Auma Matic Section

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 Auma Actuators

Auma Matic Section

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 AUMA actuator controls

Multi-turn actuators

SA 07.1 - SA 16.1

Part-turn actuators

SG 05.1 - SG 12.1

Actuator with

Integral Control

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Design principl e

Plug/ socket connector to

actuator 

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Design principl e

Plug/ socket connector to

actuator 

Reversing contactors or 

thyristors

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Reversing contactors or thyristors

Plug/ socket connector to

actuator 

Design principl e

Power supply unit

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Design principl e

Reversing contactors or thyristors

Power supply unit

Local controls with board

Plug/ socket connector to

actuator 

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Design principl e

Logic board

Reversing contactors or thyristors

Power supply unit

Local controls with board

Plug/ socket connector to

actuator 

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Design principl e

Interface

Positioner / Timer 

Logic board

Reversing contactors or thyristors

Power supply unit

Plug/ socket connector to

actuator 

Local controls with board

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Design principl e

Logic board

Interface

Positioner / Timer 

Plug/ socket connector 

for customer connection

Reversing contactors or thyristors

Power supply unit

Plug/ socket connector to

actuator 

Local controls with board

Partlist

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 Att ention! 

ElectroStaticDischarge can destroy electronic components

Everybody can be electrostatically charged

Up to 10 kV

Shoes with rubber soles

Clothing with synthetic fibres

Before starting service tasks you have to discharge through earthing

Touch the controls housing

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E l ectrical connection

 AUM A plug/socket

connector 

(standard)

Terminals

Double sealed

intermediate frame

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W iring diagrams

There is a wiring diagram

MSP for each controlversion

14-digit wiring diagram code

Customer Connection

Wiring of Matic Unit

Wiring of Norm Unit

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W iring diagrams

Customer Connection

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W iring diagramsWiring of Matic Unit

A1.0 - Interfce Board

A8 ± Power Supply Board

A2 ± Logic Board

A20 ± Relay Board

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W iring diagrams

Actuator equipment Wiring of Norm Unit

Legend AM

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Logic board - Programming 

Setting of the type of seating for Close and Open Direction

End position

OPEN

End position

CLOSED1 By Limit

1 By Limit

2 By Torque

2 By Torque

Instruction

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Logic board - Programming 

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I nt erfac e Board - Diagnosis

Diagnostic LEDs ON Interface Board

V 14 - Phase failure or Thermal protection tripped

Diagnostic LEDs ON Interface Board

V 14 - Phase failure or Thermal protection tripped

V15 ± Torque switch tripped

Diagnostic LEDs ON Interface Board

V 14 - Phase failure or Thermal protection tripped

V15 ± Torque switch tripped

Open ± Remote Open Signal Available

Diagnostic LEDs ON Interface Board

V 14 - Phase failure or Thermal protection tripped

V15 ± Torque switch tripped

Open ± Remote Open Signal Available

Close ± Remote Close Signal Available

Diagnostic LEDs ON Interface Board

V 14 - Phase failure or Thermal protection tripped

V15 ± Torque switch tripped

Open ± Remote Open Signal Available

Close ± Remote Close Signal Available

Stop ± Remote Stop Signal Available

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Positioner board 

Position feedback

Positioner 

Nominal position

value

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Positioner board - Programming 

S1-7

S2-7

Setting Type of Signal (S1-7)Setting Type of Fail Behaviour (S2-7)

Instruction

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Positioner board - S etting Proc edur e

End position CLOSED

Position feedback

4 mA

Nominal position value

4 mA

If Green LED light up,

Turn pot µ0¶ clockwiseuntil light goes out

If Yellow LED light up,

Turn pot µ0¶ counter 

clockwise until light goes

out

Note : Re-turning pot until

 Yellow just lightup

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Positioner - S etting Proc edur e

End position OPENED

Position feedback

20 mA

Nominal position value

20 mA

If Green LED light up,

Turn pot µmax¶ clockwiseuntil light goes out

If Yellow LED light up,

Turn pot µ0¶ counter 

clockwise until light goes

out

Note : Re-turning pot until

Green just lightup

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Positioner board - S etting Proc edur e

Dead band (E (to prevent over-shooting)

Dead band can be

increased by turning µ(E¶clockwise (max value 2.5%)

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Positioner board - S etting Proc edur e

Sens fine tuning (for speed < 16Rpm)

A better Sensitivity can be

achieved by turning µsens¶

clockwise (max 0.25%)

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T imer board 

Extended operating time

ON times inCLOSE

OFF timesin CLOSE

OFF timesin OPEN

ON timesin OPEN

ON and OFF times can be

set independently of each

other, between 1 ± 30 sec

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R e placing the fuses

Controls with reversing contactors Controls with thyristors

F1

F2

Power supply unit primary part 1  A T 250 V Thyristor 16  A FF

250 V

F3 Secondary voltage 1

Electronics

Position transmitter in the

actuator 

500 m A T Secondary voltage 1

Electronics

Position transmitter in

the actuator 

500 m A T

F4 Secondary voltage 2

Control by reversing

contactors

Heater 

External 24 V DC

1.6  A T Secondary voltage 2

Heater 

External 24 V DC

1.6  A T

F1 F2 F3 F4

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 Auma Actuators

That¶s All For

Auma Matic