor.

Pt100/1000 inputs

Available inputs depending on the functional module fitted in the pump:

Function

The Pt100/1000 inputs can be set to these functions:

• Not active

• Feedback sensor

• Ext. setpoint influenceSee Setpoint influence, page 45.

• Other function.

Measured parameter

Select one of the parameters, i.e. the parameter to be measured in the system.

Digital inputs

Motors from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole

Available inputs depending on the functional module fitted in the pump:

To set up a digital input, make the settings below.

Pump variant Sensor type

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

-

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

Pump variant Analog inputs

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

Function (terminal)FM 200

(standard)FM 300

(advanced)

Analog input 1, setup (4) ● ●

Analog input 2, setup (7) ● ●

Analog input 3, setup (14) - ●

Parameter Possible units

Pressure bar, m, kPa, psi, ft

Pump flow m3/h, l/s, yd3/h, gpm

Liquid temperature °C, °F

Other parameter %

Pump variant Pt100/1000 inputs

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

Function (terminal)FM 200

(standard)FM 300

(advanced)

Pt100/1000 input 1, setup (17 and 18) - ●

Pt100/1000 input 2, setup (18 and 19) - ●

Pump variant Digital inputs

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

Function (terminal)FM 200

(standard)FM 300

(advanced)

Digital input 1, setup (2 and 6) ● ●

Digital input 2, setup (1 and 9) - ●

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Function

Select one of these functions:

• Not activeWhen set to "Not active", the input has no function.

• External stopWhen the input is deactivated (open circuit), the pump will stop.

• Min. (min. speed)When the input is activated, the pump will run at the set min. speed.

• Max. (max. speed)When the input is activated, the pump will run at the set max. speed.

• External faultWhen the input is activated, a timer will be started. If the input is activated for more than 5 seconds, the pump will be stopped and a fault will be indicated.

• Alarm resettingWhen the input is activated, a possible fault indication will be reset.

• Dry runningWhen this function has been selected, lack of inlet pressure or water shortage can be detected.When lack of inlet pressure or water shortage (dry running) is detected, the pump will be stopped. The pump cannot restart as long as the input is activated.This requires the use of an accessory, such as:

– a pressure switch installed on the suction side of the pump

– a float switch installed on the suction side of the pump.

• Accumulated flowThis function is only available for TPE Series 1000 pumps with motor sizes from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole.When this function has been selected, the accumulated flow can be registered. This requires the use of a flowmeter which can give a feedback signal as a pulse per defined flow of water.See Pulse flowmeter setup, page 48.

• Predefined setpoint digit 1 (applies only to digital input 2)When digital inputs are set to predefined setpoint, the pump will operate according to a setpoint based on the combination of the activated digital inputs.See Predefined setpoints, page 48.

Motors from 3-22 kW, 2-pole, and 1.5 - 18.5 kW, 4-pole

The digital input of the pump can be set to different functions. Select one of the following functions:

• Min. (min. curve)

• Max. (max. curve).

The selected function is activated by closing the contact between terminals 1 and 9.

Min.:

When the input is activated, the pump will operate according to the min. curve.

Max.:

When the input is activated, the pump will operate according to the max. curve.

Digital inputs/outputs

Available inputs/outputs depending on the functional module fitted in the pump:

To set up a digital input/output, make the settings below.

Mode

The digital inputs/outputs 3 and 4 can be set to act as digital inputs or digital outputs:

Function

The digital inputs/outputs 3 and 4 can be set to these functions:

Possible functions, digital input/output 3

* This function is only available for TPE Series 1000 pumps with motor sizes from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole.

Possible functions, digital input/output 4

* This function is only available for TPE Series 1000 pumps with motor sizes from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole.

Pump variant Digital inputs/outputs

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

Function (terminal)FM 200

(standard)FM 300

(advanced)

Digital input/output 3, setup (10 and 16) ● ●

Digital input/output 4, setup (11 and 18) - ●

Function if input Function if output

• Not active• External stop• Min.• Max.• External fault• Alarm resetting• Dry running• Accumulated flow*• Predefined setpoint digit 2

• Not active• Ready• Alarm• Operation• Pump running• Warning• Limit 1 exceeded*• Limit 2 exceeded*

Function if input Function if output

• Not active• External stop• Min.• Max.• External fault• Alarm resetting• Dry running• Accumulated flow*• Predefined setpoint digit 3

• Not active• Ready• Alarm• Operation• Pump running• Warning• Limit 1 exceeded*• Limit 2 exceeded*

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Relay outputs

The pump incorporates two signal relays for potential-free signalling.

The signal relays can be configured to be activated by one of the following incidents:

• Ready

• Operation

• Alarm

• Warning

• Limit 2 exceeded*

• Limit 1 exceeded*

• Pump running

• Relubricate (11-22 kW)

• Control of external fan*

• Not active.

* This function is only available for TPE Series 1000 pumps with motor sizes from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole.

Analog output

Whether the analog output is available or not depends on the functional module fitted in the pump:

To set up an analog output, make the settings below.

Output signal

• 0-10 V

• 0-20 mA

• 4-20 mA.

Function of analog output

• Actual speed

• Actual value

• Resulting setpoint

• Motor load

• Motor current

• Limit 1 exceeded*

• Limit 2 exceeded*

• Flow rate.

* This function is only available for TPE Series 1000 pumps with motor sizes from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole.

Pump variant

Relay outputs

Signal relay 1

Signal relay 2

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

● ●

3 - 7.5 kW, 2-pole1.5 - 7.5 kW, 4-pole

- ●

11 - 22 kW, 2-pole11 - 18.5 kW, 4-pole

● ●

Pump variant Analog output

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

Function (terminal)FM 200

(standard)FM 300

(advanced)

Analog output - ●

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Controller settings

The pumps have a factory default setting for gain (Kp) and integral time (Ti).

However, if the factory setting is not the optimum setting, the gain and the integral time can be changed:

• Set the gain (Kp) within the range from 0.1 to 20.

• Set the integral-action time (Ti) within the range from 0.1 to 3600 s.If 3600 s is selected, the controller will function as a P controller.

Furthermore, the controller can be set to inverse control. This means that if the setpoint is increased, the speed will be reduced. In the case of inverse control, the gain (Kp) must be set within the range from -0.1 to -20.

Guidelines for setting of PI controller

The tables below show the recommended controller settings:

L1 = Distance [m] between pump and sensor.

1) In heating systems, an increase in pump performance will result in a rise in temperature at the sensor.

2) In cooling systems, an increase in pump performance will result in a drop in temperature at the sensor.

L2 = Distance [m] between heat exchanger and sensor.

L2 = Distance [m] between heat exchanger and sensor.

Pump variant Controller settings

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

Differential-pressure control Kp Ti

0.5 0.5

0.5L1 < 5 m: 0.5L1 > 5 m: 3

L1 > 10 m: 5

p

p

pp

L1

L1

Temperature control

Kp

TiHeating

system1)Cooling

system2)

0.5 -0.5 10 + 5L2

0.5 -0.5 30 + 5L2

Differential-temperature control Kp Ti

-0.5 10 + 5L2

Flow control Kp Ti

0.5 0.5

Constant-pressure control Kp Ti

0.5 0.5

0.1 0.5

Level control Kp Ti

-2.5 100

2.5 100

L2

t

L2

t

t

L2

t

t

t

L2

Q

p

p

L

L

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General rules of thumb

If the controller reacts too slowly, increase Kp.

If the controller is hunting or unstable, dampen the system by reducing Kp or increasing Ti.

Operating range

Set the operating range as follows:

• Set the min. speed within the range from fixed min. speed to user-set max. speed.

• Set the max. speed within the range from user-set min. speed to fixed max. speed.

The range between the user-set min. and max. speeds is the operating range. See fig. 37.

Note: Speeds below 25 % may result in noise from the shaft seal.

Fig. 37 Example of min. and max. settings

Setpoint influence

External setpoint influence

Motors from 0.12 - 2.2 kW, 2-pole, and 0.12 - 1.1 kW, 4-pole

It is possible to influence the setpoint by an external signal, either via one of the analog inputs or, if an advanced functional module is fitted, via one of the Pt100/1000 inputs.

Note: Before the "Digital inputs" can be enabled, one of the analog inputs or Pt100/1000 inputs must be set to "External setpoint function".

See Analog inputs, page 41, and Pt100/1000 inputs, page 41.

If more than one input has been set up for setpoint influence, the function will select the analog input with the lowest number, for example "Analog input 2", and ignore the other inputs, for example "Analog input 3" or "Pt100/1000 input 1".

Motors from 3-22 kW, 2-pole, and 1.5 - 18.5 kW, 4-pole

The input for external setpoint signal can be set to different signal types. Select one of the following types:

• 0-10 V

• 0-20 mA

• 4-20 mA

• Not active.

If one of the signal types is selected, the actual setpoint is influenced by the signal connected to the external setpoint input.

Pump variant Operating range

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

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Max. speed (fixed)

User-set max. speed

Operating range

User-set min. speed

Min. speed (fixed)

24 %

12 %

0 %

67 %

100 %

Pump variantExternal setpoint

influence

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

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Example of external setpoint influence

See fig. 38.

At a lower sensor value of 0 bar, a set setpoint of 2 bar and an external setpoint of 60 %, the actual setpoint is 0.60 x (2 - 0) + 0 = 1.2 bar.

Actual setpoint = actual input signal x (setpoint - lower value) + lower value.

Fig. 38 Example of setpoint influence

The table below gives an overview of the types of setpoint influence and the availability depending on pump type.

These functions can be selected:

• Not activeWhen set to "Not active", the setpoint will not be influenced by any external function.

• Linear functionThe setpoint is influenced linearly from 0 to 100 %. See fig. 39.

Fig. 39 Linear function

• "Linear with Stop" and "Linear with Min."

– Linear with StopIn the input signal range from 20 to 100 %, the setpoint is influenced linearly.If the input signal is below 10 %, the pump will change to "Stop" operating mode.If the input signal is increased above 15 %, the operating mode will be changed back to "Normal".See fig. 40.

– Linear with Min.In the input signal range from 20 to 100 %, the setpoint is influenced linearly.If the input signal is below 10 %, the pump will change to "Min." operating mode.If the input signal is increased above 15 %, the operating mode will be changed back to "Normal".See fig. 40.

Fig. 40 "Linear with Stop" and "Linear with Min."

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Type of setpoint influence

Pump type

TPE Series 1000

0.1

2 -

2.2

kW

, 2

-po

le0

.12

- 1

.1 k

W,

4-p

ole

3 -

22

kW

, 2

-po

le1

.5 -

18

.5 k

W,

4-p

ole

Not active ● ●

Linear function ● ●

Linear with Stop ● -

Linear with Min. ● -

Inverse function ● -

Inverse with Stop ● -

Inverse with Min. ● -

Influence table ● -

Influence table with Stop at Min. ● -

Influence table with Stop at Max. ● -

100

0

0 100

0

1.2

2

[bar]

Setpoint influence [%]

External setpoint signal [%]

Actual input signal

Actualsetpoint

Setpoint

Upper value

Lower value

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100

010020 40 60 80

Setpoint influence [%]

External input [%]

100

010020 40 60 80

Setpoint influence [%]

External input [%]

Normal

Min. orStop

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• Inverse functionThe setpoint is influenced inversely from 0 to 100 %. See fig. 41.

Fig. 41 Inverse function

• "Inverse with Stop" and "Inverse with Min."

– Inverse with StopIn the input signal range from 0 to 80 %, the setpoint is influenced inversely.If the input signal is above 90 %, the pump will change to "Stop" operating mode.If the input signal is reduced below 85 %, the operating mode will be changed back to "Normal".See fig. 42.

– Inverse with Min.In the input signal range from 0 to 80 %, the setpoint is influenced inversely.If the input signal is above 90 %, the pump will change to "Min." operating mode.If the input signal is reduced below 85 %, the operating mode will be changed back to "Normal" See fig. 42.

Fig. 42 "Inverse with Stop" and "Inverse with Min."

• Influence tableThe setpoint is influenced by a curve made out of two to eight points. There will be a straight line between the points and a horizontal line before the first point and after the last point.

Fig. 43 Influence table

• Influence table with Stop at Min.See description of influence table graphics above. If the input signal is below 10 %, the pump will change to "Stop" operating mode.If the input signal is increased above 15 %, the operating mode will be changed back to "Normal". See fig. 44.

Fig. 44 Influence table with Stop at Min.

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100

010020 40 60 80

Setpoint influence [%]

External input [%]

100

010020 40 60 80

Setpoint influence [%]

External input [%]

Normal

Min. orStop

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100

010020 40 60 80

Setpoint influence [%]

External input [%]

100

010020 40 60 80

Setpoint influence [%]

External input [%]

Normal

Min. orStop

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• Influence table with Stop at Max.See description of influence table graphics above. If the input signal is above 90 %, the pump will change to "Min." operating mode.If the input signal is reduced below 85 %, the operating mode will be changed back to "Normal". See fig. 45.

Fig. 45 Influence table with Stop at Max.

Predefined setpoints

Note: Only available if an advanced functional module is fitted.

Seven predefined setpoints can be set and activated by combining the input signals to digital inputs 2, 3 and 4 as shown in the table below.

Monitoring functions

Limit-exceeded function

This function can monitor set limits of analog values. It will react if the values exceed the limits. Each limit can be set as a maximum or minimum value. For each of the monitored values, a warning limit and an alarm limit must be defined.

The function makes it possible to monitor two different locations in a pump system at the same time, for instance the pressure at a consumer and the pump discharge pressure. This ensures that the discharge pressure does not reach a critical value.

If the value exceeds the warning limit, a warning is given. If the value exceeds the alarm limit, the pumps will be stopped.

A delay can be set between the detection of an exceeded limit and the activation of a warning or an alarm. A delay can also be set for resetting a warning or an alarm.

A warning can be reset automatically or manually.

It is possible to set whether the system is to restart automatically after an alarm, or if the alarm must be reset manually. Restarting can be delayed by an adjustable time. It is also possible to set a start-up delay ensuring that the system reaches a steady state before the function becomes active.

Special functions

Pulse flowmeter setup

An external pulse flowmeter can be connected to one of the digital inputs in order to register the actual and accumulated flows. Based on this, the specific energy [kWh/m3] can also be calculated.

To enable a pulse flowmeter, one of the digital-input functions must be set to "Accumulated flow" and the pumped volume per pulse must be set. See Digital inputs, page 41.

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Pump variant Predefined setpoints

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

Digital inputsSetpoint

2 3 4

0 0 0 Normal setpoint

1 0 0 Predefined setpoint 1

0 1 0 Predefined setpoint 2

1 1 0 Predefined setpoint 3

0 0 1 Predefined setpoint 4

1 0 1 Predefined setpoint 5

0 1 1 Predefined setpoint 6

1 1 1 Predefined setpoint 7

100

010020 40 60 80

Setpoint influence [%]

External input [%]

Normal

Min. orStop

Pump variantLimit-exceeded

function

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

Pump variantPulse flowmeter

setup

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

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Ramps

The setting of ramps is only relevant in the case of constant-curve operation.

The ramps determine how quickly the motor can accelerate and decelerate, respectively, during start/stop or setpoint changes.

The following can be set:

• acceleration time, 0.1 to 300 s

• deceleration time, 0.1 to 300 s.

The times apply to the acceleration from stop to rated speed and the deceleration from rated speed to stop, respectively.

At short deceleration times, the deceleration of the motor may depend on load and inertia as there is no possibility of actively braking the motor.

If the power supply is switched off, the deceleration of the motor will only depend on load and inertia.

Fig. 46 Ramp-up and ramp-down

Communication

Pump number

A unique number can be allocated to the pump. This makes it possible to distinguish between pumps in connection with bus communication.

General settings

Language

A number of languages is available.

Measuring units are automatically changed according to the selected language.

Assist

Multi-pump setup

The multi-pump function enables the control of single-head pumps connected in parallel without the use of external controllers. The pumps in a multi-pump system communicate with each other via the wireless GENIair connection or the wired GENI connection.

A multi-pump system is set up via a selected pump, i.e. the master pump (first selected pump). All Grundfos pumps with a wireless GENIair connection can be connected to the multi-pump system.

The multi-pump functions are described in the following sections.

Pump variant Ramps

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

TM

03

94

39

09

08

Rated

Ramp-up Ramp-down

Speed

Time

Minimum

Initial ramp Final ramp

Maximum

Pump variant Pump number

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

Pump variant Language

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

Pump variant Multi-pump setup

TPE Series 1000

0.12 - 2.2 kW, 2-pole0.12 - 1.1 kW, 4-pole

3 - 22 kW, 2-pole1.5 - 18.5 kW, 4-pole

-

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Alternating operation

Only one pump is operating at a time.

The change from one pump to to the other depends on time or energy. If a pump fails, the other pump will take over automatically.

Pump system:

Two single-head pumps connected in parallel. The pumps must be of the same type and size. Each pump requires a non-return valve in series with the pump.

Back-up operation

One pump is operating continuously. The back-up pump is operated at intervals to prevent seizing up. If the duty pump stops due to a fault, the back-up pump will start automatically.

Pump system:

Two single-head pumps connected in parallel. The pumps must be of the same type and size. Each pump requires a non-return valve in series with the pump.

Cascade operation

Cascade operation ensures that the pump performance is automatically adapted to the consumption by switching pumps on or off. The system thus runs as energy-efficiently as possible with a constant pressure and a limited number of pumps.

All pumps in operation will run at equal speed. Pump changeover is automatic and depends on energy, operating hours and faults, if any.

Pump system:

• Two to four single-head pumps connected in parallel.The pumps must be of the same type and size. Each pump requires a non-return valve in series with the pump.

• The control mode must be set to "Const. pressure", "Const. diff. pressure" or "Const. curve".

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Grundfos Eye

The operating condition of the motor is indicated by the Grundfos Eye on the control panel. See fig. 47, pos. A.

Fig. 47 Grundfos Eye

TM

05

59

93

43

12

A

Grundfos Eye Indication Description

No lights on.Power off.Motor not running.

Two opposite green indicator lights rotating in the direction of rotation of the motor when seen from the non-drive end.

Power on.Motor running.

Two opposite green indicator lights permanently on.Power on.Motor not running.

One yellow indicator light rotating in the direction of rotation of the motor when seen from the non-drive end.

Warning.Motor running.

One yellow indicator light permanently on.Warning.Motor stopped.

Two opposite red indicator lights flashing simultaneously.

Alarm.Motor stopped.

The green indicator light in the middle flashing quickly four times.

Remote control with the Grundfos GO Remote via radio.The motor is trying to communicate with the Grundfos GO Remote. The motor in question is highlighted in the Grundfos GO Remote display to inform the user of the location of the motor.

The green indicator light in the middle flashing continuously.

When the motor in question is selected in the Grundfos GO Remote menu, the green indicator light in the middle will flash continuously. Press on the motor control panel to allow remote control and data exchange via the Grundfos GO Remote.

The green indicator light in the middle permanently on. Remote control with the Grundfos GO Remote via

radio.The motor is communicating with the Grundfos GO Remote via radio connection.

The green indicator light in the middle flashing quickly while the Grundfos Go Remote is exchanging data with the motor. This will take a few seconds.

Remote control with the Grundfos GO Remote via infrared light.The motor is receiving data from the Grundfos GO Remote via infrared communication.

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Indicator lights and signal relaysThe following applies to the pumps below:

TPE Series 1000 pumps with the following motor sizes:

• 2.2 kW, 2-pole

• 1.1 kW, 4-pole

The motor has two outputs for potential-free signals via two internal relays.

The signal outputs can be set to "Operation", "Pump running", "Ready", "Alarm" and "Warning".

The functions of the two signal relays appear from the table below.

Description Grundfos Eye

Contact position for signal relays when activatedOperating modeOperation

Pump running

Ready Alarm Warning

Power off.

Off

-

Pump running in "Normal" mode.

Green, rotating

Normal, Min. or Max.

Pump running in "Manual" mode.

Green, rotating

Manual

Pump in "Stop" operating mode.

Green, steady

Stop

Warning, but the pump is running.

Yellow, rotating

Normal, Min. or Max.

Warning, but the pump is running in "Manual" mode.

Yellow, rotating

Manual

Warning, but the pump was stopped via "Stop" command.

Yellow, steady

Stop

Alarm, but the pump is running.

Red, rotating

Normal, Min. or Max.

Alarm, but the pump is running in "Manual" mode.

Red, rotating

Manual

Pump stopped due to an alarm.

Red, flashing

Stop

NCNOC NCNOC NCNOC NCNOC NCNOC

C NO NC C NO NC C NO NC NCNOC NCNOC

C NO NC C NO NC NCNOC NCNOC NCNOC

NCNOC NCNOC C NO NC NCNOC NCNOC

C NO NC C NO NC C NO NC NCNOC C NO NC

C NO NC C NO NC NCNOC NCNOC C NO NC

NCNOC NCNOC C NO NC NCNOC C NO NC

C NO NC C NO NC NCNOC C NO NC NCNOC

C NO NC C NO NC NCNOC C NO NC NCNOC

NCNOC NCNOC NCNOC C NO NC NCNOC

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The following applies to the pumps below:

• TPE Series 1000 pumps with the following motor sizes:3-22 kW, 2-pole1.5 - 18.5 kW, 4-pole

The operating condition of the pump is indicated by the green (pos. A) and red (pos. B) indicator lights on the pump control panel and inside the terminal box. See fig. 48.

Fig. 48 Position of indicator lights

Furthermore, the pump incorporates an output for a potential-free signal via an internal relay.

TM

05

85

92

25

13

A

B

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The functions of the two indicator lights and the signal relay are as shown in the following table:

Resetting of fault indication

A fault indication can be reset in one of the following ways:

• Briefly press or on the pump. This will not change the setting of the pump.A fault indication cannot be reset by pressing or

if the buttons have been locked.

• Switch off the power supply until the indicator lights are off.

• Switch the external start/stop input off and then on again.

• Use the Grundfos GO Remote.

Indicator lights Signal relay activated during:

DescriptionFault(red)

Operation(green)

Fault/Alarm, Warning and Relubricate

Operating Ready Pump running

Off Off The power supply has been switched off.

Off Permanently on The pump is operating.

Off Flashing The pump has been set to stop.

Permanently on Off

The pump has stopped because of a "Fault"/"Alarm" or is running with a "Warning" or "Relubricate" indication.If the pump was stopped, restarting will be attempted (it may be necessary to restart the pump by resetting the "Fault" indication).

Permanently on Permanently on

The pump is operating, but it has or has had a "Fault"/"Alarm" allowing the pump to continue operation or it is operating with a "Warning" or "Relubricate" indication.If the cause is "Sensor signal outside signal range", the pump will continue operating according to the max. curve, and the fault indication cannot be reset until the signal is inside the signal range.If the cause is "Setpoint signal outside signal range", the pump will continue operating according to the min. curve, and the fault indication cannot be reset until the signal is inside the signal range.

Permanently on FlashingThe pump has been set to stop, but it has been stopped because of a "Fault".

NCNOC NCNOC NCNOC NCNOC

NCNOC C NO NC C NO NC C NO NC

NCNOC NCNOC C NO NC NCNOC

C NO NC NCNOC NCNOC NCNOC

C NO NC C NO NC C NO NC C NO NC

C NO NC NCNOC C NO NC NCNOC

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12. Communication

Communication with TPE pumpsCommunication with TPE pumps is possible via a central building management system, remote control (Grundfos GO Remote) or control panel.

Central building management system

The operator can communicate with a TPE pump at a distance. Communication can take place via a central building management system allowing the operator to monitor and change control modes and setpoint settings.

Fig. 49 Structure of a central building management system

Remote control

The operator can monitor and change control modes and settings of the pump with the Grundfos GO Remote. See Grundfos GO Remote, page 35.

TM

05

75

20

111

3

TPE Series 1000 with the following motor sizes:- 0.12 - 2.2 kW, 2-pole- 0.12 - 1.1 kW, 4-pole

TPE Series 1000 with the following motor sizes:- 11 - 22 kW, 2-pole- 11 - 18.5 kW, 4-pole

TPE Series 1000 with the following motor sizes:- 3 - 7.5 kW, 2-pole- 1.5 - 7.5 kW, 4-pole

CIU 100: LonWorksCIU 150: PROFIBUS DPCIU 200: Modbus RTUCIU 250: GSMCIU 270: GRMCIU 300: BACnet MS/TP

CIM 100: LonWorksCIM 150: PROFIBUS DPCIM 200: Modbus RTUCIM 250: GSM/GPRSCIM 270: GRMCIM 300: BACnet MS/TP

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13. Speed regulation of TPE pumps

Affinity equationsNormally, TPE pumps are used in applications characterised by a variable flow. Consequently, it is not possible to select a pump that is constantly operating at its optimum efficiency.

In order to achieve optimum operating economy, the pump should be selected at the flow rate at the duty point close to the optimum efficiency (eta) for most operating hours.

Between the min. and max. performance curves, TPE pumps have an infinite number of performance curves each representing a specific speed. It may therefore not be possible to select a duty point close to the max. curve.

Fig. 50 Min. and max. performance curves

In situations where it is not possible to select a duty point close to the max. curve, use the affinity equations below. The head (H), the flow rate (Q) and the input power (P) are the appropriate variables you need for calculating the motor speed (n).

Note: The approximated formulas apply on condition that the system characteristic remains unchanged for nn and nx, and that it is based on the formula H = k x Q2 where k is a constant.

The power equation implies that the pump efficiency is unchanged at the two speeds. In practice this is not quite correct.

Finally, it is worth noting that the efficiency of the frequency converter and the motor must be taken into account if a precise calculation of the power saving resulting from a reduction of the pump speed is wanted.

Fig. 51 Affinity equations

Legend

WinCAPS and WebCAPS

WinCAPS and WebCAPS are selection programs offered by Grundfos.

The two programs make it possible to calculate the specific duty point and energy consumption of a TPE pump.

When you enter the dimensions of the pump, WinCAPS and WebCAPS can calculate the exact duty point and energy consumption. For further information, see page 171.

TM

01

49

16

48

03

0 Q [m³/h]

0

H[m]

Max. curve

Min. curve

H[m]

Q [m3h]

TM

00

87

20

34

96

Hn Rated head in metresHx Current head in metresQn Rated flow rate in m3/hQx Current flow rate in m3/hnn Rated motor speed in min-1

nx Current motor speed in min-1

ηn Rated efficiency in %ηx Current efficiency in %Pn Rated power in kWPx Current power in kW

H

QEta

Q

P

Q

Hn

nn

nx

QnQx

Hx

Qx Qn

Pn

Px

nn

nnnx

nx

PnPx-------

nnnx------ 3

=

ηnηx------- 1≈

HnHx-------

nnnx------ 2

=

QnQx--------

nnnx------=

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TP, TPD, TPE 14

14. TP, TPE pumps in parallel

Control of TP, TPE pumps connected in parallelIn some applications, parallel pump operation is required for one or more of the following reasons:

• One pump cannot achieve the required performance (flow).

• Standby capacity is required to ensure reliability of supply.

• Overall efficiency needs to be improved in case of big variations in the flow demand.

The table below lists the different possibilities of controlling TP, TPE pumps connected in parallel.

● Available.

TP, TPE pumps connected to Control MPCTP, TPE pumps can be connected directly to Grundfos Control MPC.

Control MPC can control up to six pumps.

By means of an external sensor, Control MPC can ensure optimum adaptation of the performance to the demand by closed-loop control of:

• proportional differential pressure

• constant differential pressure

• differential pressure (remote)

• flow

• temperature.

Control MPC incorporates features such as:

Start-up wizard

Correct installation and commissioning is a prerequisite for attaining optimum performance of the system and trouble-free operation year in and year out.

During commissioning of the system, a start-up wizard is shown on the display of the Control MPC. The wizard will guide the operator through the various steps via a series of dialogue boxes to ensure that all settings are done in the correct sequence.

Application-optimised software

Control MPC incorporates application-optimised software which helps you set up your system to the application in question.

Furthermore, navigating through the menus of the controller is done in a user-friendly way - you do not need any training to be able to set and monitor the system.

Ethernet connection

Control MPC incorporates an Ethernet connection which makes it possible to get full and unlimited access to the setting and monitoring of the system via a remote PC.

Service port (GENI TTL)

The service port of the Control MPC enables easy access to updating software and data logging in service situations.

External communication

Control MPC enables communication with other fieldbus protocols. In order to communicate with other fieldbus protocols a GENIbus module and a gateway is needed.

Control MPC can communicate with LON, PROFIBUS, Modbus, BACnet, GSM/GPRS or GRM via Grundfos CIU.

Note: For further information about Control MPC, see the data booklet titled Control MPC. The data booklet is available in WebCAPS, on www.grundfos.com. For further information on WebCAPS, see page 171.

Parallel-operation control possibilities

TPTPE

Series 1000TPE

Series 1000

0.1

2 -

2.2

kW

, 2

-po

le0

.12

- 1

.1 k

W,

4-p

ole

3 -

22

kW

, 2

-po

le1

.5 -

18

.5 k

W,

4-p

ole

Built-in alternation / standby function

Built-in parallel operation function

Control MPC

● ● ●

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15. Grundfos CUE

TP pumps connected to Grundfos CUE, external frequency converters

Fig. 52 Grundfos CUE product range

Grundfos CUE is a complete range of wall-mounted frequency converters for pump control in a wide range of applications.

Grundfos CUE provides a variety of benefits to the end-user.

The benefits include:

• Grundfos E-pump functionality and user interface.

• Application- and pump family-related functions.

• Increased comfort compared to fixed-speed pump solutions.

• Simple installation and commissioning compared to standard frequency converters.

• Enables speed control of pumps up to 250 kW.

Functions

Intuitive start-up guide

The start-up guide enables easy installation and commissioning as well as plug-and-pump convenience. Few settings need to be made by the installer as the rest is done automatically or preset from the factory.

Smart user interface

Fig. 53 Grundfos CUE user interface

Grundfos CUE features a unique user-friendly control panel with graphic display and easy-to-use buttons.

Controlling the value you choose

Grundfos CUE has a built-in PI controller offering closed-loop control of a desired value.

The values include:

• constant differential pressure

• proportional pressure

• constant temperature

• constant differential pressure

• constant flow.

Wide product range

The CUE product range is quite comprehensive, covering five different voltage ranges, enclosure classes IP20/21 (Nema 1) and IP54/55 (Nema 12), and a wide range of output powers.

The table below provides a general overview.

External communicationGrundfos CUE can communicate with LON, PROFIBUS, Modbus, BACnet or GSM/GPRS via Grundfos CIU.

GrA

44

04

TM

04

32

83

41

08

Input voltage [V] Output voltage [V] Motor [kW]

1 x 200-240 3 x 200-240 1.1 - 7.5

3 x 200-240 3 x 200-240 0.75 - 45

3 x 380-500 3 x 380-500 0.55 - 250

3 x 525-600 3 x 525-600 0.75 - 7.5

3 x 525-690 3 x 525-690 11 - 250

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16. Motor data

MotorThe motor fitted on TP pumps is a totally enclosed, fan-cooled motor with main dimensions to IEC and DIN standards. Electrical tolerances to IEC 34.

Mounting designation

If the pump is installed in humid locations, open the lowest drain hole in the motor. This will reduce the motor enclosure class to IP44.

High-efficiency motors

TP pumps are primarily fitted with motors that meet the legislative requirements of the EuP IE3 or IE2 grade depending on voltage and motor size. For further information see Motors, pages 60 to 62.

TPE pumps with 2-pole motors below 3 kW and 4-pole motors below 1.5 kW are fitted with permanent-magnet motors which have an efficiency that exceeds the IE4 demands - including the energy consumption of the integrated frequency converter (compared to IE levels in IEC 60034-30-1 Ed. 1 (CD)).

TPE pumps with three-phase 2-pole motors from 3 to 22 kW are fitted with motors equivalent to IE3.

TPE pumps with three-phase 4-pole motors from 1.5 to 15 kW are fitted with motors equivalent to IE3.

TPE pumps with 4-pole three-phase motors of 18.5 kW are equipped with motors equivalent to IE2.

Motor range

Pump type Mounting designation - IEC 34-7

TP Series 100TP Series 200

IM 3601 (IM B 14) / IM 3611 (IM V 18)

TP Series 300 IM 3001 (IM B 5) / IM 3011 (IM V 1)

TP Series 400 IM 3001 (IM B 5) / IM 3011 (IM V 1)

Relative humidity: Max. 95 %Enclosure class: IP55Insulation class: F (IEC 85)Ambient temperature: See page 16.

kWMains-operated motors

Electronically speed-controlled motors

2-pole 4-pole 2-pole 4-pole

0.25

MG

0.37

MG

0.55

0.75

1.1 MGE*

1.5

MGE

2.2 MGE*

3.0

MGE

4.0

5.5

7.5

11.0

15.0

18.5

Siemens

22.0

30.0

Siemens

37.0

45.0

55.0

75.0

90.0

110.0

132.0

160.0

200.0

250.0

315.0

* Permanent-magnet motorsMG and MGE are Grundfos motor brands.Siemens is a sourced high-quality motor brand.The grey-shaded areas indicate non-available motors.

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Electrical data, mains-operated motors

Electrical data, 2-pole 3 x 220-240/380-420 V and 3 x 255-277/440-480 V

* Applies to 230/400 V** Applies to 265/460 V

Electrical data, 2-pole 3 x 220-255/380-440 V

Electrical data, 2-pole 3 x 220-277/380-480 V

Electrical data, 2-pole 3 x 380-480/660-690 V

3 x 220-240/380-420 V 3 x 255-277/440-480 V

Motor[kW]

I1/1[A]

Cos φ 1/1* η*

[%]n*

[min-1]IE

classMotor[kW]

I1/1[A]

Cos φ 1/1** η**

[%]n**

[min-1]IE

class

30.0 97.0-87.0/56.0-50.0 0.89 92.4 3545 6.1 IE3 34.5 94.0-87.0/54.0-50.0 0.87 93.0 3550 6.6 IE3

37.0 120-105/69.0-62.0 0.90 93.0 3540 5.8 IE3 42.5 116-107/67.0-61.0 0.87 93.6 3550 6.7 IE3

45.0 140-126/81.0-73.0 0.90 94.2 3556 7.6 IE3 51.0 137-128/79.0-74.0 0.89 93.6 3560 6.8 IE3

55 166-154/96-89 0.901 94.0 3570 7.3 IE3 62 166-154/96-89 0.90 93.6 3575 6.7 IE3

75 235-210/135-122 0.898 93.8 3570 7.4 IE3 84 225-210/130-122 0.89 94.5 3575 6.8 IE3

90 280-250/161-145 0.907 94.4 3570 7.8 IE3 101 270-250/156-143 0.90 94.5 3575 7.2 IE3

110 335-300/194-174 0.907 95.1 3579 7.8 IE3 123 320-295/186-171 0.91 95.0 3582 7.2 IE3

132 400-265/230-210 0.92 94.8 3579 8.0 IE3 148 390-355/225-205 0.91 95.4 3582 7.1 IE3

160 450-405/260-235 0.92 95.3 3582 9.1 IE3 180 470-435/270-250 0.92 95.4 3582 7.7 IE3

IStart

I1/1

------------IStart

I1/1

------------

Motor[kW]

I1/1[A]

Cos φ 1/1 η [%] n [min-1]IE

class

0.371.5-1.44/0.87-0.83

0.85-0.76 78-79 3410-3470 5.5-6.5 -

0.552.15-2.05/1.25-1.2

0.85-0.76 80.5-82 3390-3460 5-6 -

0.752.95-2.75/1.70-1.60

0.86-0.77 77 3410-3470 6-7.4 IE3

1.14.15-4.00/2.40-2.30

0.88-0.80 82.5 3420-3470 4.3-5 IE3

Motor[kW]

I1/1[A]

Cos φ 1/1 η [%] n [min-1]IE

class

1.55.35-4.7/3.10-2.7

0.90-0.81 82.5-85.5 3470-3530 7.8-10.5 IE2-IE3

2.27.7-6.35/4.45-3.7

0.91-0.85 85.2-86.5 3470-3530 7.8-11 IE2-IE3

3.010.8-9.35/6.20-5.40

0.91-0.84 87.5 3480-3530 8.6-11 IE2-IE3

4.013.6-11.8/

7.8-6.80.91-0.82 88.5 3510-3540 10-14 IE3

5.518.4-16.2/10.6-9.30

0.90-0.80 89.5 3510-355010.2-14.

8IE3

7.524.6-20.8/14.2-12.0

0.90-0.82 89.5-90.2 3490-3530 6.8-10.5 IE2-IE3

11.036.0-30.0/20.8-17.2

0.89-0.83 90.2-91 3520-3550 5.8-8.9 IE2-IE3

15.048.5-39.0/28.0-22.4

0.90-0.86 90.2-91 3520-3550 5.8-8.9 IE2-IE3

18.559.0-47.0/34.0-27.0

0.90-0.88 91.0-91.7 3520-3550 6.1-9.7 IE2-IE3

22.069.5-56.5/40.0-32.5

0.91 91.7 3520-3560 6.5-10.4 IE3

IStart

I1/1

------------

IStart

I1/1

------------

Motor[kW]

I1/1[A]

Cos φ 1/1 η [%] n [min-1] IE class

1.5 3.1-2.7 0.90-0.81 82.5-85.5 3470-3530 7.8-10.5 IE2-IE3

2.2 4.45-3.7 0.91-0.85 85.2-86.5 3470-3530 7.8-11 IE2-IE3

3.0 6.2-5.4 0.91-0.84 87.5 3480-3530 8.6-11 IE2

4.0 7.8-6.8 0.91-0.82 88.5 3510-3540 10.8-10.8 IE3

5.5 10.6-9.30 0.9-0.80 89.5 3510-3550 10.2-14.8 IE3

7.514.2-12.0/8.20-8.10

0.90-0.82 89.5-90.2 3490-3530 6.8-10.5 IE2-IE3

11.020.8-17.2/12.0-11.6

0.89-0.83 90.2-91.0 3520-3550 5.8-8.9 IE2-IE3

15.028.0-22.4/16.2-15.6

0.90-0.86 90.2-91.0 3520-3550 5.8-8.9 IE2-IE3

18.534.0-27.0/19.6-18.8

0.90-0.88 91.0-91.7 3520-3550 6.1-9.7 IE2-IE3

22.040.0-32.5/23.0-22.2

0.91 91.7 3520-3560 6.5-10.4 IE3

IStart

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TP, TPD, TPE 16

Electrical data, 2-pole 3 x 380-420/660-690 V and 3 x 440-480 V

* Applies to 400/690 V** Applies to 400 V

Electrical data, 4-pole 3 x 220-240/380-420 V and 3 x 255-277/440-480 V

* Applies to 230/400 V** Applies to 265/460 V

Electrical data, 4-pole 3 x 220-255/380-440 V

3 x 380-420/660-690 V 3 x 440-480 V

Motor[kW]

I1/1[A]

Cos φ 1/1*η*

[%]n*

[min-1]IE

classMotor[kW]

I1/1[A]

Cos φ 1/1**η**[%]

n**[min-1]

IE class

30.056.0 - 50.0/32.0 - 30.5

0.89 92.4 3545 6.1 IE3 34.5 54.0 - 50.0 0.87 93.0 3550 6.6 IE3

37.069.0 - 62.0/38.5 - 37.0

0.90 93.0 3540 5.8 IE3 42.5 67.0 - 61.0 0.87 93.6 3550 6.7 IE3

45.081.0 - 73.0/47.0 - 44.5

0.90 94.2 3556 7.6 IE3 51.0 79.0 - 74.0 0.89 93.6 3560 6.8 IE3

55.096.0 - 89.0/55.0 - 54.0

0.90 94.0 3570 7.3 IE3 62.0 96.0 - 89.0 0.90 93.6 3575 6.7 IE3

75.0135 - 122/78.0 - 74.0

0.90 93.8 3570 7.4 IE3 84.0 130 - 122 0.89 94.5 3575 6.8 IE3

90.0161 - 145/93.0 - 88.0

0.91 94.4 3570 7.8 IE3 101.0 156 - 143 0.90 94.5 3575 7.2 IE3

110.0194 - 174/112 - 106

0.91 95.1 3579 7.8 IE3 123.0 186 - 171 0.91 95.0 3582 7.2 IE3

132.0230 - 210/133 - 127

0.92 94.8 3579 8.0 IE3 148.0 225 - 205 0.91 95.4 3582 7.1 IE3

160.0260 - 235/150 - 142

0.92 95.3 3582 9.1 IE3 180.0 270 - 250 0.92 95.4 3582 7.7 IE3

- - - - - - - 224.0 335 - 305 0.92 95.8 3582 7.1 IE3

- - - - - - - 280.0 420 - 385 0.92 95.4 3585 8.7 IE3

IStart

I1/1

------------ IStart

I1/1

------------

3 x 220-240/380-420 V 3 x 255-277/440-480 V

Motor[kW]

I1/1[A]

Cos φ 1/1*η*

[%]n*

[min-1]IE

classMotor[kW]

I1/1[A]

Cos φ 1/1**η**[%]

n**[min-1]

IE class

18.563.0 - 57.0/36.5 - 33.0

0.84 92.4 1765 6.2 IE3 21.362.5 - 57.0/36.0 - 33.0

0.83 93.6 1770 7.0 IE3

2273.5 - 70/

42.5 - 40.50.84 92.4 1765 6.0 IE3 25.3

74.5 - 70.0/43.0 - 40.5

0.83 93.6 1770 6.9 IE3

3099.5 - 93.5/57.5 - 54.0

0.85 93.0 1765 6.1 IE3 34.599.0 - 92.5/57.0 - 53.5

0.85 93.0 1770 7.2 IE3

37 120 - 109/69 - 63 0.86 94.0 1776 5.4 IE3 42.5 119 - 111/69 - 64 0.86 93.6 1778 6.7 IE3

45 147 - 132/85 - 76 0.86 94.3 1775 5.3 IE3 52 146 - 137/84 - 79 0.86 94.1 1778 6.6 IE3

55 177 - 159/102 - 92 0.87 94.7 1780 5.4 IE3 63.0 175 - 163/101 - 94 0.87 94.1 1782 6.7 IE3

75 240 - 215/139 - 125 0.87 94.8 1783 5.4 IE3 86.0 235 - 220/136 - 127 0.87 95.4 1785 6.8 IE3

90 290 - 260/166 - 150 0.87 94.9 1783 5.6 IE3 104 285 - 265/165 - 153 0.87 95.0 1785 7.0 IE3

110 345 - 315/200 - 181 0.87 95.4 1786 5.5 IE3 127 345 - 320/199 - 185 0.87 95.8 1788 6.9 IE3

132 415 - 370/240 - 215 0.88 95.8 1788 5.8 IE3 152 405 - 375/235 - 220 0.88 96.2 1788 7.2 IE3

160 470 - 425/270 - 245 0.88 96.1 1789 5.8 IE3 184 495 - 460/285 - 265 0.88 96.2 1788 7.2 IE3

200 580 - 520/335 - 300 0.88 95.7 1788 6.0 IE3 230 620 - 580/360 - 335 0.88 95.4 1788 7.5 IE3

IStart

I1/1

------------ IStart

I1/1

------------

Motor[kW]

I1/1 [A]

Cos φ 1/1 η [%] n [min-1]IE

class

0.12 0.37 - - - - -

0.25 1.21/0.7 0.8-0.69 71-72 1680-1720 4-4.7 -

0.37 1.72/0.99 0.82-0.72 73-74 1680-1720 4-4.7 -

0.55 2.4/1.4 0.83-0.75 77-80 1660-1710 3.9-4.5 -

0.75 3.1/1.8 0.84-0.76 77-81 1660-1710 3.9-4.7 IE2

IStart

I1/1

------------

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TP, TPD, TPE16

Electrical data, 4-pole 3 x 220-277/380-480 V Electrical data, 4-pole 3 x 380-480/660-690 V

Electrical data, 4-pole 3 x 380-420/660-690 V and 3 x 440-480 V

* Applies to 400/690 V** Applies to 400 V

Motor[kW]

I1/1[A]

Cos φ 1/1 η [%] n [min-1]IE

class

0.753.10-2.95/1.80-1.70

0.79-0.67 82.5-85.5 1730-1760 5.9-7.5 IE2-IE3

1.1 4.50/2.60 0.76-0.60 84.0 1740-1770 7.1-9.1 IE2

1.55.90-5.65/3.40-3.25

0.78-0.65 84.0-86.5 1740-1770 6.6-9.3 IE2-IE3

2.28.15-7.45/4.70-4.30

0.83-0.71 87.5 1740-1760 5.9-7.6 IE2

3.010.6-9.55/6.10-5.50

0.85-0.73 87.5-89.5 1730-1760 6.2-8.8 IE2-IE3

4.014.8-14.4/8.60-8.30

0.79-0.64 87.5-89.5 1750-1770 7.7-9.1 IE2-IE3

5.519.0-16.2/11.0-9.40

0.88-0.79 87.0-89.5 1750-1770 6.7-8.5 IE2

7.525.5-21.6/14.7-12.5

0.88-0.80 89.5-91.7 1740-1770 5.9-8.9 IE2-IE3

11.036.0-31.0/20.8-17.8

0.90-0.81 91.0 1760-1780 6.5-9.7 IE2

15.050-42/

29-24.20.88-0.81 91.0 1760-1770 6.5-9.8 IE2-IE3

IStart

I1/1

------------ Motor[kW]

I1/1[A]

Cos φ 1/1 η [%] n [min-1]IE

class

0.75 1.80-1.70 0.79-0.67 82.5-85.5 1730-1760 5.9-7.5 IE2-IE3

1.1 2.60-2.60 0.76-0.60 84 1740-1770 7.1-9.1 IE2

1.5 3.40-3.25 0.78-0.65 84-86.5 1740-1770 6.6-9.3 IE2-IE3

2.2 4.70-4.30 0.83-0.71 87.5 1740-1760 5.9-7.6 IE2

3.0 6.10-5.50 0.85-0.73 87.5-89.5 1730-1760 6.2-8.8 IE2-IE3

4.0 8.60-8.30 0.79-0.64 87.5-89.5 1750-1770 7.7-9.1 IE2-IE3

5.511.0-9.40/6.35-6.20

0.88-0.79 87.0-89.5 1750-1770 6.7-8.5 IE2-IE3

7.514.7-12.5/8.50-8.25

0.88-0.80 89.5-91.7 1740-1770 5.9-8.9 IE2-IE3

11.020.8-17.8/12.0-11.8

0.90-0.81 91 1760-1780 6.5-9.7 IE2

15.029.0-24.2/16.6-16.4

0.88-0.81 91 1760-1770 6.5-9.8 IE2-IE3

IStart

I1/1

------------

3 x 380-420/660-690 V 3 x 440-480 V

Motor[kW]

I1/1[A]

Cos φ 1/1*η*[%]

n*[min-1]

IE class

Motor[kW]

I1/1[A]

Cos φ 1/1**η**[%]

n**[min-1]

IE class

18.5 36.5 - 33.0/21.0 - 20.0 0.84 92.4 1765 6.2 IE3 21.3 36.0 - 33.0 0.83 93.6 1770 7.0 IE3

22.0 42.5 - 40.5/24.5 - 24.0 0.84 92.4 1765 6.0 IE3 25.3 43.0 - 40.5 0.83 93.6 1770 6.9 IE3

30.0 57.5 - 54.0/33.5 - 32.0 0.85 93.0 1765 6.1 IE3 34.5 57.0 - 53.5 0.85 93.0 1770 7.2 IE3

37.0 69.0 - 63.0/40.0 - 38.0 0.86 94.0 1776 5.4 IE3 42.5 69.0 - 64.0 0.86 93.6 1778 6.7 IE3

45.0 85.0 - 76.0/49.0 - 46.0 0.86 94.3 1775 5.3 IE3 52.0 84.0 - 79.0 0.86 94.1 1778 6.6 IE3

55.0 102 - 92.0/59.0 - 56.0 0.87 94.7 1780 5.4 IE3 63.0 101 - 94.0 0.87 94.1 1782 6.7 IE3

75.0 139 - 125/80.0 - 76.0 0.87 94.8 1783 5.4 IE3 86.0 136 - 127 0.87 95.4 1785 6.8 IE3

90.0 166 - 150/96.0 - 91.0 0.87 94.9 1783 5.6 IE3 103.5 165 - 153 0.87 95.0 1785 7.0 IE3

110.0 200 - 181/115 - 109 0.87 95.4 1786 5.5 IE3 126.5 199 - 185 0.87 95.8 1788 6.9 IE3

132.0 240 - 215/138 - 131 0.88 95.8 1788 5.8 IE3 151.8 235 - 220 0.88 96.2 1788 7.2 IE3

160.0 270 - 245/156 - 148 0.88 96.1 1789 5.8 IE3 184.0 285 - 265 0.88 96.2 1788 7.2 IE3

200.0 335 - 300/192 - 182 0.88 95.7 1788 6.0 IE3 230.0 360 - 335 0.88 95.4 1788 7.5 IE3

250.0 415 - 370/240 - 225 0.86 95.9 1789 7.7 IE3 - - - - - - -

300.0 560 - 500/320 - 305 0.85 95.9 1788 7.9 IE3 - - - - - - -

IStart

I1/1

------------IStart

I1/1

------------

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TP, TPD, TPE 16

Electrical data, speed-controlled motors

Electrical data, 3 x 380-500 V, 2000 min-1 (4-pole)

Electrical data, 3 x 380-500 V, 4000 min-1 (2-pole)

Electrical data, 2-pole 3 x 380-480 V, 2900 min-1

Electrical data, 4-pole 3 x 380-480 V, 1450 min-1

Motor [kW] I1/1 [A]

1.1 2.20 - 1.90

Motor [kW] I1/1 [A]

2.2 4.15 - 3.40

Motor [kW] I1/1 [A]

0.75 2.0 - 1.8

1.1 2.6 - 2.3

1.5 3.3 - 2.7

2.2 4.6 - 3.8

3.0 6.2 - 5.0

4.0 8.1 - 6.6

5.5 11.0 - 8.8

7.5 14.8 - 11.6

11.0 22.5 - 18.8

15.0 30.0 - 26.0

18.5 37.0 - 31.0

22.0 43.5 - 35.0

Motor [kW] I1/1 [A]

0.75 1.8 - 1.9

1.1 2.5 - 2.2

1.5 3.3 - 2.9

2.2 4.6 - 3.8

3.0 6.2 - 5.0

4.0 8.1 - 6.6

5.5 11.0 - 9.00

7.5 15.0 - 12.0

11.0 22.0 - 17.8

15.0 30.0 - 25.4

18.5 37.0 - 30.0

63

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TP, TPD, TPE17

17. Installation

Mechanical installationTP, TPD, TPE pumps with motors smaller than 11 kW can be installed in horizontal or vertical pipework.

Fig. 54 Installation of motor sizes smaller than 11 kW

TP, TPD, TPE pumps with motors of 11 kW and up may only be installed in horizontal pipes with the motor in vertical position.

Fig. 55 Installation of motor sizes of 11 kW and up

Note: The motor must never point downwards.

Install the pumps in such a way that strain from the pipework is not transferred to the pump housing.

Pumps with motors smaller than 11 kW may be suspended directly in the pipes, provided the pipework can support the pump. If not, install the pump on a mounting bracket or base plate.

Pumps with motors of 11 kW and up may only be installed in horizontal pipes with the motor placed in vertical position. Always install the pump on an even and rigid foundation.

When installing a twin-head pump in a horizontal pipe and with horizontal shaft, fit the upper pump housing with an automatic air vent.

Twin-head pump housings have two Rp 1/4 tappings (TP Series 200) or four Rp 1/8 tappings (TP Series 300) for mounting of automatic air vents.

Fig. 56 Tappings for mounting of automatic air vents in TP Series 200 and TP Series 300

For further information about identification of TP Series 300 models, see pages 21 to 23.

Cooling

To ensure sufficient cooling of motor and electronics, observe the following:

• Place the pump in such a way that sufficient cooling is ensured.

• Make sure that the temperature of the cooling air does not exceed 40 °C.

• Keep the motor cooling fins, holes in fan cover and fan blades clean.

• Make sure the frequency for the motor is at least 6 Hz (12 % of maximum speed). The shaft seal may generate noise at speeds below 25 % of maximum speed.

Condensation cover for TPE pumps

When installing TPE pumps outdoors, provide the motor with a suitable cover to avoid condensation on the electronic components and to protect the pump and motor against the direct effects of the elements.

When mounting the condensation cover on top of the motor, make sure to leave enough space for the air to cool the motor.

Fig. 57 MGE motors with condensation cover

TM

00

37

34

08

97

TM

00

37

35

08

97

TM

02

75

33

37

03

TM

02

85

14

03

04

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TP, TPD, TPE 17

Elimination of noise and vibrations

In order to achieve optimum operation and minimum noise and vibration, consider vibration dampening of the pump. Generally, always consider this for pumps with motors of 11 kW and up, but for motors of 90 kW and up as well as the pumps stated in the table below, vibration dampening is mandatory. Smaller motor sizes, however, may also cause undesirable noise and vibration.

Noise and vibration are generated by the revolutions of the motor and pump and by the flow in pipes and fittings. The effect on the environment is subjective and depends on correct installation and the state of the remaining system.

Elimination of noise and vibrations is best achieved by means of a concrete foundation, vibration dampers and expansion joints.

Fig. 58 Foundation of TP pump

Concrete foundation

Install the pump on a plane and rigid concrete foundation. This is the optimum solution for vibration dampening. As a rule of thumb, the weight of a concrete foundation should be 1.5 times the pump weight.

Recommended concrete foundations for TP(D) Series 300 pumps

For TP Series 300 pumps with weights of 150 kg or more, we recommend mounting the pump on a concrete foundation with the dimensions stated in the table below. The same recommendation applies to TPD Series 300 pumps with weights of 300 kg or more.

Fig. 59 Foundation for TP(D) Series 300 pumps

Pump typeFrequency

[Hz]

TP 200-280/4 60

TP 200-320/4 60

TP 200-360/4 60

TP 200-390/4 60

TM

02

49

93

21

02

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Concrete foundation

Vibration dampers

Expansion joint

TM

03

91

90

35

07

Pump mass[kg]

Concrete foundation dimensions

X (Height)[mm]

Y (Length)[mm]

Z (Width)[mm]

150 280 565 565

200 310 620 620

250 330 670 670

300 360 710 710

350 375 750 750

400 390 780 780

450 410 810 810

500 420 840 840

550 440 870 870

600 450 900 900

650 460 920 920

700 470 940 940

750 480 970 970

800 490 990 990

850 500 1010 1010

900 510 1030 1030

950 520 1050 1050

1000 530 1060 1060

1050 540 1080 1080

1100 550 1100 1100

1150 560 1100 1100

1200 560 1130 1130

1250 570 1150 1150

1300 580 1160 1160

1350 590 1180 1180

1400 600 1190 1190

1450 600 1200 1200

1500 610 1220 1220

1550 620 1230 1230

1600 620 1250 1250

1650 630 1250 1250

1700 635 1270 1270

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Vibration dampers

To prevent the transmission of vibrations to buildings, we recommend isolating the pump foundation from building parts by means of vibration dampers.

The selection of the right vibration damper requires the following data:

• forces transmitted through the damper

• motor speed considering speed control, if any

• required dampening in % (suggested value is 70 %).

The right damper varies from installation to installation, and a wrong damper may increase the vibration level. Vibration dampers should therefore be sized by the supplier.

If you install the pump on a foundation with vibration dampers, always fit expansion joints on the pump flanges. This is important to prevent the pump from "hanging" in the flanges.

Expansion joints

Install expansion joints for these reasons:

• to absorb expansions/contractions in the pipework caused by changing liquid temperature

• to reduce mechanical strains in connection with pressure surges in the pipework

• to isolate mechanical structure-borne noise in the pipework (only rubber bellows expansion joints).

Note: Do not install expansion joints to compensate for inaccuracies in the pipework such as centre displacement of flanges.

Fit expansion joints at a distance of minimum 1 to 1.5 times the nominal flange diameter away from the pump on the suction as well as on the discharge side. This will prevent the development of turbulence in the expansion joints, resulting in better suction conditions and a minimum pressure loss on the pressure side. At high water velocities (> 5 m/s) we recommend installing larger expansion joints corresponding to the pipework. See fig. 60.

Fig. 60 TP pump installed with larger expansion joints

The illustration below shows examples of rubber bellows expansion joints with or without limit rods.

Fig. 61 Examples of rubber bellows expansion joints

Expansion joints with limit rods can be used to reduce the effects of the expansion/contraction forces on the pipework. We always recommend expansion joints with limit rods for flanges larger than DN 100.

Anchor the pipes in such a way that they do not stress the expansion joints and the pump. Follow the supplier’s instructions and pass them on to advisers or pipe installers.

The illustration below shows an example of a metal bellows expansion joint with limit rods.

Fig. 62 Example of metal expansion joint

Due to the risk of rupture of the rubber bellows, metal bellows expansion joints may be preferred at temperatures above 100 °C combined with high pressure.

TM

04

96

29

48

10

Expansion joints

TM

02

49

79

19

02

- T

M0

2 4

98

1 1

90

2T

M0

2 4

98

0 1

90

2

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Terminal box positions

TP single-head pumps

As standard, the terminal boxes of TP and TPE pumps are mounted in 9 o’clock position. The possible terminal box positions are shown below.

Fig. 63 Possible terminal box positions

Note: Due to the motor construction, the terminal boxes of some TP pumps with motor sizes above 250 kW are mounted in 10.30 o’clock position.

TPD twin-head pumps

As standard, the terminal boxes of all TPD pumps are mounted in 12 o’clock position. See fig. 63.

Electrical installationThe electrical connection should be carried out in accordance with local regulations.

Mains-operated motorsThe operating voltage and frequency are marked on the pump nameplate. Make sure that the motor is suitable for the power supply on which it will be used.

Single-phase standard motors incorporate a thermal switch and require no additional motor protection.

Three-phase motors must be connected to a motor starter.

Motors of 3 kW and up incorporate thermistors (PTC). The thermistors are designed according to DIN 44082.

The electrical connection should be carried out as shown in the diagram inside the terminal box cover.

The motors of twin-head pumps are to be connected separately.

Frequency converter operation

Motors types Siemens, MG 71 and MG 80 for supply voltages up to and including 440 V (see motor nameplate) must be protected against voltage peaks higher than 650 V between the supply terminals.

Grundfos motors:

All three-phase Grundfos motors from frame size 90 and up can be connected to a frequency converter.

The connection of a frequency converter will often have the effect that the motor insulation system is loaded more and that the motor will be more noisy than during normal operation. In addition, large motors are loaded by bearing currents caused by the frequency converter.

In the case of frequency converter operation, the following should be considered:

In 2-, 4- and 6-pole motors of 45 kW and up, one of the motor bearings should be electrically isolated to prevent damaging currents from passing through the motor bearings.

In the case of noise-critical applications, the motor noise can be reduced by fitting a dU/dt filter between the motor and the frequency converter. In particularly noise-critical applications, it is recommended to fit a sinusoidal filter.

The length of the cable between motor and frequency converter affects the motor load. It should therefore be checked that the cable length meets the specifications laid down by the frequency converter supplier.

For supply voltages between 500 and 690 V, either a dU/dt filter should be fitted to reduce voltage peaks or a motor with reinforced insulation should be used.

For supply voltages of 690 V, a motor with reinforced insulation should be used, and a dU/dt filter should be fitted.

For other motor makes than Grundfos, contact Grundfos or the motor manufacturer.

TM

03

05

65

20

05

Stellung 6 Stellung 9 Stellung 12Stellung 3 6 o’clock position

3 o’clock position

9 o’clock positionStandard

12 o’clock position

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18. MGE motors

MGE motors, 2.2 kW, 2-pole, and 1.1 kW, 4-pole

Three-phase supply voltage3 x 380-500 V - 10 %/+ 10 %, 50/60 Hz, PE.

Recommended fuse size

Standard as well as quick-blow or slow-blow fuses may be used.

Leakage current

The leakage currents are measured in accordance with EN 61800-5-1:2007.

Inputs/outputs

Ground reference (GND)

All voltages refer to GND.

All currents return to GND.

Absolute maximum voltage and current limits

Exceeding the following electrical limits may result in severely reduced operating reliability and motor life:

Relay 1:

Maximum contact load: 250 VAC, 2 A or 30 VDC, 2 A.

Relay 2:

Maximum contact load: 30 VDC, 2 A.

GENI terminals: -5.5 - 9.0 VDC or < 25 mADC.

Other input/output terminals: -0.5 - 26 VDC or < 15 mADC.

Digital inputs (DI)

Internal pull-up current > 10 mA at Vi = 0 VDC.

Internal pull-up to 5 VDC (currentless for Vi > 5 VDC).

Low logic level: Vi < 1.5 VDC.

High logic level: Vi > 3.0 VDC.

Hysteresis: No.

Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Maximum cable length: 500 m.

Open-collector digital outputs (OC)

Current sinking capability: 75 mADC, no current sourcing.

Load types: Resistive and/or inductive.

Low-state output voltage at 75 mADC: Max. 1.2 VDC.

Low-state output voltage at 10 mADC: Max. 0.6 VDC.

Overcurrent protection: Yes.

Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Maximum cable length: 500 m.

Analog inputs (AI)

Voltage signal ranges:

• 0.5 - 3.5 VDC, AL AU.

• 0-5 VDC, AU.

• 0-10 VDC, AU.

Voltage signal: Ri > 100 kΩ at 25 °C.

Leak currents may occur at high operating temperatures. Keep the source impedance low.

Current signal ranges:

• 0-20 mADC, AU.

• 4-20 mADC, AL AU.

Current signal: Ri = 292 Ω.

Current overload protection: Yes. Change to voltage signal.

Measurement tolerance: - 0/+ 3 % of full scale (max.-point coverage).

Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Maximum cable length: 500 m (excl. potentiometer).

Potentiometer connected to 5 V, GND, any AI:

Use maximum 10 kΩ.

Maximum cable length: 100 m.

Analog output (AO)

Current sourcing capability only.

Voltage signal:

• Range: 0-10 VDC.

• Minimum load between AO and GND: 1 kΩ.

• Short-circuit protection: Yes.

Current signal:

• Ranges: 0-20 and 4-20 mADC.

• Maximum load between AO and GND: 500 Ω.

• Open-circuit protection: Yes.

Tolerance: - 0/+ 4 % of full scale (max.-point coverage).

Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Maximum cable length: 500 m.

Motor size[kW]

Min.[A]

Max.[A]

1.1 6 6

2.2 6 10

Motor size[kW]

Leakage current[mA]

1.1 - 2.2(supply voltage < 400 V)

< 3.5

1.1 - 2.2(supply voltage > 400 V)

< 5

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Pt100/1000 inputs (PT)

Temperature range:

• Minimum -30 °C (88 Ω / 882 Ω).

• Maximum 180 °C (168 Ω / 1685 Ω).

Measurement tolerance: ± 1.5 °C.

Measurement resolution: < 0.3 °C.

Automatic range detection (Pt100 or Pt1000): Yes.

Sensor fault alarm: Yes.

Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Use Pt100 for short wires.

Use Pt1000 for long wires.

Grundfos Digital Sensor input and output (GDS)

Use Grundfos Digital Sensor only.

Power supplies (5 V, 24 V)

5 V:

• Output voltage: 5 VDC - 5 %/+ 5 %.

• Maximum current: 50 mADC (sourcing only).

• Overload protection: Yes.

24 V:

• Output voltage: 24 VDC - 5 %/+ 5 %.

• Maximum current: 60 mADC (sourcing only).

• Overload protection: Yes.

Digital outputs (relays)

Potential-free changeover contacts.

Minimum contact load when in use: 5 VDC, 10 mA.

Screened cable: 0.5 - 2.5 mm2 / 28-12 AWG.

Maximum cable length: 500 m.

Bus input

Grundfos GENIbus protocol, RS-485.

Screened 3-core cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Maximum cable length: 500 m.

EMC (electromagnetic compatibility)

EN 61800-3.

Residential areas, unlimited distribution, corresponding to CISPR 11, class B, group 1.

Industrial areas, unlimited distribution, corresponding to CISPR 11, class A, group 1.

Contact Grundfos for further information.

Enclosure class

Standard: IP55 (IEC 34-5).

Optional: IP66 (IEC 34-5).

Insulation class

F (IEC 85).

Sound pressure level

TPE Series 1000

The grey fields indicate that the motor is not yet available in this MGE motor range, but is available in the previous MGE motor range.

Motor protectionThe motor requires no external motor protection. The motor incorporates thermal protection against slow overloading and blocking.

Additional protection

Three-phase motors

If the motor is connected to an electric installation where an earth leakage circuit breaker (ELCB) or ground fault circuit interrupter (GFCI) is used as additional protection, this circuit breaker or interrupter must be of the following type:

• It must be suitable for handling leakage currents and cutting-in with short pulse-shaped leakage.

• It must trip out when alternating fault currents and fault currents with DC content, i.e. pulsating DC and smooth DC fault currents, occur.

For these motors an earth leakage circuit breaker or ground fault circuit interrupter, type B, must be used. This circuit breaker or interrupter must be marked with the following symbols:

Note: When an earth leakage circuit breaker or ground fault circuit interrupter is selected, the total leakage current of all the electrical equipment in the installation must be taken into account.

Start/stop of pumpThe number of starts and stops via the mains voltage must not exceed four times per hour.

When the pump is switched on via the mains, it will start after approx. 5 seconds.

If a higher number of starts and stops is desired, the input for external start/stop must be used when starting/stopping the pump.

When the pump is started/stopped via an external on/off switch, it will start immediately.

Motor[kW]

Max. speed stated on nameplate

[min-1]

Speed[min-1]

Sound pressure levelISO 3743[dB(A)]

1-phase motors

3-phase motors

1.1 20001500 38

2000 42

2.2 40003000 57

4000 64

ELCB(GFCI)

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Wiring diagramsSingle-phase supply:

Fig. 64 Example of a mains-connected motor with mains switch, backup fuse and additional protection

Three-phase supply:

Fig. 65 Example of a mains-connected motor with mains switch, backup fuse and additional protection

Connection terminals

The descriptions and terminal overviews in this section apply to both single-phase and three-phase motors.

The number of terminals depends on the functional module (FM). The fitted module can be identified on the motor nameplate. See fig. 66.

Fig. 66 Identification of functional module

Connection terminals, standard functional module (FM 200)

The standard module has these connections:

• two analog inputs

• two digital inputs or one digital input and one open-collector output

• Grundfos Digital Sensor input and output

• two signal relay outputs

• GENIbus connection.

See fig. 67.

Note: Digital input 1 is factory-set to be the start/stop input where an open circuit will result in stop. A jumper has been factory-fitted between terminals 2 and 6. Remove the jumper if digital input 1 is to be used as external start/stop or any other external function.

Note: As a precaution, the wires to be connected to the connection groups below must be separated from each other by reinforced insulation in their entire lengths.

• Inputs and outputsAll inputs and outputs are internally separated from the mains-conducting parts by reinforced insulation and galvanically separated from other circuits.All control terminals are supplied by safety extra-low voltage (SELV), thus ensuring protection against electric shock.

• Signal relay outputs

– Signal relay 1:LIVE:Mains supply voltages up to 250 VAC can be connected to this output.SELV:The output is galvanically separated from other circuits. Therefore, the supply voltage or safety extra-low voltage can be connected to the output as desired.

– Signal relay 2:SELV:The output is galvanically separated from other circuits. Therefore, the supply voltage or safety extra-low voltage can be connected to the output as desired.

• Mains supply (terminals N, PE, L or L1, L2, L3, PE).

A galvanically safe separation must fulfil the requirements for reinforced insulation including creepage distances and clearances specified in EN 61800-5-1.

TM

05

40

34

19

12

TM

05

39

42

18

12

TM

05

86

41

25

13

ELCB(GFCI)

L1

L2

L3

L2

L1

L3

PE

ELCB(GFCI)

Env.Type : Serial no :

SF CL:PF:

PBFMHMIEff

n max:

CIMWgt :

DE :

kgNDE :

Tamb ::

F AA

V~

P.C. :

Made in Hungary

OUTPUT VARIANTINPUT

TEFC

Type :P.N. : U in :

I 1/1 :f in

Hp

Hz

P2

I SF Amp:

rpm: : :

:

::

:

Xxx

xxxx

xxxx

E.P

. Mot

or

DK - 8850 Bjerringbro, Denmark

Env.Tyype p :Serial no :

SF CL:PF:

Effn

Wggt :

DE :

kggNDE :

Tamb ::

F AA

V~

P.C. : INPUT

TEFC

Typype :P.N. : Uin :

I 1/1 :f in Hz

P

I SF Ampp::

PBFMHMICIM

VARIANTHp

rpm::

::

PB :

HMI:CIM :

Hprpm

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* If an external supply source is used, there must be a connection to GND.

Fig. 67 Connection terminals, FM 200

TM

05

35

10

35

12

3

15

8

2623

25

24

7

B

Y

6

52

4

10

A

AI2

GDS RX

GDS TX

GND

GENIbus A

GENIbus B

+5 V

+24 V

+24 V

GND

GENIbus Y

GND

+5 V

DI1

AI1

DI3/OC1

+24 V* + ++24 V*/5 V*+24 V*

+5 V*

NC

C2

NO

NC

C1

NO

+24 V* + +

+24 V*/5 V*+24 V*

+24 V*OC DIGND

Terminal Type Function

NCNormally closed contact

Signal relay 1(LIVE or SELV)

C1 Common

NONormally open contact

NCNormally closed contact

Signal relay 2(SELV only)

C2 Common

NONormally open contact

10 DI3/OC1Digital input/output, configurable.Open collector: Max. 24 V resistive or inductive.

4 AI1Analog input:0-20 mA / 4-20 mA 0.5 - 3.5 V / 0-5 V / 0-10 V

2 DI1 Digital input, configurable

5 +5 V Supply to potentiometer and sensor

6 GND Ground

A GENIbus, A GENIbus, A (+)

Y GENIbus, Y GENIbus, GND

B GENIbus, B GENIbus, B (-)

3 GND Ground

15 +24 V Supply

8 +24 V Supply

26 +5 V Supply to potentiometer and sensor

23 GND Ground

25 GDS TX Grundfos Digital Sensor output

24 GDS RX Grundfos Digital Sensor input

7 AI2Analog input:0-20 mA / 4-20 mA0.5 - 3.5 V / 0-5 V / 0-10 V

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Connection terminals, advanced functional module (FM 300)

The advanced functional module is only available as an option.

The advanced module has these connections:

• three analog inputs

• one analog output

• two dedicated digital inputs

• two configurable digital inputs or open-collector outputs

• Grundfos Digital Sensor input and output

• two Pt100/1000 inputs

• two LiqTec sensor inputs1)

• two signal relay outputs

• GENIbus connection.1) Not applicable for TPE pumps.See fig. 68.

Note: Digital input 1 is factory-set to be the start/stop input where an open circuit will result in stop.

A jumper has been factory-fitted between terminals 2 and 6. Remove the jumper if digital input 1 is to be used as external start/stop or any other external function.

Note: As a precaution, the wires to be connected to the connection groups below must be separated from each other by reinforced insulation in their entire lengths.

• Inputs and outputsAll inputs and outputs are internally separated from the mains-conducting parts by reinforced insulation and galvanically separated from other circuits.All control terminals are supplied by safety extra-low voltage (SELV), thus ensuring protection against electric shock.

• Signal relay outputs

– Signal relay 1:LIVE:Mains supply voltages up to 250 VAC can be connected to this output.SELV:The output is galvanically separated from other circuits. Therefore, the supply voltage or safety extra-low voltage can be connected to the output as desired.

– Signal relay 2:SELV:The output is galvanically separated from other circuits. Therefore, the supply voltage or safety extra-low voltage can be connected to the output as desired.

• Mains supply (terminals N, PE, L or L1, L2, L3, PE).

A galvanically safe separation must fulfil the requirements for reinforced insulation including creepage distances and clearances specified in EN 61800-5-1.

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TP, TPD, TPE 18

* If an external supply source is used, there must be a connection to GND.

Fig. 68 Connection terminals, FM 300 (option)

TM

05

35

09

35

12

3

15

8

2623

25

24

7

21

20

22

B

Y

6

52

4

10

A

+24 V*

1

149

1217

19

11

18

+24 V* +

+24 V*OC DI

+24 V*/5 V*+24 V* +

+ ++24 V*/5 V*+24 V*

+24 V* + ++24 V*/5 V*+24 V*

+5 V* AI2

GDS RX

GDS TX

GND

GENIbus A

GENIbus B

+5 V

+24 V

+24 V

GND

GENIbus Y

GND

+5 VDI1

AI1

DI3/OC1

LiqTec

AI3

GND

DI2

LiqTec

GND

AOPt100/1000

Pt100/1000

DI4/OC2

GND

+24 V*OC DIGND

NC

C2

NO

NC

C1

NO

+5 V*

Terminal Type Function

NC Normally closed contactSignal relay 1(LIVE or SELV)

C1 Common

NO Normally open contact

NC Normally closed contactSignal relay 2(SELV only)

C2 Common

NO Normally open contact

18 GND Ground

11 DI4/OC2

Digital input/output, configurable.Open collector: Max. 24 V resistive or inductive.

19 Pt100/1000 input 2 Pt100/1000 sensor input

17 Pt100/1000 input 1 Pt100/1000 sensor input

12 AOAnalog output:0-20 mA / 4-20 mA0-10 V

9 GND Ground

14 AI3Analog input:0-20 mA / 4-20 mA0-10 V

1 DI2 Digital input, configurable

21 LiqTec sensor input 1LiqTec sensor input (white conductor)

20 GNDGround(brown and black conductors)

22 LiqTec sensor input 2LiqTec sensor input(blue conductor)

10 DI3/OC1

Digital input/output, configurable.Open collector: Max. 24 V resistive or inductive.

4 AI1Analog input:0-20 mA / 4-20 mA0.5 - 3.5 V / 0-5 V / 0-10 V

2 DI1 Digital input, configurable

5 +5 VSupply to potentiometer and sensor

6 GND Ground

A GENIbus, A GENIbus, A (+)

Y GENIbus, Y GENIbus, GND

B GENIbus, B GENIbus, B (-)

3 GND Ground

15 +24 V Supply

8 +24 V Supply

26 +5 VSupply to potentiometer and sensor*

23 GND Ground

25 GDS TXGrundfos Digital Sensor output

24 GDS RXGrundfos Digital Sensor input

7 AI2Analog input:0-20 mA / 4-20 mA0.5 - 3.5 V / 0-5 V / 0-10 V

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TP, TPD, TPE18

MGE motors, 1.5 to 18.5 kW, 4-pole, and 3 to 22 kW, 2-poleThe motors offer these features:

• Three-phase mains connection.

• Three-phase, asynchronous squirrel-cage induction motors designed to current IEC, DIN and VDE guidelines and standards. The motors incorporate frequency converter and PI controller.

• Used for continuously variable speed control of Grundfos E-pumps.

• Available in power sizes 1.5 - 18.5 kW, 4-pole, and 3-22 kW, 2-pole.

Fig. 69 Three-phase MGE motor

Supply voltage3 x 380-480 V - 10 %/+ 10 %, 50/60 Hz, PE.

Back-up fuse

Standard as well as quick-blow or slow-blow fuses may be used.

Leakage current

The leakage currents are measured in accordance with EN 60355-1 for 0.55 to 7.5 kW and EN 61800-5-1 for 11 to 22 kW motors.

Input/output

Start/stop

• External potential-free switch.Voltage: 5 VDC.Current: < 5 mA.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Digital input

• External potential-free switch.Voltage: 5 VDC.Current: < 5 mA.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.

Setpoint signals• Potentiometer

0-10 VDC, 10 kΩ (via internal voltage supply).Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 100 m.

• Voltage signal0-10 VDC, Ri > 50 kΩ.Tolerance: + 0 %/- 3 % at maximum voltage signal.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 500 m.

• Current signalDC 0-20 mA / 4-20 mA, Ri = 175 Ω.Tolerance: + 0 %/- 3 % at maximum current signal.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 500 m.

Sensor signals• Voltage signal

0-10 VDC, Ri > 50 kΩ (via internal voltage supply).Tolerance: + 0 %/- 3 % at maximum voltage signal.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 500 m.

• Current signalDC 0-20 mA / 4-20 mA, Ri = 175 Ω.Tolerance: + 0 %/- 3 % at maximum current signal.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 500 m.

• Power supply to sensor+24 VDC, max. 40 mA.

Signal output• Potential-free changeover contact.

Maximum contact load: 250 VAC, 2 A.Minimum contact load: 5 VDC, 10 mA.Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 500 m.

Bus input• Grundfos GENIbus protocol, RS-485.

Screened cable: 0.5 - 1.5 mm2 / 28-16 AWG.Maximum cable length: 500 m.

GR

82

75

Motor size[kW]

Max. fuse[A]

1.5 - 5.5 16

7.5 32

11 26

15 36

18.5 43

22 51

Motor size[kW]

Leakage current[mA]

1.5 - 3.0 < 3.5

4.0 - 5.5 < 5

5.5, 1400-1800 min-1< 10

7.5

11-22 > 10

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TP, TPD, TPE 18

EMC (electromagnetic compatibility to EN 61800-3)

For further information about EMC, see EMC and proper installation, page 78.

Enclosure classStandard: IP55 (IEC 34-5).

Insulation classF (IEC 85).

Ambient temperatureDuring operation: -20 - +40 °C

During storage/transport:

Relative air humidityMaximum 95 %.

Sound pressure level

Motor[kW]

Emission/immunity

0.55

Emission:The motors may be installed in residential areas (first environment), unrestricted distribution, corresponding to CISPR11, group 1, class B.

Immunity:The motors fulfil the requirements for both the first and second environment.

0.75

1.1

1.5

2.2

3.0

4.0

5.5

7.5

11 Emission:The motors are category C3, corresponding to CISPR11, group 2, class A, and may be installed in industrial areas (second environment).If fitted with an external Grundfos EMC filter, the motors are category C2, corresponding to CISPR11, group 1, class A, and may be installed in residential areas (first environment).

15

18.5

22

Note:

When the motors are installed in residential areas, supplementary measures may be required as the motors may cause radio interference.

Immunity:The motors fulfil the requirements for both the first and second environment.

0.25 - 7.5 kW: -40 - +60 °C11 - 22 kW: -25 - +70 °C.

Motor[kW]

Speed stated on the nameplate

[min-1]

Sound pressure level

[dB(A)]

1.51400-1500 53

1700-1800 57

2.21400-1500 50

1700-1800 52

3.0

1400-1500 55

1700-1800 60

2800-3000 65

3400-3600 70

4.0

1400-1500 58

1700-1800 63

2800-3000 70

3400-3600 75

5.5

1400-1500 52

1700-1800 56

2800-3000 75

3400-3600 80

7.5

1400-1500 54

1700-1800 58

2800-3000 65

3400-3600 69

11

1400-1500 54

1700-1800 59

2800-3000 65

3400-3600 70

15

1400-1500 54

1700-1800 59

2800-3000 65

3400-3600 70

18.5

1400-1500 65

1700-1800 69

2800-3000 69

3400-3600 74

222800-3000 73

3400-3600 78

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TP, TPD, TPE18

Motor protectionThe motor requires no external motor protection. The motor incorporates thermal protection against slow overloading and blocking (TP 211 to IEC 34-11).

Additional protectionIf the motor is connected to an electric installation where an earth leakage circuit breaker is used as additional protection, this circuit breaker must fulfil the following:

• It is suitable for handling leakage currents and cutting-in in case of short pulse-shaped leakage.

• It trips out when alternating fault currents and fault currents with DC content, i.e. pulsating DC and smooth DC fault currents, occur.

For these pumps, an earth leakage circuit breaker type B must be used.

This circuit breaker must be marked with the following symbols:

Note: When an earth leakage circuit breaker is selected, the total leakage current of all the electrical equipment in the installation must be taken into account.

Start/stop of pumpThe number of starts and stops via the mains voltage must not exceed four times per hour.

When the pump is switched on via the mains, it will start after approx. 5 seconds.

If a higher number of starts and stops is desired, the input for external start/stop must be used when starting/stopping the pump.

When the pump is started/stopped via an external on/off switch, it will start immediately.

Wiring diagram, 0.55 - 7.5 kW

Fig. 70 Wiring diagram, three-phase MGE motors,0.75 - 7.5 kW

Other connectionsFigure 71 shows the connection terminals of external potential-free contacts for start/stop and digital function, external setpoint signal, sensor signal, GENIbus and relay signal.

Note: If no external on/off switch is connected, short-circuit terminals 2 and 3 using a short wire.

Note: As a precaution, the wires to be connected to the connection groups below must be separated from each other by reinforced insulation in their entire lengths.

• Group 1: Inputs (external start/stop, digital function, setpoint and sensor signals, terminals 1-9, and bus connection, terminals B, Y, A).All inputs (group 1) are internally separated from the mains-conducting parts by reinforced insulation and galvanically separated from other circuits. All control terminals are supplied by protective extra-low voltage (PELV), thus ensuring protection against electric shock.

• Group 2: Output (relay signal, terminals NC, C, NO).The output (group 2) is galvanically separated from other circuits. A maximum supply voltage of 250 V or protective extra-low voltage can be connected to the output as desired.

• Group 3: Mains supply (terminals L1, L2, L3, PE).A galvanically safe separation must fulfil the requirements for reinforced insulation including creepage distances and clearances specified in EN 60335.

Fig. 71 Connection terminals

TM

00

92

70

46

96

ELCB

L1

L2

L3

L2

L1

L3

PE

External switch

Max. 16/32 A

ELCB

3 x 380-480 V - 10 %/+ 10 %, 50/60 HzT

M0

2 8

41

4 5

10

3

1 9 8 7 B Y A

0-10 V

0/4-20 mA 4-20 mA

1/0

NC C NO L1 L2 L3

10K

RUN

STOP

6 5 4 3 2

0/4-20 mA 0-10 V

Gro

up

1

Gro

up

2

Gro

up

3

1: Digital input9: GND (frame)8: +24 V7: Sensor inputB: RS-485BY: ScreenA: RS-485A

6: GND (frame)5: +10 V4: Setpoint input3: GND (frame)2: Start/stop

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TP, TPD, TPE 18

Wiring diagram, 11-22 kW

Fig. 72 Wiring diagram, three-phase MGE motors, 11-22 kW

Other connections

Note: As a precaution, the wires to be connected to the connection groups below must be separated from each other by reinforced insulation in their entire lengths.

Group 1: Inputs

• Start/stop, terminals 2 and 3

• digital input, terminals 1 and 9

• setpoint input, terminals 4, 5 and 6

• sensor input, terminals 7 and 8

• GENIbus, terminals B, Y and A.

All inputs (group 1) are internally separated from the mains-conducting parts by reinforced insulation and galvanically separated from other circuits.

All control terminals are supplied by protective extra-low voltage (PELV), thus ensuring protection against electric shock.

• Group 2: Output (relay signal, terminals NC, C, NO).The output (group 2) is galvanically separated from other circuits. Therefore, the supply voltage or protective extra-low voltage can be connected to the output as desired.

• Group 3: Mains supply (terminals L1, L2, L3).A galvanically safe separation must fulfil the requirements for reinforced insulation including creepage distances and clearances specified in EN 61800-5-1.

Fig. 73 Connection terminals

TM

00

92

70

46

96

L1

L2

L3

L2

L1

L3

PE

External switch

Max. 26/51 A

ELCB

3 x 380-480 V - 10 %/+ 10 %, 50/60 Hz

TM

03

86

08

20

07

1: Digital input9: GND (frame)8: +24 V7: Sensor inputB: RS-485BY: ScreenA: RS-485A

6: GND (frame)5: +10 V4: Setpoint input3: GND (frame)2: Start/stop

Gro

up

1

Gro

up

2

Gro

up

3

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TP, TPD, TPE19

19. EMC

EMC and proper installation

General informationThe growing use of electric/electronic controls and electronic equipment including PLCs and computers within all business areas require these products to fulfil the existing standards within EMC (ElectoMagnetic Compatibility). The equipment must be mounted properly.

This section deals with these issues.

What is EMC?ElectoMagnetic Compatibility is the ability of an electric or electronic device to function in a given electromagnetic environment without disturbing the surroundings and without being disturbed by other devices in the surroundings. EMC is normally split into emission and immunity.

EmissionEmission is defined as the electric or electromagnetic noise emitted by a device during operation and which can reduce the function of other devices or disturb various wireless communications, including radio/TV.

ImmunityImmunity deals with a device's ability to function in spite of the presence of electric or electromagnetic noise, such as sparking noise from contactors or high-frequency fields from various transmitters, mobile phones, etc.

E-pumps and EMCAll Grundfos E-pumps are CE- and C-tick-marked indicating that the product is designed to meet the EMC requirements defined by the EU (European Union) and Australia/New Zealand.

All E-pumps fulfil the EMC directive 2004/108/EC and are tested according to standard EN 61800-3. All E-pumps are fitted with a radio interference filter and varistors in the mains supply input to protect the electronics against voltage peaks and noise present in the mains supply (immunity). At the same time, the filter will limit the amount of electrical noise which the E-pump emits to the mains supply network (emission). All remaining inputs included in the electronic unit will also be protected against peaks and noise which can damage or disturb the function of the unit.

On top of that, the mechanical and electronic designs are made in such a way that the unit can operate sufficiently under a certain level of radiated electromagnetic disturbance.

The limits which the E-pumps are tested against are listed in standard EN 61800-3.

Where can E-pumps be installed?All E-pumps with MGE motors can be used in both residential areas (first environment) and industrial areas (second environment) within certain limitations.

What is meant by the first and the second environment?The first environment (residential areas) includes establishments directly connected to a low-voltage power supply network which supplies domestic buildings.

The second environment (industrial areas) includes establishments which are not connected to a low-voltage network that supplies domestic buildings. The level of electromagnetic disturbance can be expected to be much higher than in the first environment.

All E-pumps marked with the C-tick logo fulfil the requirements for EMC in Australia and New Zealand.

The C-tick approval is based on the EN standards, and the units are therefore tested according to the European standard EN 61800-3.

Only E-pumps with MGE-motors are marked with C-tick.

The C-tick only covers emission.

EMC and proper installationWith the CE and C-tick marks, the E-pumps live up to and have been tested to meet specific EMC requirements. This, however, does not mean that E-pumps are immune to all the sources of noise to which they can be exposed in practice. In some installations, the impact may exceed the level to which the product is designed and tested.

Furthermore, unproblematic operation in a noisy environment presupposes that the installation of the E-pump is made properly.

Below you will find a description of a correct E-pump installation.

Connection of mains supply in MGEPractice shows that large cable loops are often made inside the terminal box to get some "spare cable". Of course, this can be useful. However, with regard to EMC it is a poor solution as these cable loops will function as antennas inside the terminal box.

To avoid EMC problems, the mains supply cable and its individual conductors in the terminal box of the E-pump must be as short as possible. If required, spare cable can be established outside the E-pump.

EMC and CE

EMC and C-tick

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TP, TPD, TPE 20

20. Flanges for TP pumps

Flange dimensions

PN 6 and PN 10 flanges

PN 16 and PN 25 flanges

PN 40 flanges

TM

02

77

20

38

03

EN 1092-2 PN 6 (0.6 MPa) EN 1092-2 PN 10 (1.0 MPa)

Nominal diameter (DN) Nominal diameter (DN)

32 40 50 65 80 100 32 40 50 65 80 100 125 150 200 250

D1 32 40 50 65 80 100 32 40 50 65 80 100 125 150 200 250

D2 90 100 110 130 150 170 100 110 125 145 160 180 210 240 295 350

D3 120 130 140 160 190 210 140 150 165 185 200 220 250 285 340 395

S 4x14 4x14 4x14 4x14 4x19 4x19 4x19 4x19 4x19 4x19 8x19 8x19 8x19 8x23 8x23 12x23

S

D2

D3

D1

TM

02

77

20

38

03

EN 1092-2 PN 16 (1.6 MPa) EN 1092-2 PN 25 (2.5 MPa)

Nominal diameter (DN) Nominal diameter (DN)

32 40 50 65 80 100 125 150 200 100 125 150 200 250 300 350

D1 32 40 50 65 80 100 125 150 200 100 125 150 200 250 300 350

D2 100 110 125 145 160 180 210 240 295 190 220 250 310 370 430 490

D3 140 150 165 185 200 220 250 285 340 235 270 300 360 425 485 555

S 4x19 4x19 4x19 4x19 8x19 8x19 8x19 8x23 12x23 8x23 8x28 8x28 12x28 12x31 16x31 16x34

S

D2

D3

D1

TM

02

77

20

38

03

EN/DIN 2635 PN 40(4.0 MPa)

Nominal diameter (DN)

400 500

D1 400 500

D2 585 585

D3 660 660

S 16x42 20x42

S

D2

D3

D1

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TP, TPD, TPE21

21. Curve charts

How to read the curve charts

TM

02

50

39

05

04

0 10 20 30 40 50 60 70 80 Q [m³/h]

20

30

40

50

60

70

80

90

100

110

H[m]

TP, TPE 5060 Hz

-1050/2

-720/2

-790/2

-880/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

0

4

8

12

16

20

24

28

P2[kW]

-1050/2

-720/2

-790/2

-880/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

0

2

4

6

8

10

12

14[m]

NPSH

0 10 20 30 40 50 60 70 80 Q [m³/h]

30

35

40

45

50

55

60

65

Eta[%]

0 5 10 15 20 Q [l/s]

0 2 4 6 8 10 v [m/s]

-1050/2-720/2

-790/2 -880/2

Pump type and frequency

QH curve for the individual single-head pump.

The bold curve indicates the recommended performance range.

The power curve indicates pump input power [P2].

The eta curve shows the pump efficiency.

The NPSH (3 %) curve shows the required net positive suction head (NPSH) to ensure that the pump head is not reduced by more than 3 %. The available system pressure at the pump inlet must be according to the NPSH (3 %) curve + a safety margin of at least 0.5 m.

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TP, TPD, TPE 21

Curve conditionsThe guidelines below apply to the curves shown on the following pages:

1. Tolerances to ISO 9906:2012 Grade 3B.

2. The curves apply to the performance of single-head, three-phase pumps. For other pump versions, please see the exact curves in WinCAPS or WebCAPS. For other pump versions, the performance may differ for the following reasons:- The valve in twin-head pumps may cause losses.Note: Grundfos does not recommend continuous parallel operation of twin-head pumps due to the increased flow in the pump. An excessive flow results in noisy operation, increased wear of the impeller due to cavitation, etc.

3. QH curves of the individual single-head pumps are shown with expected speed of a three-phase mains-operated motor. For further information, see the tables of technical data on the following pages.

4. Curves of TPE Series 1000 pumps are shown as max. curves (100 % curves) only. Please refer to WinCAPS for the exact curves.

5. Measurements have been made with airless water at a temperature of 20 °C.

6. The curves apply to a kinematic viscosity ofυ = 1 mm2/s (1 cSt).

7. Due to the risk of overheating, the pump must not run constantly below the minimum flow rate indicated by the bold curves.

8. If the pumped liquid density and/or viscosity are higher than those of water, it may be necessary to use a motor with a higher performance.

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22DN 32

2-pole, PN 6, 10, 16

22. Performance curves/technical data

TP, TPD, TPE 2-pole, PN 6, 10, 16

TP, TPD, TPE 32-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

34

48

10

TM

02

50

35

05

04

0 2 4 6 8 10 12 14 Q [m³/h]

0

4

8

12

16

20

24

28

32

H[m]

TP 3260 Hz

-330/2

-260/2

-220/2

-160/2

-80/2

0 2 4 6 8 10 12 14 Q [m³/h]

0.0

0.2

0.4

0.6

0.8

1.0

1.2

P2[kW]

-330/2

-260/2

-220/2 -160/2

-80/2

0 2 4 6 8 10 12 14 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

-220/2, -260/2, -330/2-160/2

-80/2

0 2 4 6 8 10 12 14 Q [m³/h]

20

30

40

50

60

70

Eta[%]

0 1 2 3 4 Q [l/s]

0 1 2 3 4 v [m/s]

-330/2

-260/2

-220/2

-160/2

-80/2

0 4 8 12 16 20 24 28 32 Q [m³/h]

10

20

30

40

50

60

70

80

90

H[m]

TP, TPE 3260 Hz

-300/2

-360/2

-450/2

-550/2

-680/2

-820/2

0 4 8 12 16 20 24 28 32 Q [m³/h]

0

2

4

6

8

10

P2[kW]

-300/2-360/2

-450/2

-550/2

-680/2

-820/2

0 4 8 12 16 20 24 28 32 Q [m³/h]

0

2

4

6

8

10

12

14[m]

NPSH

0 4 8 12 16 20 24 28 32 Q [m³/h]

25

30

35

40

45

50

Eta[%]

0 2 4 6 8 Q [l/s]

0 2 4 6 8 v [m/s]

-300/2 -360/2

-550/2 -680/2

-450/2

-820/2

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22DN 32

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 32 -80/2 -160/2 -220/2 -260/2 -330/2 -300/2 -360/2 -450/2 -550/2 -680/2 -820/2TPD - - - - - ● ● ● ● ● ●TPE - - - - - ● ● ● ● ● ●TPED - - - - - - - - - - -Series 200 200 200 200 200 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - - - - -3~ TP 71 71 80 90 90 90 100 112 132 132 1601~ TPE - - - - - - - - - - -3~ TPE - - - - - 90 100 112 132 132 160

P21~/3~ TP [kW] -/0.37 -/0.55 -/0.75 -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.5 -/7.5 -/111~/3~ TPE [kW] -/- -/- -/- -/- -/- -/2.2 -/3 -/4 -/5.5 -/7.5 -/11

PN PN6/10 PN6/10 PN6/10 PN6/10 PN6/10 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;140] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 32 32 32 32 32 32 32 32 32 32 32

AC1~/3~ TP [mm] -/142 -/142 -/142 -/142 -/178 -/178 -/198 -/220 -/220 -/260 -/3141~/3~ TPE [mm] -/- -/- -/- -/- -/- -/122 -/198 -/220 -/220 -/260 -/314

AD1~/3~ TP [mm] -/109 -/109 -/109 -/109 -/110 -/167 -/120 -/134 -/134 -/159 -/2041~/3~ TPE [mm] -/- -/- -/- -/- -/- -/158 -/177 -/188 -/188 -/213 -/308

AE 1~/3~ TPE [mm] - - - - - 132 132 145 145 145 210AF 1~/3~ TPE [mm] - - - - - 132 132 145 145 145 210P [mm] - - - - - 200 250 250 300 300 350B1 ★ [mm] 75/- 75/- 102/- 102/- 102/- 144/321 144/321 144/321 144/321 144/321 144/321B2 ★ [mm] 75/- 75/- 102/- 102/- 102/- 144/321 144/321 144/321 144/321 144/321 144/321B3 [mm] - - - - - 355 355 355 355 355 355

B4 ★TP [mm] 109/- 109/- 109/- 109/- 110/- 144/321 144/321 144/321 150/328 159/328 204/353TPE [mm] -/- -/- -/- -/- -/- 167/- 177/- 188/- 188/- 213/- 308/-

C1 ★ [mm] 80/- 80/- 80/- 80/- 80/- 144/435 144/435 144/435 144/435 144/435 144/435C5 ★ [mm] 110 110 140 140 140 220/46 220/46 220/46 220/46 220/46 220/46C6 [mm] - - - - - 175 175 175 175 175 175L1 [mm] 220 220 280 280 280 440 440 440 440 440 440H1 [mm] 68 68 79 79 79 100 100 100 100 100 100H2 [mm] 125 125 137 137 147 156 184 184 223 223 253

H31~/3~ TP [mm] -/395 -/395 -/447 -/517 -/507 -/577 -/619 -/656 -/714 -/702 -/8241~/3~ TPE [mm] -/- -/- -/- -/- -/- -/530 -/619 -/656 -/714 -/702 -/824

H4 [mm] - - - - - - - - - - 35M [mm] M12 M12 M12 M12 M12 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

83

Page 84: TP, TPD, TPE - Databook

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22DN 40

2-pole, PN 6, 10, 16

TP, TPD, TPE 40-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

36

48

10

TM

02

50

37

05

04

0 2 4 6 8 10 12 14 16 18 Q [m³/h]

0

4

8

12

16

20

24

28

32

36

40

H[m]

TP, TPE 4060 Hz

-390/2

-330/2

-270/2

-240/2

-160/2

-80/2

0 2 4 6 8 10 12 14 16 18 Q [m³/h]

0.0

0.4

0.8

1.2

1.6

2.0

2.4

P2[kW]

-390/2-330/2

-270/2-240/2

-160/2-80/2

0 2 4 6 8 10 12 14 16 18 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

-270/2, -330/2, -390/2

-240/2

-160/2

-80/2

0 2 4 6 8 10 12 14 16 18 Q [m³/h]

30

40

50

60

70

80

Eta[%]

0 1 2 3 4 5 Q [l/s]

0 1 2 3 4 v [m/s]

-390/2-330/2-270/2

-240/2

-160/2

-80/2

0 5 10 15 20 25 30 35 40 Q [m³/h]

20

30

40

50

60

70

80

90

100

H[m]

TP, TPE 4060 Hz

-370/2

-450/2

-550/2

-740/2

-850/2

-930/2

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

2

4

6

8

10

12

14

16

P2[kW]

-370/2-450/2

-550/2

-740/2

-850/2

-930/2

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

0 5 10 15 20 25 30 35 40 Q [m³/h]

20

25

30

35

40

45

50

55

Eta[%]

0 2 4 6 8 10 12 Q [l/s]

0 2 4 6 8 v [m/s]

-370/2

-450/2

-550/2

-740/2

-930/2

-850/2

Page 85: TP, TPD, TPE - Databook

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22DN 40

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 40 -80/2 -160/2 -240/2 -270/2 -330/2 -390/2 -370/2 -450/2 -550/2 -740/2 -850/2 -930/2TPD - - - - - - ● ● ● ● ● ●TPE - - - - - - ● ● ● ● ● ●TPED - - - - - - - - - - - -Series 200 200 200 200 200 200 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - - - - - -3~ TP 71 80 90 90 90 100 112 132 132 160 160 1601~ TPE - - - - - - - - - - - -3~ TPE - - - - - - 112 132 132 160 160 160

P21~/3~ TP [kW] -/0.55 -/0.75 -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.5 -/7.5 -/11 -/15 -/18.51~/3~ TPE [kW] -/- -/- -/- -/- -/- -/- -/4 -/5.5 -/7.5 -/11 -/15 -/18.5

PN PN 6/10 PN 6/10 PN 6/10 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;140] [-25;140] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 40 40 40 40 40 40 40 40 40 40 40 40

AC1~/3~ TP [mm] -/142 -/142 -/142 -/178 -/178 -/178 -/220 -/220 -/260 -/314 -/314 -/3141~/3~ TPE [mm] -/- -/- -/- -/- -/- -/- -/220 -/220 -/260 -/314 -/314 -/314

AD1~/3~ TP [mm] -/109 -/109 -/109 -/110 -/110 -/110 -/134 -/134 -/159 -/204 -/204 -/2041~/3~ TPE [mm] -/- -/- -/- -/- -/- -/- -/188 -/188 -/213 -/308 -/308 -/308

AE 1~/3~ TPE [mm] - - - - - - 145 145 145 210 210 210AF 1~/3~ TPE [mm] - - - - - - 145 145 145 210 210 210P [mm] - - - - - - 250 300 300 350 350 350B1 ★ [mm] 85/- 75/- 101/- 102/- 102/- 102/- 149/325 149/325 149/325 149/325 149/325 149/325B2 ★ [mm] 75/- 75/- 101/- 102/- 102/- 102/- 144/321 144/321 144/321 144/321 144/321 144/321B3 [mm] - - - - - - 355 355 355 355 355 355

B4 ★TP [mm] 109/- 109/- 109/- 110/- 110/- 110/- 149/325 150/328 159/328 204/353 204/353 204/353TPE [mm] -/- -/- -/- -/- -/- -/- 188/- 188/- 213/- 308/- 308/- 308/-

C1 ★ [mm] 120/- 80/- 80/- 120/- 120/- 120/- 144/435 144/435 144/435 144/435 144/435 144/435C5 ★ [mm] 125 125 125 160 160 160 220/108 220/108 220/108 220/108 220/108 220/108C6 [mm] - - - - - - 175 175 175 175 175 175L1 [mm] 250 250 250 320 320 320 440 440 440 440 440 440H1 [mm] 67 67 68 68 68 68 110 110 110 110 110 110H2 [mm] 132 139 144 150 150 160 186 225 225 255 255 255

H31~/3~ TP [mm] -/390 -/437 -/513 -/500 -/540 -/564 -/668 -/726 -/714 -/836 -/836 -/8801~/3~ TPE [mm] -/- -/- -/- -/- -/- -/- -/668 -/726 -/714 -/836 -/836 -/880

H4 [mm] - - - - - - - - - 35 35 35M [mm] M12 M12 M12 M12 M12 M12 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

85

Page 86: TP, TPD, TPE - Databook

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86

22DN 50

2-pole, PN 6, 10, 16

TP, TPD, TPE 50-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

38

48

10

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

5

10

15

20

25

30

35

40

H[m]

TP, TPE 5060 Hz

-250/2

-300/2

-350/2

-410/2

-240/2

-160/2

-80/2

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

1

2

3

4

5

P2[kW]

-250/2

-300/2

-350/2

-410/2

-240/2-160/2

-80/2

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

-250/2, 300/2, 350/2, 410/2

-240/2

-160/2-80/2

0 5 10 15 20 25 30 35 40 Q [m³/h]

30354045505560657075

Eta[%]

0 2 4 6 8 10 Q [l/s]

0 1 2 3 4 5 v [m/s]

-250/2

-300/2

-350/2-410/2

-240/2

-160/2

-80/2

Page 87: TP, TPD, TPE - Databook

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22DN 50

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 50 -80/2 -160/2 -240/2 -250/2 -300/2 -350/2 -410/2TPD - - - ● ● ● ●TPE - - - ● ● ● ●TPED - - - - - - -Series 200 200 200 300 300 300 300

IEC size

1~ TP - - - - - - -3~ TP 71 90 90 90 100 112 1321~ TPE - - - - - - -3~ TPE - - - 90 100 112 132

P21~/3~ TP [kW] -/0.55 -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.51~/3~ TPE [kW] -/- -/- -/- -/2.2 -/3 -/4 -/5.5

PN PN6/10 PN 6/10 PN 6/10 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 50 50 50 50 50 50 50

AC1~/3~ TP [mm] -/142 -/142 -/175 -/178 -/198 -/220 -/2201~/3~ TPE [mm] -/- -/- -/- -/122 -/198 -/220 -/220

AD1~/3~ TP [mm] -/109 -/109 -/110 -/110 -/120 -/134 -/1341~/3~ TPE [mm] -/- -/- -/- -/158 -/177 -/188 -/188

AE 1~/3~ TPE [mm] - - - 132 132 145 145AF 1~/3~ TPE [mm] - - - 132 132 145 145P [mm] - - - 200 250 250 300B1 ★ [mm] 95/- 100/- 100/- 117/252 117/252 133/290 133/290B2 ★ [mm] 83/- 100/- 100/- 117/252 117/252 119/284 119/284B3 [mm] - - - 270 270 320 320

B4 ★TP [mm] 109/- 109/- 110/- 117/252 125/260 134/290 150/310TPE [mm] -/- -/- -/- 167/- 177/- 188/- 188/-

C1 ★ [mm] 120/- 120/- 120/- 144/350 144/350 144/400 144/400C5 ★ [mm] 140 140 140 170/60 170/60 170/52 170/52C6 [mm] - - - 175 175 175 175L1 [mm] 280 280 280 340 340 340 340H1 [mm] 75 75 75 115 115 115 115H2 [mm] 137 135 145 152 180 189 228

H31~/3~ TP [mm] -/403 -/511 -/501 -/588 -/630 -/676 -/7341~/3~ TPE [mm] -/- -/- -/- -/541 -/630 -/676 -/734

H4 [mm] - - - - - - -M [mm] M12 M12 M12 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

87

Page 88: TP, TPD, TPE - Databook

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88

22DN 50

2-pole, PN 6, 10, 16

TP, TPD, TPE 50-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

39

49

12

0 10 20 30 40 50 60 70 80 Q [m³/h]

20

30

40

50

60

70

80

90

100

110

H[m]

TP, TPE 5060 Hz

-1050/2

-720/2

-790/2

-880/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

0

4

8

12

16

20

24

28

P2[kW]

-1050/2

-720/2

-790/2

-880/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

0

2

4

6

8

10

12

14[m]

NPSH

0 10 20 30 40 50 60 70 80 Q [m³/h]

30

35

40

45

50

55

60

65

Eta[%]

0 5 10 15 20 Q [l/s]

0 2 4 6 8 10 v [m/s]

-1050/2-720/2

-790/2 -880/2

Page 89: TP, TPD, TPE - Databook

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22DN 50

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 50 -720/2 -790/2 -880/2 -1050/2TPD ● ● ● ●TPE ● ● ● -TPED - - - -Series 300 300 300 300

IEC size

1~ TP - - - -3~ TP 160 160 180 2001~ TPE - - - -3~ TPE 160 160 180 -

P21~/3~ TP [kW] -/15 -/18.5 -/22 -/301~/3~ TPE [kW] -/15 -/18.5 -/22 -/-

PN PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 50 50 50 50

AC1~/3~ TP [mm] -/314 -/314 -/314 -/3961~/3~ TPE [mm] -/314 -/314 -/314 -/-

AD1~/3~ TP [mm] -/204 -/204 -/204 -/3151~/3~ TPE [mm] -/308 -/308 -/308 -/-

AE 1~/3~ TPE [mm] 210 210 210 -AF 1~/3~ TPE [mm] 210 210 210 -P [mm] 350 350 350 400B1 ★ [mm] 180/386 180/386 180/386 180/386B2 ★ [mm] 164/379 164/379 164/379 164/379B3 [mm] 420 420 420 420

B4 ★TP [mm] 204/386 204/386 204/386 300/411TPE [mm] 308/- 308/- 308/- -/-

C1 ★ [mm] 144/500 144/500 144/500 144/500C5 ★ [mm] 220/123 220/123 220/123 220/123C6 [mm] 175 175 175 175L1 [mm] 440 440 440 440H1 [mm] 115 115 115 115H2 [mm] 264 264 264 264

H31~/3~ TP [mm] -/850 -/894 -/894 -/9421~/3~ TPE [mm] -/850 -/894 -/920 -/-

H4 [mm] 35 35 35 35M [mm] M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

89

Page 90: TP, TPD, TPE - Databook

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90

22DN 65

2-pole, PN 6, 10, 16

TP, TPD, TPE 65-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

40

48

10

0 10 20 30 40 50 60 Q [m³/h]

0

5

10

15

20

25

30

35

40

H[m]

TP, TPE 6560 Hz

-220/2

-260/2

-340/2

-390-2

-240/2

-160/2

-80/2

0 10 20 30 40 50 60 Q [m³/h]

012345678

P2[kW]

-220/2

-260/2

-340/2

-390/2

-240/2-160/2

-80/2

0 10 20 30 40 50 60 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

-220/2, -260/2, -340/2,

-240/2

-160/2

-80/2

-390/2

0 10 20 30 40 50 60 Q [m³/h]

354045505560657075

Eta[%]

0 5 10 15 Q [l/s]

0 1 2 3 4 5 v [m/s]

-220/2 -260/2

-340/2-390/2

-240/2

-160/2

-80/2

Page 91: TP, TPD, TPE - Databook

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22DN 65

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 65 -80/2 -160/2 -240/2 -220/2 -260/2 -340/2 -390/2TPD - - - ● ● ● ●TPE - - - ● ● ● ●TPED - - - - - - -Series 200 200 200 300 300 300 300

IEC size

1~ TP - - - - - - -3~ TP 90 90 90 100 112 132 1321~ TPE - - - - - - -3~ TPE - - - 100 112 132 132

P21~/3~ TP [kW] -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.5 -/7.51~/3~ TPE [kW] -/- -/- -/- -/3 -/4 -/5.5 -/7.5

PN PN6/10 PN6/10 PN6/10 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 65 65 65 65 65 65 65

AC1~/3~ TP [mm] -/142 -/175 -/175 -/198 -/220 -/220 -/2601~/3~ TPE [mm] -/- -/- -/- -/198 -/220 -/220 -/260

AD1~/3~ TP [mm] -/109 -/110 -/110 -/120 -/134 -/134 -/1591~/3~ TPE [mm] -/- -/- -/- -/177 -/188 -/188 -/213

AE 1~/3~ TPE [mm] - - - 132 145 145 145AF 1~/3~ TPE [mm] - - - 132 145 145 145P [mm] - - - 250 250 300 300B1 ★ [mm] 93/- 100/- 100/- 142/298 142/298 142/298 142/298B2 ★ [mm] 93/- 100/- 100/- 124/290 124/290 124/290 124/290B3 [mm] - - - 320 320 320 320

B4 ★TP [mm] 109/- 110/- 110/- 142/298 142/298 150/310 159/310TPE [mm] -/- -/- -/- 177/- 188/- 188/- 213/-

C1 ★ [mm] 120/- 120/- 120/- 144/400 144/400 144/400 144/400C5 ★ [mm] 170 170 170 180/65 180/65 180/65 180/65C6 [mm] - - - 175 175 175 175L1 [mm] 340 340 340 360 360 360 360H1 [mm] 82 82 82 105 105 105 105H2 [mm] 156 154 154 201 201 239 239

H31~/3~ TP [mm] -/539 -/517 -/557 -/641 -/678 -/735 -/7231~/3~ TPE [mm] -/- -/- -/- -//641 -//678 -/735 -/723

H4 [mm] - - - - - - -M [mm] M12 M12 M12 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

91

Page 92: TP, TPD, TPE - Databook

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92

22DN 65

2-pole, PN 6, 10, 16

TP, TPD, TPE 65-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

41

32

13

0 20 40 60 80 100 Q [m³/h]

30

40

50

60

70

80

90

100

110

H[m]

TP, TPE 6560 Hz

-920/2

-1050/2

-480/2

-540/2

-630/2

-740/2

-910/2

0 20 40 60 80 100 Q [m³/h]

0

5

10

15

20

25

30

35

40

P2[kW]

-920/2-1050/2

-480/2-540/2

-630/2

-740/2

-910/2

0 20 40 60 80 100 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

0 20 40 60 80 100 Q [m³/h]

35

40

45

50

55

60

65

70

Eta[%]

0 10 20 30 Q [l/s]

0 2 4 6 8 v [m/s]

-920/2

-1050/2

-480/2

-540/2

-630/2-740/2

-910/2

Page 93: TP, TPD, TPE - Databook

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22DN 65

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 65 -480/2 -540/2 -630/2 -740/2 -910/2 -920/2 -1050/2TPD ● ● ● ● ● ● ●TPE ● ● ● ● - - -TPED - - - - - - -Series 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - -3~ TP 160 160 160 180 200 200 2001~ TPE - - - - - - -3~ TPE 160 160 160 180 - - -

P21~/3~ TP [kW] -/11 -/15 -/18.5 -/22 -/30 -/37 -/371~/3~ TPE [kW] -/11 -/15 -/18.5 -/22 -/- -/- -/-

PN PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 65 65 65 65 65 65 65

AC1~/3~ TP [mm] -/314 -/314 -/314 -/314 -/396 -/407 -/3961~/3~ TPE [mm] -/314 -/314 -/314 -/314 -/- -/- -/-

AD1~/3~ TP [mm] -/204 -/204 -/204 -/204 -/315 -/315 -/3151~/3~ TPE [mm] -/308 -/308 -/308 -/308 -/- -/- -/-

AE 1~/3~ TPE [mm] 210 210 210 210 - - -AF 1~/3~ TPE [mm] 210 210 210 210 - - -P [mm] 350 350 350 350 400 400 400B1 ★ [mm] 178/349 178/349 178/349 178/349 178/349 178/349 178/349B2 ★ [mm] 164/383 164/383 164/383 164/383 164/383 164/383 164/383B3 [mm] 440 440 440 440 440 440 440

B4 ★TP [mm] 204/395 204/395 204/395 204/395 300/421 315/395 300/421TPE [mm] 308/- 308/- 308/- 308/- -/- -/- -/-

C1 ★ [mm] 144/520 144/520 144/520 144/520 144/520 144/520 144/520C5 ★ [mm] 238/111 238/111 238/111 238/111 238/111 238/111 238/111C6 [mm] 175 175 175 175 175 175 175L1 [mm] 475 475 475 475 475 475 475H1 [mm] 125 125 125 125 125 125 125H2 [mm] 263 263 263 263 263 263 263

H31~/3~ TP [mm] -/859 -/859 -/903 -/903 -/951 -/999 -/9761~/3~ TPE [mm] -/859 -/859 -/903 -/929 -/- -/- -/-

H4 [mm] 35 35 35 35 35 35 35M [mm] M16 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

93

Page 94: TP, TPD, TPE - Databook

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22DN 80

2-pole, PN 6, 10, 16

TP, TPD, TPE 80-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

42

16

04

TM

02

87

69

16

04

0 10 20 30 40 50 60 70 80 Q [m³/h]

0

4

8

12

16

20

24

28

32

H[m]

TP, TPE 8060 Hz-290/2

-240/2

-200/2

-160/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

1

2

3

4

5

6

7

8

P2[kW]

-290/2

-240/2

-200/2

-160/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

0

2

4

6

8

10

12

[m]NPSH

-200/2

-240/2, -290/2

-160/2

0 10 20 30 40 50 60 70 80 Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 5 10 15 20 25 Q [l/s]

0 1 2 3 4 5 v [m/s]

-290/2-240/2

-200/2

-160/2

0 20 40 60 80 100 120 140 Q [m³/h]

10

20

30

40

50

60

70

80

H[m]

TP, TPE 8060 Hz

-750/2

-640/2

-530/2

-480/2

-400/2

-330/2

0 20 40 60 80 100 120 140 160Q [m³/h]

4

8

12

16

20

24

28

32

36

P2[kW]

-750/2

-640/2

-530/2-480/2

-400/2

-330/2

0 20 40 60 80 100 120 140 Q [m³/h]

0

2

4

6

8

10

12

[m]NPSH

-480/2, -530/2, -640/2,

-330/2, -400/2

-750/2

0 20 40 60 80 100 120 140 160Q [m³/h]

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 Q [l/s]

0 2 4 6 8 v [m/s]

-750/2

-640/2

-530/2

-480/2-400/2

-330/2

Page 95: TP, TPD, TPE - Databook

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22DN 80

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

8 3

40

6

TP 80 -160/2 -200/2 -240/2 -290/2 -330/2 -400/2 -480/2 -530/2 -640/2 -750/2TPD - ● ● ● ● ● ● ● ● ●TPE - ● ● ● ● ● ● ● - -TPED - - - - - - - - - -Series 200 300 300 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - - - -3~ TP 100 112 132 132 160 160 160 180 200 2001~ TPE - - - - - - - - - -3~ TPE - 112 132 132 160 160 160 180 - -

P21~/3~ TP [kW] -/3 -/4 -/5.5 -/7.5 -/11 -/15 -/18.5 -/22 -/30 -/371~/3~ TPE [kW] -/- -/4 -/5.5 -/7.5 -/11 -/15 -/18.5 -/22 -/- -/-

PN PN 6/PN 10 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 80 80 80 80 80 80 80 80 80 80

AC1~/3~ TP [mm] -/175 -/220 -/220 -/260 -/314 -/314 -/314 -/314 -/407 -/4071~/3~ TPE [mm] -/- -/220 -/220 -/260 -/314 -/314 -/314 -/314 -/- -/-

AD1~/3~ TP [mm] -/110 -/134 -/134 -/159 -/204 -/204 -/204 -/204 -/315 -/3151~/3~ TPE [mm] -/- -/188 -/188 -/213 -/308 -/308 -/308 -/308 -/- -/-

AE 1~/3~ TPE [mm] - 145 145 145 210 210 210 210 - -AF 1~/3~ TPE [mm] - 145 145 145 210 210 210 210 - -P [mm] - 250 300 300 350 350 350 350 400 400B1 ★ [mm] 125/- 125/260 125/260 125/260 176/366 176/366 187/416 187/416 187/416 187/416B2 ★ [mm] 100/- 119/290 119/290 119/290 144/354 144/354 162/405 162/405 162/405 162/405B3 [mm] - 340 340 340 400 400 470 470 470 470

B4 ★TP [mm] 110/- 134/295 150/320 159/320 204/375 204/375 204/416 204/416 300/436 300/436TPE [mm] -/- 188/- 188/- 213/- 308/- 308/- 308/- 308/- -/- -/-

C1 ★ [mm] 160/- 144/420 144/420 144/420 144/480 144/480 144/550 144/550 144/550 144/550C5 ★ [mm] 180 180/78 180/78 180/78 220/93 220/93 250/133 250/133 250/133 250/133C6 [mm] - 175 175 175 175 175 175 175 175 175L1 [mm] 360 360 360 360 440 440 500 500 500 500H1 [mm] 97 105 105 105 115 115 115 115 115 115H2 [mm] 174 204 243 243 273 273 273 273 273 273

H31~/3~ TP [mm] -/606 -/681 -/739 -/727 -/859 -/859 -/903 -/903 -/999 -/9991~/3~ TPE [mm] -/- -/681 -/739 -/727 -/859 -/859 -/903 -/929 -/- -/-

H4 [mm] - - - - 35 35 35 35 35 35M [mm] M16 M16 M16 M16 M16 M16 M16 M16 M16 M16

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

95

Page 96: TP, TPD, TPE - Databook

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96

22DN 100

2-pole, PN 6, 10, 16

TP, TPD, TPE 100-XX/2

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

87

70

16

04

TM

02

87

71

48

10

0 20 40 60 80 100 120 140 Q [m³/h]

8

12

16

20

24

28

32

36

40

H[m]

TP, TPE 10060 Hz-370/2

-300/2

-230/2

0 20 40 60 80 100 120 140 Q [m³/h]

4

6

8

10

12

14

16

P2[kW]

-370/2

-300/2

-230/2

0 20 40 60 80 100 120 140 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

-230/2

-300/2, -370/2

0 20 40 60 80 100 120 140 Q [m³/h]

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 Q [l/s]

0 1 2 3 4 v [m/s]

-370/2-300/2

-230/2

0 40 80 120 160 200 Q [m³/h]

20

25

30

35

40

45

50

55

60

65

70

75

H[m]

TP, TPE 10060 Hz

-350/2

-380/2

-700/2

-630/2

-530/2

0 40 80 120 160 200 Q [m³/h]

10

15

20

25

30

35

40

45

P2[kW]

-350/2-380/2

-700/2

-630/2

-530/2

0 40 80 120 160 200 Q [m³/h]

0

4

8

12

16

20

24[m]

NPSH

-350, -380/2

-530/2, -630/2, -700/2

0 40 80 120 160 200 Q [m³/h]

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 50 60 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-350/2

-380/2

-700/2

-630/2-530/2

Page 97: TP, TPD, TPE - Databook

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22DN 100

2-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

9 3

40

6

TP 100 -230/2 -300/2 -370/2 -350/2 -380/2 -530/2 -630/2 -700/2TPD ● ● ● ● ● ● ● ●TPE ● ● ● ● ● - - -TPED - - - - - - - -Series 300 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - -3~ TP 132 160 160 160 180 200 200 2251~ TPE - - - - - - - -3~ TPE 132 160 160 160 180 - - -

P21~/3~ TP [kW] -/7.5 -/11 -/15 -/18.5 -/22 -/30 -/37 -/451~/3~ TPE [kW] -/7.5 -/11 -/15 -/18.5 -/22 -/- -/- -/-

PN PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]D1 [mm] 100 100 100 100 100 100 100 100

AC1~/3~ TP [mm] -/260 -/314 -/314 -/314 -/314 -/407 -/407 -/4391~/3~ TPE [mm] -/260 -/314 -/314 -/314 -/314 -/- -/- -/-

AD1~/3~ TP [mm] -/159 -/204 -/204 -/204 -/204 -/310 -/310 -/3381~/3~ TPE [mm] -/213 -/308 -/308 -/308 -/308 -/- -/- -/-

AE 1~/3~ TPE [mm] 145 210 210 210 210 - - -AF 1~/3~ TPE [mm] 145 210 210 210 210 - - -P [mm] 300 350 350 350 350 400 400 450B1 ★ [mm] 156/347 156/347 156/347 190/414 190/414 201/443 201/443 201/443B2 ★ [mm] 124/332 124/332 124/332 151/395 151/395 173/429 173/429 173/429B3 [mm] 400 400 400 470 470 500 500 500

B4 ★TP [mm] 159/350 204/375 204/375 204/414 204/414 300/451 300/451 325/475TPE [mm] 213/- 308/- 308/- 308/- 308/- -/- -/- -/-

C1 ★ [mm] 144/480 144/480 144/480 230/550 230/550 230/550 230/550 230/550C5 ★ [mm] 250/104 250/104 250/104 275/110 275/110 275/110 275/110 275/110C6 [mm] 175 175 175 230 230 230 230 230L1 [mm] 500 500 500 550 550 550 550 550H1 [mm] 140 140 140 140 140 140 140 140H2 [mm] 245 275 275 270 270 307 307 337

H31~/3~ TP [mm] -/764 -/886 -/886 -/925 -/925 -/1058 -/1058 -/11851~/3~ TPE [mm] -/764 -/886 -/886 -/925 -/951 -/- -/- -/-

H4 [mm] - 35 35 35 35 35 35 35M [mm] M16 M16 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

97

Page 98: TP, TPD, TPE - Databook

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98

22DN 32

4-pole, PN 6, 10, 16

22. Performance curves/technical data

TP, TPD, TPE, 4-pole, PN 6, 10, 16

TP, TPD, TPE 32-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

46

05

04

TM

02

50

47

48

10

0 2 4 6 8 10 Q [m³/h]

0

1

2

3

4

5

6

7

8

9

H[m]

TP, TPE 3260 Hz-80/4

-40/4

0 2 4 6 8 10 Q [m³/h]

0.00

0.02

0.04

0.06

0.08

0.10

0.12

0.14

0.16

P2[kW]

-40/4

-80/4

0 2 4 6 8 10 Q [m³/h]

0.0

0.5

1.0

1.5

2.0

2.5

3.0

3.5[m]

NPSH

-40/4 -80/4

0 2 4 6 8 10 Q [m³/h]

20

25

30

35

40

45

50

55

60

65

Eta[%]

0 1 2 3 Q [l/s]

0 1 2 3 v [m/s]

-80/4 -40/4

0 2 4 6 8 10 12 Q [m³/h]

6

8

10

12

14

16

18

20

H[m]

TP, TPE 3260 Hz

-190/4

-120/4

-140/4

0 2 4 6 8 10 12 Q [m³/h]

0.0

0.2

0.4

0.6

0.8

1.0

1.2

P2[kW]

-190/4

-120/4

-140/4

0 2 4 6 8 10 12 Q [m³/h]

0.0

0.5

1.0

1.5

2.0

2.5

[m]NPSH

0 2 4 6 8 10 12 Q [m³/h]

20

25

30

35

40

45

50

Eta[%]

0 1 2 3 Q [l/s]

0 1 2 3 v [m/s]

-120/4

-140/4

-190/4

Page 99: TP, TPD, TPE - Databook

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22DN 32

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 32 -40/4 -80/4 -120/4 -140/4 -190/4TPD - - ● ● ●TPE - - - - ●TPED - - - - -Series 200 200 300 300 300

IEC size

1~ TP - - - - -3~ TP 71 71 80 80 901~ TPE - - - - -3~ TPE - - - - 90

P21~/3~ TP [kW] -/0.12 -/0.25 -/0.55 -/0.75 -/1.11~/3~ TPE [kW] -/- -/- -/- -/- -/1.1

PN PN6/10 PN6/10 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120]

D1 [mm] 32 32 32 32 32

AC1~/3~ TP [mm] -/128 -/125 -/141 -/178 -/1781~/3~ TPE [mm] -/- -/- -/- -/- -/122

AD1~/3~ TP [mm] -/387 -/395 -/109 -/110 -/1101~/3~ TPE [mm] -/- -/- -/- -/- -/158

AE 1~/3~ TPE [mm] - - - - 132AF 1~/3~ TPE [mm] - - - - 132P [mm] - - 200 200 200B1 ★ [mm] 75/- 102/- 144/321 144/321 144/321B2 ★ [mm] 75/- 102/- 144/321 144/321 144/321B3 [mm] - - 355 355 355

B4 ★TP [mm] 387/- 395/- 144/321 144/321 144/321TPE [mm] -/- -/- -/- -/- 167/-

C1 ★ [mm] 80/- 80/- 144/435 144/435 144/435C5 ★ [mm] 110 140 220/46 220/46 220/46C6 [mm] - - 175 175 175L1 [mm] 220 280 440 440 440H1 [mm] 68 79 100 100 100H2 [mm] 142 137 156 156 156

H31~/3~ TP [mm] -/401 -/407 -/487 -/537 -/4901~/3~ TPE [mm] -/- -/- -/- -/- -/537

H4 [mm] - - - - -M [mm] M12 M12 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

99

Page 100: TP, TPD, TPE - Databook

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100

22DN 40

4-pole, PN 6, 10, 16

TP, TPD, TPE 40-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

48

05

04

TM

02

50

49

48

10

0 2 4 6 8 10 12 14 16 18Q [m³/h]

0

1

2

3

4

5

6

7

8

H[m]

TP, TPE 4060 Hz-80/4

-40/4

0 2 4 6 8 10 12 14 16 18Q [m³/h]

0.0

0.1

0.2

0.3

0.4

0.5

P2[kW]

-80/4

-40/4

0 2 4 6 8 10 12 14 16 Q [m³/h]

0.0

0.5

1.0

1.5

2.0

2.5

3.0

3.5

4.0[m]

NPSH

-80/4

-40/4

0 2 4 6 8 10 12 14 16 Q [m³/h]

20

25

30

35

40

45

50

55

60

65

Eta[%]

0 1 2 3 4 5 Q [l/s]

0 1 2 3 v [m/s]

-80/4

-40/4

0 4 8 12 16 20 Q [m³/h]

6

8

10

12

14

16

18

20

22

24

H[m]

TP, TPE 4060 Hz

-120/4

-160/4

-190/4

-220/4

0 4 8 12 16 20 Q [m³/h]

0.0

0.4

0.8

1.2

1.6

2.0

P2[kW]

-120/4

-160/4

-190/4

-220/4

0 4 8 12 16 20 Q [m³/h]

0.0

0.5

1.0

1.5

2.0

2.5

3.0

[m]NPSH

0 4 8 12 16 20 Q [m³/h]

20

25

30

35

40

45

50

Eta[%]

0 2 4 6 Q [l/s]

0 1 2 3 4 v [m/s]

-120/4

-160/4-190/4

-220/4

Page 101: TP, TPD, TPE - Databook

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22DN 40

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 40 -40/4 -80/4 -120/4 -160/4 -190/4 -220/4TPD - - ● ● ● ●TPE - - ● ● ● ●TPED - - - - - -Series 200 200 300 300 300 300

IEC size

1~ TP - - - - - -3~ TP 71 80 80 90 90 1001~ TPE - - - - - -3~ TPE - - 80 90 90 100

P21~/3~ TP [kW] -/0.25 -/0.55 -/0.75 -/1.1 -/1.5 -/2.21~/3~ TPE [kW] -/- -/- -/0.75 -/1.1 -/1.5 -/2.2

PN PN 6/10 PN 6/10 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 40 40 40 40 40 40

AC1~/3~ TP [mm] -/142 -/142 -/178 -/178 -/178 -/1981~/3~ TPE [mm] -/- -/- -/141 -/122 -/178 -/198

AD1~/3~ TP [mm] -/109 -/109 -/110 -/110 -/110 -/1201~/3~ TPE [mm] -/- -/- -/140 -/158 -/167 -/177

AE 1~/3~ TPE [mm] - - 105 132 132 132AF 1~/3~ TPE [mm] - - 105 132 132 132P [mm] - - 200 200 200 250B1 ★ [mm] 85/- 100/- 149/325 149/325 149/325 149/325B2 ★ [mm] 75/- 100/- 144/321 144/321 144/321 144/321B3 [mm] - - 355 355 355 355

B4 ★TP [mm] 109/- 109/- 149/325 149/325 149/325 149/325TPE [mm] -/- -/- 149/- 167/- 167/- 177/-

C1 ★ [mm] 120/- 120/- 144/435 144/435 144/435 144/435C5 ★ [mm] 125 125 220/108 220/108 220/108 220/108C6 [mm] - - 175 175 175 175L1 [mm] 250 250 440 440 440 440H1 [mm] 67 75 110 110 110 110H2 [mm] 132 135 158 158 158 186

H31~/3~ TP [mm] -/390 -/441 -/549 -/549 -/589 -/6311~/3~ TPE [mm] -/- -/- -/499 -/502 -/589 -/631

H4 [mm] - - - - - -M [mm] M12 M12 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

101

Page 102: TP, TPD, TPE - Databook

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102

22DN 50

4-pole, PN 6, 10, 16

TP, TPD, TPE 50-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

50

48

10

TM

02

50

51

48

10

0 4 8 12 16 20 24 28 Q [m³/h]

0

2

4

6

8

10

12

14

16

H[m]

TP, TPE 5060 Hz

-110/4

-120/4

-140/4

-80/4

-40/4

0 4 8 12 16 20 24 28 Q [m³/h]

0.0

0.2

0.4

0.6

0.8

1.0

1.2

1.4

P2[kW]

-110/4

-120/4

-140/4

-80/4

-40/4

0 4 8 12 16 20 24 28 Q [m³/h]

0.00.51.01.52.02.53.03.54.0[m]

NPSH

-110/4, -120/4, -140/4

-80/4

-40/4

0 4 8 12 16 20 24 28 Q [m³/h]

303540455055606570

Eta[%]

0 2 4 6 8 Q [l/s]

0 1 2 3 v [m/s]

-110/4

-120/4

-140/4-80/4

-40/4

0 5 10 15 20 25 30 35 40 45Q [m³/h]

8

12

16

20

24

28

32

36

H[m]

TP, TPE 5060 Hz

-190/4

-240/4

-270/4

-340/4

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

1

2

3

4

5

6

P2[kW]

-190/4

-240/4

-270/4

-340/4

0 5 10 15 20 25 30 35 40 Q [m³/h]

0

1

2

3

4

5

6

7[m]

NPSH

0 5 10 15 20 25 30 35 40 Q [m³/h]

30

35

40

45

50

55

60

65

Eta[%]

0 2 4 6 8 10 12 Q [l/s]

0 1 2 3 4 5 v [m/s]

-190/4-240/4 -270/4 -340/4

Page 103: TP, TPD, TPE - Databook

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22DN 50

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 50 -40/4 -80/4 -110/4 -120/4 -140/4 -190/4 -240/4 -270/4 -340/4TPD - - ● ● ● ● ● ● ●TPE - - ● ● ● ● ● ● ●TPED - - - - - - - - -Series 200 200 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - - -3~ TP 71 80 80 90 90 100 100 112 1321~ TPE - - - - - - - - -3~ TPE - - 80 90 90 100 100 112 132

P21~/3~ TP [kW] -/0.25 -/0.55 -/0.75 -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.51~/3~ TPE [kW] -/- -/- -/0.75 -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.5

PN PN 6/10 PN 6/10 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 50 50 50 50 50 50 50 50 50

AC1~/3~ TP [mm] -/142 -/142 -/178 -/178 -/178 -/198 -/198 -/220 -/2601~/3~ TPE [mm] -/- -/- -/141 -/122 -/178 -/198 -/198 -/220 -/260

AD1~/3~ TP [mm] -/109 -/109 -/110 -/110 -/110 -/120 -/120 -/134 -/1591~/3~ TPE [mm] -/- -/- -/140 -/158 -/167 -/177 -/177 -/188 -/213

AE 1~/3~ TPE [mm] - - 105 132 132 132 132 145 145AF 1~/3~ TPE [mm] - - 105 132 132 132 132 145 145P [mm] - - 200 200 200 250 250 250 300B1 ★ [mm] 90/- 110/- 180/386 180/386 180/386 180/386 180/386 180/386 180/386B2 ★ [mm] 75/- 100/- 164/379 164/379 164/379 164/379 164/379 164/379 164/379B3 [mm] - - 420 420 420 420 420 420 420

B4 ★TP [mm] 109/- 109/- 180/386 180/386 180/386 180/386 180/386 180/386 180/386TPE [mm] -/- -/- -/- 180/- 180/- 180/- 180/- 188/- 213/-

C1 ★ [mm] 120/- 120/- 144/500 144/500 144/500 144/500 144/500 144/500 144/500C5 ★ [mm] 140 140 220/123 220/123 220/123 220/123 220/123 220/123 220/123C6 [mm] - - 175 175 175 175 175 175 175L1 [mm] 280 280 440 440 440 440 440 440 440H1 [mm] 82 82 115 115 115 115 115 115 115H2 [mm] 136 140 167 167 167 195 195 195 234

H31~/3~ TP [mm] -/409 -/453 -/563 -/563 -/563 -/645 -/645 -/682 -/7281~/3~ TPE [mm] -/- -/- -/513 -/516 -/603 -/645 -/645 -/682 -/728

H4 [mm] - - - - - - - - -M [mm] M12 M12 M16 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

103

Page 104: TP, TPD, TPE - Databook

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104

22DN 65

4-pole, PN 6, 10, 16

TP, TPD, TPE 65-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

52

48

10

TM

02

50

53

48

10

0 5 10 15 20 25 30 35 40 45Q [m³/h]

0

2

4

6

8

10

12

14

16

H[m]

TP, TPE 6560 Hz

-130/4

-150/4

-80/4

-40/4

0 5 10 15 20 25 30 35 40 45Q [m³/h]

0.0

0.4

0.8

1.2

1.6

2.0

2.4

P2[kW]

-150/4

-130/4

-80/4

-40/4

0 5 10 15 20 25 30 35 40 45Q [m³/h]

0.0

0.5

1.0

1.5

2.0

2.5

3.0

3.5[m]

NPSH

-130/4, -150/4

-80/4

-40/4

0 5 10 15 20 25 30 35 40 45Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 2 4 6 8 10 12 Q [l/s]

0.0 0.5 1.0 1.5 2.0 2.5 3.0 v [m/s]

-130/4-150/4

-80/4

-40/4

0 10 20 30 40 50 60 Q [m³/h]

8

12

16

20

24

28

32

36

H[m]

TP, TPE 6560 Hz

-190/4

-230/4

-310/4

-330/4

0 10 20 30 40 50 60 Q [m³/h]

0

1

2

3

4

5

6

7

P2[kW]

-190/4

-230/4

-310/4

-330/4

0 10 20 30 40 50 60 Q [m³/h]

0

1

2

3

4

[m]NPSH

0 10 20 30 40 50 60 Q [m³/h]

35

40

45

50

55

60

65

70

Eta[%]

0 5 10 15 Q [l/s]

0 1 2 3 4 5 v [m/s]

-190/4-230/4

-310/4

-330/4

Page 105: TP, TPD, TPE - Databook

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22DN 65

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

02

86

32

50

04

- T

M0

2 8

63

1 5

00

4

TP 65 -40/4 -80/4 -130/4 -150/4 -190/4 -230/4 -310/4 -330/4TPD - - ● ● ● ● ● ●TPE - - ● ● ● ● ● ●TPED - - - - - - - -Series 200 200 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - -3~ TP 71 90 90 100 100 112 132 1321~ TPE - - - - - - - -3~ TPE - - 90 100 100 112 132 160

P21~/3~ TP [kW] -/0.37 -/1.1 -/1.5 -/2.2 -/3 -/4 -/5.5 -/7.51~/3~ TPE [kW] -/- -/- -/1.5 -/2.2 -/3 -/4 -/5.5 -/7.5

PN PN 6/10 PN 6/10 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 65 65 65 65 65 65 65 65

AC1~/3~ TP [mm] -/142 -/175 -/178 -/198 -/198 -/220 -/260 -/2601~/3~ TPE [mm] -/- -/- -/178 -/198 -/198 -/220 -/260 -/260

AD1~/3~ TP [mm] -/125 -/125 -/110 -/120 -/120 -/134 -/159 -/1591~/3~ TPE [mm] -/- -/- -/167 -/177 -/177 -/188 -/213 -/213

AE 1~/3~ TPE [mm] - - 132 132 132 145 145 145AF 1~/3~ TPE [mm] - - 132 132 132 145 145 145P [mm] - - 200 250 250 250 300 300B1 ★ [mm] 125/- 125/- 178/349 178/349 178/349 178/349 178/349 178/349B2 ★ [mm] 100/- 100/- 164/383 164/383 164/383 164/383 164/383 164/383B3 [mm] - - 440 440 440 440 440 440

B4 ★TP [mm] 125/- 125/- 178/383 178/383 178/383 178/383 178/383 178/383TPE [mm] -/- -/- 178/- 178/- 178/- 188/- 213/- 213/-

C1 ★ [mm] 160/- 160/- 144/520 144/520 144/520 144/520 144/520 144/520C5 ★ [mm] 170 170 238/111 238/111 238/111 238/111 238/111 238/111C6 [mm] - - 175 175 175 175 175 175L1 [mm] 340 340 475 475 475 475 475 475H1 [mm] 97 97 125 125 125 125 125 125H2 [mm] 136 158 166 194 194 194 233 233

H31~/3~ TP [mm] -/424 -/536 -/612 -/654 -/654 -/691 -/737 -/7871~/3~ TPE [mm] -/- -/- -/612 -/654 -/654 -/691 -/749 -/817

H4 [mm] - - - - - - - 35M [mm] M16 M16 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

105

Page 106: TP, TPD, TPE - Databook

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106

22DN 80

4-pole, PN 6, 10, 16

TP, TPD, TPE 80-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

54

48

10

TM

02

87

72

16

04

0 10 20 30 40 50 60 70 Q [m³/h]

0

2

4

6

8

10

12

14

16

18

20

H[m]

TP, TPE 8060 Hz-170/4

-150/4

-110/4

-80/4

-40/4

0 10 20 30 40 50 60 70 Q [m³/h]

0.00.51.01.52.02.53.03.54.0

P2[kW]

-170/4

-150/4

-110/4

-80/4

-40/4

0 10 20 30 40 50 60 70 Q [m³/h]

0

1

2

3

4

5

6

7[m]

NPSH

-150/4, -170/4

-110/4

-80/4

-40/4

0 10 20 30 40 50 60 70 Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 5 10 15 20 Q [l/s]

0 1 2 3 4 v [m/s]

-170/4

-150/4

-110/4

-80/4

-40/4

0 20 40 60 80 100 120 140 Q [m³/h]

10

15

20

25

30

35

40

45

50

55

H[m]

TP, TPE 8060 Hz-510/4

-460/4

-410/4

-340/4

-280/4

-230/4

0 20 40 60 80 100 120 140 Q [m³/h]

0

4

8

12

16

20

24

P2[kW]

-510/4

-460/4

-410/4

-340/4

-280/4-230/4

0 20 40 60 80 100 120 140 Q [m³/h]

0

1

2

3

4

5

6

7[m]

NPSH

-280/4, -340/4, -410/4

-230/4

-460/4, -510/4

0 20 40 60 80 100 120 140 Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 10 20 30 40 Q [l/s]

0 2 4 6 8 v [m/s]

-510/4

-460/4-410/4

-340/4

-280/4

-230/4

Page 107: TP, TPD, TPE - Databook

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22DN 80

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

9 3

40

6

TP 80 -40/4 -80/4 -110/4 -150/4 -170/4 -230/4 -280/4 -340/4 -410/4 -460/4 -510/4TPD - - ● ● ● ● ● ● ● ● ●TPE - - ● ● ● ● ● ● ● ● -TPED - - - - - - - - - - -Series 200 200 300 300 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - - - - -3~ TP 80 90 100 100 112 132 132 160 160 180 1801~ TPE - - - - - - - - - - -3~ TPE - - 100 112 112 132 160 160 160 180 -

P21~/3~ TP [kW] -/0.75 -/1.5 -/2.2 -/3 -/4 -/5.5 -/7.5 -/11 -/15 -/18.5 -/221~/3~ TPE [kW] -/- -/- -/2.2 -/3 -/4 -/5.5 -/7.5 -/11 -/15 -/18.5 -/-

PN PN 6/PN 10 PN 6/PN 10 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 80 80 80 80 80 80 80 80 80 80 80

AC1~/3~ TP [mm] -/178 -/175 -/198 -/198 -/220 -/267 -/260 -/314 -/314 -/368 -/3681~/3~ TPE [mm] -/- -/- -/198 -/198 -/220 -/260 -/260 -/314 -/314 -/314 -/-

AD1~/3~ TP [mm] -/110 -/135 -/120 -/120 -/134 -/167 -/159 -/204 -/204 -/286 -/2861~/3~ TPE [mm] -/- -/- -/177 -/177 -/188 -/213 -/213 -/308 -/308 -/308 -/-

AE 1~/3~ TPE [mm] - - 132 132 145 145 145 210 210 210 -/-AF 1~/3~ TPE [mm] - - 132 132 145 145 145 210 210 210 -/-P [mm] 115 - 250 250 250 300 300 350 350 350 350B1 ★ [mm] 130/- 135/- 176/366 187/416 187/416 243/491 243/491 243/491 243/491 243/491 243/491B2 ★ [mm] 100/- 100/- 144/354 162/405 162/405 226/480 226/480 226/480 226/480 226/480 226/480B3 [mm] - - 400 470 470 470 470 470 470 470 470

B4 ★TP [mm] 130/- 135/- 176/366 187/416 187/416 243/491 243/491 243/491 243/491 262/491 262/491TPE [mm] -/- -/- 177/- 187/- 188/- 243/- 243/- 308/- 308/- 308/- -/-

C1 ★ [mm] 160/- 160/- 144/480 144/550 144/550 230/550 230/550 230/550 230/550 230/550 230/550C5 ★ [mm] 180 180 220/93 250/133 250/133 310/105 310/105 310/105 310/105 310/105 310/105C6 [mm] - - 175 175 175 350 350 350 350 350 350L1 [mm] 360 360 440 500 500 620 620 620 620 620 620H1 [mm] 107 107 115 115 115 140 140 140 140 140 140H2 [mm] 175 164 204 204 204 273 273 303 303 303 303

H31~/3~ TP [mm] -/563 -/592 -/654 -/654 -/691 -/786 -/842 -/914 -/958 -/958 -/10491~/3~ TPE [mm] -/- -/- -/654 -/654 -/691 -/792 -/872 -/914 -/958 -/984 -/-

H4 [mm] - - - - - - 35 35 35 35 35M [mm] M16 M16 M16 M16 M16 M16 M16 M16 M16 M16 M16

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

107

Page 108: TP, TPD, TPE - Databook

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108

22DN 100

4-pole, PN 6, 10, 16

TP, TPD, TPE 100-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

50

55

32

13

0 20 40 60 80 100 120 Q [m³/h]

0

2

4

6

8

10

12

14

16

18

20

H[m]

TP, TPE 10060 Hz

-150/4

-100/4

-170/4

-130/4

-80/4

-40/4

0 20 40 60 80 100 120 Q [m³/h]

0

1

2

3

4

5

6

P2[kW]

-150/4

-100/4

-170/4

-130/4

-80/4

-40/4

0 20 40 60 80 100 120 Q [m³/h]

0

2

4

6

8

10

12

[m]NPSH

-150/4

-100/4

-130/4, -170/4 -80/4

-40/4

0 20 40 60 80 100 120 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 5 10 15 20 25 30 35 Q [l/s]

0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 v [m/s]

-150/4-100/4

-170/4-130/4

-80/4

-40/4

Page 109: TP, TPD, TPE - Databook

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22DN 100

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

9 3

40

6

TP 100 -40/4 -80/4 -100/4 -130/4 -150/4 -170/4TPD - - ● ● ● ●TPE - - ● ● ● ●TPED - - - - - -Series 200 200 300 300 300 300

IEC size

1~ TP - - - - - -3~ TP 90 100 100 112 132 1321~ TPE - - - - - -3~ TPE - - 112 112 113 132

P21~/3~ TP [kW] -/1.1 -/2.2 -/3 -/4 -/5.5 -/5.51~/3~ TPE [kW] -/- -/- -/3 -/4 -/5.5 -/5.5

PN PN6/PN 10 PN 6/PN 10 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;140] [-25;140] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 100 100 100 100 100 100

AC1~/3~ TP [mm] -/175 -/175 -/198 -/220 -/260 -/2601~/3~ TPE [mm] -/- -/- -/198 -/220 -/260 -/260

AD1~/3~ TP [mm] -/174 -/174 -/120 -/134 -/159 -/1591~/3~ TPE [mm] -/- -/- -/177 -/188 -/213 -/213

AE 1~/3~ TPE [mm] - - 132 145 145 145AF 1~/3~ TPE [mm] - - 132 145 145 145P [mm] - - 250 250 300 300B1 ★ [mm] 174/- 174/- 190/414 201/443 190/414 201/443B2 ★ [mm] 120/- 120/- 151/395 173/429 151/395 173/429B3 [mm] - - 470 500 470 500

B4 ★TP [mm] 174/- 174/- 190/414 201/443 190/414 201/443TPE [mm] -/- -/- 190/- 201/- 213/- 213/-

C1 ★ [mm] 200/- 200/- 230/550 230/550 230/550 230/550C5 ★ [mm] 225 225 275/110 275/110 275/110 275/110C6 [mm] - - 230 230 230 230L1 [mm] 450 450 550 550 550 550H1 [mm] 122 122 140 140 140 140H2 [mm] 183 193 201 261 240 277

H31~/3~ TP [mm] -/585 -/650 -/676 -/773 -/759 -/7961~/3~ TPE [mm] -/- -/- -/676 -/773 -/759 -/796

H4 [mm] - - - - - -M [mm] M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

109

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110

22

TP, TPD, TPE 100-XXX/4

TM

02

87

73

32

13

0 20 40 60 80 100120140160180200 Q [m³/h]

10

15

20

25

30

35

40

45

50

H[m]

TP, TPE 10060 Hz

-350/4

-260/4

-470/4

-390/4

-340/4-290/4

-240/4

-200/4

0 20 40 60 80 100120140160180200 Q [m³/h]

0

5

10

15

20

25

30

P2[kW]

-350/4

-260/4

-470/4

-390/4

-340/4

-290/4

-240/4-200/4

0 20 40 60 80 100120140160180200 Q [m³/h]

0

2

4

6

8

10

12

14[m]

NPSH

-260/4

-290/4, -340/4

-200/4, -240/4, -350/4

-390/4, -470/4

0 20 40 60 80 100120140160180200 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 50 60 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-350/4-260/4

-470/4

-390/4-340/4

-290/4

-240/4-200/4

DN 100

4-pole, PN 6, 10, 16

Page 111: TP, TPD, TPE - Databook

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111

22

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

9 3

40

6

TP 100 -200/4 -240/4 -260/4 -290/4 -340/4 -350/4 -390/4 -470/4TPD ● ● ● ● ● ● ● ●TPE ● ● ● ● ● - ● -TPED - - - - - - - -Series 300 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - -3~ TP 132 160 160 160 180 160 180 2001~ TPE - - - - - - -3~ TPE 160 160 161 160 180 180 -

P21~/3~ TP [kW] -/7.5 -/11 -/11 -/15 -/18.5 -/22 -/22 -/301~/3~ TPE [kW] -/7.5 -/11 -/11 -/15 -/18.5 -/- -/22 -/-

PN PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 100 100 100 100 100 100 100 100

AC1~/3~ TP [mm] -/260 -/314 -/314 -/314 -/368 -/363 -/368 -/4081~/3~ TPE [mm] -/260 -/314 -/314 -/314 -/314 -/- -/350 -/-

AD1~/3~ TP [mm] -/159 -/204 -/204 -/204 -/286 -/262 -/286 -/3151~/3~ TPE [mm] -/213 -/308 -/308 -/308 -/308 -/- -/439 -/-

AE 1~/3~ TPE [mm] 145 210 210 210 210 - 164 -AF 1~/3~ TPE [mm] 145 210 210 210 210 - 164 -P [mm] 300 350 350 350 350 350 350 400B1 ★ [mm] 290/579 290/579 201/443 290/579 290/579 290/579 290/579 290/579B2 ★ [mm] 249/561 249/561 173/429 249/561 249/561 249/561 249/561 249/561B3 [mm] 600 600 500 600 600 600 600 600

B4 ★TP [mm] 290/579 290/579 204/443 290/579 290/579 290/579 290/579 300/579TPE [mm] 290/- 308/- 308/- 308/- 308/- -/- 439/- -/-

C1 ★ [mm] 230/680 230/680 230/550 230/680 230/680 230/680 230/680 230/680C5 ★ [mm] 335/110 335/110 275/110 335/110 335/110 335/110 335/110 335/110C6 [mm] 350 350 230 350 350 350 350 350L1 [mm] 670 670 550 670 670 670 670 670H1 [mm] 175 175 140 175 175 175 175 175H2 [mm] 254 308 307 308 308 308 308 308

H31~/3~ TP [mm] -/858 -/954 -/826 -/998 -/998 -/1093 -/1079 -/11281~/3~ TPE [mm] -/888 -/954 -/826 -/998 -/998 -/- -/1008 -/-

H4 [mm] - 35 35 35 35 35 35 35M [mm] M16 M16 M16 M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

DN 100

4-pole, PN 6, 10, 16

Page 112: TP, TPD, TPE - Databook

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112

22DN 125

4-pole, PN 6, 10, 16

TP, TPD, TPE 125-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

05

94

11 3

81

30 20 40 60 80 100 120 140 160 Q [m³/h]

3

4

5

6

7

8

9

10

11

12

13

14

15

H[m]

TP, TPE 12560 Hz-140/4

-120/4

-100/4

0 20 40 60 80 100 120 140 160 Q [m³/h]

0

1

2

3

4

5

P2[kW]

-100/4

-120/4

-140/4

0 20 40 60 80 100 120 140 160 Q [m³/h]

1.0

1.5

2.0

2.5

3.0

3.5

4.0

[m]NPSH

-100/4

-120/4

-140/4

0 20 40 60 80 100 120 140 160 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 50 Q [l/s]

0 1 2 3 v [m/s]

-140/4-120/4-100/4

Page 113: TP, TPD, TPE - Databook

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22DN 125

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

05

94

47

38

13

TP 125 -100/4 -120/4 -140/4TPD - - -TPE ● ● ●TPED - - -Series 300 300 300

IEC size

1~ TP - - -3~ TP 100 112 1321~ TPE - -3~ TPE 100 112 132

P21~/3~ TP [kW] -/3 -/4 -/5.51~/3~ TPE [kW] -/3 -/4 -/5.5

PN PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120]

D1 [mm] 125 125 125

AC1~/3~ TP [mm] -/198 -/220 -/2671~/3~ TPE [mm] -/198 -/220 -/260

AD1~/3~ TP [mm] -/120 -/134 -/1671~/3~ TPE [mm] -/177 -/188 -/213

AE 1~/3~ TPE [mm] -/132 -/145 -/145AF 1~/3~ TPE [mm] -/132 -/145 -/145P [mm] 250 250 300B1 ★ [mm] 243/- 243/- 243/-B2 ★ [mm] 193/- 193/- 193/-

B4 ★TP [mm] 232/- 232/- 232/-TPE [mm] 232/- 232/- 232/-

L1 [mm] 620 620 620H1 [mm] 210 210 210H2 [mm] -/225 -/225 -/225

H31~/3~ TP [mm] -/771 -/808 -/8281~/3~ TPE [mm] -/771 -/808 -/828

113

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114

22DN 125

4-pole, PN 6, 10, 16

TP, TPD, TPE 125-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

87

74

16

04

TM

02

87

75

32

13

0 20 40 60 80 100 120 140 160 Q [m³/h]

6

7

8

9

10

11

12

13

14

15

16

H[m]

TP, TPE 12560 Hz-160/4

-130/4

0 20 40 60 80 100 120 140 160 Q [m³/h]

2

3

4

5

6

7

8

P2[kW]

-160/4

-130/4

0 20 40 60 80 100 120 140 160 Q [m³/h]

0

1

2

3

4

5

6

[m]NPSH

-130/4, -160/4

0 20 40 60 80 100 120 140 160 Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 10 20 30 40 50 Q [l/s]

0 1 2 3 v [m/s]

-160/4

-130/4

0 40 80 120 160 200 240 Q [m³/h]

15

20

25

30

35

40

45

50

H[m]

TP, TPE 12560 Hz

-230/4

-490/4

-430/4

-360/4

-320/4

0 40 80 120 160 200 240 Q [m³/h]

5

10

15

20

25

30

35

40

P2[kW]

-230/4

-490/4

-430/4

-360/4-320/4

0 40 80 120 160 200 240 Q [m³/h]

1

2

3

4

5

6

7

[m]NPSH

-230/4

-320/4, -360/4, -430/4, -490/4

0 40 80 120 160 200 240 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 50 60 70 Q [l/s]

0 1 2 3 4 5 v [m/s]

-230/4

-490/4-430/4

-360/4

-320/4

Page 115: TP, TPD, TPE - Databook

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22DN 125

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

9 3

40

6

TP 125 -130/4 -160/4 -230/4 -320/4 -360/4 -430/4 -490/4TPD ● ● ● ● ● ● ●TPE ● ● ● ● ● ● ●TPED - - - - - - -Series 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - -3~ TP 132 132 160 180 180 200 2251~ TPE - - - - - - -3~ TPE 132 160 160 180 180 - -

P21~/3~ TP [kW] -/5.5 -/7.5 -/15 -/18.5 -/22 -/30 -/371~/3~ TPE [kW] -/5.5 -/7.5 -/15 -/18.5 -/22 -/- -/-

PN PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 125 125 125 125 125 125 125

AC1~/3~ TP [mm] -/267 -/267 -/314 -/368 -/368 -/408 -/4491~/3~ TPE [mm] -/260 -/260 -/314 -/314 -/350 -/- -/-

AD1~/3~ TP [mm] -/167 -/167 -/204 -/286 -/286 -/315 -/3381~/3~ TPE [mm] -/213 -/213 -/308 -/308 -/439 -/- -/-

AE 1~/3~ TPE [mm] -/145 -/145 -/210 -/210 -/164 - -AF 1~/3~ TPE [mm] -/145 -/145 -/210 -/210 -/164 - -P [mm] 300 300 350 350 350 400 450B1 ★ [mm] 250/537 250/537 250/537 271/566 271/566 271/566 271/566B2 ★ [mm] 220/518 220/518 220/518 243/552 243/552 243/552 243/552B3 [mm] 600 600 600 600 600 600 600

B4 ★TP [mm] 250/537 250/537 250/537 271/566 271/566 300/566 325/566TPE [mm] 250/- 250/- 308/- 308/- 439/- -/- -/-

C1 ★ [mm] 230/680 230/680 230/680 230/680 230/680 230/680 230/680C5 ★ [mm] 310/84 310/84 310/84 400/175 400/175 400/175 400/175C6 [mm] 300 300 300 350 350 350 350L1 [mm] 620 620 620 800 800 800 800H1 [mm] 215 215 215 215 215 215 215H2 [mm] 283 283 312.5 318 318 318 348

H31~/3~ TP [mm] -/870 -/908 -/1042.5 -/1048 -/1139 -/1178 -/12111~/3~ TPE [mm] -/877 -/969 -/1042.5 -/1074 -/1058 -/- -/-

H4 [mm] - 35 35 35 35 35 35M [mm] M16 M16 M16 M16 M16 M16 M16

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

115

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116

22DN 150

4-pole, PN 6, 10, 16

TP, TPD, TPE 150-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

02

87

76

23

12

0 40 80 120 160 200 240 280 320 360 Q [m³/h]

10

12

14

16

18

20

22

24

26

28

30

32

34

36

38

H[m]

TP, TPE 15060 Hz

-340/4

-300/4

-240/4

-210/4

-180/4

0 40 80 120 160 200 240 280 320 360 Q [m³/h]

5

10

15

20

25

30

35

P2[kW] -340/4

-300/4

-240/4

-210/4

-180/4

0 40 80 120 160 200 240 280 320 360 Q [m³/h]

2

3

4

5

6

7

8

[m]NPSH

0 40 80 120 160 200 240 280 320 360 Q [m³/h]

40

45

50

55

60

65

70

75

80

85

Eta[%]

0 20 40 60 80 100 Q [l/s]

0 1 2 3 4 5 6v [m/s]

-340/4

-300/4-240/4

-210/4-180/4

Page 117: TP, TPD, TPE - Databook

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22DN 150

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

53

48

34

06

- T

M0

3 5

34

9 3

40

6

TP 150 -180/4 -210/4 -240/4 -300/4 -340/4TPD ● ● ● ● ●TPE ● ● ● - -TPED - - - - -Series 300 300 300 300 300

IEC size

1~ TP - - - - -3~ TP 160 180 180 200 2251~ TPE - - - - -3~ TPE 160 180 180 - -

P21~/3~ TP [kW] -/15 -/18.5 -/22 -/30 -/371~/3~ TPE [kW] -/15 -/18.5 -/22 -/- -/-

PN PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 150 150 150 150 150

AC1~/3~ TP [mm] -/314 -/368 -/368 -/408 -/4421~/3~ TPE [mm] -/314 -/314 -/350 -/- -/-

AD1~/3~ TP [mm] -/204 -/286 -/286 -/315 -/3251~/3~ TPE [mm] -/308 -/308 -/439 -/- -/-

AE 1~/3~ TPE [mm] 210 210 164 -/- -/-AF 1~/3~ TPE [mm] 210 210 164 -/- -/-P [mm] 350 350 350 400 450B1 ★ [mm] 296/583 296/583 296/583 296/583 296/583B2 ★ [mm] 237/553 237/553 237/553 237/553 237/553B3 [mm] 600 600 600 600 600

B4 ★TP [mm] 296/583 296/583 296/583 300/583 325/583TPE [mm] 308/- 308/- 439/- -/- -/-

C1 ★ [mm] 230/680 230/680 230/680 230/680 230/680C5 ★ [mm] 400/153 400/153 400/153 400/153 400/153C6 [mm] 350 350 350 350 350L1 [mm] 800 800 800 800 800H1 [mm] 215 215 215 215 215H2 [mm] 321 321 321 321 351.5

H31~/3~ TP [mm] -/1052 -/1052 -/1133 -/1182 -/1215.51~/3~ TPE [mm] -/1052 -/1078 -/1062 -/- -/-

H4 [mm] 35 35 36 35 35M [mm] M16 M16 M16 M16 M16

B2B1D1

ACB3 AD

H4

C6 C5

H3

H2

H1

C1

L1

P

M

M

B4B4

AFAE AE AF

AD

L1

Rp 1/4

H1

H2

H3

C5

C1

B1 B2D1

ACADAD

MH

4

B4 B4P

AF

AE

117

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118

22DN 150

4-pole, PN 6, 10, 16

TP, TPD, TPE 150-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

05

00

47

06

11

TM

05

05

39

12

11

0 50 100 150 200 250 300 350 Q [m³/h]02468

101214161820222426

H[m]

TP, TPE 15060 Hz

-170/4

-190/4-230/4

-250/4

0 50 100 150 200 250 300 350 Q [m³/h]468

101214161820

P2[kW]

-170/4

-190/4

-230/4-250/4

0 50 100 150 200 250 300 350 Q [m³/h]0

2

4

6

8

10

12

14[m]

NPSH

-190/4-230/4

-170/4

-250/4

0 50 100 150 200 250 300 350 Q [m³/h]40455055606570758085

Eta[%]

0 20 40 60 80 100 Q [l/s]

0 1 2 3 4 5 v [m/s]

-170/4 -190/4-230/4

-250/4

0 50 100 150 200 250 300 350 400 Q [m³/h]0

10

20

30

40

50

60

70

80

90

H[m]

TP, TPE 15060 Hz

-440/4

-480/4-610/4

-700/4

0 50 100 150 200 250 300 350 400 Q [m³/h]0

20

40

60

80

100

P2[kW]

-440/4-480/4

-610/4

-700/4

0 50 100 150 200 250 300 350 400 Q [m³/h]0

2

4

6

8

10

[m]NPSH

-440/4

-480/4

-610/4

-700/4

0 50 100 150 200 250 300 350 400 Q [m³/h]40455055606570758085

Eta[%]

0 20 40 60 80 100 120 Q [l/s]

0 1 2 3 4 5 6 7v [m/s]

-440/4-480/4

-610/4

-700/4

Page 119: TP, TPD, TPE - Databook

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22DN 150

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

05

06

61

14

11 -

TM

05

06

62

14

11

TP 150 -170/4 -190/4 -230/4 -250/4 -440/4 -480/4 -610/4 -700/4TPD - - - - - - - -TPE ● ● ● - - - - -TPED - - - - - - - -Series 300 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - -3~ TP 160 160 180 180 225 250 280 2801~ TPE - - - - - - - -3~ TPE 160 160 180 - - - - -

P21~/3~ TP [kW] -/11 -/15 -/18.5 -/22 -/45 -/55 -/75 -/901~/3~ TPE [kW] -/11 -/15 -/18.5 -/- -/ - -/ - -/ - -/ -

PN PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120]

D1 [mm] 150 150 150 150 150 150 150 150

AC1~/3~ TP [mm] -/320 -/320 -/368 -/368 -/449 -/497 -/551 -/5511~/3~ TPE [mm] -/314 -/314 -/314 -/- -/ - -/ - -/ - -/ -

AD1~/3~ TP [mm] -/197 -/197 -/286 -/286 -/338 -/410 -/433 -/4331~/3~ TPE [mm] -/308 -/308 -/308 -/- -/ - -/ - -/ - -/ -

AE 1~/3~ TPE [mm] -/210 -/210 -/210 -/ - -/ - -/ - -/ - -/ -AF 1~/3~ TPE [mm] -/210 -/210 -/210 -/- -/ - -/ - -/ - -/ -P [mm] 350 350 350 350 450 550 550 550B1 ★ [mm] 295/- 295/- 295/- 295/- 373/- 373/- 373/- 373/-B2 ★ [mm] 240/- 240/- 240/- 240/- 333/- 333/- 333/- 333/-

B4 ★TP [mm] 294/- 294/- 294/- 294/- 388/- 388/- 388/- 388/-TPE [mm] 294/- 294/- 294/- -/ - -/ - -/ - -/ - -/ -

L1 [mm] 800 800 800 800 1000 1000 1000 1000H1 [mm] 250 250 250 250 250 250 250 250H2 [mm] 313 313 313 313 352 352 352 352

H31~/3~ TP [mm] -/1041 -/1081 -/1121 -/1151 -/1315 -/1349 -/1422 -/15321~/3~ TPE [mm] -/1041 -/1081 -/1165 -/- -/- -/- -/- -/-

TP 150-170/4TP 150-190/4TP 150-230/4TP 150-250/4

TP 150-440/4TP 150-480/4TP 150-610/4TP 150-700/4

119

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120

22DN 150

4-pole, PN 6, 10, 16

TP, TPE 150-XXX/4

Note: All QH-curves apply to single-head pumps. For further information, see page 81.

TM

03

46

52

24

06

0 50 100 150 200 250 300 350 Q [m³/h]

10

15

20

25

30

35

40

45

H[m]

TP, TPE 15060 Hz

-360/4

-400/4

0 50 100 150 200 250 300 350 Q [m³/h]

0

10

20

30

40

50

P2[kW]

-360/4

-400/4

0 50 100 150 200 250 300 350 Q [m³/h]

0

2

4

6

8

10

12

14[m]

NPSH

-360/4

-400/4

0 50 100 150 200 250 300 350 Q [m³/h]

45

50

55

60

65

70

75

80

85

Eta[%]

0 20 40 60 80 100 Q [l/s]

0 1 2 3 4 5 v [m/s]

-360/4-400/4

Page 121: TP, TPD, TPE - Databook

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22DN 150

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

86

23

21

07

TP 150 -360/4 -400/4TPD - -TPE - -TPED - -Series 300 300

IEC size

1~ TP - -3~ TP 200 2251~ TPE - -3~ TPE - -

P21~/3~ TP [kW] -/30 -/371~/3~ TPE [kW] -/- -/-

PN PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120]

D1 [mm] 150 150

AC1~/3~ TP [mm] -/408 -/4491~/3~ TPE [mm] -/- -/-

AD1~/3~ TP [mm] -/315 -/3381~/3~ TPE [mm] -/- -/-

AE 1~/3~ TPE [mm] -/- -/-AF 1~/3~ TPE [mm] -/- -/-P [mm] 400 450B1 ★ [mm] 335/- 335/-B2 ★ [mm] 288/- 288/-

B4 ★TP [mm] 335/- 335/-TPE [mm] -/- -/-

L1 [mm] 800 800H1 [mm] 235 235H2 [mm] 319 349

H31~/3~ TP [mm] -/1199 -/12321~/3~ TPE [mm] -/- -/-

121

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122

22DN 200

4-pole, PN 6, 10, 16

TP 200-XXX/4

TM

03

85

92

20

07

0 100 200 300 400 500 600 700 800Q [m³/h]

15

20

25

30

35

40

45

50

55

H[m]

TP, TPE 20060 Hz

-400/4

-440/4

-500/4

0 100 200 300 400 500 600 700 800Q [m³/h]

40

50

60

70

80

90

100

110

P2[kW]

-400/4

-440/4

-500/4

0 100 200 300 400 500 600 700 800Q [m³/h]

0

2

4

6

8

10

12

14[m]

NPSH

-400/4, -440/4, -500/4

0 100 200 300 400 500 600 700 800Q [m³/h]

45

50

55

60

65

70

75

80

85

Eta[%]

0 50 100 150 200 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-400/4-440/4

-500/4

Page 123: TP, TPD, TPE - Databook

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22DN 200

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

86

21

21

07

TP 200 -400/4 -440/4 -500/4TPD - - -TPE - - -TPED - - -Series 300 300 300

IEC size

1~ TP - - -3~ TP 280 280 3151~ TPE - - -3~ TPE - - -

P21~/3~ TP [kW] -/75 -/90 -/1101~/3~ TPE [kW] -/- -/- -/-

PN PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120]

D1 [mm] 200 200 200

AC1~/3~ TP [mm] -/551 -/551 -/6161~/3~ TPE [mm] -/ - -/ - -/-

AD1~/3~ TP [mm] -/433 -/433 -/5151~/3~ TPE [mm] -/- -/- -/-

AE 1~/3~ TPE [mm] - - -AF 1~/3~ TPE [mm] - - -P [mm] 550 550 660B1 ★ [mm] 393/- 393/- 393/-B2 ★ [mm] 328/- 328/- 328/-

B4 ★TP [mm] 432/- 432/- 495/-TPE [mm] -/- -/- -/-

L1 [mm] 900 900 900H1 [mm] 295 295 295H2 [mm] 377 377 407

H31~/3~ TP [mm] -/1492 -/1602 -/16141~/3~ TPE [mm] -/- -/- -/-

123

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124

22DN 200

4-pole, PN 6, 10, 16

TP 200-XXX/4

TM

03

85

93

41

08

0 100 200 300 400 500 600 700 800Q [m³/h]

10

20

30

40

50

60

70

80

H[m]

TP, TPE 20060 Hz

-430/4-490/4

-540/4

-600/4

-680/4

-770/4

0 100 200 300 400 500 600 700 800Q [m³/h]

20

40

60

80

100

120

140

160

P2[kW]

-430/4

-490/4

-540/4

-600/4

-680/4

-770/4

0 100 200 300 400 500 600 700 800Q [m³/h]

0

2

4

6

8

10

[m]NPSH

-430/4, -490/4, -540/4

-600/4, -680/4, -770/4

0 100 200 300 400 500 600 700 800Q [m³/h]

45

50

55

60

65

70

75

80

85

Eta[%]

0 50 100 150 200 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-430/4-490/4

-540/4-600/4

-680/4-770/4

Page 125: TP, TPD, TPE - Databook

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22DN 200

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

03

86

22

21

07

TP 200 -430/4 -490/4 -540/4 -600/4 -680/4 -770/4TPD - - - - - -TPE - - - - - -TPED - - - - - -Series 300 300 300 300 300 300

IEC size

1~ TP - - - - - -3~ TP 250 280 280 315 315 3151~ TPE - - - - - -3~ TPE - - - - - -

P21~/3~ TP [kW] -/55 -/75 -/90 -/110 -/132 -/1601~/3~ TPE [kW] -/- -/- -/- -/- -/- -/-

PN PN 16 PN 16 PN 16 PN 16 PN 16 PN 16Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120] [-25;120]

D1 [mm] 200 200 200 200 200 200

AC1~/3~ TP [mm] -/497 -/551 -/551 -/616 -/616 -/6161~/3~ TPE [mm] -/- -/- -/- -/- -/- -/-

AD1~/3~ TP [mm] -/433 -/433 -/433 -/515 -/515 -/5151~/3~ TPE [mm] -/- -/- -/- -/- -/- -/-

AE 1~/3~ TPE [mm] - - - - - -AF 1~/3~ TPE [mm] - - - - - -P [mm] 550 550 550 660 660 660B1 ★ [mm] 423/- 423/- 423/- 423/- 423/- 423/-B2 ★ [mm] 368/- 368/- 368/- 368/- 368/- 368/-

B4 ★TP [mm] 423/- 432/- 432/- 495/- 495/- 495/-TPE [mm] -/- -/- -/- -/- -/- -/-

L1 [mm] 1000 1000 1000 1000 1000 1000H1 [mm] 295 295 295 295 295 295H2 [mm] 382 382 382 412 412 412

H31~/3~ TP [mm] -/1424 -/1497 -/1607 -/1619 -/1784 -/17841~/3~ TPE [mm] -/- -/- -/- -/- -/- -/-

125

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126

22DN 200

4-pole, PN 6, 10, 16

TP 200-XXX/4

TM

05

05

41

12

11

TM

05

05

43

12

11

0 100 200 300 400 500 Q [m³/h]0

2

4

6

8

10

12

14

16

18

20

22

H[m]

TP, TPE 20060 Hz

-80/4

-110/4

-140/4

-190/4

-210/4

0 100 200 300 400 500 Q [m³/h]0

4

8

12

16

20

24

P2[kW]

-80/4-110/4

-140/4

-190/4

-210/4

0 100 200 300 400 500 Q [m³/h]02468

1012141618[m]

NPSH

-80/4

-110/4-140/4

-190/4-210/4

0 100 200 300 400 500 Q [m³/h]40455055606570758085

Eta[%]

0 20 40 60 80 100 120 140 160 Q [l/s]

0 1 2 3 4 5 v [m/s]

-80/4-110/4

-140/4

-190/4

-210/4

0 100 200 300 400 500 600 700 Q [m³/h]0

5

10

15

20

25

30

35

40

H[m]

TP, TPE 20060 Hz

-250/4

-280/4

-320/4

-360/4

-390/4

0 100 200 300 400 500 600 700 Q [m³/h]0

10

20

30

40

50

60

70

P2[kW]

-250/4-280/4

-320/4

-360/4

-390/4

0 100 200 300 400 500 600 700 Q [m³/h]02468

1012141618[m]

NPSH

-250/4-280/4

-320/4-360/4

-390/4

0 100 200 300 400 500 600 700 Q [m³/h]40455055606570758085

Eta[%]

0 20 40 60 80 100120140160180200 Q [l/s]

0 1 2 3 4 5 6 v [m/s]

-250/4-280/4

-320/4-360/4

-390/4

Page 127: TP, TPD, TPE - Databook

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22DN 200

4-pole, PN 6, 10, 16

Technical data

The dimension before the slash applies to the single-head pump and the dimension after the slash applies to the twin-head pump.

TM

05

06

63

32

12

- T

M0

5 0

66

4 1

411

TP 200 -80/4 -110/4 -140/4 -190/4 -210/4 -250/4 -280/4 -320/4 -360/4 -390/4TPD - - - - - - - - - -TPE ● ● ● ● - - - - - -TPED - - - - - - - - - -Series 300 300 300 300 300 300 300 300 300 300

IEC size

1~ TP - - - - - - - - - -3~ TP 132 160 160 180 180 200 225 225 250 2801~ TPE - - - - - - - - - -3~ TPE 132 160 160 180 - - - - - -

P21~/3~ TP [kW] -/7.5 -/11 -/15 -/18.5 -/22 -/30 -/37 -/45 -/55 -/751~/3~ TPE [kW] -/7.5 -/11 -/15 -/18.5 -/ - -/ - -/ - -/ - -/ - -/ -

PN PN16 PN16 PN16 PN16 PN16 PN16 PN16 PN16 PN16 PN16Tmin;Tmax [°C] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120] [-25.120]

D1 [mm] 200 200 200 200 200 200 200 200 150 150

AC1~/3~ TP [mm] -/267 -/320 -/320 -/368 -/368 -/408 -/449 -/449 -/497 -/5511~/3~ TPE [mm] -/260 -/314 -/314 -/314 -/ - -/ - -/ - -/ - -/ - -/ -

AD1~/3~ TP [mm] -/167 -/197 -/197 -/286 -/286 -/315 -/338 -/338 -/410 -/4331~/3~ TPE [mm] -/213 -/308 -/308 -/308 -/ - -/ - -/ - -/ - -/ - -/ -

AE 1~/3~ TPE [mm] -/145 -/210 -/210 -/210 -/ - -/ - -/ - -/ - -/ - -/ -AF 1~/3~ TPE [mm] -/145 -/210 -/210 -/210 -/ - -/ - -/ - -/ - -/ - -/ -P [mm] 300 350 350 350 350 400 450 450 550 550B1 ★ [mm] 296/- 363/- 363/- 363/- 363/- 348/- 348/- 348/- 348/- 348/-B2 ★ [mm] 237/- 283/- 283/- 283/- 283/- 288/- 288/- 288/- 288/- 288/-

B4 ★TP [mm] 296/- 359/- 359/- 359/- 359/- 363/- 363/- 363/- 363/- 363/-TPE [mm] 296/- 359/- 359/- 359/- -/- -/- -/- -/- -/- -/-

L1 [mm] 900 900 900 900 900 900 900 900 900 900H1 [mm] 280 280 280 280 280 280 280 280 280 280H2 [mm] -/336 -/336 -/336 -/336 -/336 -/331 -/361 -/361 -/361 -/361

H31~/3~ TP [mm] -/1026 -/1094 -/1134 -/1130 -/1160 -/1256 -/1298 -/1358 -/1397 -/14701~/3~ TPE [mm] -/1026 -/1094 -/1134 -/1174 -/ - -/ - -/ - -/ - -/ - -/ -

TP 200-80/4TP 200-110/4TP 200-140/4TP 200-190/4TP 200-210/4

TP 200-250/4TP 200-280/4TP 200-320/4TP 200-360/4TP 200-390/4

127

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128

22DN 250

4-pole, PN 6, 10

TP 250-XXX/4

TM

02

68

26

05

04

0 200 400 600 800 1000 Q [m³/h]

15

20

25

30

35

40

45

50

55

60

H[m]

TP 25060 Hz

-450/4

-530/4

-580/4

0 200 400 600 800 1000 Q [m³/h]

20

40

60

80

100

120

P2[kW]

-450/4

-530/4

-580/4

0 200 400 600 800 1000 Q [m³/h]

4

5

6

7

8

9

10

11[m]

NPSH

0 200 400 600 800 1000 Q [m³/h]

45

50

55

60

65

70

75

80

85

Eta[%]

0 100 200 300 Q [l/s]

0 2 4 6 v [m/s]

-580/4

-530/4

-450/4

Page 129: TP, TPD, TPE - Databook

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22DN 250

4-pole, PN 6, 10

Technical data

TM

02

83

49

50

04

TP 250 -450/4 -530/4 -580/4TPD - - -TPE - - -TPED - - -Series 400 400 400

IEC size

1~ TP - - -3~ TP 280 M 315 S 315 M1~ TPE - - -3~ TPE - - -

P2 [kW] 90 110 132PN PN 10 PN 10 PN 10Tmin;Tmax [°C] [-25;120] [-25;120] [-25;120]

D1D/D1S [mm] 250/300 250/300 250/300

AC [mm] 555 610 610AD [mm] 432 495 495P [mm] 550 660 660B1 [mm] 223 223 223B2 [mm] 635 635 635B4 [mm] 223 223 223B7 [mm] 647 647 647B8 [mm] 300 300 300B9 [mm] 335 335 335C2 [mm] 580 580 580C7 [mm] 520 520 520C8 [mm] 50 50 50∅ [mm] 20 20 20L1 [mm] 950 950 950L2 [mm] 190 190 190L3 [mm] 620 620 620H1 [mm] 310 310 310H2 [mm] 368 398 398H3 [mm] 1608 1640 1800

H1

H2

H3

D1 D1L3L1

C7

C2

C8

ø

B2

AD

Rp 3/8

C8

AC

L2

B1

P

Rp 3/8D S

B4

B7B9

B8

129

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130

22DN 100

2-pole, PN 25

22. Performance curves/technical data

TP, 2-pole, PN 25

TP 100-XXX/2

TM

02

68

53

05

04

TM

02

68

54

05

04

0 50 100 150 200 250 300 350 Q [m³/h]

40

50

60

70

80

90

100

110

120

130

140

H[m]

TP 10060 Hz

-1350/2

-1250/2

-1100/2

-1000/2

0 50 100 150 200 250 300 350 400Q [m³/h]

0

20

40

60

80

100

120

140

P2[kW]

-1350/2

-1250/2

-1100/2

-1000/2

0 50 100 150 200 250 300 350 400Q [m³/h]

2

4

6

8

10

12

14

16[m]

NPSH

0 50 100 150 200 250 300 350 400Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 20 40 60 80 100 Q [l/s]

0 2 4 6 8 10 12 v [m/s]

-1350/2-1250/2

-1100/2-1000/2

0 50 100 150 200 250 300 350 Q [m³/h]

60

80

100

120

140

160

180

200

220

240

H[m]

TP 10060 Hz

-2350/2

-2100/2

-1700/2

-1560/2

-1450/2

0 50 100 150 200 250 300 350 Q [m³/h]

40

80

120

160

200

240

P2[kW]

-2350/2

-2100/2

-1700/2

-1560/2-1450/2

0 50 100 150 200 250 300 350 400Q [m³/h]

2

4

6

8

10

12

14

16[m]

NPSH

0 50 100 150 200 250 300 350 400Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 20 40 60 80 100 Q [l/s]

0 2 4 6 8 10 12 v [m/s]

-2350/2-2100/2

-1700/2-1560/2

-1450/2

Page 131: TP, TPD, TPE - Databook

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22DN 100

2-pole, PN 25

Technical data

TM

02

83

50

50

04

TP 100 -1000/2 -1100/2 -1250/2 -1350/2 -1450/2 -1560/2 -1700/2 -2100/2 -2350/2TPD - - - - - - - - -TPE - - - - - - - - -TPED - - - - - - - - -Series 400 400 400 400 400 400 400 400 400

IEC size

1~ TP - - - - - - - - -3~ TP 280 S 280 M 315 S 315 M 315 S 315 M 315 L 315 L 3151~ TPE - - - - - - - - -3~ TPE - - - - - - - - -

P2 [kW] 75 90 110 132 110 132 160 200 250PN PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25Tmin;Tmax [°C] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150]

D1D/D1S [mm] 100/125 100/125 100/125 100/125 100/125 100/125 100/125 100/125 100/125

AC [mm] 540 555 610 610 610 610 610 610 710AD [mm] 433 432 495 495 495 495 495 495 690P [mm] 550 550 660 660 800 800 800 800 800B1 [mm] 180 180 180 180 180 180 180 180 180B2 [mm] 407 407 407 407 425 425 425 425 425B4 [mm] 227 227 320 320 312 312 312 312 490B5 [mm] 360 360 360 360 360 360 360 360 360B6 [mm] 335 335 335 335 335 335 335 335 335B7 [mm] 467 467 522 522 600 600 600 600 600B8 [mm] 192 192 192 192 200 200 200 200 200B9 [mm] 215 215 215 215 225 225 225 225 225C3 [mm] 320 320 320 320 320 320 320 320 320C4 [mm] 295 295 295 295 295 295 295 295 295C9 [mm] 489 489 489 489 606 606 606 606 606∅ [mm] 20 20 20 20 20 20 20 20 20L1 [mm] 543 543 543 543 660 660 660 660 660H1 [mm] 160 160 160 160 170 170 170 170 170H2 [mm] 315 315 336 336 303 303 303 303 303H3 [mm] 1295 1405 1428 1588 1405 1565 1565 1705 1703

B7

B4

D1 D1D S

AC

P

ø

C9

B6

C4

C3

B5

B1

B2

AD

Rp 1/2L1

H3

H2

H1

Rp 1/2

B8

B9

131

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132

22DN 100

4-pole, PN 25

22. Performance curves/technical data

TP, 4-pole, PN 25

TP 100-XXX/4

TM

02

68

58

05

04

TM

02

68

59

05

04

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

4

8

12

16

20

24

28

32

36

H[m]

TP 10060 Hz

-360/4

-330/4

-250/4

-210/4

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

4

6

8

10

12

14

16

18

P2[kW]

-360/4

-330/4

-250/4

-210/4

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

0

1

2

3

4

5

6

[m]NPSH

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

40

45

50

55

60

65

70

75

Eta[%]

0 10 20 30 40 50 Q [l/s]

0 1 2 3 4 5 6 v [m/s]

-360/4

-330/4

-250/4-210/4

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

20

25

30

35

40

45

50

55

60

H[m]

TP 10060 Hz

-590/4

-530/4

-450/4

-420/4

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

5

10

15

20

25

30

35

P2[kW]

-590/4

-530/4

-450/4-420/4

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

0

1

2

3

4

5

6

[m]NPSH

0 20 40 60 80 100 120 140 160 180 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 10 20 30 40 50 Q [l/s]

0 1 2 3 4 5 6 v [m/s]

-590/4

-530/4

-450/4

-420/4

Page 133: TP, TPD, TPE - Databook

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22DN 100

4-pole, PN 25

Technical data

TM

02

83

50

50

04

TP 100 -210/4 -250/4 -330/4 -360/4 -420/4 -450/4 -530/4 -590/4TPD - - - - - - - -TPE - - - - - - - -TPED - - - - - - - -Series 400 400 400 400 400 400 400 400

IEC size

1~ TP - - - - - - - -3~ TP 132 M 160 M 160 L 180 M 180 M 180 L 200 L 225 S1~ TPE - - - - - - - -3~ TPE - - - - - - - -

P2 [kW] 7.5 11 15 18.5 18.5 22 30 37PN PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25Tmin;Tmax [°C] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150]

D1D/D1S [mm] 100/125 100/125 100/125 100/125 100/125 100/125 100/125 100/125

AC [mm] 307 376 321 363 363 363 402 442AD [mm] 192 161 133 262 262 262 300 325P [mm] 400 400 400 400 450 450 450 550B1 [mm] 180 180 180 180 180 180 180 180B2 [mm] 407 407 407 407 425 425 425 425B4 [mm] 180 180 180 180 180 180 180 180B5 [mm] 360 360 360 360 360 360 360 360B6 [mm] 335 335 335 335 335 335 335 335B7 [mm] 401 401 401 401 429 429 429 475B8 [mm] 192 192 192 192 200 200 200 200B9 [mm] 225 225 225 225 225 225 225 225C3 [mm] 320 320 320 320 320 320 320 320C4 [mm] 295 295 295 295 295 295 295 295C9 [mm] 489 489 489 489 606 606 606 606∅ [mm] 20 20 20 20 20 20 20 20L1 [mm] 543 543 543 543 660 660 660 660H1 [mm] 160 160 160 160 170 170 170 170H2 [mm] 285 285 285 285 270 270 270 300H3 [mm] 843 945 973 1004 999 1050 1107 1119

B7

B4

D1 D1D S

AC

P

ø

C9

B6

C4

C3

B5

B1

B2

AD

Rp 1/2L1

H3

H2

H1

Rp 1/2

B8

B9

133

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134

22DN 125

4-pole, PN 25

TP 125-XXX/4

TM

02

68

60

05

04

TM

02

68

61

05

04

0 40 80 120 160 200 240 280 Q [m³/h]

8

12

16

20

24

28

32

36

40

H[m]

TP 12560 Hz

-370/4

-310/4

-270/4

-240/4

0 40 80 120 160 200 240 280 Q [m³/h]

5

10

15

20

25

30

P2[kW]

-370/4

-310/4

-270/4

-240/4

0 40 80 120 160 200 240 280 Q [m³/h]

0

1

2

3

4

5

6

[m]NPSH

0 40 80 120 160 200 240 280 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 20 40 60 80 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-370/4

-310/4

-270/4

-240/4

0 40 80 120 160 200 240 280 320 Q [m³/h]

10

20

30

40

50

60

70

H[m]

TP 12560 Hz

-620/4

-570/4

-500/4

-440/4

-350/4

0 40 80 120 160 200 240 280 320 Q [m³/h]

0

10

20

30

40

50

P2[kW]

-620/4

-570/4

-500/4

-440/4

-350/4

0 40 80 120 160 200 240 280 320 Q [m³/h]

0

2

4

6

8

10

[m]NPSH

0 40 80 120 160 200 240 280 320 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 20 40 60 80 100 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-620/4

-570/4-500/4

-440/4-350/4

Page 135: TP, TPD, TPE - Databook

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22DN 125

4-pole, PN 25

Technical data

TM

02

83

50

50

04

TP 125 -240/4 -270/4 -310/4 -370/4 -350/4 -440/4 -500/4 -570/4 -620/4TPD - - - - - - - - -TPE - - - - - - - - -TPED - - - - - - - - -Series 400 400 400 400 400 400 400 400 400

IEC size

1~ TP - - - - - - - - -3~ TP 160 L 180 M 180 L 200 L 180 L 200 L 225 S 225 M 250 M1~ TPE - - - - - - - - -3~ TPE - - - - - - - - -

P2 [kW] 15 18.5 22 30 22 30 37 45 55PN PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25Tmin;Tmax [°C] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150]

D1D/D1S [mm] 125/150 125/150 125/150 125/150 125/150 125/150 125/150 125/150 125/150

AC [mm] 321 363 363 402 363 402 442 442 495AD [mm] 133 262 262 300 262 300 325 325 392P [mm] 400 400 400 400 450 450 550 550 550B1 [mm] 200 200 200 200 200 200 200 200 200B2 [mm] 430 430 430 430 451 451 451 451 451B4 [mm] 200 200 200 200 200 200 200 200 200B5 [mm] 400 400 400 400 400 400 400 400 400B6 [mm] 360 360 360 360 360 360 360 360 360B7 [mm] 423 423 423 423 468 467 499 499 499B8 [mm] 200 200 200 200 224 224 224 224 224B9 [mm] 230 230 230 230 227 227 227 227 227C3 [mm] 360 360 360 360 360 360 360 360 360C4 [mm] 320 320 320 320 320 320 320 320 320C9 [mm] 536 536 536 536 606 606 606 606 606∅ [mm] 20 20 20 20 20 20 20 20 20L1 [mm] 590 590 590 590 660 660 660 660 660H1 [mm] 185 185 185 185 180 180 180 180 180H2 [mm] 287 287 287 287 283 283 313 313 313H3 [mm] 1000 1031 1082 1140 1073 1130 1142 1202 1310

B7

B4

D1 D1D S

AC

P

ø

C9

B6

C4

C3

B5

B1

B2

AD

Rp 1/2L1

H3

H2

H1

Rp 1/2

B8

B9

135

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22DN 150

4-pole, PN 25

TP 150-XXX/4

TM

02

68

63

05

04

0 50 100 150 200 250 300 350 400 450 Q [m³/h]

10

20

30

40

50

60

70

80

90

100

H[m]

TP 15060 Hz-930/4

-800/4

-710/4

-490/4

-450/4-370/4

-330/4

0 50 100 150 200 250 300 350 400 450 Q [m³/h]

0

20

40

60

80

100

120

P2[kW]

-930/4

-800/4

-710/4

-490/4-450/4

-370/4-330/4

0 50 100 150 200 250 300 350 400 450 Q [m³/h]

1

2

3

4

5

6

7

[m]NPSH

0 50 100 150 200 250 300 350 400 450 Q [m³/h]

40

45

50

55

60

65

70

75

80

85

Eta[%]

0 20 40 60 80 100 120 140Q [l/s]

0 2 4 6 v [m/s]

-930/4

-800/4

-710/4

-490/4-450/4-370/4

-330/4

Page 137: TP, TPD, TPE - Databook

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22DN 150

4-pole, PN 25

Technical data

TM

02

83

50

50

04

TP 150 -330/4 -370/4 -450/4 -490/4 -710/4 -800/4 -930/4TPD - - - - - - -TPE - - - - - - -TPED - - - - - - -Series 400 400 400 400 400 400 400

IEC size

1~ TP - - - - - - -3~ TP 200 L 225 S 225 M 250 M 280 M 315 S 315 M1~ TPE - - - - - - -3~ TPE - - - - - - -

P2 [kW] 30 37 45 55 90 110 132PN PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25Tmin;Tmax [°C] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150]

D1D/D1S [mm] 150/200 150/200 150/200 150/200 150/200 150/200 150/200

AC [mm] 402 442 442 495 555 610 610AD [mm] 300 325 325 392 432 495 495P [mm] 450 550 550 550 550 660 660B1 [mm] 230 230 230 230 235 235 235B2 [mm] 504 504 504 504 575 575 575B4 [mm] 230 230 230 230 235 252 252B5 [mm] 460 460 460 460 470 470 470B6 [mm] 400 400 400 400 410 410 410B7 [mm] 518 518 518 518 584 590 590B8 [mm] 229 229 229 229 260 260 260B9 [mm] 275 275 275 275 315 315 315C3 [mm] 420 420 420 420 420 420 420C4 [mm] 360 360 360 360 360 360 360C9 [mm] 676 676 676 676 823 823 823∅ [mm] 20 20 20 20 20 20 20L1 [mm] 740 740 740 740 900 900 900H1 [mm] 225 225 225 225 250 250 250H2 [mm] 293 323 323 323 325 355 355H3 [mm] 1185 1197 1257 1365 1505 1537 1697

B7

B4

D1 D1D S

AC

P

ø

C9

B6

C4

C3

B5

B1

B2

AD

Rp 1/2L1

H3

H2

H1

Rp 1/2

B8

B9

137

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138

22DN 200

4-pole, PN 25

TP 200-XXX/4

TM

02

68

64

05

04

TM

02

68

65

05

04

0 100 200 300 400 500 600 700 Q [m³/h]

10

15

20

25

30

35

40

45

50

55

H[m]

TP 20060 Hz

-560/4

-520/4

-370/4

-350/4

0 100 200 300 400 500 600 700 Q [m³/h]

20

30

40

50

60

70

80

P2[kW]

-560/4

-520/4

-370/4-350/4

0 100 200 300 400 500 600 700 Q [m³/h]

1

2

3

4

5

6

7

[m]NPSH

0 100 200 300 400 500 600 700 Q [m³/h]

40

45

50

55

60

65

70

75

80

Eta[%]

0 50 100 150 200 Q [l/s]

0 2 4 6 v [m/s]

-560/4

-520/4

-370/4

-350/4

0 100 200 300 400 500 600 700 800 Q [m³/h]

20

30

40

50

60

70

80

90

100

H[m]

TP 20060 Hz-930/4

-840/4

-760/4

-670/4

0 100 200 300 400 500 600 700 800 Q [m³/h]

0

40

80

120

160

200

P2[kW]

-930/4

-840/4

-760/4-670/4

0 100 200 300 400 500 600 700 800 Q [m³/h]

0

2

4

6

8

10

12

[m]NPSH

0 100 200 300 400 500 600 700 800 Q [m³/h]

40

45

50

55

60

65

70

75

80

85

Eta[%]

0 50 100 150 200 250 Q [l/s]

0 2 4 6 8 v [m/s]

-930/4

-840/4

-760/4

-670/4

Page 139: TP, TPD, TPE - Databook

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22DN 200

4-pole, PN 25

Technical data

TM

02

83

50

50

04

TP 200 -350/4 -370/4 -520/4 -560/4 -670/4 -760/4 -840/4 -930/4TPD - - - - - - - -TPE - - - - - - - -TPED - - - - - - - -Series 400 400 400 400 400 400 400 400

IEC size

1~ TP - - - - - - - -3~ TP 225 M 250 M 280 S 280 M 315 S 315 M 315 M 315 L1~ TPE - - - - - - - -3~ TPE - - - - - - - -

P2 [kW] 45 55 75 90 110 132 160 200PN PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25Tmin;Tmax [°C] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150]

D1D/D1S [mm] 200/250 200/250 200/250 200/250 200/250 200/250 200/250 200/250

AC [mm] 442 495 555 555 610 610 610 610AD [mm] 325 392 432 432 495 495 495 495P [mm] 450 550 550 550 660 660 660 660B1 [mm] 260 260 260 260 268 268 268 268B2 [mm] 560 560 560 560 640 640 640 640B4 [mm] 260 260 260 260 268 268 268 268B5 [mm] 520 520 520 520 535 535 535 535B6 [mm] 460 460 460 460 470 470 470 470B7 [mm] 572 572 573 573 645 645 645 645B8 [mm] 260 260 260 260 300 300 300 300B9 [mm] 300 300 300 300 340 340 340 340C3 [mm] 480 480 480 480 485 485 485 485C4 [mm] 420 420 420 420 420 420 420 420C9 [mm] 766 766 766 766 1013 1013 1013 1013∅ [mm] 20 20 20 20 20 20 20 20L1 [mm] 830 830 830 830 1100 1100 1100 1100H1 [mm] 250 250 250 250 290 290 290 290H2 [mm] 308 338 338 338 357 357 357 357H3 [mm] 1267 1405 1408 1518 1579 1739 1739 1879

B7

B4

D1 D1D S

AC

P

ø

C9

B6

C4

C3

B5

B1

B2

AD

Rp 1/2L1

H3

H2

H1

Rp 1/2

B8

B9

139

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140

22DN 250

4-pole, PN 25

TP 250-XXX/4

TM

02

68

66

05

04

TM

02

68

67

05

04

0 200 400 600 800 1000 Q [m³/h]

15

20

25

30

35

40

45

50

55

H[m]

TP 25060 Hz

-550/4

-500/4

-430/4

0 200 400 600 800 1000 Q [m³/h]

50

60

70

80

90

100

110

120

P2[kW]

-550/4

-500/4

-430/4

0 200 400 600 800 1000 Q [m³/h]

5

6

7

8

9

10

11

12[m]

NPSH

0 200 400 600 800 1000 Q [m³/h]

40

45

50

55

60

65

70

75

80

85

Eta[%]

0 100 200 300 Q [l/s]

0 1 2 3 4 5 6 v [m/s]

-550/4

-500/4-430/4

0 200 400 600 800 1000 1200 Q [m³/h]

30

40

50

60

70

80

90

100

110

H[m]

TP 25060 Hz-1020/4

-910/4

-800/4

-720/4

0 200 400 600 800 1000 1200 Q [m³/h]

40

80

120

160

200

240

280

P2[kW]

-1020/4

-910/4

-800/4

-720/4

0 200 400 600 800 1000 1200 Q [m³/h]

5

6

7

8

9

10

11

12

13[m]

NPSH

0 200 400 600 800 1000 1200 Q [m³/h]

40

45

50

55

60

65

70

75

80

85

Eta[%]

0 100 200 300 Q [l/s]

0 1 2 3 4 5 6 7 v [m/s]

-1020/4

-910/4

-800/4

-720/4

Page 141: TP, TPD, TPE - Databook

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22DN 250

4-pole, PN 25

Technical data

TM

02

83

50

50

04

TP 250 -430/4 -500/4 -550/4 -720/4 -800/4 -910/4 -1020/4TPD - - - - - - -TPE - - - - - - -TPED - - - - - - -Series 400 400 400 400 400 400 400

IEC size

1~ TP - - - - - - -3~ TP 280 M 315 S 315 M 315 M 315 L 315 3151~ TPE - - - - - - -3~ TPE - - - - - - -

P2 [kW] 90 110 132 160 200 250 315PN PN 25 PN 25 PN 25 PN 25 PN 25 PN 25 PN 25Tmin;Tmax [°C] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150] [0;150]

D1D/D1S [mm] 250/300 250/300 250/300 250/300 250/300 250/300 250/300

AC [mm] 555 610 610 610 610 710 710AD [mm] 432 495 495 495 495 690 690P [mm] 550 660 660 660 660 800 800B1 [mm] 303 303 303 303 303 303 303B2 [mm] 650 650 650 700 700 700 700B4 [mm] 303 303 303 303 303 360 360B5 [mm] 605 605 605 605 605 605 605B6 [mm] 540 540 540 540 540 540 540B7 [mm] 647 647 647 720 720 730 730B8 [mm] 300 300 300 330 330 330 330B9 [mm] 350 350 350 370 370 370 370C3 [mm] 550 550 550 550 550 550 550C4 [mm] 485 485 485 485 485 485 485C9 [mm] 855 855 855 1106 1106 1106 1106∅ [mm] 24 24 24 24 24 24 24L1 [mm] 950 950 950 1200 1200 1200 1200H1 [mm] 300 300 300 350 350 350 350H2 [mm] 368 398 398 373 373 413 413H3 [mm] 1598 1630 1790 1815 1955 1993 1993

B7

B4

D1 D1D S

AC

P

ø

C9

B6

C4

C3

B5

B1

B2

AD

Rp 1/2L1

H3

H2

H1

Rp 1/2

B8

B9

141

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142

TP, TPD, TPE23

23. Weights and shipping volume

TP, TPD, TPE, 2-pole, PN 6, 10, 16

Pump type

Connection Weights Shipping volume

[m3]D1D D1S

Net [kg] Gross [kg]

TP/TPD TPE TP/TPD TPE TP/TPD TPE

TP 32-80/2 DN 32 DN 32 17/- - 18/- - 0.04/- -

TP 32-160/2 DN 32 DN 32 19/- - 20/- - 0.04/- -

TP 32-220/2 DN 32 DN 32 24/- - 27/- - 0.06/- -

TP 32-260/2 DN 32 DN 32 26/- - 29/- - 0.06/- -

TP 32-330/2 DN 32 DN 32 32/- - 35/- - 0.06/- -

TP, TPD 32-300/2 DN 32 DN 32 58/118 51 64/135 58 0.2176/0.3912 0.2176

TP, TPD 32-360/2 DN 32 DN 32 69/125 71 76/142 78 0.2176/0.4584 0.2176

TP, TPD 32-450/2 DN 32 DN 32 74/150 77 81/167 84 0.2176/0.4584 0.2176

TP, TPD 32-550/2 DN 32 DN 32 89/180 94 104/197 112 0.2176/0.4584 0.2176

TP, TPD 32-680/2 DN 32 DN 32 91/184 105 107/201 124 0.2176/0.4584 0.2176

TP, TPD 32-820/2 DN 32 DN 32 140/283 174 157/313 195 0.7248/0.6507 -

TP 40-80/2 DN 40 DN 40 19/- - 21/- - 0.04/- -

TP 40-160/2 DN 40 DN 40 21/- - 25/- - 0.06/- -

TP 40-240/2 DN 40 DN 40 26/- - 29/- - 0.06/- -

TP 40-270/2 DN 40 DN 40 38/- - 42/- - 0.06/- -

TP 40-330/2 DN 40 DN 40 40/- - 44/- - 0.06/- -

TP 40-390/2 DN 40 DN 40 46/- - 49/- - 0.06/- -

TP, TPD 40-370/2 DN 40 DN 40 74/153 77 81/183 84 0.2176/0.6507 0.2176

TP, TPD 40-450/2 DN 40 DN 40 89/183 94 104/200 112 0.2176/0.3912 0.2176

TP, TPD 40-550/2 DN 40 DN 40 91/187 105 106/204 124 0.2176/0.3912 0.2176

TP, TPD 40-740/2 DN 40 DN 40 139/286 174 156/316 195 0.7248/0.6507 0.7248

TP, TPD 40-850/2 DN 40 DN 40 151/309 177 168/339 198 0.7248/0.6507 0.7248

TP, TPD 40-930/2 DN 40 DN 40 161/329 201 178/359 223 0.7248/0.6507 0.7248

TP 50-80/2 DN 50 DN 50 24/- - 26/- - 0.04/- -

TP 50-160/2 DN 50 DN 50 28/- - 31/- - 0.06/- -

TP 50-240/2 DN 50 DN 50 35/- - 38/- - 0.15/- -

TP, TPD 50-250/2 DN 50 DN 50 53/109 47 59/126 52 0.184/0.4584 0.184

TP, TPD 50-300/2 DN 50 DN 50 65/116 66 70/133 72 0.184/0.4584 0.184

TP, TPD 50-350/2 DN 50 DN 50 71/144 74 76/161 79 0.184/0.4584 0.184

TP, TPD 50-410/2 DN 50 DN 50 85/174 90 101/191 108 0.184/0.4584 0.184

TP, TPD 50-720/2 DN 50 DN 50 158/324 184 175/354 206 0.7248/0.6507 0.7248

TP, TPD 50-790/2 DN 50 DN 50 168/345 209 185/375 230 0.7248/0.6507 0.7248

TP, TPD 50-880/2 DN 50 DN 50 198/403 222 216/453 243 0.7248/1.524 0.7248

TP, TPD 50-1050/2 DN 50 DN 50 352/713 - 370/763 - 0.7248/1.524 -

TP 65-80/2 DN 65 DN 65 29/- - 32/- - 0.06/1.524 -

TP 65-160/2 DN 65 DN 65 37/- - 41/- - 0.08/- -

TP 65-240/2 DN 65 DN 65 39/- - 43/- - 0.08/- -

TP, TPD 65-220/2 DN 65 DN 65 69/124 77 74/141 82 0.184/0.4584 0.184

TP, TPD 65-260/2 DN 65 DN 65 74/149 93 79/166 111 0.184/0.2632 0.184

TP, TPD 65-340/2 DN 65 DN 65 88/179 94 104/196 113 0.184/0.2632 0.184

TP, TPD 65-390/2 DN 65 DN 65 90/182 196 105/199 218 0.184/0.4584 0.184

TP, TPD 65-480/2 DN 65 DN 65 148/309 200 165/339 222 0.7248/0.6507 0.7248

TP, TPD 65-540/2 DN 65 DN 65 160/331 229 177/361 251 0.7248/0.6507 0.7248

TP, TPD 65-630/2 DN 65 DN 65 170/352 241 187/382 263 0.7248/0.6507 0.7248

TP, TPD 65-740/2 DN 65 DN 65 199/410 222 218/460 241 0.7248/1.524 0.7248

TP, TPD 65-910/2 DN 65 DN 65 344/701 - 363/751 - 0.7248/1.524 -

TP, TPD 65-920/2 DN 65 DN 65 336/679 - 342/787 - 0.580/1.800 -

TP, TPD 65-1050/2 DN 65 DN 65 361/734 - 380/784 - 0.7248/1.524 -

TP 80-160/2 DN 80 DN 80 52/- - 57/- - 0.15/- -

TP, TPD 80-200/2 DN 80 DN 80 78/157 80 90/174 94 0.184/0.4584 0.7248

TP, TPD 80-240/2 DN 80 DN 80 93/187 97 105/204 118 0.184/0.4584 0.7248

TP, TPD 80-290/2 DN 80 DN 80 95/191 108 107/208 129 0.184/0.4584 0.7248

TP, TPD 80-330/2 DN 80 DN 80 151/307 183 172/337 205 0.7248/1.524 0.7248

TP, TPD 80-400/2 DN 80 DN 80 162/329 187 182/359 208 0.7248/1.524 0.7248

TP, TPD 80-480/2 DN 80 DN 80 178/351 217 199/381 238 0.7248/1.524 0.7248

TP, TPD 80-530/2 DN 80 DN 80 207/409 230 228/459 251 0.7248/1.524 0.7248

TP, TPD 80-640/2 DN 80 DN 80 359/713 - 380/344 - 0.7248/1.524 -

TP, TPD 80-750/2 DN 80 DN 80 369/722 - 389/764 - 0.7248/1.524 -

TP, TPD 100-230/2 DN 100 DN 100 110/230 123 124/280 145 0.7248/1.524 0.7248

TP, TPD 100-300/2 DN 100 DN 100 155/319 188 177/369 210 0.7248/1.524 0.7248

TP, TPD 100-370/2 DN 100 DN 100 168/344 193 190/394 214 0.9696/1.524 0.9696

TP, TPD 100-350/2 DN 100 DN 100 200/394 238 201/445 240 0.7248/1.524 0.7248

Page 143: TP, TPD, TPE - Databook

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TP, TPD, TPE 23

The value before the slash applies to the single-head pump and the value after the slash applies to the twin-head pump.

TP, TPD 100-380/2 DN 100 DN 100 230/455 252 231/505 254 0.9696/1.524 0.9696

TP, TPD 100-530/2 DN 100 DN 100 389/775 - 430/833 - 0.7973/1.800

TP, TPD 100-630/2 DN 100 DN 100 405/808 - 447/865 - 0.7973/1.800

TP, TPD 100-700/2 DN 100 DN 100 428/854 - 444/927 - 0.7973/1.800

Pump type

Connection Weights Shipping volume

[m3]D1D D1S

Net [kg] Gross [kg]

TP/TPD TPE TP/TPD TPE TP/TPD TPE

143

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TP, TPD, TPE23

TP, TPD, TPE, 4-pole, PN 6, 10, 16

Pump type

Connection Weights Shipping volume[m3]

D1D D1S

Net [kg] Gross [kg]

TP/TPD TPE TP/TPD TPE TP/TPD TPE

TP 32-40/4 DN 32 DN 32 26/- - 29/- - 0.04/- -

TP 32-80/4 DN 32 DN 32 26/- - 29/- - 0.04/- -

TP, TPD 32-120/4 DN 32 DN 32 46/94 - 52/111 - 0.1632/0.3912 -

TP, TPD 32-140/4 DN 32 DN 32 47/97 - 53/114 - 0.1632/0.3912 -

TP, TPD 32-190/4 DN 32 DN 32 53/116 86 59/134 92 0.2176/0.3912 0.2176

TP 40-40/4 DN 40 DN 40 20/- - 22/- - 0.04/- -

TP 40-80/4 DN 40 DN 40 25/- - 28/- - 0.06/- -

TP, TPD 40-120/4 DN 40 DN 40 47/99 - 53/116 - 0.1632/0.4584 -

TP, TPD 40-160/4 DN 40 DN 40 53/119 52 59/149 59 0.2176/0.4584 0.2176

TP, TPD 40-190/4 DN 40 DN 40 56/126 65 62/143 71 0.1632/0.4584 0.2176

TP, TPD 40-220/4 DN 40 DN 40 66/142 74 72/159 81 0.2176/0.4584 0.2176

TP 50-40/4 DN 50 DN 50 22/- - 25/- - 0.04/- -

TP 50-80/4 DN 50 DN 50 27/- - 30/- - 0.06/- -

TP, TPD 50-110/4 DN 50 DN 50 55/117 - 61/136 - 0.16/0.497 -

TP, TPD 50-120/4 DN 50 DN 50 62/136 61 68/156 67 0.2176/0.5184 0.2176

TP, TPD 50-140/4 DN 50 DN 50 64/143 73 70/162 79 0.2176/0.5184 0.2176

TP, TPD 50-190/4 DN 50 DN 50 74/160 82 80/179 89 0.2176/0.5184 0.2176

TP, TPD 50-240/4 DN 50 DN 50 79/167 79 86/186 86 0.2176/0.5184 0.2176

TP, TPD 50-270/4 DN 50 DN 50 78/194 99 84/213 105 0.2176/0.5184 0.2176

TP, TPD 50-340/4 DN 50 DN 50 112/230 111 127/250 129 0.2176/0.5184 0.7248

TP 65-40/4 DN 65 DN 65 32/- - 35/- - 0.06/- -

TP 65-80/4 DN 65 DN 65 41/- - 44/- - 0.08/- -

TP, TPD 65-130/4 DN 65 DN 65 66/150 74 72/167 81 0.2176/0.4584 0.2176

TP, TPD 65-150/4 DN 65 DN 65 75/166 84 82/183 91 0.2176/0.4584 0.2176

TP, TPD 65-190/4 DN 65 DN 65 81/173 81 87/190 88 0.2176/0.4584 0.2176

TP, TPD 65-230/4 DN 65 DN 65 79/202 100 86/217 107 0.2176/0.4584 0.2176

TP, TPD 65-310/4 DN 65 DN 65 113/237 112 130/267 131 0.7248/0.4584 0.7248

TP, TPD 65-330/4 DN 65 DN 65 124/258 140 141/288 161 0.7248/0.6507 -

TP 80-40/4 DN 80 DN 80 49/- - 52/- - 0.08/- -

TP 80-80/4 DN 80 DN 80 45/- - 49/- - 0.08/- -

TP, TPD 80-110/4 DN 80 DN 80 79/165 84 92/182 98 0.2176/0.4584 0.2176

TP, TPD 80-150/4 DN 80 DN 80 94/185 93 108/204 107 0.2176/0.5184 0.7248

TP, TPD 80-170/4 DN 80 DN 80 101/199 106 115/119 120 0.2176/0.6507 0.7248

TP, TPD 80-230/4 DN 80 DN 80 182/369 180 184/419 183 0.9696/1.524 0.9696

TP, TPD 80-280/4 DN 80 DN 80 192/390 209 194/440 212 0.9696/1.524 0.9696

TP, TPD 80-340/4 DN 80 DN 80 225/452 238 227/502 240 0.9696/1.524 0.9696

TP, TPD 80-410/4 DN 80 DN 80 240/474 258 242/525 278 0.9696/1.524 0.9696

TP, TPD 80-460/4 DN 80 DN 80 298/590 297 300/622 315 0.9696/1.524 0.9696

TP, TPD 80-510/4 DN 80 DN 80 316/634 318/666 0.9696/1.524 0.9696

TP 100-40/4 DN 100 DN 100 54/- - 59/- - 0.151/- -

TP 100-80/4 DN 100 DN 100 61/- - 67/- - 0.191/- -

TP, TPD 100-100/4 DN 100 DN 100 114/230 113 117/280 116 0.7248/1.524 0.9696

TP, TPD 100-130/4 DN 100 DN 100 140/282 144 142/333 147 0.7248/1.524 0.9696

TP, TPD 100-150/4 DN 100 DN 100 148/337 155 164/420 171 0.390/1.520 0.390

TP, TPD 100-170/4 DN 100 DN 100 157/316 155 158/367 157 0.7248/1.524 0.9696

TP, TPD 100-200/4 DN 100 DN 100 232/484 249 234/534 269 0.9696/1.524 0.9696

TP, TPD 100-240/4 DN 100 DN 100 264/544 276 266/594 293 0.9696/1.524 0.9696

TP, TPD 100-260/4 DN 100 DN 100 220/323 226 238/406 244 0.960/1.520 0.960

TP, TPD 100-290/4 DN 100 DN 100 275/567 293 278/617 313 0.9696/1.524 0.9696

TP, TPD 100-340/4 DN 100 DN 100 333/682 332 375/732 352 0.9696/1.524 0.9696

TP, TPD 100-350/4 DN 100 DN 100 396/720 - 414/828 - 0.960/1.800 -

TP, TPD 100-390/4 DN 100 DN 100 349/714 - 366/746 - 0.9696/1.524 0.9696

TP, TPD 100-470/4 DN 100 DN 100 440/896 - 457/909 - 0.9696/1.800 -

TP 125-100/4 DN 125 DN 125 129/- 133 148/- 152 0.969/- 0.969

TP 125-120/4 DN 125 DN 125 144/- 148 163/- 171 0.969/- 0.969

TP 125-140/4 DN 125 DN 125 150/- 160 169/- 179 0.969/- 0.969

TP, TPD 125-130/4 DN 125 DN 125 203/432 201 223/482 221 0.9696/1.524 0.9696

TP, TPD 125-160/4 DN 125 DN 125 213/454 230 234/504 250 0.9696/1.524 0.9696

TP, TPD 125-230/4 DN 125 DN 125 264/597 326 281/705 343.2 0.960/1.520 0.960

TP, TPD 125-320/4 DN 125 DN 125 360/723 358 380/781 378 0.9696/1.800 0.9696

TP, TPD 125-360/4 DN 125 DN 125 675/754 - 396/812 - 0.9696/1.800 0.9696

TP, TPD 125-430/4 DN 125 DN 125 464/933 - 485/990 - 1.524/1.800 -

TP, TPD 125-490/4 DN 125 DN 125 509/1021 - 509/1035 - 1.524/1.800 -

TP 150-170/4 DN 150 DN 150 235/- 254 408/- 427 2.3/- 2.3

TP, TPD 150-180/4 DN 150 DN 150 321/641 339 341/692 359 0.9696/1.524 0.9696

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TP, TPD, TPE 23

The value before the slash applies to the single-head pump and the value after the slash applies to the twin-head pump.

TP 150-190/4 DN 150 DN 150 261/- 280 434/- 454 2.3/- 2.3

TP, TPD 150-210/4 DN 150 DN 150 380/759 378 400/816 398 0.9696/1.800 0.9696

TP 150-230/4 DN 150 DN 150 280/- 283 453/- 456 2.3/- 2.3

TP, TPD 150-240/4 DN 150 DN 150 395/790 - 416/847 - 0.9696/1.800 0.9696

TP 150-250/4 DN 150 DN 150 303/- - 476/- - 2.3/- -

TP, TPD 150-300/4 DN 150 DN 150 485/969 - 505/1026 - 1.524/1.800 -

TP, TPD 150-340/4 DN 150 DN 150 415/1085 - 512/1193 - 1.800/1.800 -

TP 150-360/4 DN 150 DN 150 477/- - 632/- - 2.3/- -

TP 150-380/4 DN 150 DN 150 520/- - 675/- - 2.3/- -

TP 150-400/4 DN 150 DN 150 554/- - 709/- - 2.3/- -

TP 150-420/4 DN 150 DN 150 560/- - 715 - 2.3/- -

TP 150-440/4 DN 150 DN 150 672/- - 870/- - 3.1/- -

TP 150-480/4 DN 150 DN 150 827/- - 1025/- - 3.1/- -

TP 150-490/4 DN 150 DN 150 690/- - 845 - 2.3/- -

TP 150-550/4 DN 150 DN 150 805/- - 990 - 3.1/- -

TP 150-610/4 DN 150 DN 150 942/- - 1140/- - 3.1/- -

TP 150-700/4 DN 150 DN 150 1042/- - 1275/- - 4.6/- -

TP 200-80/4 DN 200 DN 200 322/- 340 495/- 503 2.3/- 2.3

TP 200-110/4 DN 200 DN 200 343/- 362 516/- 535 2.3/- 2.3

TP 200-140/4 DN 200 DN 200 369/- 388 542/- 561 2.3/- 2.3

TP 200-190/4 DN 200 DN 200 389/- 392 562/- 565 2.3/- 2.3

TP 200-210/4 DN 200 DN 200 412/- - 585/- - 2.3/- -

TP 200-250/4 DN 200 DN 200 480/- - 678/- - 3.1/- -

TP 200-280/4 DN 200 DN 200 578/- - 776/- - 3.1/- -

TP 200-320/4 DN 200 DN 200 618/- - 816/- - 3.1/- -

TP 200-360/4 DN 200 DN 200 760/- - 993/- - 4.6/- -

TP 200-390/4 DN 200 DN 200 875/- - 1098/- - 4.6/- -

TP 200-400/4 DN 200 DN 200 1028/- - 1133/- - 3.1/- -

TP 200-430/4 DN 200 DN 200 925/- - 1110/- - 3.1/- -

TP 200-440/4 DN 200 DN 200 1049/- - 1269/- - 4.6/- -

TP 200-490/4 DN 200 DN 200 1043/- - 1228/- - 3.1/- -

TP 200-500/4 DN 200 DN 200 1229/- - 1449/- - 4.6/- -

TP 200-540/4 DN 200 DN 200 1144/- - 1364/- - 4.6/- -

TP 200-600/4 DN 200 DN 200 1325/- - 1563/- - 4.6/- -

TP 200-680/4 DN 200 DN 200 1500/- - 1720/- - 4.6/- -

TP 200-770/4 DN 200 DN 200 1642/- - 1862/- - 4.6/- -

TP 250-450/4 DN 250 DN 300 1035/- - 1220/- - 3.1/- -

TP 250-530/4 DN 250 DN 300 1170/- - 1390/- - 4.57/- -

TP 250-580/4 DN 250 DN 300 1325/- - 1545/- - 4.57/- -

Pump type

Connection Weights Shipping volume[m3]

D1D D1S

Net [kg] Gross [kg]

TP/TPD TPE TP/TPD TPE TP/TPD TPE

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TP, TPD, TPE23

TP, 2-pole, PN 25

TP, 4-pole, PN 25

Pump typeConnection Weights Shipping volume

[m3]D1D D1S Net [kg] Gross [kg]

TP 100-1000/2 DN 100 DN 125 675 850 3.13

TP 100-1100/2 DN 100 DN 125 775 960 3.13

TP 100-1250/2 DN 100 DN 125 950 1135 3.13

TP 100-1350/2 DN 100 DN 125 1075 1260 3.13

TP 100-1450/2 DN 100 DN 125 1015 1200 3.13

TP 100-1560/2 DN 100 DN 125 1140 1325 3.13

TP 100-1700/2 DN 100 DN 125 1280 1500 4.57

TP 100-2100/2 DN 100 DN 125 1470 1690 4.57

TP 100-2350/2 DN 100 DN 125 1525 1745 4.57

Pump typeConnection Weights Shipping volume

[m3]D1D D1S Net [kg] Gross [kg]

TP 100-210/4 DN 100 DN 125 225 255 0.72

TP 100-250/4 DN 100 DN 125 241 271 0.72

TP 100-330/4 DN 100 DN 125 267 297 0.72

TP 100-360/4 DN 100 DN 125 315 345 0.72

TP 100-420/4 DN 100 DN 125 380 413 0.70

TP 100-450/4 DN 100 DN 125 405 438 0.70

TP 100-530/4 DN 100 DN 125 449 482 0.70

TP 100-590/4 DN 100 DN 125 515 670 2.29

TP 125-240/4 DN 125 DN 150 287 320 0.70

TP 125-270/4 DN 125 DN 150 335 368 0.70

TP 125-310/4 DN 125 DN 150 360 393 0.70

TP 125-370/4 DN 125 DN 150 404 437 0.70

TP 125-350/4 DN 125 DN 150 425 458 0.70

TP 125-440/4 DN 125 DN 150 469 624 2.29

TP 125-500/4 DN 125 DN 150 535 690 2.29

TP 125-570/4 DN 125 DN 150 575 730 2.29

TP 125-620/4 DN 125 DN 150 705 860 2.29

TP 150-330/4 DN 150 DN 200 509 664 2.29

TP 150-370/4 DN 150 DN 200 575 730 2.29

TP 150-450/4 DN 150 DN 200 615 770 2.29

TP 150-490/4 DN 150 DN 200 745 930 3.13

TP 150-710/4 DN 150 DN 200 1000 1185 3.13

TP 150-800/4 DN 150 DN 200 1135 1320 3.13

TP 150-930/4 DN 150 DN 200 1290 1510 4.57

TP 200-350/4 DN 200 DN 250 670 825 2.29

TP 200-370/4 DN 200 DN 250 800 985 3.13

TP 200-520/4 DN 200 DN 250 915 1100 3.13

TP 200-560/4 DN 200 DN 250 1015 1200 3.13

TP 200-670/4 DN 200 DN 250 1210 1430 4.57

TP 200-760/4 DN 200 DN 250 1365 1585 4.57

TP 200-840/4 DN 200 DN 250 1505 1725 4.57

TP 200-930/4 DN 200 DN 250 1705 1925 4.57

TP 250-430/4 DN 250 DN 300 1125 1310 3.13

TP 250-500/4 DN 250 DN 300 1260 1445 3.13

TP 250-550/4 DN 250 DN 300 1415 1635 4.57

TP 250-720/4 DN 250 DN 300 1655 1875 4.57

TP 250-800/4 DN 250 DN 300 1855 2165 5.88

TP 250-910/4 DN 250 DN 300 1850 2160 5.88

TP 250-1020/4 DN 250 DN 300 2050 2360 5.88

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TP, TPD, TPE 24

24. Minimum efficiency index

Minimum efficiency index (MEI) means the dimensionless scale unit for hydraulic pump efficiency at best efficiency point (BEP), part load (PL) and overload (OL). The Commission Regulation (EU) sets efficiency requirements to MEI ≥ 0.10 as from 1 January 2013 and MEI ≥ 0.40 as from 1 January 2015. An indicative benchmark for best-performing water pump available on the market as from 1 January 2013 is determined in the Regulation.

• The benchmark for most efficient water pumps is MEI ≥ 0.70.

• The efficiency of a pump with a trimmed impeller is usually lower than that of a pump with the full impeller diameter. The trimming of the impeller will adapt the pump to a fixed duty point, leading to reduced energy consumption. The minimum efficiency index (MEI) is based on the full impeller diameter.

• The operation of this water pump with variable duty points may be more efficient and economic when controlled, for example, by the use of a variable-speed drive that matches the pump duty to the system.

• Information on benchmark efficiency is available at http://europump.eu/efficiencycharts.

TP, TPD, TPE, 2-pole, PN 6, 10, 16

TP Series 200, 2-poleP2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

TP, TPE 32-80/2 0.37 ● ≥ 0.60

TP, TPE 32-160/2 0.55 ● ≥ 0.70

TP, TPE 32-220/2 0.75 32-136/111 ●

≥ 0.40TP, TPE 32-260/2 1.1 32-136/118 ●

TP, TPE 32-330/2 1.5 32-136/136 ●

TP, TPE 40-80/2 0.55 ● ≥ 0.49

TP, TPE 40-160/2 0.75 ● ≥ 0.70

TP, TPE 40-240/2 1.1 ● ≥ 0.70

TP, TPE 40-270/2 1.5 ● ≥ 0.53

TP, TPE 40-330/2 2.2 ● ≥ 0.43

TP, TPE 40-390/2 3.0 ● ≥ 0.66

TP, TPE 50-80/2 0.55 ● ≥ 0.70

TP, TPE 50-160/2 1.1 ● ≥ 0.56

TP, TPE 50-240/2 1.5 ● ≥ 0.70

TP, TPE 65-80/2 1.1 ● ≥ 0.64

TP, TPE 65-160/2 1.5 ● ≥ 0.70

TP, TPE 65-240/2 2.2 ● ≥ 0.70

TP, TPE 80-160/2 3.0 ● ≥ 0.70

TP Series 300, 2-poleP2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

TP, TPD, TPE 32-300/2 2.2 32-200.1/137 ●

≥ 0.46

TP, TPD, TPE 32-360/2 3 32-200.1/148 ●

TP, TPD, TPE 32-450/2 4 32-200.1/160 ●

TP, TPD, TPE 32-550/2 5.5 32-200.1/174 ●

TP, TPD, TPE 32-680/2 7.5 32-200.1/191 ●

TP, TPD, TPE 32-820/2 11 32-200.1/205 ●

TP, TPD, TPE 40-370/2 4 32-200/150 ●

≥ 0.56

TP, TPD, TPE 40-450/2 5.5 32-200/163 ●

TP, TPD, TPE 40-550/2 7.5 32-200/176 ●

TP, TPD, TPE 40-740/2 11 32-200/200 ●

TP, TPD, TPE 40-850/2 15 32-200/210 ●

TP, TPD, TPE 40-930/2 18.5 32-200/219 ●

TP, TPD, TPE 50-250/2 2.2 32-125/113 ●≥ 0.70

TP, TPD, TPE 50-300/2 3 32-125/123 ●

TP, TPD, TPE 50-350/2 4 32-160/137 ●≥ 0.40

TP, TPD, TPE 50-410/2 5.5 32-160/146 ●

TP, TPD, TPE 50-720/2 15 40-250/184 ●

≥ 0.60TP, TPD, TPE 50-790/2 18.5 40-250/204 ●

TP, TPD, TPE 50-880/2 22 40-250/213 ●

TP, TPD 50-1050/2 30 40-250/232 ●

TP, TPD, TPE 65-220/2 3 40-125/110 ●≥ 0.18

TP, TPD, TPE 65-260/2 4 40-125/120 ●

TP, TPD, TPE 65-340/2 5.5 40-160/133 ●≥ 0.54

TP, TPD, TPE 65-390/2 7.5 40-160/145 ●

TP, TPD, TPE 65-480/2 11 50-200/157 ●

≥ 0.52TP, TPD, TPE 65-540/2 15 50-200/170 ●

TP, TPD, TPE 65-630/2 18.5 50-200/180 ●

TP, TPD 65-920/2 37 50-200/219 ●

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TP, TPD, TPE24

TP, TPD, TPE 65-740/2 22 50-250/196 ●

≥ 0.48TP, TPD 65-910/2 30 50-250/215 ●

TP, TPD 65-1050/2 37 50-250/230 ●

TP, TPD, TPE 80-200/2 4 50-125/105 ●

≥ 0.53TP, TPD, TPE 80-240/2 5.5 50-125/115 ●

TP, TPD, TPE 80-290/2 7.5 50-125/127 ●

TP, TPD, TPE 80-330/2 11 65-160/137 ●≥ 0.44

TP, TPD, TPE 80-400/2 15 65-160/149 ●

TP, TPD, TPE 80-480/2 18.5 65-200/160 ●

≥ 0.65TP, TPD, TPE 80-530/2 22 65-200/167 ●

TP, TPD 80-640/2 30 65-200/184 ●

TP, TPD 80-750/2 37 65-200/197 ●

TP, TPD, TPE 100-230/2 7.5 65-125/120-110 ●

≥ 0.60TP, TPD, TPE 100-300/2 11 65-125/130 ●

TP, TPD, TPE 100-370/2 15 65-125/141 ●

TP, TPD, TPE 100-350/2 18.5 80-160/147-127 ●≥ 0.70

TP, TPD, TPE 100-380/2 22 80-160/151-133 ●

TP, TPD 100-530/2 30 80-200/166 ●

≥ 0.50TP, TPD 100-630/2 37 80-200/180 ●

TP, TPD 100-700/2 45 80-200/190 ●

TP Series 300, 2-poleP2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

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TP, TPD, TPE 24

TP, TPD, TPE, 4-pole, PN 6, 10, 16

TP Series 200, 4-poleP2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

TP, TPE 32-40/4 0.12 ● ≥ 0.70

TP, TPE 32-80/4 0.25 ● ≥ 0.70

TP, TPE 40-40/4 0.25 ● ≥ 0.70

TP, TPE 40-80/4 0.55 ● ≥ 0.69

TP, TPE 50-40/4 0.25 ● ≥ 0.70

TP, TPE 50-80/4 0.55 ● ≥ 0.70

TP, TPE 65-40/4 0.37 ● ≥ 0.70

TP, TPE 65-80/4 1.1 ● ≥ 0.70

TP, TPE 80-40/4 0.75 ● ≥ 0.70

TP, TPE 80-80/4 1.5 ● ≥ 0.70

TP, TPE 100-40/4 1.1 ● ≥ 0.45

TP, TPE 100-80/4 2.2 ● ≥ 0.40

TP Series 300, 4-poleP2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

TP, TPD, TPE 32-120/4 0.55 32-200.1/168 ●

≥ 0.70TP, TPD, TPE 32-140/4 0.75 32-200.1/180 ●

TP, TPD, TPE 32-190/4 1.1 32-200.1/203 ●

TP, TPD, TPE 40-120/4 0.75 32-200/168 ●

≥ 0.55TP, TPD, TPE 40-160/4 1.1 32-200/185 ●

TP, TPD, TPE 40-190/4 1.5 32-200/200 ●

TP, TPD, TPE 40-220/4 2.2 32-200/219 ●

TP, TPD, TPE 50-110/4 0.75 40-200/155 ●

≥ 0.10TP, TPD, TPE 50-120/4 1.1 40-200/168 ●

TP, TPD, TPE 50-140/4 1.5 40-200/182 ●

TP, TPD, TPE 50-190/4 2.2 40-250/210 ●

≥ 0.44TP, TPD, TPE 50-240/4 3 40-250/224 ●

TP, TPD, TPE 50-270/4 4 40-250/240 ●

TP, TPD, TPE 50-340/4 5.5 40-250/260 ●

TP, TPD, TPE 65-130/4 1.5 50-200/164 ●

≥ 0.55TP, TPD, TPE 65-150/4 2.2 50-200/180 ●

TP, TPD, TPE 65-190/4 3 50-200/200 ●

TP, TPD, TPE 65-230/4 4 50-250/220 ●

≥ 0.70TP, TPD, TPE 65-310/4 5.5 50-250/250 ●

TP, TPD, TPE 65-330/4 7.5 50-250/263 ●

TP, TPD, TPE 80-110/4 2.2 65-160/157 ● ≥ 0.51

TP, TPD, TPE 80-150/4 3 65-200/174 ●≥ 0.62

TP, TPD, TPE 80-170/4 4 65-200/190 ●

TP, TPD, TPE 80-230/4 5.5 65-250/220 ●≥ 0.41

TP, TPD, TPE 80-280/4 7.5 65-250/240 ●

TP, TPD, TPE 80-340/4 11 65-315/265 ●

≥ 0.70TP, TPD, TPE 80-410/4 15 65-315/288 ●

TP, TPD, TPE 80-460/4 18.5 65-315/305 ●

TP, TPD 80-510/4 22 65-315/320 ●

TP, TPD, TPE 100-100/4 3 80-160/151 ●≥ 0.70

TP, TPD, TPE 100-150/4 5.5 80-160/177 ●

TP, TPD, TPE 100-130/4 4 80-200/172 ●

≥ 0.70TP, TPD, TPE 100-170/4 5.5 80-200/190 ●

TP, TPD, TPE 100-260/4 11 80-200/222 ●

TP, TPD, TPE 100-200/4 7.5 80-250/202 ●

≥ 0.63TP, TPD, TPE 100-240/4 11 80-250/226 ●

TP, TPD 100-350/4 22 80-250/270 ●

TP, TPD, TPE 100-290/4 15 80-315/248 ●

≥ 0.59TP, TPD, TPE 100-340/4 18.5 80-315/267 ●

TP, TPD 100-390/4 22 80-315/285 ●

TP, TPD 100-470/4 30 80-315/310 ●

TP, TPE 125-100/4 3.0 100-160/160-136 ●

≥ 0.70TP, TPE 125-120/4 4.0 100-160/164 ●

TP, TPE 125-140/4 5.5 100-160/177 ●

TP, TPD, TPE 125-130/4 5.5 100-200/168 ●

≥ 0.67TP, TPD, TPE 125-160/4 7.5 100-200/183 ●

TP, TPD, TPE 125-230/4 15 100-200/215 ●

TP, TPD, TPE 125-320/4 18.5 100-315/256 ●

≥ 0.19TP, TPD 125-360/4 22 100-315/268 ●

TP, TPD 125-430/4 30 100-315/293 ●

TP, TPD 125-490/4 37 100-315/309 ●

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TP, TPD, TPE24

TP, PN 25

** Not in MEI classification because PN 25 is not a part of the MEI classification.

TP, TPD, TPE 150-180/4 15 125-250/204 ●

≥ 0.70

TP, TPD, TPE 150-210/4 18.5 125-250/216 ●

TP, TPD 150-240/4 22 125-250/228 ●

TP, TPD 150-300/4 30 125-250/247 ●

TP, TPD 150-340/4 37 125-250/265 ●

TP, TPD, TPE 150-170/4 11 125-200/196-188 ●

≥ 0.56TP, TPD, TPE 150-190/4 15 125-200/208 ●

TP, TPD, TPE 150-230/4 18.5 125-200/223 ●

TP, TPD 150-250/4 22 125-200/226 ●

TP 150-360/4 30 125-315/270 ●≥ 0.70

TP 150-400/4 37 125-315/286 ●

TP 150-440/4 45 125-400/293 ●

≥ 0.70TP 150-480/4 55 125-400/306 ●

TP 150-610/4 75 125-400/345 ●

TP 150-700/4 90 125-400/369 ●

TP, TPE 200-80/4 7.5 150-200/191-121 ●

≥ 0.70

TP, TPE 200-110/4 11 150-200/200-138 ●

TP, TPE 200-140/4 15 150-200/210-166 ●

TP, TPE 200-190/4 18.5 150-200/218-206 ●

TP 200-210/4 22 150-200/224 ●

TP 200-250/4 30 150-250/232 ●

≥ 0.70

TP 200-280/4 37 150-250/245 ●

TP 200-320/4 45 150-250/262 ●

TP 200-360/4 55 150-250/273 ●

TP 200-390/4 75 150-250/286 ●

TP 200-270/4 37 150-315/242 ●

≥ 0.70

TP 200-290/4 45 150-315/255 ●

TP 200-330/4 55 150-315/267 ●

TP 200-400/4 75 150-315/290 ●

TP 200-440/4 90 150-315/305 ●

TP 200-500/4 110 150-315/322 ●

TP 200-430/4 55 150-400/299 ●

≥ 0.70

TP 200-490/4 75 150-400/322 ●

TP 200-540/4 90 150-400/337 ●

TP 200-600/4 110 150-400/355 ●

TP 200-680/4 132 150-400/374 ●

TP 200-770/4 160 150-400/394 ●

TP Series 300, 4-poleP2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

TP Series 400, 4-pole, PN10

P2[kW]

Nominal impeller size/actual impeller size

Trimmed impeller Max. impeller MEI

TP 250-450/4 90 250-350/318-308 ●

≥ 0.70TP 250-530/4 110 250-350/337-327 ●

TP 250-580/4 132 250-350/351-343 ●

TP Series 400, PN 25P2

[kW]Nominal impeller size/

actual impeller sizeTrimmed impeller Max. impeller MEI

TP Series 400, PN 25 All **

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TP, TPD, TPE 25

25. Accessories

Counter-flanges

Cast iron pumps

A flange kit consists of two steel flanges, two gaskets of asbestos-free material IT 200, and the requisite number of bolts.

Counter-flange Pump type Description Rated pressurePipework

connectionProduct number

TM

03

04

78

52

04

TP, TPE 32TPD 32

Threaded 10 bar, EN 1092-2 Rp 1 1/4 539703

For welding 10 bar, EN 1092-232 mm, nominal

539704

Threaded 16 bar, EN 1092-2 Rp 1 1/4 539703

For welding 16 bar, EN 1092-232 mm, nominal

539704T

M0

3 0

47

9 5

20

4

TP, TPE 40TPD 40

Threaded 10 bar, EN 1092-2 Rp 1 1/2 539701

For welding 10 bar, EN 1092-240 mm, nominal

539702

Threaded 16 bar, EN 1092-2 Rp 1 1/2 539701

For welding 16 bar, EN 1092-240 mm, nominal

539702

TM

03

04

80

52

04

TP, TPE 50TPD 50

Threaded 10 bar, EN 1092-2 Rp 2 549801

For welding 10 bar, EN 1092-250 mm, nominal

549802

Threaded 16 bar, EN 1092-2 Rp 2 549801

For welding 16 bar, EN 1092-250 mm, nominal

549802

TM

03

04

81

52

04

TP, TPE 65TPD 65

Threaded 10 bar, EN 1092-2 Rp 2 1/2 559801

For welding 10 bar, EN 1092-265 mm, nominal

559802

Threaded 16 bar, EN 1092-2 Rp 2 1/2 559801

For welding 16 bar, EN 1092-265 mm, nominal

559802

ø19

ø140ø100ø78

Rp 1¼

Threaded For welding

ø19

ø150ø110ø88

Rp 1½

Threaded For welding

ø19

ø165ø125ø102

Rp 2

Threaded For welding

ø19

ø185ø145ø122

Rp 2½

Threaded For welding

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TM

03

04

82

52

04

TP, TPE 80TPD 80

Threaded 6 bar, EN 1092-2 Rp 3 569902

For welding 6 bar, EN 1092-280 mm, nominal

569901

Threaded 10 bar, EN 1092-2 Rp 3 569802

For welding 10 bar, EN 1092-280 mm, nominal

569801

Threaded 16 bar, EN 1092-2 Rp 3 569802

For welding 16 bar, EN 1092-280 mm, nominal

569801

TM

03

04

83

52

04

TP, TPE 100TPD 100

Threaded 6 bar, EN 1092-2 Rp 4 579901

For welding 6 bar, EN 1092-2100 mm, nominal

579902

Threaded 10 bar, EN 1092-2 Rp 4 579801

For welding 10 bar, EN 1092-2100 mm, nominal

579802

Threaded 16 bar, EN 1092-2 Rp 4 579801

For welding 16 bar, EN 1092-2100 mm, nominal

579802

TM

03

04

84

52

04

TP, TPE 125TPD 125

Threaded 10 bar, EN 1092-2 Rp 5 485367

For welding 10 bar, EN 1092-2125 mm, nominal

485368

Threaded 16 bar, EN 1092-2 Rp 5 485367

For welding 16 bar, EN 1092-2125 mm, nominal

485368

TM

03

04

85

52

04 TP, TPE 150

TPD 150

For welding 10 bar, EN 1092-2150 mm, nominal

S1111600

For welding 16 bar, EN 1092-2150 mm, nominal

S1111600

Counter-flange Pump type Description Rated pressurePipework

connectionProduct number

ø19

ø200ø160ø138

Rp 3

Threaded For welding

ø19

ø220ø180ø158

Rp 4

Threaded For welding

ø19

ø250ø210ø188

Rp 5

Threaded For welding

ø23

ø285ø240ø212

For welding

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Bronze pumps

A flange kit consists of two bronze flanges, two gaskets of asbestos-free material IT 200, and the requisite number of bolts.

Counter-flange Pump type Description Rated pressurePipework

connectionProduct number

TM

03

04

78

52

04

TP, TPE 32 B

Threaded 10 bar, EN 1092-2 Rp 1 1/4 96427029

For welding 10 bar, EN 1092-232 mm, nominal

96427030

Threaded 16 bar, EN 1092-2 Rp 1 1/4 96427029

For welding 16 bar, EN 1092-232 mm, nominal

96427030

TM

03

04

79

52

04

TP, TPE 40 B

Threaded 10 bar, EN 1092-2 Rp 1 1/2 539711

For welding 10 bar, EN 1092-240 mm, nominal

539712

Threaded 16 bar, EN 1092-2 Rp 1 1/2 539711

For welding 16 bar, EN 1092-240 mm, nominal

539712

TM

03

04

80

52

04

TP, TPE 50 B

Threaded 10 bar, EN 1092-2 Rp 2 549811

For welding 10 bar, EN 1092-250 mm, nominal

549812

TM

03

04

81

52

04

TP, TPE 65 B

Threaded 10 bar, EN 1092-2 Rp 2 1/2 559811

For welding 10 bar, EN 1092-265 mm, nominal

559812

TM

03

04

82

52

04

TP, TPE 80 B

Threaded 6 bar, EN 1092-2 Rp 3 96405735

For welding 6 bar, EN 1092-280 mm, nominal

569911

Threaded 10 bar, EN 1092-2 Rp 3 569812

For welding 10 bar, EN 1092-280 mm, nominal

569811

TM

03

04

85

52

04

TP, TPE 100 B

Threaded 6 bar, EN 1092-2 Rp 4 96405737

Threaded 10 bar, EN 1092-2 Rp 4 96405738

ø19

ø140ø100ø78

Rp 1¼

Threaded For welding

ø19

ø150ø110ø88

Rp 1½

Threaded For welding

ø19

ø165ø125ø102

Rp 2

Threaded For welding

ø19

ø185ø145ø122

Rp 2½

Threaded For welding

ø19

ø200ø160ø138

Rp 3

Threaded For weldingThreaded

ø19

ø220ø180ø158

Rp 4

Threaded For welding

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Base platesNote: Base plates are supplied as standard with TP, TPD, TPE pumps with 11 kW motors and above.

TP Series 200

TP, TPE Series 300

TP, TPE Series 300

TPD Series 300

Pump typeHexagon head

screwsProduct number

TP 32TP 40TP 50TP 65-80/2, 65-160/2, 65-240/2

2 x M12 x 20 mm 96405915

TP 65-40/4, 65-80/4TP 80TP 100

2 x M16 x 30 mm 96405914

Drawing Product numberT

M0

0 9

83

5 0

49

7

9640591596405914

Pump type Hexagon head screwsProduct number

TP, TPE 32TP, TPE 40TP, TPE 50TP, TPE 65TP, TPE 80-xx/2TP, TPE 80-110/4TP, TPE 80-150/4TP, TPE 80-170/4TP, TPE 100-230/2TP, TPE 100-300/2TP, TPE 100-370/2

2 x M16 x 30 mm 00485031

Drawing Product number

TM

00

37

55

26

02

00485031

235

195

120

200

80195

160

2xø14

2xø14

2xø184xø14

2xø18

35

235195

144

96195

2xø18

4xø14

2xø1435

Pump type Hexagon head screwsProduct number

TP, TPE 80-230/4TP, TPE 80-280/4TP, TPE 80-340/4TP, TPE 80-410/4TP, TPE 80-460/4TP, TPE 80-510/4TP, TPE 100-350/2TP, TPE 100-380/2TP, TPE 100-530/2TP, TPE 100-630/2TP, TPE 100-700/2TP, TPE 100-xx/4TP, TPE 125-xx/4TP, TPE 150-xx/4

2 x M16 x 30 mm 96536246

Drawing Product number

TM

02

88

69

10

04

96536246

Pump type Hexagon head screwsProduct number

TPD 32TPD 40TPD 50TPD 65TPD 80-xx/2TPD 80-110/4TPD 80-150/4TPD 80-170/4TPD 100-230/2TPD 100-300/2TPD 100-370/2

4 x M16 x 30 mm 96489381

Drawing Product number

TM

02

53

36

26

02

96489381

380

290230

290

35

4xø14

4xø18

2xø18

2xø14

175

300

330

47 67

35

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TPD Series 300

TPD Series 300

Pump type Hexagon head screwsProduct number

TPD 100-350/2TPD 100-380/2TPD 100-530/2TPD 100-630/2TPD 100-700/2TPD 100-100/4TPD 100-130/4TPD 100-150/4TPD 100-170/4

4 x M16 x 30 mm 96536247

Drawing Product number

TM

02

88

70

10

04 96536247

Pump type Hexagon head screwsProduct number

TPD 80-230/4TPD 80-280/4TPD 80-340/4TPD 80-410/4TPD 80-460/4TPD 80-510/4TPD 100-200/4TPD 100-240/4TPD 100-260/4TPD 100-290/4TPD 100-340/4TPD 100-350/4TPD 100-390/4TPD 100-470/4TPD 125-xx/4TPD 150-xx/4

4 x M16 x 30 mm 96536248

Drawing Product number

TM

02

88

71

10

04 96536248

2xø18

2xø14

230

355

385

47 67

35

4xø18

2xø14

300

475505

47 67

35

350

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TP, TPD, TPE25

Blanking flangesNormally used with twin-head pumps.

TPD 2-poleT

M0

0 6

36

0 3

49

5Pump type 96495694 96495695 96495696 96525962 96525963 96525964

TPD 32-300/2 ●

TPD 32-360/2 ●

TPD 32-450/2 ●

TPD 32-550/2 ●

TPD 32-680/2 ●

TPD 32-820/2 ●

TPD 40-370/2 ●

TPD 40-450/2 ●

TPD 40-550/2 ●

TPD 40-740/2 ●

TPD 40-850/2 ●

TPD 40-930/2 ●

TPD 50-250/2 ●

TPD 50-300/2 ●

TPD 50-350/2 ●

TPD 50-410/2 ●

TPD 50-720/2 ●

TPD 50-790/2 ●

TPD 50-880/2 ●

TPD 50-1050/2 ●

TPD 65-220/2 ●

TPD 65-260/2 ●

TPD 65-340/2 ●

TPD 65-390/2 ●

TPD 65-480/2 ●

TPD 65-540/2 ●

TPD 65-630/2 ●

TPD 65-740/2 ●

TPD 65-910/2 ●

TPD 65-920/2 ●

TPD 65-1050/2 ●

TPD 80-200/2 ●

TPD 80-240/2 ●

TPD 80-290/2 ●

TPD 80-330/2 ●

TPD 80-400/2 ●

TPD 80-480/2 ●

TPD 80-530/2 ●

TPD 80-640/2 ●

TPD 80-750/2 ●

TPD 100-230/2 ●

TPD 100-300/2 ●

TPD 100-370/2 ●

TPD 100-350/2 ●

TPD 100-380/2 ●

TPD 100-530/2 ●

TPD 100-630/2 ●

TPD 100-700/2 ●

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TPD 4-pole

Pump type 96495694 96495695 96495696 96525962 96525963 96525964

TPD 32-120/4 ●

TPD 32-140/4 ●

TPD 32-190/4 ●

TPD 40-120/4 ●

TPD 40-160/4 ●

TPD 40-190/4 ●

TPD 40-220/4 ●

TPD 50-110/4 ●

TPD 50-120/4 ●

TPD 50-140/4 ●

TPD 50-190/4 ●

TPD 50-240/4 ●

TPD 50-270/4 ●

TPD 50-340/4 ●

TPD 65-130/4 ●

TPD 65-150/4 ●

TPD 65-190/4 ●

TPD 65-230/4 ●

TPD 65-310/4 ●

TPD 65-330/4 ●

TPD 80-110/4 ●

TPD 80-150/4 ●

TPD 80-170/4 ●

TPD 80-230/4 ●

TPD 80-280/4 ●

TPD 80-340/4 ●

TPD 80-410/4 ●

TPD 80-460/4 ●

TPD 80-510/4 ●

TPD 100-100/4 ●

TPD 100-130/4 ●

TPD 100-150/4 ●

TPD 100-170/4 ●

TPD 100-200/4 ●

TPD 100-240/4 ●

TPD 100-260/4 ●

TPD 100-290/4 ●

TPD 100-340/4 ●

TPD 100-350/4 ●

TPD 100-390/4 ●

TPD 100-470/4 ●

TPD 125-210/4 ●

TPD 125-230/4 ●

TPD 125-260/4 ●

TPD 125-320/4 ●

TPD 125-360/4 ●

TPD 125-430/4 ●

TPD 125-490/4 ●

TPD 150-180/4 ●

TPD 150-210/4 ●

TPD 150-240/4 ●

TPD 150-300/4 ●

TPD 150-340/4 ●

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Insulating kitsInsulating kits are only available for TP Series 200 pumps. An insulating kit consists of two or three insulating covers made of expanded polypropylene (EPP).

The insulating kit is tailored to the individual pump model and has an insulating thickness corresponding to the nominal diameter of the pump.

The thermal conductivity of EPP is very low (0.04 W/m °C), i.e. the insulating property is very good.

The insulating kit encloses the entire pump housing.

Fig. 74 Insulating kit

Product numbers of insulating kits

TM

00

80

95

24

96

Single-head TP Series 200 pumps

Pump type Product number

TP 32-40/4 96405880

TP 32-80/2 96405873

TP 32-80/4 96405880

TP 32-160/2 96405880

TP 32-220/2 96472051

TP 32-260/2 96472051

TP 32-330/2 96472051

TP 40-40/4 96405874

TP 40-80/2 96405876

TP 40-80/4 96405875

TP 40-160/2 96405877

TP 40-240/2 96405878

TP 40-270/2 96472052

TP 40-330/2 96472052

TP 40-390/2 96472052

TP 50-40/4 96405879

TP 50-80/2 96405881

TP 50-80/4 96405880

TP 50-160/2 96405882

TP 50-240/2 96405883

TP 65-40/4 96405884

TP 65-80/2 96405886

TP 65-80/4 96405885

TP 65-160/2 96405887

TP 65-240/2 96405888

TP 80-40/4 96405889

TP 80-80/4 96405890

TP 80-160/2 96405891

TP 100-40/4 96405892

TP 100-80/4 96405892

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Sensors

Flow sensors

1) For more information about the VFI sensor, see the data booklet "Grundfos direct sensors", publication number 97790189.

Temperature sensors

Note: All sensors have 4-20 mA output signal.

Sensors for boosting applications

Grundfos vortex flow sensor, VFI1) Type

Flow range[m3/h]

Pipe connection

O-ring Connection type

Product numberEPDM FKM

Cast iron flange

Stainless steel flange

VFI 1.3-25 DN32 020 E

1.3 - 25 DN 32

● ● 97686141

VFI 1.3-25 DN32 020 F ● ● 97686142

VFI 1.3-25 DN32 020 E ● ● 97688297

VFI 1.3-25 DN32 020 F ● ● 97688298

VFI 2-40 DN40 020 E

2 - 40 DN 40

● ● 97686143

VFI 2-40 DN40 020 F ● ● 97686144

VFI 2-40 DN40 020 E ● ● 97688299

VFI 2-40 DN40 020 F ● ● 97688300

VFI 3.2-64 DN50 020 E

2 - 64 DN 50

● ● 97686145

VFI 3.2-64 DN50 020 F ● ● 97686146

• Housing material:Stainless steel (1.4408)

• Sensor material:Stainless steel (1.4404)

• Flange material:Cast iron

• 4-20 mA output signal• 5 m cable with M12

connection in one end.

VFI 3.2-64 DN50 020 E ● ● 97688301

VFI 3.2-64 DN50 020 F ● ● 97688302

VFI 5.2-104 DN65 020 E

5.2 - 104 DN 65

● ● 97686147

VFI 5.2-104 DN65 020 F ● ● 97686148

VFI 5.2-104 DN65 020 E ● ● 97688303

VFI 5.2-104 DN65 020 F ● ● 97688304

VFI 8-160 DN80 020 E

8 - 160 DN 80

● ● 97686149

VFI 8-160 DN80 020 F ● ● 97686150

VFI 8-160 DN80 020 E ● ● 97688305

VFI 8-160 DN80 020 F ● ● 97688306

VFI 12-240 DN100 020 E

12 - 240 DN 100

● ● 97686151

VFI 12-240 DN100 020 F ● ● 97686152

VFI 12-240 DN100 020 E ● ● 97688308

VFI 12-240 DN100 020 F ● ● 97688309

Accessory Type Supplier Measuring range Product number

Temperature sensor TTA (0) 25 Carlo Gavazzi 0-25 °C 96432591

Temperature sensor TTA (-25) 25 Carlo Gavazzi -25 - +25 °C 96430194

Temperature sensor TTA (50) 100 Carlo Gavazzi 50-100 °C 96432592

Temperature sensor TTA (0) 150 Carlo Gavazzi 0-150 °C 96430195

Accessory for temperature sensor.All with 1/2 RG connection.

Protecting tube∅9 x 50 mm

Carlo Gavazzi 96430201

Protecting tube∅9 x 100 mm

Carlo Gavazzi 96430202

Cutting ring bush Carlo Gavazzi 96430203

Temperature sensor,ambient temperature

WR 52tmg

(DK: Plesner)-50 - +50 °C ID8295

Differential temperature sensor ETSD Honsberg 0-20 °C 96409362

Differential temperature sensor ETSD Honsberg 0-50 °C 96409363

Danfoss pressure sensor kit Pressure range Product number

• Connection: G 1/2 A (DIN 16288 - B6kt)• Electrical connection: plug (DIN 43650)

0 - 2.5 bar 96478188

0 - 4 bar 91072075

0 - 6 bar 91072076

0 - 10 bar 91072077

0 - 16 bar 91072078

• Pressure sensor type MBS 3000, with 2 m screened cableConnection: G 1/4 A (DIN 16288 - B6kt)

• 5 cable clips (black)• Fitting instructions PT (00400212)

0 - 2.5 bar 405159

0 - 4 bar 405160

0 - 6 bar 405161

0 - 10 bar 405162

0 - 16 bar 405163

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Sensors for circulation applications

Select the differential pressure sensor so that the maximum pressure of the sensor is higher than the maximum differential pressure of the pump.

Sensor interface

1) For more information about the PSU sensor interface, see the installation and operating instructions "SI 001 PSU - sensor interface", publication number 96944355, or quick guide, publication number 96944356.

Grundfos differential pressure sensor, DPI Pressure range Product number

• 1 sensor incl. 0.9 m screened cable (7/16" connections)• 1 original DPI bracket (for wall mounting)• 1 Grundfos bracket (for mounting on motor)• 2 M4 screws for mounting of sensor on bracket• 1 M6 screw (self-cutting) for mounting on MGE 90/100• 1 M8 screw (self-cutting) for mounting on MGE 112/132• 1 M10 screw (self-cutting) for mounting on MGE 160• 1 M12 screw (self-cutting) for mounting on MGE 180• 3 capillary tubes (short/long)• 2 fittings (1/4" - 7/16")• 5 cable clips (black)• Installation and operating instructions• Service kit instruction

0 - 0.6 bar 96611522

0 - 1.0 bar 96611523

0 - 1.6 bar 96611524

0 - 2.5 bar 96611525

0 - 4.0 bar 96611526

0 - 6.0 bar 96611527

0 - 10 bar 96611550

Sensor interface, SI 001 PSU1) Description Product number

Grundfos Direct Sensors™, type SI 001 PSU, is an external power supply for the VFI, DPI and other transmitters with 24 VDC supply voltage.It is used when the cable between transmitter and controller is more than 30 metres long.

96915820

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MP 204 - advanced motor protectionThe MP 204 is an electronic motor protection for pumps. One unit covers all electrical motors from 3 to 999 A as well as voltages from 100 to 480 VAC.

Installation of the MP 204 is by means of screws onto a wall or back plate, or on a mounting rail.

Control MP 204The Control MP 204 is supplied as a plug-and-play control cabinet solution.

The main switch and LED panel showing power consumption are all you see on the front. Inside you find the MP 204 unit and optional communication interface units.

For more information about the MP 204 and Control MP 204, see the data booklet "Control MP 204", publication number 97770915.

Component Description Functions

MP 204

TM

03

01

50

42

04

The MP 204 is an electronic motor protector and data collecting unit. Apart from protecting the motor, it can also send information to a CIU unit via GENIbus, such as:• trip• warning• energy consumption• input power• motor temperature.The MP 204 protects the motor primarily by measuring the motor current by means of a true RMS measurement.The pump is protected secondarily by measuring the temperature with a Tempcon sensor, a Pt100/Pt1000 sensor and a PTC sensor/thermal switch.The MP 204 is designed for single- and three-phase motors.

Features• Phase-sequence monitoring• indication of current or temperature• input for PTC sensor/thermal switch• indication of temperature in °C or °F• 4-digit, 7-segment display• setting and status reading with the Grundfos R100 remote

control• setting and status reading via the Grundfos GENIbus

fieldbus.Tripping conditions• Overload• underload (dry running)• temperature• missing phase• phase sequence• overvoltage• undervoltage• power factor (cos φ)• current unbalance.Warnings• Overload• underload• temperature• overvoltage• undervoltage• power factor (cos φ)• run capacitor (single-phase operation)• starting capacitor (single-phase operation)• loss of communication in network• harmonic distortion.Learning function• Phase sequence (three-phase operation)• run capacitor (single-phase operation)• starting capacitor (single-phase operation)• identification and measurement of Pt100/Pt1000 sensor

circuit.

Cabinet type Description Functions

Control MP 204

TM

04

95

12

44

10

The Control MP 204 control cabinets are supplied with all necessary components. Three types of control cabinets are available, depending on functions and starting method.The control cabinets are designed for installation in a control cabinet for outdoor use.The Control MP 204 control cabinets have a built-in main switch and a thermal magnetic circuit breaker.

Digital input• Float switch or pressure relay (if no IO 112 is used).Analog input• Too high motor temperature (Tempcon)• thermistor/PTC, pump• pressure sensor, 4-20 mA (with IO 112).Relay output• Pump alarm.Communication• Grundfos Remote Management.• GSM/GPRS

(IO 112 not supported)• Modbus RTU wired

(IO 112 not supported)• PROFIBUS DP

(IO 112 not supported).Protection• Protects the pump against short-circuit.

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Potentiometer

Fig. 75 Potentiometer

Potentiometer for setpoint setting and start/stop of the pump.

Grundfos GO RemoteThe Grundfos GO Remote is used for wireless infrared or radio communication with the pumps.

Various Grundfos GO Remote variants are available. The variants are described in the following.

MI 201

The MI 201 is a complete solution, consisting of an Apple iPod touch 4G and a Grundfos cover for infrared and radio communication with Grundfos pumps or systems.

Fig. 76 MI 201

Supplied with the product:

• Apple iPod touch 4G incl. accessories

• Grundfos MI 201 cover

• battery charger

• quick guide.

MI 202 and MI 204

The MI 202 and MI 204 are add-on modules with built-in infrared and radio communication. The MI 202 can be used in conjunction with Apple iPod Touch 4, iPhone 4 and 4S.

The MI 204 can be used in conjunction with Apple iPod Touch 5G, iPhone 5 or later.

Fig. 77 MI 202 and MI 204

Supplied with the product:

• Grundfos MI 202 or 204

• sleeve

• quick guide

• charger cable.

MI 301

The MI 301 is a module with built-in infrared and radio communication. The MI 301 must be used in conjunction with an Android or iOS-based smartphone with a Bluetooth connection. The MI 301 has rechargeable Li-ion battery and must be charged separately.

Fig. 78 MI 301

Supplied with the product:

• Grundfos MI 301

• sleeve

• battery charger

• quick guide.

TM

02

16

30

51

02

Product Product number

External potentiometer with cabinet for wall mounting.

625468

TM

05

38

86

17

12

TM

05

38

87

16

12

- T

M0

5 7

70

4 1

51

3T

M0

5 3

89

0 1

71

2

MI 202 MI 204

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Product numbers

Supported units

Note: Similar Android and iOS-based devices may work as well, but are not supported by Grundfos.

CIU communication interface units

Fig. 79 Grundfos CIU communication interface unit

The CIU units enable communication of operating data, such as measured values and setpoints, between TPE pumps and a building management system. The CIU unit incorporates a 24-240 VAC/VDC power supply module and a CIM module. It can either be mounted on a DIN rail or on a wall.

We offer the following CIU units:

CIU 100

For communication via LON.

CIU 150

For communication via PROFIBUS DP.

CIU 200

For communication via Modbus RTU.

CIU 250

For communication via GSM/GPRS.

CIU 271

For communication via Grundfos Remote Management (GRM).

CIU 300

For communication via BACnet MS/TP.

* Antenna not included. See below.

Antennas for CIU 250 and 270

For further information about data communication via CIU units and fieldbus protocols, see the CIU documentation available in WebCAPS.

Grundfos GO Remote variant Product number

Grundfos MI 201 98140638

Grundfos MI 202 98046376

Grundfos MI 204 98424092

Grundfos MI 301 98046408

Make ModelOperating system

MI

20

1

MI

20

2

MI

20

4

MI

30

1

Apple

iPod touch 4GiOS 5.0 or later

● ● ●

iPhone 4, 4S ● ●

iPod touch 5GiOS 6.0 or later

● ●

iPhone 5 ● ●

HTCDesire S

Android 2.3.3 or later

Sensation Android 2.3.4 or later

SamsungGalaxy S II ●

Galaxy NexusAndroid 4.0 or later

LG Google Nexus 4Android 4.2 or later

GrA

611

8Description Fieldbus protocol Product number

CIU 100 LON 96753735

CIU 150 PROFIBUS DP 96753081

CIU 200 Modbus RTU 96753082

CIU 250* GSM/GPRS 96787106

CIU 271* GRM 96898819

CIU 300 BACnet MS/TP Contact Grundfos

Description Product number

Antenna for roof 97631956

Antenna for desk 97631957

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TP, TPD, TPE25

CIM communication interface modules

Fig. 80 Grundfos CIM communication interface module

The CIM modules enable communication of operating data, such as measured values and setpoints, between 11-22 kW TPE pumps and a building management system. The CIM modules are add-on communication modules which are installed in the terminal box of 11-22 kW TPE pumps.

Note: CIM modules must be installed by authorised personnel.

We offer the following CIM modules:

CIM 100

For communication via LON.

CIM 150

For communication via PROFIBUS DP.

CIM 200

For communication via Modbus RTU.

CIM 250

For wireless communication via GSM/GPRS.

CIM 271

For communication via Grundfos Remote Management (GRM).

CIM 300

For communication via BACnet MS/TP.

* Antenna not included. See below.

Antennas for CIM 250 and 270

For further information about data communication via CIM modules and fieldbus protocols, see the CIM documentation available in WebCAPS.

EMC filter

EMC (electromagnetic compatibility to EN 61800-3)

Fig. 81 EMC filter

The EMC filter for residential areas is available as a complete kit ready for installation.

GrA

61

21

Description Fieldbus protocol Product number

CIM 100 LON 96824797

CIM 150 PROFIBUS DP 96824793

CIM 200 Modbus RTU 96824796

CIM 250* GSM/GPRS 96824795

CIU 271* GRM 96898815

CIM 300 BACnet MS/TP Contact Grundfos

Description Product number

Antenna for roof 97631956

Antenna for desk 97631957

Motor [kW]Emission/immunity

2-pole 4-pole

0.37 0.37

Emission:Motors may be installed in residential areas (first environment), unrestricted distribution, corresponding to CISPR11, group 1, class B.

Immunity:Motors fulfil the requirements for both the first and second environment.

0.55 0.55

0.75 0.75

1.1 1.1

1.5 1.5

2.2 2.2

3.0 3.0

4.0 4.0

5.5 -

7.5 -

- 5.5 Emission:The motors are category C3, corresponding to CISPR11, group 2, class A, and may be installed in industrial areas (second environment).If equipped with an external Grundfos EMC filter, the motors are category C2, corresponding to CISPR11, group 1, class A, and may be installed in residential areas (first environment).

- 7.5

11 11

15 15

18.5 18.5

22 -

TM

02

91

98

12

03

Product Product number

EMC filter (TPE 5.5 kW and 7.5 kW, 4-pole) 96041047

EMC filter (TPE 11-22 kW) 96478309

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TP, TPD, TPE 26

26. Minimum inlet pressure - NPSH

To ensure optimum and noiseless operation we recommend the minimum inlet pressure values shown on pages 166 to 168.

A minimum inlet pressure is required to avoid pressure drops that may cause cavitation.

The minimum inlet pressure (ps) in bar relative (pressure gauge value on the pump suction side) can be calculated using the following formula.

Note: Calculation of the minimum inlet pressure should be based on the maximum required flow.

Fig. 82 Minimum inlet pressure

[bar relative]pS NPSHR HS+( ) ρ g× 12--- ρ c

2×× –×

0.00001 pb pd+–× ≥

ps = Minimum inlet pressure in bar.NPSHR = The required Net Positive Suction Head

in metres head.(To be read from the NPSH curve at the highest flow the pump will be delivering).

Hs = Safety margin = minimum 0.5 metres head.Note: A safety margin of 0.5 metres prevents pressure drop.

r = Density of the pumped liquid measured in kg/m3.

g = Gravitational acceleration measured in m/s. For estimated calculations, use the value 9.81 m/s2.

c = Flow velocity of the pumped liquid at the pressure gauge. Insert the flow velocity as the unit [m/s].(See individual curve charts from page 80).

pb = Barometric pressure in bar.(Set the barometric pressure to 0.97 bar).Note: Only occasionally is the pressure as high as 1 bar. Furthermore, this value is at sea level.

pd = Vapour pressure in bar.(See fig. 82).

TM

02

84

91

02

04

- T

M0

3 0

37

1 5

00

4

NPSH

Psc

1.99

1.43

1.01

0.70

0.47

0.31

0.20

0.07

0.04

0.02

0.01

0.12

120

110

90

100

80

70

60

50

40

30

20

10

0

Temp.[˚C]

150

130

140

2.70

3.61

4.76

Pd[bar]

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TP, TPD 2-pole, PN 6, 10, 16

Pump typep [bar]

20 °C 60 °C 90 °C 110 °C 120 °C 140 °C

TP 32-80/2 0.4 0.4 0.4 1.2 1.7 3.4

TP 32-160/2 0.4 0.6 1.1 1.9 2.4 4.1

TP 32-220/2 0.7 0.9 1.4 2.2 2.7 4.4

TP 32-260/2 0.7 0.9 1.4 2.2 2.7 4.4

TP 32-330/2 0.7 0.9 1.4 2.2 2.7 4.4

TP, TPD 32-300/2 0.1 0.1 0.1 0.7 1.2 2.8

TP, TPD 32-360/2 0.1 0.1 0.1 0.7 1.2 2.8

TP, TPD 32-450/2 0.1 0.1 0.1 0.7 1.2 2.8

TP, TPD 32-550/2 0.1 0.1 0.1 0.7 1.2 2.9

TP, TPD 32-680/2 0.1 0.1 0.1 0.8 1.4 3.1

TP, TPD 32-820/2 0.5 0.7 1.2 1.9 2.5 4.1

TP 40-80/2 0.1 0.3 0.8 1.6 2.1 3.8

TP 40-160/2 0.1 0.2 0.7 1.5 2.0 3.7

TP 40-240/2 0.4 0.6 1.1 1.9 2.4 4.1

TP 40-270/2 0.7 0.9 1.4 2.2 2.7 4.4

TP 40-330/2 0.7 0.9 1.4 2.2 2.7 4.4

TP 40-390/2 0.7 0.9 1.4 2.2 2.7 4.4

TP, TPD 40-370/2 0.1 0.1 0.1 0.8 1.3 2.9

TP, TPD 40-450/2 0.1 0.1 0.1 0.8 1.4 3.0

TP, TPD 40-550/2 0.1 0.1 0.1 0.8 1.4 3.0

TP, TPD 40-740/2 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 40-850/2 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 40-930/2 0.3 0.5 1.0 1.7 2.3 3.9

TP 50-80/2 0.1 0.1 0.6 1.4 1.9 3.6

TP 50-160/2 0.4 0.6 1.1 1.9 2.4 4.1

TP 50-240/2 0.3 0.5 1.0 1.8 2.3 4.0

TP, TPD 50-250/2 0.1 0.1 0.2 1.0 1.5 3.1

TP, TPD 50-300/2 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 50-350/2 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 50-410/2 0.1 0.1 0.4 1.1 1.6 3.3

TP, TPD 50-440/2 0.1 0.1 0.5 1.2 1.8 3.4

TP, TPD 50-540/2 0.1 0.2 0.7 1.4 2.0 3.6

TP, TPD 50-720/2 0.1 0.3 0.8 1.6 2.1 3.7

TP, TPD 50-790/2 0.5 0.7 1.2 1.9 2.5 4.1

TP, TPD 50-880/2 0.8 1.0 1.5 2.2 2.8 4.4

TP 50-1050/2 1.1 1.3 1.8 2.5 3.1 4.7

TP 65-80/2 0.6 0.8 1.3 2.1 2.6 4.3

TP 65-160/2 1.1 1.3 1.8 2.6 3.1 4.8

TP 65-240/2 0.9 1.1 1.6 2.4 2.9 4.6

TP, TPD 65-220/2 0.1 0.1 0.2 0.9 1.4 3.1

TP, TPD 65-260/2 0.1 0.1 0.2 0.9 1.5 3.1

TP, TPD 65-340/2 0.1 0.1 0.2 1.0 1.5 3.1

TP, TPD 65-390/2 0.1 0.1 0.3 1.0 1.5 3.2

TP, TPD 65-480/2 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 65-540/2 0.1 0.1 0.3 1.1 1.6 3.2

TP, TPD 65-630/2 0.1 0.1 0.4 1.1 1.7 3.3

TP, TPD 65-740/2 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 65-910/2 0.1 0.2 0.7 1.5 2.0 3.6

TP, TPD 65-920/2 0.1 0.2 0.7 1.4 2.0 3.6

TP, TPD 65-1050/2 0.1 0.2 0.7 1.5 2.0 3.6

TP 80-160/2 2.1 2.3 2.8 3.6 4.1 5.8

TP, TPD 80-200/2 0.5 0.7 1.2 1.9 2.5 4.1

TP, TPD 80-240/2 0.1 0.2 0.7 1.4 2.0 3.6

TP, TPD 80-290/2 0.1 0.3 0.8 1.5 2.1 3.7

TP, TPD 80-330/2 0.2 0.4 0.9 1.7 2.2 3.8

TP, TPD 80-400/2 0.6 0.8 1.3 2.1 2.6 4.2

TP, TPD 80-480/2 0.1 0.3 0.8 1.5 2.1 3.7

TP, TPD 80-530/2 0.2 0.4 0.9 1.6 2.1 3.8

TP, TPD 80-640/2 0.6 0.8 1.3 2.0 2.6 4.2

TP, TPD 80-750/2 0.6 0.8 1.3 2.0 2.6 4.2

TP, TPD 100-230/2 0.4 0.6 1.1 1.9 2.4 4.0

TP, TPD 100-300/2 0.2 0.4 0.9 1.6 2.2 3.8

TP, TPD 100-370/2 0.3 0.5 1.0 1.7 2.3 3.9

TP, TPD 100-350/2 0.9 1.1 1.6 2.3 2.9 4.5

TP, TPD 100-380/2 1.2 1.4 1.9 2.6 3.2 4.8

TP, TPD 100-530/2 1.7 1.9 2.4 3.2 3.7 5.3

TP, TPD 100-630/2 1.4 1.6 2.1 2.8 3.3 5.0

TP, TPD 100-700/2 3.0 3.2 3.7 4.4 5.0 6.6

Pump typep [bar]

20 °C 60 °C 90 °C 110 °C 120 °C 140 °C

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TP, TPD 4-pole, PN 6, 10, 16

Pump typep [bar]

20 °C 60 °C 90 °C 110 °C 120 °C 140 °C

TP 32-40/4 0.1 0.1 0.1 0.9 1.4 3.1

TP 32-80/4 0.1 0.1 0.5 1.3 1.8 3.5

TP, TPD 32-120/4 0.1 0.1 0.1 0.7 1.3 2.9

TP, TPD 32-140/4 0.1 0.1 0.1 0.7 1.3 2.9

TP, TPD 32-190/4 0.1 0.1 0.1 0.8 1.4 3.0

TP 40-40/4 0.1 0.1 0.3 1.1 1.6 3.3

TP 40-80/4 0.1 0.1 0.2 1.0 1.5 3.2

TP, TPD 40-120/4 0.1 0.1 0.1 0.5 1.1 2.7

TP, TPD 40-160/4 0.1 0.1 0.1 0.6 1.2 2.8

TP, TPD 40-190/4 0.1 0.1 0.1 0.7 1.2 2.8

TP, TPD 40-220/4 0.1 0.1 0.2 0.9 1.4 3.1

TP 50-40/4 0.1 0.1 0.3 1.1 1.6 3.3

TP 50-80/4 0.1 0.1 0.3 1.1 1.6 3.3

TP, TPD 50-110/4 0.1 0.1 0.1 0.6 1.2 2.8

TP, TPD 50-120/4 0.1 0.1 0.1 0.7 1.2 2.8

TP, TPD 50-140/4 0.1 0.1 0.1 0.7 1.3 2.9

TP, TPD 50-190/4 0.1 0.1 0.1 0.8 1.4 3.0

TP, TPD 50-240/4 0.1 0.1 0.2 0.9 1.5 3.1

TP, TPD 50-270/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 50-340/4 0.1 0.2 0.7 1.4 2.0 3.6

TP 65-40/4 0.4 0.6 1.1 1.9 2.4 4.1

TP 65-80/4 0.7 0.9 1.4 2.2 2.7 4.4

TP, TPD 65-130/4 0.1 0.1 0.1 0.6 1.2 2.8

TP, TPD 65-150/4 0.1 0.1 0.1 0.6 1.2 2.8

TP, TPD 65-190/4 0.1 0.1 0.1 0.6 1.2 2.8

TP, TPD 65-230/4 0.1 0.1 0.1 0.7 1.3 2.9

TP, TPD 65-310/4 0.1 0.1 0.1 0.7 1.3 2.9

TP, TPD 65-330/4 0.1 0.1 0.1 0.3 0.8 2.5

TP 80-40/4 1.5 1.7 2.2 3.0 3.5 5.2

TP 80-80/4 1.6 1.8 2.3 3.1 3.6 5.3

TP, TPD 80-110/4 0.1 0.1 0.1 0.8 1.4 3.0

TP, TPD 80-150/4 0.1 0.1 0.1 0.8 1.3 2.9

TP, TPD 80-170/4 0.1 0.1 0.1 0.8 1.3 3.0

TP, TPD 80-230/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 80-280/4 0.1 0.1 0.2 1.0 1.5 3.1

TP, TPD 80-340/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 80-410/4 0.1 0.1 0.5 1.2 1.8 3.4

TP, TPD 80-460/4 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 80-510/4 0.1 0.2 0.7 1.5 2.0 3.6

TP 100-40/4 1.4 1.6 2.1 2.9 3.4 5.1

TP, TPD 100-100/4 0.1 0.1 0.2 0.9 1.5 3.1

TP, TPD 100-130/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 100-150/4 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 100-170/4 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 100-200/4 0.1 0.1 0.4 1.1 1.7 3.3

TP, TPD 100-240/4 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 100-260/4 0.6 0.8 1.3 2.1 2.7 4.3

TP, TPD 100-290/4 0.5 0.7 1.2 2.0 2.5 4.1

TP, TPD 100-340/4 0.6 0.8 1.3 2.0 2.6 4.2

TP, TPD 100-350/4 0.2 0.4 0.9 1.7 2.3 3.9

TP, TPD 100-390/4 0.7 0.9 1.4 2.1 2.7 4.3

TP, TPD 100-470/4 0.9 1.1 1.6 2.3 2.9 4.5

TP 125-100/4 0.1 0.1 0.3 1.0 1.6 3.2

TP 125-120/4 0.1 0.1 0.3 1.0 1.6 3.2

TP 125-140/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 125-130/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 125-160/4 0.1 0.1 0.3 1.1 1.6 3.2

TP, TPD 125-210/4 0.1 0.1 0.3 1.0 1.6 3.2

TP, TPD 125-230/4 0.1 0.1 0.4 1.1 1.7 3.3

TP, TPD 125-260/4 0.1 0.1 0.4 1.2 1.7 3.3

TP, TPD 125-320/4 0.1 0.1 0.3 1.1 1.6 3.2

TP, TPD 125-360/4 0.1 0.1 0.4 1.1 1.7 3.3

TP, TPD 125-430/4 0.1 0.1 0.5 1.3 1.8 3.4

TP, TPD 125-490/4 0.1 0.3 0.8 1.5 2.1 3.7

TP 150-170/4 0.4 0.6 1.1 1.8 2.4 4.0

TP, TPD 150-180/4 0.1 0.2 0.7 1.4 1.9 3.6

TP 150-190/4 0.1 0.2 0.7 1.4 2.0 3.6

TP, TPD 150-210/4 0.1 0.2 0.7 1.4 2.0 3.6

TP 150-230/4 0.1 0.1 0.6 1.3 1.9 3.5

TP, TPD 150-240/4 0.1 0.2 0.7 1.5 2.0 3.6

TP 150-250/4 0.1 0.1 0.5 1.2 1.8 3.4

TP, TPD 150-300/4 0.1 0.3 0.8 1.5 2.1 3.7

TP, TPD 150-340/4 0.1 0.3 0.8 1.5 2.1 3.7

TP 150-360/4 0.3 0.5 1.0 1.8 2.3 4.0

TP 150-400/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-440/4 0.1 0.1 0.4 1.1 1.7 3.3

TP 150-480/4 0.1 0.1 0.5 1.3 1.8 3.4

TP 150-610/4 0.1 0.2 0.7 1.4 2.0 3.6

TP 150-700/4 0.1 0.3 0.8 1.5 2.1 3.7

TP 200-80/4 0.9 1.1 1.6 2.3 2.9 4.5

TP 200-110/4 0.5 0.6 1.1 1.9 2.4 4.0

TP 200-140/4 0.3 0.5 1.0 1.7 2.3 3.9

TP 200-190/4 0.2 0.4 0.9 1.6 2.2 3.8

TP 200-210/4 0.1 0.2 0.7 1.4 2.0 3.6

TP 200-250/4 0.9 1.0 1.5 2.3 2.8 4.4

TP 200-280/4 0.7 0.9 1.4 2.1 2.7 4.3

TP 200-320/4 0.6 0.8 1.3 2.0 2.6 4.2

TP 200-360/4 0.4 0.6 1.1 1.8 2.4 4.0

TP 200-390/4 0.3 0.5 1.0 1.7 2.2 3.9

TP 200-400/4 0.1 0.1 0.6 1.3 1.9 3.6

TP 200-430/4 0.1 0.1 0.6 1.4 1.9 3.6

TP 200-440/4 0.1 0.2 0.7 1.5 2.0 3.7

TP 200-490/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-500/4 0.2 0.4 0.9 1.6 2.2 3.9

TP 200-540/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-600/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-680/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-770/4 0.1 0.2 0.7 1.4 2.0 3.7

TP 250-450/4 1.5 1.7 2.2 2.9 3.5 5.2

TP 250-530/4 1.5 1.7 2.2 2.9 3.5 5.2

TP 250-580/4 1.4 1.6 2.1 2.9 3.4 5.1

Pump typep [bar]

20 °C 60 °C 90 °C 110 °C 120 °C 140 °C

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TP Series 400, 2-pole, PN 25

TP Series 400, 4-pole, PN 25

Pump typep [bar]

20 °C 60 °C 90 °C 110 °C 120 °C 140 °C

TP 100-1000/2 0.5 0.7 1.2 1.9 2.5 4.2

TP 100-1100/2 0.4 0.6 1.1 1.9 2.4 4.1

TP 100-1250/2 0.4 0.6 1.1 1.8 2.4 4.1

TP 100-1350/2 0.3 0.5 1.0 1.8 2.3 4.0

TP 100-1450/2 0.6 0.8 1.3 2.1 2.6 4.3

TP 100-1560/2 0.6 0.8 1.3 2.0 2.6 4.3

TP 100-1700/2 0.5 0.7 1.2 2.0 2.5 4.2

TP 100-2100/2 0.5 0.7 1.2 1.9 2.5 4.2

TP 100-2350/2 0.4 0.6 1.1 1.8 2.4 4.1

Pump typep [bar]

20 °C 60 °C 90 °C 110 °C 120 °C 140 °C

TP 100-210/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-250/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-330/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-360/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-420/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-450/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-530/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 100-590/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 125-240/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 125-270/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 125-310/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 125-370/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 125-350/4 0.1 0.2 0.7 1.5 2.0 3.7

TP 125-440/4 0.1 0.2 0.7 1.5 2.0 3.7

TP 125-500/4 0.1 0.2 0.7 1.4 2.0 3.7

TP 125-570/4 0.1 0.2 0.7 1.4 2.0 3.7

TP 125-620/4 0.1 0.1 0.6 1.4 1.9 3.6

TP 150-330/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-370/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-450/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-490/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-710/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-800/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 150-930/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-220/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-250/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-310/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-350/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-370/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-520/4 0.1 0.1 0.1 0.8 1.4 3.1

TP 200-560/4 0.1 0.1 0.6 1.3 1.9 3.6

TP 200-670/4 0.2 0.4 0.9 1.7 2.2 3.9

TP 200-760/4 0.2 0.4 0.9 1.6 2.2 3.9

TP 200-840/4 0.2 0.4 0.9 1.6 2.2 3.9

TP 200-930/4 0.2 0.4 0.9 1.6 2.2 3.9

TP 250-430/4 0.3 0.5 1.0 1.7 2.3 4.0

TP 250-500/4 0.2 0.4 0.9 1.7 2.2 3.9

TP 250-550/4 0.2 0.4 0.9 1.7 2.2 3.9

TP 250-720/4 0.4 0.6 1.1 1.8 2.4 4.1

TP 250-800/4 0.4 0.6 1.1 1.8 2.4 4.1

TP 250-910/4 0.4 0.6 1.1 1.8 2.4 4.1

TP 250-1020/4 0.4 0.6 1.1 1.8 2.4 4.1

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27. Key application data

Dear customer, if an ATEX certificate is needed or if pump selection cannot be made on the basis of the guidelines in Pumped liquids, please fill in the following form in cooperation with a Grundfos representative. This will help to ensure that Grundfos supplies you with a pump solution adapted to meet exactly your needs in terms of pump type, pump materials, shaft seal type, elastomers and accessories.

This form is also available under "Literature" in WebCAPS and WinCAPS.

Customer information

Quotation made by:

Operating conditions

Pumped liquid

Company name: Project title:

Customer number: Reference number:

Phone number: Customer contact:

Fax number:

E-mail address:

Company name: Prepared by:

Phone number: Date: Page 1 of

Fax number:Quotation number:

E-mail address:

Type of liquid:

Chemical composition (if available):

Distilled/demineralised water? Yes: No:

Conductivity of distilled/demineralised water: [μS/cm]

Minimum liquid temperature: [°C]

Maximum liquid temperature: [°C]

Vapour pressure of liquid: [bar]

Liquid concentration: %

Liquid pH value:

Dynamic liquid viscosity: [cP] = [mPa s]

Kinematic liquid viscosity: [cSt] = [mm2/s]

Liquid density: [kg/m3]

Specific heat capacity of liquid: [kJ/(kg·K)]

Air/gas in liquid? Yes: No:

Solids in liquid? Yes: No:

Contents of solids in liquid (if available): % of mass

Additives in liquid? Yes: No:

Does the liquid crystallise? Yes: No:

When does crystallisation happen?

Does the liquid get sticky when volatiles evaporate from the pumped liquid? Yes: No:

Description of ’sticky’ circumstances:

Is the liquid hazardous/poisonous? Yes: No:

Special measures to be taken into account when dealing with this hazardous/poisonous liquid:

Special measures for handling this liquid:

CIP liquid (cleaning-in-place)

Type of liquid:

Chemical composition (if available):

Liquid temperature during operation: [°C]

Maximum liquid temperature: [°C]

Vapour pressure of liquid: [bar]

Liquid concentration: %

Liquid pH value:

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System information

Please provide us with information about your system and maybe a simple sketch. This will give us hints as to whether you need accessories or monitoring equipment, or whether you already have a suitable system which makes it unnecessary to attach any further equipment.

Pump sizing

Main duty point: Q: [m3/h] H: [m]

Max. duty point: Q: [m3/h] H: [m]

Min. duty point: Q: [m3/h] H: [m]

Ambient operating conditions

Ambient temperature: [°C]

Altitude above sea level: [m]

Pressure

Minimum inlet pressure: [bar]

Maximum inlet pressure: [bar]

Discharge pressure (inlet pressure + head): [bar]

ATEX marking

Required marking of the pump

Customer’s equipment group (e.g. II):

Customer’s equipment category (e.g. 2, 3):

Gas (G) and/or dust (D): Gas (G): Dust (D): Gas and dust (G/D):

Required marking of the motor

Protection type (e.g. d, de, e, nA):

Maximum experimental safe gap (e.g. B, C):

Temperature class

- gas (e.g. T3, T4, T5):

- dust (e.g. 125 °C): [°C]

Description/sketch

Detailed description of ATEX application(attach a drawing if possible):

ATEX certificate required Yes: No:

Frequency converter

Frequency converter option wanted? Yes: No:

Control parameter: Pressure: Temperature: Flow rate: Other:

Detailed description of requirements(attach a drawing if possible):

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TP, TPD, TPE 28

28. Further product documentation

WebCAPS

WebCAPS is a Web-based Computer Aided Product Selection program available on www.grundfos.com.

WebCAPS contains detailed information on more than 220,000 Grundfos products in more than 30 languages.

Information in WebCAPS is divided into six sections:

• Catalogue

• Literature

• Service

• Sizing

• Replacement

• CAD drawings.

Catalogue

Based on fields of application and pump types, this section contains the following:• technical data• curves (QH, Eta, P1, P2, etc.) which can be adapted to the

density and viscosity of the pumped liquid and show the number of pumps in operation

• product photos• dimensional drawings• wiring diagrams• quotation texts, etc.

Literature

This section contains all the latest documents of a given pump, such as• data booklets• installation and operating instructions• service documentation, such as Service kit catalogue and

Service kit instructions• quick guides• product brochures.

Service

This section contains an easy-to-use interactive service catalogue. Here you can find and identify service parts of both existing and discontinued Grundfos pumps.Furthermore, the section contains service videos showing you how to replace service parts.

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WinCAPS

Fig. 83 WinCAPS DVD

Sizing

This section is based on different fields of application and installation examples and gives easy step-by-step instructions in how to size a product:• Select the most suitable and efficient pump for your

installation.• Carry out advanced calculations based on energy,

consumption, payback periods, load profiles, life cycle costs, etc.

• Analyse your selected pump via the built-in life cycle cost tool.• Determine the flow velocity in wastewater applications, etc.

Replacement

In this section you find a guide to selecting and comparing replacement data of an installed pump in order to replace the pump with a more efficient Grundfos pump. The section contains replacement data of a wide range of pumps produced by other manufacturers than Grundfos.

Based on an easy step-by-step guide, you can compare Grundfos pumps with the one you have installed on your site. When you have specified the installed pump, the guide will suggest a number of Grundfos pumps which can improve both comfort and efficiency.

CAD drawings

In this section, it is possible to download 2-dimensional (2D) and 3-dimensional (3D) CAD drawings of most Grundfos pumps.

These formats are available in WebCAPS:

2-dimensional drawings:• .dxf, wireframe drawings• .dwg, wireframe drawings.

3-dimensional drawings:• .dwg, wireframe drawings (without surfaces)• .stp, solid drawings (with surfaces)• .eprt, E-drawings.

WinCAPS is a Windows-based Computer Aided Product Selection program containing detailed information on more than 220,000 Grundfos products in more than 30 languages.

The program contains the same features and functions as WebCAPS, but is an ideal solution if no internet connection is available.

WinCAPS is available on DVD and updated once a year.

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TP, TPD, TPE 28

GO CAPS

Mobile solution for professionals on the GO!

CAPS functionality on the mobile workplace.

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GRUNDFOS A/S DK-8850 Bjerringbro . DenmarkTelephone: +45 87 50 14 00www.grundfos.com

V7152685 1013

ECM: 1121244 Th

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