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Product Specification February 18, 2014 V.10 DATA SHEET SURFACE-MOUNT CERAMIC MULTILAYER CAPACITORS General purpose Class 1, NP0 16 V TO 50 V 0.22 pF to 100 nF RoHS compliant & Halogen Free
Transcript

Pro

duct

Speci

fica

tio

n –

Febru

ary

18, 2014 V

.10

DATA SHEET

SURFACE-MOUNT CERAMIC

MULTILAYER CAPACITORS General purpose

Class 1, NP0 16 V TO 50 V

0.22 pF to 100 nF

RoHS compliant & Halogen Free

www.yageo.com

Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

2

14

Product specification

General Purpose

16 V to 50 V

NP0

SCOPE

This specification describes NP0

series chip capacitors with lead-

free terminations.

APPLICATIONS

Consumer electronics for

example

- Tuners

- Television receivers

- All types of cameras

Telecommunications

Data processing

FEATURES

Supplied in tape on reel

Nickel-barrier end termination

RoHS compliant

Halogen Free compliant

ORDERING INFORMATION - GLOBAL PART NUMBER, PHYCOMP

CTC & 12NC

All part numbers are identified by the series, size, tolerance, TC material,

packing style, voltage, process code, termination and capacitance value.

YYAAGGEEOO BBRRAANNDD oorrddeerriinngg ccooddee

GLOBAL PART NUMBER (PREFERRED)

CC XXXX X X NPO X BN XXX (1) (2) (3) (4) (5)

(1) SIZE – INCH BASED (METRIC)

0201 (0603)

0402 (1005)

0603 (1608)

0805 (2012)

1206 (3216)

1210 (3225)

1812 (4532)

(2) TOLERANCE

B = ± 0.1 pF

C = ± 0.25 pF

D = ± 0.5 pF

F = ± 1%

G = ± 2%

J = ± 5%

K = ± 10%

(3) PACKING STYLE

R = Paper/PE taping reel; Reel 7 inch

K = Blister taping reel; Reel 7 inch

P = Paper/PE taping reel; Reel 13 inch

F = Blister taping reel; Reel 13 inch

C = Bulk case

(4) RATED VOLTAGE

7 = 16 V

8 = 25 V

9 = 50 V

(5) CAPACITANCE VALUE

2 significant digits+number of zeros

The 3rd digit signifies the multiplying factor, and letter R is decimal point

Example: 121 = 12 x 101 = 120 pF

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

CONSTRUCTION

The capacitor consists of a

rectangular block of ceramic

dielectric in which a number of

interleaved metal electrodes

are contained. This structure

gives rise to a high capacitance

per unit volume.

The inner electrodes

are connected to the two

end terminations

and finally covered with a layer

of plated tin (NiSn). The

terminations are lead-free.

A cross section of the structure

is shown in Fig.1.

MLB457

terminations

electrodes

ceramic material

Fig. 1 Surface mounted multilayer ceramic capacitor construction

TYPE L1 (mm) W (mm) T (MM) L2 / L3 (mm) L4 (mm)

min. max. min.

0201 0.6 ± 0.03 0.3 ± 0.03

Refer to

table 2 to 5

0.10 0.20 0.20

0402 1.0 ± 0.05 0.5 ± 0.05 0.20 0.30 0.40

0603 1.6 ± 0.10 0.8 ± 0.10 0.20 0.60 0.40

0805 2.0 ± 0.10 (1) 1.25 ± 0.10 (1)

0.25 0.75 0.55 2.0 ± 0.20 (2) 1.25 ± 0.20 (2)

1206 3.2 ± 0.15 (1) 1.6 ± 0.15 (1)

0.25 0.75 1.40 3.2 ± 0.30 (2) 1.6 ± 0.20 (2)

1210 3.2 ± 0.20 2.5 ± 0.20 0.25 0.75 1.40

1812 4.5 ± 0.20 3.2 ± 0.20 0.25 0.75 2.20

NOTE

1. Dimension for size 0805 and 1206, C ≤ 1 nF

2. Dimension for size 0805 and 1206, C > 1 nF

Table 1 For outlines see fig. 2

DIMENSION

OOUUTTLLIINNEESS

For dimension see Table 1

Fig. 2 Surface

mounted multilayer ceramic capacitor dimension

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Feb. 18, 2014 V10

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Product specification

General Purpose

16 V to 50 V

NP0

CAPACITANCE RANGE & THICKNESS FOR NP0

Table 2 Sizes from 0201 to 0603

CAP. 0201 0402 0603

25 V 50 V 16 V 25 V 50 V 16 V 25 V 50 V

0.22 pF

0.3± 0.03 0.3± 0.03

0.47 pF

0.5± 0.05 0.5±0.05 0.5±0.05 0.8±0.1 0.8± 0.1 0.8± 0.1

0.82 pF

1.0 pF

1.2 pF

1.5 pF

1.8 pF

2.2 pF

2.7 pF

3.3 pF

3.9 pF

4.7 pF

5.6 pF

6.8 pF

8.2 pF

10 pF

12 pF

15 pF

18 pF

22 pF

27 pF

33 pF

39 pF

47 pF

56 pF

68 pF

82 pF

100 pF

NOTE

1. Values in shaded cells indicate thickness class in mm

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

CAP. 0201 0402 0603

25 V 50 V 16 V 25 V 50 V 16 V 25 V 50 V

120 pF

0.5± 0.05 0.5±0.05 0.5±0.05

0.8±0.1 0.8± 0.1 0.8± 0.1

150 pF

180 pF

220 pF

270 pF

330 pF

390 pF

470 pF

560 pF

680 pF

820 pF

1.0 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05

1.2 nF

1.5 nF

1.8 nF

2.2 nF

2.7 nF

3.3 nF

3.9 nF

4.7 nF

5.6 nF

6.8 nF

8.2 nF

10 nF

12 nF

15 nF

18 nF

22 nF

33 nF

NOTE

1. Values in shaded cells indicate thickness class in mm

Table 3 Sizes from 0201 to 0603 (continued)

CAPACITANCE RANGE & THICKNESS FOR NP0

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

CAPACITANCE RANGE & THICKNESS FOR NP0

Table 4 Sizes from 0805 to 1812

CAP. 0805 1206 1210 1812

16 V 25 V 50 V 16 V 25 V 50 V 25 V 50 V 50 V

0.22 pF

0.47 pF

0.6± 0.1 0.6±0.1 0.6±0.1 0.6±0.1 0.6±0.1 0.6±0.1

0.82 pF

1.0 pF

1.2 pF

1.5 pF

1.8 pF

2.2 pF

2.7 pF

3.3 pF

3.9 pF

4.7 pF

5.6 pF

6.8 pF

8.2 pF

10 pF

12 pF

15 pF

18 pF

22 pF

27 pF

33 pF

39 pF

47 pF

1.25±0.2 1.25±0.2

56 pF

1.25±0.2 68 pF

82 pF

100 pF

NOTE

1. Values in shaded cells indicate thickness class in mm

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

CAP. 0805 1206 1210 1812

16 V 25 V 50 V 16 V 25 V 50 V 25 V 50 V 50 V

120 pF

0.6± 0.1 0.6±0.1 0.6±0.1

0.6±0.1 0.6±0.1 0.6±0.1

1.25±0.2 1.25±0.2

1.25±0.2

150 pF

180 pF

220 pF

270 pF

330 pF

390 pF

470 pF

560 pF

680 pF

820 pF

1.0 nF

1.2 nF

0.85±0.1 0.85± 0.1 0.85± 0.1 1.5 nF

1.8 nF

2.2 nF

1.25±0.2 1.25±0.2 1.25±0.2

2.7 nF

3.3 nF

0.85±0.1 0.85± 0.1 0.85± 0.1

3.9 nF

4.7 nF

5.6 nF

6.8 nF

8.2 nF

1.25±0.2 1.25±0.2 1.25±0.2

10 nF 0.85±0.1 0.85±0.1 0.85±0.1

12 nF

15 nF

18 nF

22 nF 2.0± 0.2

33 nF

47 nF

56 nF

68 nF

82 nF

100 nF 1.25±0.2

NOTE

1. Values in shaded cells indicate thickness class in mm

Table 5 Sizes from 0805 to 1812 (continued)

CAPACITANCE RANGE & THICKNESS FOR NP0

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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14

Product specification

General Purpose

16 V to 50 V

NP0

Table 6

THICKNESS CLASSES AND PACKING QUANTITY

SIZE CODE

THICKNESS CLASSIFICATION

TAPE WIDTH QUANTITY PER REEL

Ø 180 MM / 7 INCH Ø 330 MM / 13 INCH QUANTITY

PER BULK CASE Paper Blister Paper Blister

0201 0.3 ± 0.03 mm 8 mm 15,000 --- 50,000 --- ---

0402 0.5 ± 0.05 mm 8 mm 10,000 --- 50,000 --- 50,000

0603 0.8 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 15,000

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- 10,000

0805 0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 8,000

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 5,000

1206

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- ---

0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- ---

1.00 / 1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 ---

1.6 ± 0.15 mm 8 mm --- 2,500 --- 10,000 ---

1.6 ± 0.2 mm 8 mm --- 2,000 --- 10,000 ---

1210

0.6 / 0.7 ± 0.1 mm 8 mm --- 4,000 --- 15,000 ---

0.85 ± 0.1 mm 8 mm --- 4,000 --- 10,000 ---

1.0 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.15 ± 0.15 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- --- ---

1.5 ± 0.1 mm 8 mm --- 2,000 --- --- ---

1.6 / 1.9 ± 0.2 mm 8 mm --- 2,000 --- --- ---

2.0 ± 0.2 mm 8 mm --- 2,000

1,000 --- --- ---

2.5 ± 0.2 mm 8 mm --- 1,000

500 --- --- ---

1808

1.15 ± 0.15 mm 12 mm --- 3,000 --- --- ---

1.25 ± 0.2 mm 12 mm --- 3,000 --- --- ---

1.35 ± 0.15 mm 12 mm --- 2,000 --- --- ---

1.5 ± 0.1 mm 12 mm --- 2,000 --- --- ---

1.6 ± 0.2 mm 12 mm --- 2,000 --- --- ---

2.0 ± 0.2 mm 12 mm --- 2,000 --- --- ---

1812

0.6 / 0.85 ±0.1 mm 12 mm --- 2,000 --- --- ---

1.15 ± 0.1 mm 12 mm --- 1,000 --- --- ---

1.15 ± 0.15 mm 12 mm --- 1,000 --- --- ---

1.35 ± 0.15 mm 12 mm --- 1,000 --- --- ---

1.5 ± 0.1 mm 12 mm --- 1,000 --- --- ---

1.6 ± 0.2 mm 12 mm --- 1,000 --- --- ---

2.0 ± 0.2 mm 12 mm --- 1,000 --- --- ---

2.5 ± 0.2 mm 12 mm --- 500 --- --- ---

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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14

Product specification

General Purpose

16 V to 50 V

NP0

ELECTRICAL CHARACTERISTICS

NNPP00 DDIIEELLEECCTTRRIICC CCAAPPAACCIITTOORRSS;; NNIISSNN TTEERRMMIINNAATTIIOONNSS

Unless otherwise stated all electrical values apply at an ambient temperature of 20± 1 °C, an atmospheric

pressure of 86 to 106 kPa, and a relative humidity of 63 to 67%.

DESCRIPTION VALUE

Capacitance range 0.22 pF to 100 nF

Capacitance tolerance

C < 10 pF ± 0.1 pF, ±0.25 pF, ± 0.5 pF

C ≥ 10 pF ± 1%, ± 2%, ± 5%, ± 10%

Dissipation factor (D.F.)

C < 30 pF ≤ 1 / ( 400 + 20C )

C ≥ 30 pF ≤ 0.1 %

Insulation resistance after 1 minute at Ur (DC) Rins ≥ 10 GΩ or Rins × Cr ≥ 500 seconds whichever is less

Maximum capacitance change as a function of temperature

(temperature characteristic/coefficient):

± 30 ppm/°C

Operating temperature range: –55 °C to +125 °C

Table 7

Fig. 4 Typical capacitance change with respect to

the capacitance at 1 V as a function of DC voltage

Fig. 3 Typical temperature coefficient as a function of

temperature

Sample limits (broken lines). Requirement levels (dotted lines)

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

10

14

Product specification

General Purpose

16 V to 50 V

NP0

Fig. 5 Typical tan δ as a function of temperature

SOLDERING RECOMMENDATION

Table 8

SOLDERING

METHOD

SIZE

0201

0402 0603 0805 1206 ≥ 1210

Reflow Reflow only ≥ 0.1 µF ≥ 1.0 µF ≥ 2.2 µF ≥ 4.7 µF Reflow only

Reflow/Wave --- < 0.1 µF < 1.0 µF < 2.2 µF < 4.7 µF ---

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

TESTS AND REQUIREMENTS

Table 9 Test procedures and requirements

TEST TEST METHOD PROCEDURE REQUIREMENTS

Mounting

IEC 60384-

21/22

4.3 The capacitors may be mounted on printed-circuit boards

or ceramic substrates

No visible damage

Visual

inspection

and dimensio

n check

4.4 Any applicable method using × 10 magnification In accordance with specification

Capacitance 4.5.1 Class 1:

f = 1 MHz for C ≤ 1 nF, measuring at voltage 1 Vrms at 20 °C

f = 1 KHz for C > 1 nF, measuring at voltage 1 Vrms at 20 °C

Within specified tolerance

Dissipation

factor (D.F.) 4.5.2 Class 1:

f = 1 MHz for C ≤ 1 nF , measuring at voltage 1 Vrms at 20 °C

f = 1 KHz for C > 1 nF, measuring at voltage 1 Vrms at 20 °C

In accordance with specification

Insulation

resistance 4.5.3 At Ur (DC) for 1 minute In accordance with specification

Temperature

coefficient

4.6 Capacitance shall be measured by the steps shown in the

following table.

The capacitance change should be measured after 5 min at each

specified temperature stage.

Step Temperature(℃)

a 25± 2

b Lower temperature± 3℃

c 25± 2

d Upper Temperature± 2℃

e 25± 2

(1) Class I

Temperature Coefficient shall be calculated from the formula as

below

Temp, Coefficient = 610T xC1

C1-C2

Δ [ppm/℃]

C1: Capacitance at step c

C2: Capacitance at 125℃

∆T: 100℃(=125℃-25℃)

(2) Class II

Capacitance Change shall be calculated from the formula as

below

∆C = C1

C1-C2

x 100%

C1: Capacitance at step c

C2: Capacitance at step b or d

<General purpose series> Class1: ∆ C/C: ± 30ppm Class2: X7R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82% <High Capacitance series> Class2: X7R/X5R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82%

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

TEST TEST METHOD PROCEDURE REQUIREMENTS

Adhesion 4.7

A force applied for 10 seconds to the line joining the

terminations and in a plane parallel to the substrate

Force

size ≥ 0603: 5N

size = 0402: 2.5N

size = 0201: 1N

Bond strengt

h of plating

on end face

4.8

Mounting in accordance with IEC 60384-22 paragraph 4.3

No visible damage

Conditions: bending 1 mm at a rate of 1 mm/s, radius jig

340 mm

<General purpose series>

∆C/C

Class 1:

NP0: within ±1% or 0.5 pF

whichever is greater

Resistance to

soldering heat IEC 60384-

21/22

4.9

Precondition: 150 +0/–10 °C for 1 hour, then keep for 24

± 1 hours at room temperature

Preheating: for size ≤ 1206: 120 °C to 150 °C for 1 minute

Preheating: for size >1206: 100 °C to 120 °C for 1 minute

and 170 °C to 200 °C for 1 minute

Solder bath temperature: 260 ±5 °C

Dipping time: 10 ± 0.5 seconds

Recovery time: 24 ± 2 hours

Dissolution of the end face plating shall

not exceed 25% of the length of the

edge concerned

<General purpose series>

∆C/C

Class 1:

NP0: within ± 0.5% or 0.5 pF

whichever is greater

D.F. within initial specified value

Rins within initial specified value

Solderability 4.10 Preheated the temperature of 80 °C to 140 °C

and maintained for 30 seconds to 60 seconds.

1. Temperature: 235± 5°C / Dipping time: 2 ±0.5 s

2. Temperature: 245± 5°C / Dipping time: 3 ±0.5 s

(lead free)Depth of immersion: 10mm

The solder should cover over 95% of

the critical area of each termination

Rapid change

of

temperature

4.11 Preconditioning;

150 +0/–10 °C for 1 hour, then keep for

24 ±1 hours at room temperature

5 cycles with following detail:

30 minutes at lower category temperature

30 minutes at upper category temperature

Recovery time 24 ± 2 hours

No visual damage

<General purpose series>

∆C/C

Class 1:

NP0: within ±1% or 1 pF

whichever is greater

D.F. meet initial specified value

Rins meet initial specified value

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

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Product specification

General Purpose

16 V to 50 V

NP0

TEST TEST METHOD PROCEDURE REQUIREMENTS

Damp heat

with Ur load IEC 60384-

21/22

4.13 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for

24 ±1 hour at room temp

2. Initial measure:

Spec: refer to initial spec C, D, IR

3. Damp heat test:

500 ± 12 hours at 40 ± 2 °C;

90 to 95% R.H. 1.0 Ur applied

4. Recovery:

Class 1: 6 to 24 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum value

permitted, then after the other measurements have been

made the capacitor shall be preconditioned according to

“IEC 60384 4.1” and then the requirement shall be met.

No visual damage after recovery

<General purpose series>

∆C/C

Class 1:

NP0: within ±2% or 1 pF

whichever is greater

D.F.

Class 1:

NP0: ≤ 2 x specified value

Rins

Class 1:

NP0: ≥ 2,500 MΩ or Rins x Cr ≥ 25s

whichever is less

Endurance 4.14 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for

24 ±1 hour at room temp

2. Initial measure:

Spec: refer to initial spec C, D, IR

3. Endurance test:

Temperature: NP0: 125 °C

Specified stress voltage applied for 1,000 hours:

Applied 2.0 x Ur for general product.

4. Recovery time: 24 ± 2 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum value

permitted, then after the other measurements have been

made the capacitor shall be preconditioned according to

“IEC 60384 4.1” and then the requirement shall be met.

No visual damage

<General purpose series>

∆C/C

Class1:

NP0: within ±2% or 1 pF

whichever is greater

D.F.

Class1:

NP0: ≤ 2 x specified value

Rins

Class1:

NP0: ≥ 4,000 MΩ or Rins x Cr ≥ 40s

whichever is less

Voltage proof IEC 60384-1 4.6 Specified stress voltage applied for 1 minute

Ur ≤ 100 V: series applied 2.5 Ur

100 V < Ur ≤ 200 V series applied (1.5 Ur + 100)

200 V < Ur ≤ 500 V series applied (1.3 Ur + 100)

Ur > 500 V: 1.3 Ur

I: 7.5 mA

No breakdown or flashover

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Feb. 18, 2014 V10

Surface-Mount Ceramic Multilayer Capacitors

14

14

Product specification

General Purpose

16 V to 50 V

NP0

REVISION HISTORY

REVISION DATE CHANGE NOTIFICATION DESCRIPTION

Version 10 Feb. 18, 2014 - Product range updated

Version 9 Jun. 17, 2013 - Product range updated

Version 8 Aug 05, 2011 - Dimension updated

Version 7 Jun 14, 2011 - - Size1210 T=1.0mm SPQ added

- Dimension updated

Version 6 Jan 06, 2011 - - Dimension updated

Version 5 Dec 29, 2010 - - Dimension updated

Version 4 Nov 23, 2010 - - Dimension updated

Version 3 Apr 20, 2010 - - The statement of "Halogen Free" on the cover added

- Dimension updated

Version 2 Oct 26, 2009 - - Typo updated

Version 1 Jun 02, 2009 - - 12NC code updated

Version 0 Apr 15, 2009 - - New datasheet for general purpose NP0 series with RoHS compliant

- Replace the "16V to 50V" part of pdf files: NP0_16V_7, NP0_16V-to-

100V_6, NP0_25V_7, NP0_50-to-500V_11

- Combine 0201 from pdf files: UP-NP0X5RX7RY5V_0201_6.3-to-50V_2

and UY-NPOX5RX7RY5V_0201_6.3-to-50V_2

- Define global part number

- Description of "Halogen Free compliant" added

- Test method and procedure updated

DATA SHEET

SURFACE MOUNT MULTILAYER

CERAMIC CAPACITORS General purpose & High capacitance

Class 2, X5R 4 V TO 50 V

100 pF to 100 µF

RoHS compliant & Halogen free

Pro

duct

Speci

fica

tion –

Jan

uar

y 15, 2016 V

.21

www.yageo.com

Jan. 15, 2016 V.21

General Purpose & High Cap.

4 V to 50 V

Surface Mount Multilayer Ceramic Capacitors

2

18

Product specification

X5R

SCOPE

This specification describes X5R

series chip capacitors with lead-

free terminations.

APPLICATIONS

PCs, Hard disk, Game PCs

Power supplies

DVD players

Mobile phones

Data processing

FEATURES

Supplied in tape on reel

Nickel-barrier end termination

RoHS compliant

Halogen free compliant

ORDERING INFORMATION - GLOBAL PART NUMBER, PHYCOMP

CTC & 12NC

All part numbers are identified by the series, size, tolerance, TC material,

packing style, voltage, process code, termination and capacitance value.

YYAAGGEEOO BBRRAANNDD oorrddeerriinngg ccooddee

GLOBAL PART NUMBER (PREFERRED)

CC XXXX X X X5R X BB XXX

(1) (2) (3) (4) (5)

(1) SIZE – INCH BASED (METRIC)

0201 (0603)

0402 (1005)

0603 (1608)

0805 (2012)

1206 (3216)

1210 (3225)

(2) TOLERANCE

K = ± 10%

M = ± 20%

(3) PACKING STYLE

R = Paper/PE taping reel; Reel 7 inch

K = Blister taping reel; Reel 7 inch

P = Paper/PE taping reel; Reel 13 inch

F = Blister taping reel; Reel 13 inch

C = Bulk case

(4) RATED VOLTAGE

4 = 4 V

5 = 6.3 V

6 = 10 V

7 = 16 V

8 = 25 V

9 = 50 V

(5) CAPACITANCE VALUE

2 significant digits+number of zeros

The 3rd digit signifies the multiplying factor, and letter R is decimal point

Example: 103 = 10 x 103 = 10,000 pF = 10 nF

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Jan. 15, 2016 V.21

General Purpose & High Cap.

4 V to 50 V

Surface Mount Multilayer Ceramic Capacitors

3

18

Product specification

X5R

OOUUTTLLIINNEESS

For dimension see Table 1

Fig. 2 Surface mount multilayer

ceramic capacitor dimension

TYPE L1 (mm) W (mm) T (MM) L2 / L3 (mm) L4 (mm)

min. max. min.

0201

0.6 ± 0.03 (1) 0.3 ± 0.03 (1)

Refer to

table 2 to 4

0.10 0.20 0.20 0.6 ± 0.05 (2) 0.3 ± 0.05 (2)

0.6 ± 0.09 (3) 0.3 ± 0.09 (3)

0402

1.0 ± 0.05 (1) 0.5 ± 0.05 (1)

0.15 0.35 0.40 1.0 ± 0.10 (2) 0.5 ± 0.10 (2)

1.0 ± 0.15 (3) 0.5 ± 0.15 (3)

1.0 ± 0.20 (4) 0.5 ± 0.20 (4)

0603

1.6 ± 0.10 (1) 0.8 ± 0.10 (1)

0.20 0.60 0.40 1.6 ± 0.15 (2) 0.8 ± 0.15 (2)

1.6 ± 0.20 (3) 0.8 ± 0.20 (3)

0805 2.0 ± 0.10 (1) 1.25 ± 0.10 (1) 0.25 0.75 0.55

2.0 ± 0.20 (2) 1.25 ± 0.20 (2)

1206

3.2 ± 0.15 (1) 1.6 ± 0.15 (1)

0.25 0.75 1.40 3.2 ± 0.30 (2) 1.6 ± 0.20 (2)

3.2 ± 0.30 (3) 1.6 ± 0.30 (3)

1210 3.2 ± 0.20 (1) 2.5 ± 0.20 (1)

0.25 0.75 1.40 3.2 ± 0.40 (2) 2.5 ± 0.30 (2)

NOTE

1. Dimensions for size 0201, C < 1 µF; 0402, C < 4.7 µF; 0603, C < 4.7 µF;

0805 to 1210, C ≤ 100nF

2. Dimensions for size 0201, C ≥100 nF (25V), C ≥1µF; 0402, C =470nF(16V to 50V);

0603, 10µF (6.3V) ≥C ≥ 4.7µF, C ≥2.2µF (25V); 0805 to 1210, C > 100 nF

3. Dimensions for size 0201, C=2.2µF; 0402, C ≥ 4.7 µF, C=2.2µF(16V); 0603, C ≥

10µF (≥10V), C=22µF(6.3V); 1206, C ≥ 22µF (25V), C ≥ 100µF

4. Dimensions for size 0402, C ≥ 10µF

Table 1 For outlines see fig. 2

DIMENSION

CONSTRUCTION

The capacitor consists of a

rectangular block of ceramic

dielectric in which a number of

interleaved metal electrodes are

contained. This structure gives

rise to a high capacitance per

unit volume.

The inner electrodes are

connected to the two end

terminations and finally covered

with a layer of plated tin (NiSn).

The terminations are lead-free. A

cross section of the structure is

shown in Fig.1.

MLB457

terminations

electrodes

ceramic material

Fig. 1 Surface mount multilayer ceramic capacitor construction

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Table 2 Sizes from 0201 to 0402

CAPACITANCE RANGE & THICKNESS FOR X5R

CAP. 0201 0402

4 V 6.3 V 10 V 16 V 25 V 50 V 4 V 6.3 V 10 V 16 V 25 V 50 V

100 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

150 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

220 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

330 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

470 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

680 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

1.0 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

1.5 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

2.2 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

3.3 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

4.7 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

6.8 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

10 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03

15 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03

22 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

33 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

47 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

68 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

100 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

150 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

220 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

330 nF 0.5± 0.05 0.5± 0.05

470 nF 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.10 0.5± 0.10 0.5± 0.10

680 nF 0.5± 0.05 0.5± 0.05

1.0 µF 0.3± 0.05 0.3± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

2.2 µF 0.3± 0.09 0.3± 0.09 0.5± 0.05 0.5± 0.05 0.5± 0.15 0.5± 0.20

4.7 µF 0.5± 0.15 0.5± 0.15 0.5± 0.15 0.5± 0.15

10 µF 0.5± 0.20 0.5± 0.20

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is available on request

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CAP. 0603 0805

4V 6.3 V 10 V 16 V 25 V 50V 4V 6.3 V 10 V 16 V 25 V 50V

10 nF

15 nF

22 nF

33 nF

47nF

68 nF

100 nF

150 nF

220 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1

330 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1

470 nF

0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2 1.25± 0.2 1.25± 0.2

680 nF

0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2 1.25± 0.2 1.25± 0.2

1.0 µF

0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2 1.25± 0.2 1.25± 0.2

2.2 µF

0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.15 0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2 1.25± 0.2

4.7 µF

0.8± 0.1 0.8± 0.1 0.8± 0.15 0.8± 0.15 0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

10 µF

0.8± 0.15 0.8± 0.2 0.8± 0.2 0.8± 0.20 0.85± 0.1

1.25± 0.2

0.85± 0.1

1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

22 µF 0.8± 0.2 0.8± 0.2

1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

47 µF 0.8± 0.2

1.25± 0.2 1.25± 0.2

100 µF 1.25± 0.2

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is available on request

Table 3 Sizes from 0603 to 0805

CAPACITANCE RANGE & THICKNESS FOR X5R

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Table 4 Sizes from 1206 to 1210

CAP. 1206 1210

6.3 V 10 V 16 V 25 V 50V 6.3 V 10 V 16 V 25 V 50V

10 nF

15 nF

22 nF

33 nF

47nF

68 nF

100 nF

150 nF

220 nF

330 nF

470 nF

680 nF

1.0 µF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.6± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

2.2 µF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.6± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2

4.7 µF 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2 2.5± 0.2

10 µF 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.3 1.9± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2 2.5± 0.2

22 µF 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.3 2.5± 0.2 2.5± 0.2 2.5± 0.2 2.5± 0.3

47 µF 1.6± 0.2 1.6± 0.2 1.6± 0.3 2.5± 0.2 2.5± 0.2 2.5± 0.2

100 µF 1.6± 0.3 2.5± 0.3 2.5± 0.3 2.5± 0.3

220 µF 2.5± 0.3

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is available on request

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Table 5

THICKNESS CLASSES AND PACKING QUANTITY

SIZE

CODE

THICKNESS

CLASSIFICATION

TAPE WIDTH

QUANTITY PER REEL

Ø 180 MM / 7 INCH Ø 330 MM / 13 INCH QUANTITY

PER BULK CASE Paper Blister Paper Blister

0201 0.3 ± 0.03 mm 8 mm 15,000 --- 50,000 --- ---

0402 0.5 ± 0.05 mm 8 mm 10,000 --- 50,000 --- 50,000

0603 0.8 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 15,000

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- 10,000

0805 0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 8,000

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 5,000

1206

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- ---

0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- ---

1.00 / 1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 ---

1.6 ± 0.15 mm 8 mm --- 2,500 --- 10,000 ---

1.6 ± 0.2 mm 8 mm --- 2,000 --- 8,000 ---

1210

0.6 / 0.7 ± 0.1 mm 8 mm --- 4,000 --- 15,000 ---

0.85 ± 0.1 mm 8 mm --- 4,000 --- 10,000 ---

1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.15 ± 0.15 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- --- ---

1.5 ± 0.1 mm 8 mm --- 2,000 --- --- ---

1.6 / 1.9 ± 0.2 mm 8 mm --- 2,000 --- --- ---

2.0 ± 0.2 mm 8 mm --- 2,000

1,000 --- --- ---

2.5 ± 0.2 mm 8 mm --- 1,000

500 --- --- ---

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X5R

DESCRIPTION VALUE

Capacitance range 10 nF to 100 µF

Capacitance tolerance ± 10% and ± 20%

Dissipation factor (D.F.)

6.3 V ≤ 5%

Exception: 0402 ≥ 180 nF; 1210 ≥ 22 µF ≤ 7%

0201 ≥ 12 nF; 0402 ≥ 330 nF; 0603 ≥ 2.2 µF; ≤ 10%

0805 ≥ 1 µF; 1206 ≥ 22 µF; 1210 ≥ 47 µF

0201≥ 2.2 µF 1206 ≥ 100 µF ≤ 15%

10 V ≤ 5%

Exception: 0402 ≥ 180 nF; 0805 ≥ 1 µF; 1206 ≥ 6.8 µF ≤ 7%

0201 ≥ 12 nF; 0402 ≥ 330 nF; 0603 ≥ 1 µF; ≤ 10%

0805 ≥ 2.2 µF; 1206 ≥ 10 µF; 1210 ≥ 10 µF

16 V ≤ 5%

Exception: 0402 ≥ 180 nF; 0603 ≥ 680 nF; 0805 ≥ 1 µF ≤ 7%

0201≥100 nF; 0402 ≥ 330 nF; 0603 ≥ 2.2 µF; ≤ 10%

0805 ≥ 4.7 µF; 1206 ≥ 10 µF; 1210 ≥ 10 µF

25 V ≤ 3.5%

Exception: 0402 ≥ 27 nF; 0603 ≥ 220 nF; 0805 ≥ 2.2 µF; ≤ 5%

1206 ≥ 4.7 µF; 1210 ≥ 10 µF

0402 ≥ 180 nF ≤ 7%

0201=100 nF; 0402 ≥ 470 nF; 0603 ≥ 2.2uF; ≤ 10%

0805 ≥ 4.7 µF; 1206 ≥ 10 µF; 1210 ≥ 22µF

50V ≤ 3.5%

Exception: 0402 ≥ 27nF; ≤ 5%

0402 ≥ 180nF; ≤ 7%

0402=470nF; 0603 ≥ 220nF; 0805 ≥ 470nF; ≤ 10%

1206 ≥1uF; 1210 ≥ 1uF

ELECTRICAL CHARACTERISTICS

XX55RR DDIIEELLEECCTTRRIICC CCAAPPAACCIITTOORRSS;; NNIISSNN TTEERRMMIINNAATTIIOONNSS

Unless otherwise specified, all tests and measurements shall be made under standard atmospheric conditions

for testing as given in 5.3 of IEC 60068-1:

- Temperature: 15 °C to 35 °C

- Relative humidity: 25% to 75%

- Air pressure: 86 kPa to 106 kPa

Before the measurements are made, the capacitor shall be stored at the measuring temperature for a time

sufficient to allow the entire capacitor to reach this temperature.

The period as prescribed for recovery at the end of a test is normally sufficient for this purpo se.

Table 6

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DESCRIPTION VALUE

Insulation resistance after 1 minute at Ur (DC) Rins ≥ 10 GΩ or Rins × Cr ≥ 500(100/50) seconds whichever is less

Maximum capacitance change as a function of temperature

(temperature characteristic/coefficient): ± 15%

Operating temperature range: –55 °C to +85 °C

Fig. 3 Typical capacitance change as a function of

temperature

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Fig. 4 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0201 10 nF / 16 V Solid lines: Impedance / Dotted lines: ESR

Fig. 5 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0603 1 µF / 10 V Solid lines: Impedance / Dotted lines: ESR

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Fig. 6 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0805 10 µF / 6.3 V Solid lines: Impedance / Dotted lines: ESR

Fig. 7 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 1206 10 µF / 16 V Solid lines: Impedance / Dotted lines: ESR

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Fig. 8 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 1210 10 µF / 25 V Solid lines: Impedance / Dotted lines: ESR

SOLDERING RECOMMENDATION

Table 7

SOLDERING

METHOD SIZE

0402 0603 0805 1206 ≥ 1210

Reflow ≥ 0.1 µF ≥ 1.0 µF ≥ 2.2 µF ≥ 4.7 µF Reflow only

Reflow/Wave < 0.1 µF < 1.0 µF < 2.2 µF < 4.7 µF ---

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TESTS AND REQUIREMENTS

Table 8 Test procedures and requirements

TEST TEST METHOD PROCEDURE REQUIREMENTS

Mounting

IEC 60384-

21/22

4.3 The capacitors may be mounted on printed-circuit boards or

ceramic substrates

No visible damage

Visual

Inspection and

Dimension

Check

4.4 Any applicable method using × 10 magnification In accordance with specification

Capacitance (1) 4.5.1 Class 2:

At 20 °C, 24 hrs after annealing

f = 1 KHz for C ≤ 10 µF, rated voltage > 6.3 V, measuring at voltage 1 Vrms at 20 °C

f = 1 KHz, for C ≤ 10 µF, rated voltage ≤ 6.3 V, measuring at voltage 0.5 Vrms at 20 °C

f = 120 Hz for C > 10 µF, measuring at voltage 0.5 Vrms at 20 °C

Within specified tolerance

Dissipation

Factor (D.F.) (1) 4.5.2 Class 2:

At 20 °C, 24 hrs after annealing

f = 1 KHz for C ≤ 10 µF, rated voltage > 6.3 V, measuring at voltage 1 Vrms at 20 °C

f = 1 KHz, for C ≤ 10 µF, rated voltage ≤ 6.3 V, measuring at voltage 0.5 Vrms at 20 °C

f = 120 Hz for C > 10 µF, measuring at voltage 0.5 Vrms at 20 °C

In accordance with specification

Insulation

Resistance 4.5.3 At Ur (DC) for 1 minute In accordance with specification

NOTE

1. The figure indicates typical inspection. Please refer to individual specifications.

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TEST TEST METHOD PROCEDURE REQUIREMENTS

Temperature

Characteristic 4.6 Capacitance shall be measured by the steps shown in the

following table.

The capacitance change should be measured after 5 min at

each specified temperature stage.

Step Temperature(℃)

a 25± 2

b Lower temperature± 3℃

c 25± 2

d Upper Temperature± 2℃

e 25± 2

(1) Class I

Temperature Coefficient shall be calculated from the

formula as below

Temp, Coefficient =610

T xC1

C1-C2

Δ [ppm/℃]

C1: Capacitance at step c

C2: Capacitance at 125℃

∆T: 100℃(=125℃-25℃)

(2) Class II

Capacitance Change shall be calculated from the formula

as below

∆C = C1

C1-C2

x 100%

C1: Capacitance at step c

C2: Capacitance at step b or d

<General purpose series> Class1: ∆ C/C: ± 30ppm Class2: X7R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82% <High Capacitance series> Class2: X7R/X5R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82%

Adhesion 4.7

A force applied for 10 seconds to the line joining the

terminations and in a plane parallel to the substrate

Force

size ≥ 0603: 5N

size = 0402: 2.5N

size = 0201: 1N

Bending

Strength IEC 60384-

21/22

4.8

Mounting in accordance with IEC 60384-22 paragraph 4.3 No visible damage

Conditions: bending 1 mm at a rate of 1 mm/s, radius jig

5 mm

Test Substrate:

Unit: mm

∆C/C

Class2:

X5R: ± 12.5%

Dimension(mm)

Type a b c

0201 0.3 0.9 0.3

0402 0.4 1.5 0.5

0603 1.0 3.0 1.2

0805 1.2 4.0 1.65

1206 2.2 5.0 1.65

1210 2.2 5.0 2.0

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TEST TEST METHOD PROCEDURE REQUIREMENTS

Resistance to

Soldering

Heat

4.9

Precondition: 150 +0/–10 °C for 1 hour, then keep for

24 ± 1 hours at room temperature

Preheating: for size ≤ 1206: 120 °C to 150 °C for 1

minute

Preheating: for size >1206: 100 °C to 120 °C for 1

minute and 170 °C to 200 °C for 1 minute

Solder bath temperature: 260 ± 5 °C

Dipping time: 10 ± 0.5 seconds

Recovery time: 24 ± 2 hours

Dissolution of the end face plating shall

not exceed 25% of the length of the

edge concerned

<General purpose series>

∆C/C

Class2:

X5R: ± 10% <High Capacitance series>

∆C/C

Class2:

X5R: ± 10%

D.F. within initial specified value

Rins within initial specified value

Solderability 4.10 Preheated the temperature of 80 °C to 140 °C and

maintained for 30 seconds to 60 seconds.

1. Temperature: 235± 5°C / Dipping time: 2 ± 0.5 s

2. Temperature: 245± 5°C / Dipping time: 3 ± 0.5 s

(lead free)

Depth of immersion: 10mm

The solder should cover over 95% of

the critical area of each termination

Rapid Change

of

Temperature

IEC 60384-

21/22

4.11 Preconditioning;

150 +0/–10 °C for 1 hour, then keep for 24 ± 1 hours at

room temperature

5 cycles with following detail:

30 minutes at lower category temperature

30 minutes at upper category temperature

Recovery time 24 ± 2 hours

No visual damage

<General purpose series>

∆C/C

Class2:

X5R: ± 15%

<High Capacitance series>

∆C/C

Class2:

X5R: ± 15%

D.F. meet initial specified value

Rins meet initial specified value

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X5R

TEST TEST METHOD PROCEDURE REQUIREMENTS

Damp Heat

with Ur Load 4.13 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for 24 ± 1 hour

at room temp

2. Initial measure:

Spec: refer to initial spec C, D, IR

3. Damp heat test:

500 ± 12 hours at 40 ± 2 °C;

90 to 95% R.H. 1.0 Ur applied

4. Recovery:

Class 2: 24 ± 2 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum

value permitted, then after the other measurements

have been made the capacitor shall be preconditioned

according to “IEC 60384 4.1” and then the

requirements shall be met.

No visual damage after recovery

<General purpose series>

∆C/C

Class2:

X5R: ± 15%

D.F.

Class2:

X5R: ≤ 16V: ≤ 7%

≥ 25V: ≤ 5%

Rins

Class2:

X5R: ≥ 500 MΩ or Rins x Cr ≥ 25s

whichever is less

<High Capacitance series>

∆C/C

Class2:

X5R: ± 20%

D.F.

Class2:

X5R: 2 x initial value max

Rins

Class2:

Rins x Cr ≥ 5s

whichever is less

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TEST TEST METHOD PROCEDURE REQUIREMENTS

Endurance IEC 60384-

21/22

4.14 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for 24 ± 1 hour

at room temp

2. Initial measure:

Spec: refer to initial spec C, D, IR

3. Endurance test:

Temperature: X5R: 85 °C

Specified stress voltage applied for 1,000 hours:

Applied 2.0 x Ur for general product.

Applied 1.5 x Ur for high cap. product.

Applied 1.0 x Ur for high cap. product.

0201: 100nF/25V, 220nF/10V,/ 1uF, 2.2uF/ 4V, 6.3V;

0402: 4.7uF/16V, 10V, 6.3V; 10uF/4V, 6.3V;

0603: 10uF/ 10V; 22uF/6.3V, 10V; 47uF/4V;

0805: 10uF/ 25V, 50V; 22uF/ 6.3V, 10V, 16V; 47uF/

6.3V, 10V; 100uF/ 4V;1206: 10uF/ 50V;

4. Recovery time: 24 ± 2 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum

value permitted, then after the other measurements

have been made the capacitor shall be preconditioned

according to “IEC 60384 4.1” and then the

requirements shall be met.

No visual damage

<General purpose series>

∆C/C

Class2:

X5R: ± 15%

D.F.

Class2:

X5R: ≤ 16V: ≤ 7%

≥ 25V: ≤ 5%

Rins

Class2:

X5R: ≥ 1,000 MΩ or Rins x Cr ≥ 50s

whichever is less

<High Capacitance series>

∆C/C

Class 2:

X5R: ± 20%

D.F.

Class 2:

X5R: 2 x initial value max

Rins

Class 2:

Rins x Cr ≥ 10s

whichever is less

Voltage Proof 4.6 Specified stress voltage applied for 1~5 seconds

Ur ≤ 100 V: series applied 2.5 Ur

100 V < Ur ≤ 200 V series applied

(1.5 Ur + 100)

200 V < Ur ≤ 500 V series applied

(1.3 Ur + 100) Ur > 500 V: 1.3 Ur

Ur ≧ 1000 V: 1.2 Ur

Charge/Discharge current is less than 50 mA

No breakdown or flashover

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Jan. 15, 2016 V.21

General Purpose & High Cap.

4 V to 50 V

Surface Mount Multilayer Ceramic Capacitors

18

18

Product specification

X5R

REVISION HISTORY

REVISION DATE CHANGE NOTIFICATION DESCRIPTION

Version 21 Jan. 15, 2016 - - Tests and requirements updated

Version 20 Dec. 04, 2015 - - Size updated

Version 19 Apr. 09, 2015 - - Voltage updated

Version 18 Jul. 07, 2014 - - Voltage updated

Version 17 Mar. 31, 2014 - - Test condition updated

Version 16 Nov. 29, 2012 - - Test condition updated

Version 15 Sep. 03, 2012 - - Test condition updated

Version 14 May 16, 2012 - - Product range updated

Version 13 May 02, 2012 - - Product range updated

Version 12 Feb 10, 2012 - - Product range updated

Version 11 Oct 21, 2011 - - Product range updated

Version 10 Jun 21, 2011 - - Product range updated

Version 9 Mar 23, 2011 - - Product range updated

Version 8 Jan 25, 2011 - - Rated voltage of 0201 extend to 50V

Version 7 Jan 05, 2011 - - Product range updated

Version 6 Jul 27, 2010 - - Dimension on 0603 and 1206 case size updated

Version 5 Apr 21, 2010 - - The statement of "Halogen free" on the cover added

- Dimension updated

Version 4 Jan 13, 2010 - - Thickness updated

Version 3 Aug 17, 2009 - - Dimension updated

Version 2 Jun 09, 2009 - - Ordering code updated

Version 1 May 15, 2009 - - Product range updated

Version 0 Apr 15, 2009 - - New datasheet for general purpose and high capacitance X5R series with

RoHS compliant

- Replace the "6.3V to 50V" part of pdf files: UP-X5R_X7R_HighCaps_6.3-

to-25V_11, UY-X5R_X7R_HighCaps_6.3-to-25V_11

- Combine 0201 from pdf files: UP-NP0X5RX7RY5V_0201_6.3-to-50V_2

and UY-NPOX5RX7RY5V_0201_6.3-to-50V_2

- Define global part number

- Description of "Halogen free compliant" added

- Test method and procedure updated

Pro

duct

Speci

fica

tion –

Dece

mber

30, 2015 V

.13

DATA SHEET

SURFACE-MOUNT CERAMIC

MULTILAYER CAPACITORS General Purpose & High Capacitance

Class 2, X7R 6.3 V TO 50 V

100 pF to 22 µF

RoHS compliant & Halogen Free

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Dec. 30, 2015 V.13

General Purpose & High Cap.

6.3 V to 50 V

Surface-Mount Ceramic Multilayer Capacitors

2

20 Product specification

X7R

SCOPE

This specification describes X7R

series chip capacitors with lead-

free terminations.

APPLICATIONS

PCs, Hard disk, Game PCs

DVDs, Video cameras

Mobile phones

Data processing

FEATURES

Supplied in tape on reel

Nickel-barrier end termination

RoHS compliant

Halogen Free compliant

ORDERING INFORMATION - GLOBAL PART NUMBER, PHYCOMP

CTC & 12NC

All part numbers are identified by the series, size, tolerance, TC material,

packing style, voltage, process code, termination and capacitance value.

YYAAGGEEOO BBRRAANNDD oorrddeerriinngg ccooddee

GLOBAL PART NUMBER (PREFERRED)

CC XXXX X X X7R X BB XXX (1) (2) (3) (4) (5)

(1) SIZE – INCH BASED (METRIC)

0201 (0603)

0402 (1005)

0603 (1608)

0805 (2012)

1206 (3216)

1210 (3225)

1812 (4532)

(2) TOLERANCE

J = ± 5% (1)

K = ± 10%

M = ± 20%

(3) PACKING STYLE

R = Paper/PE taping reel; Reel 7 inch

K = Blister taping reel; Reel 7 inch

P = Paper/PE taping reel; Reel 13 inch

F = Blister taping reel; Reel 13 inch

(4) RATED VOLTAGE

5 = 6.3 V

6 = 10 V

7 = 16 V

8 = 25 V

9 = 50 V

(5) CAPACITANCE VALUE

2 significant digits+number of zeros

The 3rd digit signifies the multiplying factor, and letter R is decimal point

Example: 103 = 10 x 103 = 10,000 pF = 10 nF

NOTE

1. Tolerance ±5% is not available for full product range, please contact local sales force

before ordering

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Dec. 30, 2015 V.13

General Purpose & High Cap.

6.3 V to 50 V

Surface-Mount Ceramic Multilayer Capacitors

3

20 Product specification

X7R

TYPE L1 (mm) W (mm) T (MM) L2 / L3 (mm) L4 (mm)

min. max. min.

0201 0.6 ± 0.03 0.3 ± 0.03

Refer to

table 2 to 4

0.10 0.20 0.20

0402 1.0 ± 0.05 0.5 ± 0.05 0.15 0.30 0.40

0603

1.6 ± 0.10 (1) 0.8 ± 0.10 (1)

0.20 0.60 0.40 1.6 ± 0.15 (2) 0.8 ± 0.15 (2)

1.6 ± 0.20 (3) 0.8 ± 0.20 (3)

0805 2.0 ± 0.10 (1) 1.25 ± 0.10 (1)

0.25 0.75 0.55 2.0 ± 0.20 (2) 1.25 ± 0.20 (2)

1206

3.2 ± 0.15 (1) 1.6 ± 0.15 (1)

0.25 0.75 1.40 3.2 ± 0.30 (2) 1.6 ± 0.20 (2)

3.2 ± 0.30 (3) 1.6 ± 0.30 (3)

1210 3.2 ± 0.20 (1) 2.5 ± 0.20 (1)

0.25 0.75 1.40 3.2 ± 0.40 (2) 2.5 ± 0.30 (2)

1812 4.5 ± 0.20 (1) 3.2 ± 0.20 (1)

0.25 0.75 2.20 4.5 ± 0.40 (2) 3.2 ± 0.40 (2)

NOTE

1. Dimension for size 0603, C < 2.2 µF; 0805 to 1812, C ≤ 100nF

2. Dimension for size 0603, C = 1µF; 50V; 0805 to 1812, C > 100 nF

3. Dimension for size 0603, C = 4.7µF, 6.3V; 0603, C = 2.2 µF, 16V; 1206, C = 22 µF, 16V

CONSTRUCTION

The capacitor consists of a

rectangular block of ceramic

dielectric in which a number of

interleaved metal electrodes are

contained. This structure gives

rise to a high capacitance per

unit volume.

The inner electrodes are

connected to the two end

terminations and finally covered

with a layer of plated tin (NiSn).

The terminations are lead-free. A

cross section of the structure is

shown in Fig.1.

MLB457

terminations

electrodes

ceramic material

Fig. 1 Surface mounted multilayer ceramic capacitor construction

Table 1 For outlines see fig. 2

DIMENSION

OOUUTTLLIINNEESS

For dimension see Table 1

Fig. 2 Surface mounted multilayer

ceramic capacitor dimension

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Dec. 30, 2015 V.13

General Purpose & High Cap.

6.3 V to 50 V

Surface-Mount Ceramic Multilayer Capacitors

4

20 Product specification

X7R

Table 2 Sizes from 0201 to 0402

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 0201 0402

6.3 V 10 V 16 V 25 V 50 V 6.3 V 10 V 16 V 25 V 50 V

100 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

150 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

220 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

330 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

470 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

680 pF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

1.0 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

1.5 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

2.2 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

3.3 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

4.7 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

6.8 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

10 nF 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.3± 0.03 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

15 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

22 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

33 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

47 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

68 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

100 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05 0.5± 0.05

150 nF

220 nF 0.5± 0.05 0.5± 0.05 0.5± 0.05

330 nF

470 nF 0.5± 0.05 0.5± 0.05

680 nF

1.0 µF 0.5± 0.05

2.2 µF

4.7 µF

10 µF

22 µF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For product with 5% tolerance, please contact local sales force before ordering

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Dec. 30, 2015 V.13

General Purpose & High Cap.

6.3 V to 50 V

Surface-Mount Ceramic Multilayer Capacitors

5

20 Product specification

X7R

Table 3 Sizes from 0603 to 0805

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 0603 0805

6.3 V 10 V 16 V 25 V 50 V 6.3 V 10 V 16 V 25 V 50 V

100 pF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1

150 pF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1

220 pF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

330 pF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

470 pF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

680 pF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

1.0 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

1.5 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

2.2 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

3.3 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

4.7 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

6.8 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

10 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

15 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

22 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

33 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

47 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

68 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

100 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

150 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

220 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.25± 0.2

330 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

470 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

680 nF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

1.0 µF 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.8± 0.15 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

2.2 µF 0.8± 0.1 0.8± 0.1 0.8± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

4.7 µF 0.8± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2

10 µF 1.25± 0.2 1.25± 0.2 1.25± 0.2

22 µF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For product with 5% tolerance, please contact local sales force before ordering

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Dec. 30, 2015 V.13

General Purpose & High Cap.

6.3 V to 50 V

Surface-Mount Ceramic Multilayer Capacitors

6

20 Product specification

X7R

Table 4 Size 1206

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 1206

6.3 V 10 V 16 V 25 V 50 V

100 pF

150 pF

220 pF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

330 pF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

470 pF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

680 pF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

1.0 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

1.5 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

2.2 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

3.3 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

4.7 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

6.8 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

10 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

15 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

22 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

33 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

47 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

68 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

100 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

150 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.15± 0.1

220 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.15± 0.1

330 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

470 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.0± 0.1

680 nF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.6± 0.2

1.0 µF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.6± 0.2

2.2 µF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.6± 0.2

4.7 µF 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.2

10 µF 1.6± 0.2 1.6± 0.2 1.6± 0.2 1.6± 0.2

22 µF 1.6± 0.2 1.6± 0.2 1.6± 0.3

47 µF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For product with 5% tolerance, please contact local sales force before ordering

4. Please contact local sales force for special ordering code before ordering

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Dec. 30, 2015 V.13

General Purpose & High Cap.

6.3 V to 50 V

Surface-Mount Ceramic Multilayer Capacitors

7

20 Product specification

X7R

Table 5 Sizes from 1210 to 1812

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 1210 1812

6.3 V 10 V 16 V 25 V 50 V 50 V

100 pF

150 pF

220 pF

330 pF

470 pF

680 pF

1.0 nF

1.5 nF

2.2 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

3.3 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

4.7 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

6.8 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

10 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

15 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

22 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

33 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

47 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

68 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1

100 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.15± 0.1

150 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.15± 0.1 1.15± 0.1

220 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.15± 0.1 1.15± 0.1

330 nF 0.85± 0.1 0.85± 0.1 0.85± 0.1 0.85± 0.1 1.15± 0.1 1.15± 0.1

470 nF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.25± 0.2 1.15± 0.1

680 nF 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.15± 0.1 1.25± 0.2 1.6± 0.2

1.0 µF 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 1.6± 0.2

2.2 µF 1.9± 0.2

4.7 µF 1.9± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2 2.5± 0.3

10 µF 1.9± 0.2 1.9± 0.2 1.9± 0.2 1.9± 0.2

22 µF 2.5± 0.2 2.5± 0.2 2.5± 0.2 2.5± 0.2

47 µF 2.5± 0.2 2.5± 0.2

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For product with 5% tolerance, please contact local sales force before ordering

4. Please contact local sales force for special ordering code before ordering

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X7R

Table 6

THICKNESS CLASSES AND PACKING QUANTITY

SIZE

CODE

THICKNESS

CLASSIFICATION

TAPE WIDTH

QUANTITY PER REEL

Ø 180 MM / 7 INCH Ø 330 MM / 13 INCH QUANTITY

PER BULK CASE Paper Blister Paper Blister

0201 0.3 ± 0.03 mm 8 mm 15,000 --- 50,000 --- ---

0402 0.5 ± 0.05 mm 8 mm 10,000 --- 50,000 --- 50,000

0603 0.8 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 15,000

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- 10,000

0805 0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 8,000

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 5,000

1206

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- ---

0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- ---

1.00 / 1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 ---

1.6 ± 0.15 mm 8 mm --- 2,500 --- 10,000 ---

1.6 ± 0.2 mm 8 mm --- 2,000 --- 8,000 ---

1210

0.6 / 0.7 ± 0.1 mm 8 mm --- 4,000 --- 15,000 ---

0.85 ± 0.1 mm 8 mm --- 4,000 --- 10,000 ---

1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.15 ± 0.15 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- --- ---

1.5 ± 0.1 mm 8 mm --- 2,000 --- --- ---

1.6 / 1.9 ± 0.2 mm 8 mm --- 2,000 --- --- ---

2.0 ± 0.2 mm 8 mm --- 2,000

1,000 --- --- ---

2.5 ± 0.2 mm 8 mm --- 1,000

500 --- --- ---

1808

1.15 ± 0.15 mm 12 mm --- 3,000 --- --- ---

1.25 ± 0.2 mm 12 mm --- 3,000 --- --- ---

1.35 ± 0.15 mm 12 mm --- 2,000 --- --- ---

1.5 ± 0.1 mm 12 mm --- 2,000 --- --- ---

1.6 ± 0.2 mm 12 mm --- 2,000 --- 8,000 ---

2.0 ± 0.2 mm 12 mm --- 2,000 --- --- ---

1812

0.6 / 0.85 ± 0.1 mm 12 mm --- 2,000 --- --- ---

1.15 ± 0.1 mm 12 mm --- 1,000 --- --- ---

1.25 ± 0.2 mm 12 mm --- 1,000 --- --- ---

1.5 ± 0.1 mm 12 mm --- 1,000 --- --- ---

1.6 ± 0.2 mm 12 mm --- 1,000 --- --- ---

2.0 ± 0.2 mm 12 mm --- 1,000 --- --- ---

2.5 ± 0.2 mm 12 mm --- 500 --- --- ---

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X7R

DESCRIPTION VALUE

Capacitance range 100 pF to 47 µF

Capacitance tolerance ± 5%, ± 10%, ± 20%

Dissipation factor (D.F.)

X7R 0201 0402 0603 0805 1206 1210

10V 100pF to 10nF 100pF to 100nF 100pF to 1uF 150pF to 2.2uF 220pF to 2.2uF 2.2nF to 2.2uF ≤5%

220nF to 470nF 2.2uF to 4.7uF 4.7uF to 10uF 4.7uF to 22uF 4.7uF to 47uF ≤10%

1uF ≤12.5%

16V 100pF to 1.2nF 100pF to 22nF 100pF to 220nF 150pF to 470nF 220pF to 1μF 2.2nF to 1μF ≤ 3.5%

1.5nF to 10nF 27nF to 100nF 470nF to 2.2uF 680 nF to 2.2μF 2.2uF 2.2uF to 10uF ≤ 5%

220nF 4.7uF to 10uF 4.7uF to 22uF 22uF ≤10%

25V 100pF to 470pF 100pF to 10nF 100pF to 39nF 150pF to 180nF 220pF to 680nF 2.2nF to 1μF ≤ 2.5%

12 nF to 47nF 47nF to 220nF 220nF to 470nF 1uF ≤ 3.5%

560pF to 10nF 56nF to 100nF 680nF to 1μF 2.2uF 2.2uF ≤ 5%

270nF to 1uF 2.2uF to 4.7uF 4.7uF to 22uF 4.7uF to 22uF ≤10%

50V 100pF to 1nF 100pF to 10nF 100pF to 39nF 150pF to 180nF 220pF to 470nF 2.2nF to 1μF ≤2.5%

12 nF to 47nF 47nF to 220nF 220nF to 470nF 680nF to 1μF ≤ 3.5%

680nF ≤ 5%

100nF 470nF to 1uF 1uF to 2.2uF 2.2uF to 4.7uF 2.2uF to 10uF ≤10%

Insulation resistance after 1 minute at Ur (DC) Rins ≥ 10 GΩ or Rins × Cr ≥ 500(100) seconds whichever is less

Maximum capacitance change as a function of temperature

(temperature characteristic/coefficient):

± 15%

Operating temperature range: –55 °C to +125 °C

NOTE

Capacitance tolerance ±5% is not available for full product range, please contact local sales force before ordering

Table 7

ELECTRICAL CHARACTERISTICS

XX77RR DDIIEELLEECCTTRRIICC CCAAPPAACCIITTOORRSS;; NNIISSNN TTEERRMMIINNAATTIIOONNSS

Unless otherwise specified, all test and measurements shall be made under standard atmospheric conditions

for testing as given in 5.3 of IEC 60068-1:

- Temperature: 15 °C to 35 °C

- Relative humidity: 25% to 75%

- Air pressure: 86 kPa to 106 kPa

Before the measurements are made, the capacitor shall be stored at the measuring temperature for a time

sufficient to allow the entire capacitor to reach this temperature.

The period as prescribed for recovery at the end of a test is normally sufficient for this purpose.

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X7R

Fig. 3 Typical capacitance change as a function of

temperature

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X7R

Fig. 4 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0201 10 nF / 16 V Solid lines: Impedance / Dotted lines: ESR

Fig. 5 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0402 100 nF / 16 V Solid lines: Impedance / Dotted lines: ESR

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X7R

Fig. 6 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0603 1 µF / 16 V Solid lines: Impedance / Dotted lines: ESR

Fig. 7 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 0805 1 µF / 16 V Solid lines: Impedance / Dotted lines: ESR

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X7R

Fig. 8 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 1206 1 µF / 25 V Solid lines: Impedance / Dotted lines: ESR

Fig. 9 Impedance ESR vs. frequency characteristics for multilayer chip capacitors

Size 1206 10 µF / 10 V Solid lines: Impedance / Dotted lines: ESR

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X7R

SOLDERING RECOMMENDATION

Table 8

SOLDERING

METHOD SIZE

0402 0603 0805 1206 ≥ 1210

Reflow ≥ 0.1 µF ≥ 1.0 µF ≥ 2.2 µF ≥ 4.7 µF Reflow only

Reflow/Wave < 0.1 µF < 1.0 µF < 2.2 µF < 4.7 µF ---

TESTS AND REQUIREMENTS

Table 9 Test procedures and requirements

TEST TEST METHOD PROCEDURE REQUIREMENTS

Mounting

IEC 60384-

21/22

4.3 The capacitors may be mounted on printed-circuit boards or

ceramic substrates

No visible damage

Visual Inspection

and Dimension

Check

4.4 Any applicable method using × 10 magnification In accordance with

specification

Capacitance (1) 4.5.1 Class 2:

At 20 °C, 24 hrs after annealing

f = 1 KHz for C ≤ 10 µF, rated voltage > 6.3 V, measuring at

voltage 1 Vrms at 20 °C

f = 1 KHz, for C ≤ 10 µF, rated voltage ≤ 6.3 V, measuring at

voltage 0.5 Vrms at 20 °C

f = 120 Hz for C > 10 µF, measuring at voltage 0.5 Vrms at 20 °C

Within specified tolerance

Dissipation

Factor (D.F.) (1) 4.5.2 Class 2:

At 20 °C, 24 hrs after annealing

f = 1 KHz for C ≤ 10 µF, rated voltage > 6.3 V, measuring at

voltage 1 Vrms at 20 °C

f = 1 KHz, for C ≤ 10 µF, rated voltage ≤ 6.3 V, measuring at

voltage 0.5 Vrms at 20 °C

f = 120 Hz for C > 10 µF, measuring at voltage 0.5 Vrms at 20 °C

In accordance with

specification

Insulation

Resistance 4.5.3 At Ur (DC) for 1 minute In accordance with

specification

NOTE:

1. For individual product specification, please contact local sales.

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X7R

TEST TEST METHOD PROCEDURE REQUIREMENTS

Temperature

Characteristic IEC 60384-

21/22

4.6 Capacitance shall be measured by the steps shown in the

following table.

The capacitance change should be measured after 5 min

at each specified temperature stage.

Step Temperature(℃)

a 25± 2

b Lower temperature± 3℃

c 25± 2

d Upper Temperature± 2℃

e 25± 2

(1) Class I

Temperature Coefficient shall be calculated from the

formula as below

Temp, Coefficient =610

T xC1

C1-C2

Δ [ppm/℃]

C1: Capacitance at step c

C2: Capacitance at 125℃

∆T: 100℃(=125℃-25℃)

(2) Class II

Capacitance Change shall be calculated from the formula

as below

∆C = C1

C1-C2

x 100%

C1: Capacitance at step c

C2: Capacitance at step b or d

<General purpose series> Class1: ∆ C/C: ± 30ppm Class2: X7R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82% <High Capacitance series> Class2: X7R/X5R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82%

Adhesion

4.7

A force applied for 10 seconds to the line joining the

terminations and in a plane parallel to the substrate

Force

size ≥ 0603: 5N

size = 0402: 2.5N

size = 0201: 1N

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X7R

TEST TEST METHOD PROCEDURE REQUIREMENTS

Bond Strength 4.8

Mounting in accordance with IEC 60384-22

paragraph 4.3

No visible damage

Conditions: bending 1 mm at a rate of 1 mm/s,

radius jig 5 mm

Test Substrate:

unit:mm

<General Purpose series>

∆C/C

Class2:

X7R: ± 10%

<High Capacitance series>

∆C/C

Class2:

X7R: ± 10%

Dimension(mm)

Type a b c

0201 0.3 0.9 0.3

0402 0.4 1.5 0.5

0603 1.0 3.0 1.2

0805 1.2 4.0 1.65

1206 2.2 5.0 1.65

1210 2.2 5.0 2.0

1808 3.5 7.0 3.7

Resistance to

Soldering Heat 4.9

Precondition: 150 +0/–10 °C for 1 hour, then keep

for 24 ± 1 hours at room temperature

Preheating: for size ≤ 1206: 120 °C to 150 °C for 1

minute

Preheating: for size >1206: 100 °C to 120 °C for 1

minute and 170 °C to 200 °C for 1 minute

Solder bath temperature: 260 ± 5 °C

Dipping time: 10 ± 0.5 seconds

Recovery time: 24 ± 2 hours

Dissolution of the end face plating shall not

exceed 25% of the length of the edge

concerned

<General Purpose series>

∆C/C

Class2:

X7R: ± 10% <High Capacitance series>

∆C/C

Class2:

X7R: ± 10%

D.F. within initial specified value

Rins within initial specified value

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X7R

TEST TEST METHOD PROCEDURE REQUIREMENTS

Solderability IEC 60384-

21/22

4.10 Preheated to a temperature of 80 °C to 140 °C and

maintained for 30 seconds to 60 seconds.

Test conditions for lead containing solder alloy

Temperature: 235 ± 5 °C

Dipping time: 2 ± 0.2 seconds

Depth of immersion: 10 mm

Alloy Composition: 60/40 Sn/Pb

Number of immersions: 1

Test conditions for lead-free containing solder alloy

Temperature: 245 ± 5 °C

Dipping time: 3 ± 0.3 seconds

Depth of immersion: 10 mm

Alloy Composition: SAC305

Number of immersions: 1

The solder should cover over 95% of the

critical area of each termination

Rapid Change of

Temperature

4.11 Preconditioning;

150 +0/–10 °C for 1 hour, then keep for

24 ± 1 hours at room temperature

5 cycles with following detail:

30 minutes at lower category temperature

30 minutes at upper category temperature

Recovery time 24 ± 2 hours

No visual damage

<General Purpose series>

∆C/C

Class2:

X7R: ± 15%

<High Capacitance series>

∆C/C

Class2:

X7R: ± 15%

D.F. meet initial specified value

Rins meet initial specified value

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X7R

TEST TEST METHOD PROCEDURE REQUIREMENTS

Damp Heat

with Ur Load IEC 60384-

21/22

4.13 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for

24 ± 1 hour at room temp

2. Initial measure:

Spec: refer to initial spec C, D, IR

3. Damp heat test:

500 ± 12 hours at 40 ± 2 °C;

90 to 95% R.H. 1.0 Ur applied

4. Recovery:

Class 2: 24 ± 2 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the

minimum value permitted, then after the other

measurements have been made the capacitor

shall be preconditioned according to “IEC 60384

4.1” and then the requirement shall be met.

No visual damage after recovery

<General Purpose series>

∆C/C

Class2:

X7R: ± 15%

D.F.

Class2:

X7R: ≤ 16V: ≤ 7%

≥ 25V: ≤ 5%

Rins

Class2:

X7R: ≥ 500 MΩ or Rins x Cr ≥ 25s

whichever is less

<High Capacitance series(≥ 1uF) and

CC0402xRX7R9BB104>

∆C/C

Class2:

X7R: ± 20%

D.F.

Class2:

X7R: 2 x initial value max

Rins

Class2:

X7R: 500 MΩ or Rins x Cr ≥ 25(5)s

whichever is less

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X7R

TEST TEST METHOD PROCEDURE REQUIREMENTS

Endurance IEC 60384-

21/22

4.14 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for

24 ± 1 hour at room temp

2. Initial measure:

Spec: refer to initial spec C, D, IR

3. Endurance test:

Temperature: X7R: 125 °C

Specified stress voltage applied for 1,000 hours:

Applied 2.0 x Ur for general products

Applied 1.5(1.0) x Ur for high cap. products

4. Recovery time: 24 ± 2 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum

value permitted, then after the other measurements

have been made the capacitor shall be preconditioned

according to “IEC 60384 4.1” and then the

requirement shall be met.

No visual damage

<General Purpose series>

∆C/C

Class2:

X7R: ± 15%

D.F.

Class2:

X7R: ≤ 16V: ≤ 7%

≥ 25V: ≤ 5%

Rins

Class2:

X7R: ≥ 1,000 MΩ or Rins x Cr ≥ 50s

whichever is less

<High Capacitance series(≥ 1uF) and

CC0402xRX7R9BB104>

∆C/C

Class 2:

X7R: ± 20%

D.F.

Class 2:

X7R: 2 x initial value max

Rins

Class 2:

X7R: 1,000 MΩ or Rins x Cr ≥ 50(10)s

whichever is less

Voltage Proof IEC 60384-

1

4.6 Specified stress voltage applied for 1~5 seconds

Ur ≦ 100 V: series applied 2.5 Ur

Charge/Discharge current is less than 50 mA

No breakdown or flashover

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X7R

REVISION HISTORY

REVISION DATE CHANGE NOTIFICATION DESCRIPTION

Version 13 Dec. 30, 2015 - - Dimension on 0603 and 1206 case size updated

Version 12 May 26, 2015 - - 1210, 25V dissipation factor updated

Version 11 Jan. 06, 2015 - - 0402, 100nF, 50V Dissipation factor (D.F.) updated.

Version 10 Jul. 08, 2014 - - Dimension updated

Version 9 Aug. 19, 2013 - - Dimension updated

Version 8 Oct 13, 2011 - - Dimension updated

- 50V Dissipation factor(D.F) updated

Version 7 Jan 13, 2011 - - Dimension updated

Version 6 Oct 13, 2010 - - Rated voltage of 0201 extend to 50 V

- Capacitance range of 0201 X7R 6.3V to 16V extend to 100 pF

- Capacitance range of 0805 X7R 10V extend to 10 µF

- Capacitance range of 0805 X7R 50V extend to 1 µF

- Capacitance range of 1210 X7R 10V extend to 22 µF

- Figures of impedance ESR updated

Version 5 Jul 27, 2010 - - Dimension on 0603 and 1206 case size updated

- 16V to 25V Dissipation factor(D.F) updated

Version 4 Apr 21, 2010 - - The statement of "Halogen Free" on the cover added

- Dimension updated

Version 3 Oct 26, 2009 - - Capacitance range of 0402 X7R 25 V extend to 100 nF

- 16V Dissipation factor updated

Version 2 May 11, 2009 - - Product range updated

Version 1 Apr 24, 2009 - - Ordering code updated

Version 0 Apr 15, 2009 - - New datasheet for general purpose and high capacitance X7R series with

RoHS compliant

- Replace the "6.3V to 50V" part of pdf files: X7R_10V_9, X7R_16V-to-

100V_9, X7R_16-to-500V_9, UP-X5R_X7R_HighCaps_6.3-to-25V_11,

UY-X5R_X7R_HighCaps_6.3-to-25V_11

- Combine 0201 from pdf files: UP-NP0X5RX7RY5V_0201_6.3-to-50V_2

and UY-NPOX5RX7RY5V_0201_6.3-to-50V_2

- Define global part number

- Description of "Halogen Free compliant" added

- Test method and procedure updated

Pro

duct

Speci

fica

tion –

Dece

mber

22, 2015 V

.16

DATA SHEET

SURFACE-MOUNT CERAMIC

MULTILAYER CAPACITORS Mid-voltage

NP0/X7R 100 V TO 630 V

0.47 pF to 2.2 µF

RoHS compliant & Halogen Free

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

ORDERING INFORMATION - GLOBAL PART NUMBER, PHYCOMP

CTC & 12NC

All part numbers are identified by the series, size, tolerance, TC material,

packing style, voltage, process code, termination and capacitance value.

YYAAGGEEOO BBRRAANNDD oorrddeerriinngg ccooddee

GLOBAL PART NUMBER (PREFERRED)

CC XXXX X X XXX X B X XXX (1) (2) (3) (4) (5) (6) (7)

(1) SIZE – INCH BASED (METRIC)

0402 (1005) / 0603 (1608) / 0805 (2012) / 1206 (3216) / 1210 (3225)

1808 (4520) / 1812 (4532)

(2) TOLERANCE

C = ± 0.25 pF

D = ± 0.5 pF

F = ± 1%

G = ± 2%

J = ± 5%

K = ± 10%

(3) PACKING STYLE

R = Paper/PE taping reel; Reel 7 inch

K = Blister taping reel; Reel 7 inch

P = Paper/PE taping reel; Reel 13 inch

F = Blister taping reel; Reel 13 inch

C = Bulk case

(4) TC MATERIAL

NPO

X7R

(5) RATED VOLTAGE

0 = 100 V

A = 200 V

Y = 250 V

B = 500 V

Z = 630 V

(6) PROCESS

N = NP0

B = Class 2 MLCC

(7) CAPACITANCE VALUE

2 significant digits+number of zeros

The 3rd digit signifies the multiplying factor, and letter R is decimal point

Example: 121 = 12 x 101 = 120 pF

SCOPE

This specification describes Mid-

voltage NP0/X7R series chip

capacitors with lead-free

terminations.

APPLICATIONS

PCs, Hard disk, Game PCs

Power supplies

LCD panel

ADSL, Modem

FEATURES

Supplied in tape on reel

Nickel-barrier end termination

RoHS compliant

Halogen Free compliant

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

CONSTRUCTION

The capacitor consists of a

rectangular block of ceramic

dielectric in which a number of

interleaved metal electrodes are

contained. This structure gives

rise to a high capacitance per

unit volume.

The inner electrodes are

connected to the two end

terminations and finally covered

with a layer of plated tin (NiSn).

The terminations are lead-free. A

cross section of the structure is

shown in Fig.1.

MLB457

terminations

electrodes

ceramic material

Fig. 1 Surface mounted multilayer ceramic capacitor construction

TYPE L1 (mm) W (mm) T (MM) L2 / L3 (mm) L4 (mm)

min. max. min.

0402 1.0 ± 0.10 0.5 ± 0.05

Refer to

table 2 to 13

0.15 0.30 0.40

0603 1.6 ± 0.10 0.8 ± 0.10 0.20 0.60 0.40

0805 2.0 ± 0.20 1.25 ± 0.20 0.25 0.75 0.55

1206 3.2 ± 0.30 1.6 ± 0.20 0.25 0.75 1.40

1210 3.2 ± 0.30 2.5 ± 0.20 0.25 0.75 1.40

1808 4.5 ± 0.40 2.0 ± 0.30 0.25 0.75 2.20

1812 4.5 ± 0.40 3.2 ± 0.30 0.25 0.75 2.20

Table 1 For outlines see fig. 2

DIMENSION

OOUUTTLLIINNEESS

For dimension see Table 1

Fig. 2 Surface mounted multilayer

ceramic capacitor dimension

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

CAPACITANCE RANGE & THICKNESS FOR NP0

Table 2 Sizes from 0603 to 0805

CAP. 0402 0603 0805

100V 100 V 200 V 250 V 100 V 200 V 250 V 500 V 630V

0.47 pF

0.5± 0.05 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

0.56 pF

0.68 pF

0.82 pF

1.0 pF

1.2 pF

1.5 pF

1.8 pF

2.2 pF

2.7 pF

3.3 pF

3.9 pF

4.7 pF

5.6 pF

6.8 pF

8.2 pF

Table 3 Sizes from 0402 to 0805

CAP. 0402 0603 0805

100 V 100 V 200 V 250 V 100 V 200 V 250 V 500 V 630V

10 pF

0.5± 0.05 0.8± 0.1 0.8± 0.1 0.8± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1

12 pF

15 pF

18 pF

22 pF

27 pF

33 pF

39 pF

47 pF

56 pF

68 pF

82 pF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-12 series is on request

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

CAPACITANCE RANGE & THICKNESS FOR NP0

Table 4 Sizes from 0402 to 0805 (continued)

CAP. 0402 0603 0805

100 V 100 V 200 V 250 V 100 V 200 V 250 V 500 V 630 V

100 pF 0.5± 0.05

0.8± 0.1

0.8± 0.1 0.8± 0.1

0.6± 0.1

0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 120 pF

150 pF

180 pF

220 pF

0.85± 0.1 0.85± 0.1

0.85± 0.1 0.85± 0.1

270 pF

330 pF

390 pF

470 pF

560 pF

1.25± 0.2 1.25± 0.2 680 pF

820 pF

1.0 nF

1.2 nF

0.85± 0.1

1.25± 0.2 1.25± 0.2

1.5 nF

1.8 nF

2.2 nF

1.25± 0.2

2.7 nF

3.3 nF

3.9 nF

4.7 nF

5.6 nF

6.8 nF

8.2 nF

10 nF

12 nF

15 nF

18 nF

22 nF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-12 series is on request

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

CAP. 1206 1210

100 V 200 V 250 V 500 V 630 V 100 V 200 V 250 V 500 V 630 V

10 pF

0.6± 0.1 0.6± 0.1 0.6± 0.1 0.6± 0.1 1.25± 0.2

12 pF

15 pF

18 pF

22 pF

27 pF

33 pF

1.25± 0.2

39 pF

47 pF

1.25± 0.2 1.25± 0.2 1.25± 0.2 1.25± 0.2 56 pF

68 pF

82 pF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-12 series is on request

Table 6 Sizes from 1206 to 1210

CAPACITANCE RANGE & THICKNESS FOR NP0

CAP. 1206 1210

100 V 200 V 250 V 500 V 630 V 100 V 200 V 250 V 500 V 630 V

0.47 pF

0.6± 0.1 0.6± 0.1 0.6± 0.1

0.56 pF

0.68 pF

0.82 pF

1.0 pF

1.2 pF

1.5 pF

1.8 pF

2.2 pF

2.7 pF

3.3 pF

3.9 pF

4.7 pF

5.6 pF

6.8 pF

8.2 pF

Table 5 Sizes from 1206 to 1210

Mid-voltage

NP0/X7R

100 V to 630 V

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CAPACITANCE RANGE & THICKNESS FOR NP0

Table 7 Sizes from 1206 to 1210 (continued)

CAP. 1206 1210

100 V 200 V 250 V 500 V 630 V 100 V 200 V 250 V 500 V 630 V

100 pF

0.6± 0.1

0.6± 0.1 0.6± 0.1 0.6± 0.1

1.25± 0.2

1.25± 0.2

1.25± 0.2 1.25± 0.2 1.25± 0.2

1.25± 0.2

120 pF

150 pF

180 pF

220 pF

270 pF

330 pF

390 pF

470 pF

560 pF

680 pF

820 pF

0.85± 0.1 0.85± 0.1 0.85± 0.1

1.0 nF

1.2 nF

1.5 nF

1.8 nF

1.25± 0.2 1.25± 0.2

1.25± 0.2

2.2 nF

2.7 nF

3.3 nF

0.85± 0.1

3.9 nF

4.7 nF

5.6 nF

6.8 nF

8.2 nF 1.25± 0.2

10 nF

12 nF

15 nF

18 nF

22 nF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-12 series is on request

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

CAPACITANCE RANGE & THICKNESS FOR NP0

Table 8 Sizes 1812

CAP. 1812

100 V 200 V 500 V 630V

10 pF

12 pF

15 pF

18 pF

22 pF

27 pF

33 pF

39 pF

47 pF

56 pF

1.25± 0.2 1.25± 0.2 68 pF

82 pF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-12 series is on request

Table 9 Sizes 1812 (continued)

CAP. 1812

100 V 200 V 500 V 630V

100 pF

1.25± 0.2

1.25± 0.2

120 pF

150 pF

180 pF

220 pF

270 pF

330 pF

1.25± 0.2 1.25± 0.2

390 pF

470 pF

560 pF

680 pF

820 pF

1 nF

1.2 nF

1.5 nF

1.8 nF

2.2 nF

2.7 nF

3.3 nF

3.9 nF

4.7 nF

5.6 nF

6.8 nF

8.2 nF

10 nF

12 nF

15 nF

18 nF

22 nF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-12 series is on request

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

Table 10 Sizes from 0603 to 0805

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 0402 0603 0805

100 V 100 V 100 V 200 V 250 V 500 V

100 pF

0.5± 0.05

0.8± 0.1

150 pF

0.85± 0.1

220 pF

0.6± 0.1

0.85± 0.1 0.85± 0.1

330 pF

470 pF

680 pF

1.0 nF

1.5 nF

2.2 nF

3.3 nF

4.7 nF

6.8 nF

1.25± 0.2 1.25± 0.2 10 nF 1.25± 0.2

15 nF

0.85± 0.1

22 nF

33 nF

1.25± 0.2

47 nF

68 nF

100 nF

150 nF

220 nF

330 nF

470 nF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For special ordering code, please contact local sales force before order

4. For product with 5% tolerance, please contact local sales force before order

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

Table 11 Sizes from 1206 to 1210

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 1206 1210

100 V 200 V 250 V 500 V 630 V 100 V 200 V 250 V 500 V 630V

100 pF

150 pF

220 pF

0.85± 0.1

0.85± 0.1 0.85± 0.1 1.25± 0.2

1.25± 0.2

330 pF

470 pF

680 pF

1.0 nF

1.5 nF

2.2 nF

0.85± 0.1

0.85± 0.1 0.85± 0.1

3.3 nF

1.25± 0.2

1.25± 0.2

4.7 nF

6.8 nF

10 nF

15 nF

22 nF

1.25± 0.2 1.25± 0.2

1.6± 0.2

1.25± 0.2 1.25± 0.2

33 nF 1.6± 0.2

47 nF

68 nF

1.25± 0.2

100 nF 1.6± 0.2 1.6± 0.2

150 nF

1.25± 0.2

220 nF

330 nF 1.6± 0.2

470 nF

680 nF

2.0± 0.2

1 µF 1.6± 0.2

2.2 µF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For product with 5% tolerance, please contact local sales force before order

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

Table 12 Sizes from 1808 to 1812

CAPACITANCE RANGE & THICKNESS FOR X7R

CAP. 1808 1812

100 V 200 V 250 V 500 V 100 V 200 V 250 V 500 V 630 V

100 pF

150 pF

220 pF

330 pF

470 pF

680 pF

1.0 nF

1.35± 0.2

1.5 nF

2.2 nF

3.3 nF

1.25± 0.2 1.25± 0.2 1.25± 0.2

1.25± 0.2

1.25± 0.2

4.7 nF

0.85± 0.1

0.85± 0.1 0.85± 0.1

6.8 nF

10 nF

15 nF

22 nF

33 nF 1.6± 0.2

47 nF

1.25± 0.2 1.25± 0.2

68 nF

100 nF

1.25± 0.2

1.6± 0.2

150 nF

220 nF

1.6± 0.2 1.6± 0.2

330 nF

470 nF

1.6± 0.2

680 nF

1 µF

NOTE

1. Values in shaded cells indicate thickness class in mm

2. Capacitance value of non E-6 series is on request

3. For product with 5% tolerance, please contact local sales force before order

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

Table 13

THICKNESS CLASSES AND PACKING QUANTITY

SIZE

CODE

THICKNESS

CLASSIFICATION

TAPE WIDTH

QUANTITY PER REEL

Ø 180 MM / 7 INCH Ø 330 MM / 13 INCH QUANTITY

PER BULK CASE Paper Blister Paper Blister

0201 0.3 ± 0.03 mm 8 mm 15,000 --- 50,000 --- ---

0402 0.5 ± 0.05 mm 8 mm 10,000 --- 50,000 --- 50,000

0603 0.8 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 15,000

0805

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- 10,000

0.8 / 0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- 8,000

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 5,000

1206

0.6 ± 0.1 mm 8 mm 4,000 --- 20,000 --- ---

0.8 / 0.85 ± 0.1 mm 8 mm 4,000 --- 15,000 --- ---

1.00 / 1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- 10,000 ---

1.6 ± 0.15 mm 8 mm --- 2,500 --- 10,000 ---

1.6 ± 0.2 mm 8 mm --- 2,000 --- 8,000 ---

1210

0.6 / 0.7 ± 0.1 mm 8 mm --- 4,000 --- 15,000 ---

0.85 ± 0.1 mm 8 mm --- 4,000 --- 10,000 ---

1.15 ± 0.1 mm 8 mm --- 3,000 --- 10,000 ---

1.15 ± 0.15 mm 8 mm --- 3,000 --- 10,000 ---

1.25 ± 0.2 mm 8 mm --- 3,000 --- --- ---

1.5 ± 0.1 mm 8 mm --- 2,000 --- --- ---

1.6 / 1.9 ± 0.2 mm 8 mm --- 2,000 --- --- ---

2.0 ± 0.2 mm 8 mm --- 2,000

1,000 --- --- ---

2.5 ± 0.2 mm 8 mm --- 1,000

500 --- --- ---

1808

1.15 ± 0.15 mm 12 mm --- 3,000 --- --- ---

1.25 ± 0.2 mm 12 mm --- 3,000 --- --- ---

1.35 ± 0.15 mm 12 mm --- 2,000 --- --- ---

1.5 ± 0.1 mm 12 mm --- 2,000 --- --- ---

1.6 ± 0.2 mm 12 mm --- 2,000 --- 8,000 ---

2.0 ± 0.2 mm 12 mm --- 2,000 --- --- ---

1812

0.6 / 0.85 ± 0.1 mm 12 mm --- 2,000 --- --- ---

1.15 ± 0.1 mm 12 mm --- 1,000 --- --- ---

1.15 ± 0.15 mm 12 mm --- 1,000 --- --- ---

1.25 ± 0.2 mm 12 mm --- 1,000 --- --- ---

1.35 ± 0.15 mm 12 mm --- 1,000 --- --- ---

1.5 ± 0.1 mm 12 mm --- 1,000 --- --- ---

1.6 ± 0.2 mm 12 mm --- 1,000 --- --- ---

2.0 ± 0.2 mm 12 mm --- 1,000 --- --- ---

2.5 ± 0.2 mm 12 mm --- 500 --- --- ---

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

ELECTRICAL CHARACTERISTICS

NNPP00//XX77RR DDIIEELLEECCTTRRIICC CCAAPPAACCIITTOORRSS;; NNIISSNN TTEERRMMIINNAATTIIOONNSS

Unless otherwise specified, all test and measurements shall be made under standard atmospheric conditions

for testing as given in 5.3 of IEC 60068-1:

- Temperature: 15 °C to 35 °C

- Relative humidity: 25% to 75%

- Air pressure: 86 kPa to 106 kPa

Before the measurements are made, the capacitor shall be stored at the measuring temperature for a time

sufficient to allow the entire capacitor to reach this temperature.

The period as prescribed for recovery at the end of a test is normally sufficient for this purpose.

Table 14

DESCRIPTION VALUE

Capacitance range 0.47 pF to 2.2 µF

Capacitance tolerance

NP0 C < 10 pF ± 0.25 pF, ± 0.5 pF

C ≥ 10 pF ± 2%, ± 5%

X7R ± 5% (1), ± 10%

Dissipation factor (D.F.)

NP0 C < 30 pF ≤ 1 / ( 400 + 20C )

C ≥ 30 pF ≤ 0.1 %

X7R ≤ 2.5 %

Exception X7R/0603/100V, 12nF ≤ C ≤ 100nF ≤ 5%

X7R/1206/100V/1uF;

X7R/1210/100V/1uF and 2.2uF; ≤ 3.5%

Insulation resistance after 1 minute at Ur (DC) Rins ≥ 10 GΩ or Rins × C ≥ 500(100) seconds whichever is

less

Maximum capacitance change as a function of temperature

(temperature characteristic/coefficient):

NP0 ± 30 ppm/°C

X7R ± 15%

Operating temperature range:

NP0/X7R

–55 °C to +125 °C

NOTE

1. Capacitance tolerance ±5% doesn't available for X7R full product range, please contact local sales force before order

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

SOLDERING RECOMMENDATION

Table 15

SOLDERING

METHOD SIZE

0402 0603 0805 1206 ≥ 1210

Reflow ≥ 0.1 µF ≥ 1.0 µF ≥ 2.2 µF ≥ 4.7 µF Reflow only

Reflow/Wave < 0.1 µF < 1.0 µF < 2.2 µF < 4.7 µF ---

TEST TEST METHOD PROCEDURE REQUIREMENTS

Mounting

IEC 60384-

21/22

4.3 The capacitors may be mounted on printed-circuit boards or

ceramic substrates

No visible damage

Visual

Inspection and

Dimension

Check

4.4 Any applicable method using × 10 magnification In accordance with specification

Capacitance 4.5.1 Class 1:

f = 1 MHz for C ≤ 1 nF, measuring at voltage 1 Vrms at 20 °C

f = 1 KHz for C > 1 nF, measuring at voltage 1 Vrms at 20 °C

Class 2:

f = 1 KHz for C ≤ 10 µF, measuring at voltage 1 Vrms at 20 °C

Within specified tolerance

Dissipation

Factor (D.F.) 4.5.2 Class 1:

f = 1 MHz for C ≤ 1 nF , measuring at voltage 1 Vrms at 20 °C

f = 1 KHz for C > 1 nF, measuring at voltage 1 Vrms at 20 °C

Class 2:

f = 1 KHz for C ≤ 10 µF, measuring at voltage 1 Vrms at 20 °C

In accordance with specification

Insulation

Resistance 4.5.3 Ur ≤ 500 V: At Ur for 1 minute

Ur > 500 V: At 500 V for 1 minute

In accordance with specification

TESTS AND REQUIREMENTS

Table 16 Test procedures and requirements

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

TEST TEST METHOD PROCEDURE REQUIREMENTS

Temperature

coefficient 4.6 Capacitance shall be measured by the steps shown

in the following table.

The capacitance change should be measured after

5 min at each specified temperature stage.

Step Temperature(℃)

a 25± 2

b Lower temperature± 3℃

c 25± 2

d Upper Temperature± 2℃

e 25± 2

(1) Class I

Temperature Coefficient shall be calculated from

the formula as below

Temp, Coefficient =610

T xC1

C1-C2

Δ [ppm/℃]

C1: Capacitance at step c

C2: Capacitance at 125℃

∆T: 100℃(=125℃-25℃)

(2) Class II

Capacitance Change shall be calculated from the

formula as below

∆C = C1

C1-C2

x 100%

C1: Capacitance at step c

C2: Capacitance at step b or d

<General purpose series> Class1: ∆ C/C: ± 30ppm Class2: X7R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82% <High Capacitance series> Class2: X7R/X5R: ∆ C/C: ±15% Y5V: ∆ C/C: 22~-82%

Adhesion IEC 60384-

21/22

4.7

A force applied for 10 seconds to the line joining

the terminations and in a plane parallel to the

substrate

Force

size ≥ 0603: 5N

Bending

Strength 4.8

Mounting in accordance with IEC 60384-22

paragraph 4.3

No visible damage

Conditions: bending 1 mm at a rate of 1 mm/s,

radius jig 5 mm

∆C/C

Class 1:

NP0: within ± 1% or 0.5 pF, whichever is greater

Class2:

X7R: ± 10%

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

TEST TEST METHOD PROCEDURE REQUIREMENTS

Resistance to

Soldering

Heat

4.9

Precondition: 150 +0/–10 °C for 1 hour,

then keep for 24 ± 1 hours at room

temperature

Preheating: for size ≤ 1206: 120 °C to 150

°C for 1 minute

Preheating: for size >1206: 100 °C to 120

°C for 1 minute and 170 °C to 200 °C for 1

minute

Solder bath temperature: 260 ± 5 °C

Dipping time: 10 ± 0.5 seconds

Recovery time: 24 ± 2 hours

Dissolution of the end face plating shall not exceed

25% of the length of the edge concerned

∆C/C

Class 1:

NP0: within ± 0.5% or 0.5 pF, whichever is greater

Class2:

X7R: ± 10%

D.F. within initial specified value

Rins within initial specified value

Solderability 4.10 Preheated the temperature of 80 °C to 140

°C and maintained for 30 seconds to 60

seconds.

Test conditions for lead containing solder

alloy

Temperature: 235 ± 5 °C

Dipping time: 2 ± 0.2 seconds

Depth of immersion: 10 mm

Alloy Composition: 60/40 Sn/Pb

Number of immersions: 1

Test conditions for leadfree containing

solder alloy

Temperature: 245 ± 5 °C

Dipping time: 3 ± 0.3 seconds

Depth of immersion: 10 mm

Alloy Composition: SAC305

Number of immersions: 1

The solder should cover over 95% of the critical area

of each termination

Rapid Change

of

Temperature

IEC 60384-

21/22

4.11 Preconditioning;

150 +0/–10 °C for 1 hour, then keep for

24 ± 1 hours at room temperature

5 cycles with following detail:

30 minutes at lower category temperature

30 minutes at upper category temperature

Recovery time 24 ± 2 hours

No visual damage

∆C/C

Class 1:

NP0: within ± 1% or 1 pF, whichever is greater

Class2:

X7R: ± 15%

D.F. meet initial specified value

Rins meet initial specified value

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

TEST TEST METHOD PROCEDURE REQUIREMENTS

Damp Heat 4.13 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for

24 ± 1 hour at room temp

2. Initial measure:

Spec: refer initial spec C, D, IR

3. Damp heat test:

500 ± 12 hours at 40 ± 2 °C;

90 to 95% R.H.

4. Recovery:

Class 1: 6 to 24 hours

Class 2: 24 ± 2 hours

5. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum value permitted, then after the other measurements have been made the capacitor shall be precondition according to “IEC 60384 4.1” and then the requirement shall be met.

No visual damage after recovery

∆C/C

Class 1:

NP0: within ± 2% or 1 pF, whichever is greater

Class2:

X7R: ± 15%

D.F.

Class 1:

NP0: ≤ 2 x specified value

Class2:

X7R: ≥ 25 V: ≤ 5%

Rins

Class 1:

NP0: ≥ 2,500 MΩ or Rins x Cr ≥ 25s whichever

is less

Class2:

X7R: ≥ 500 MΩ or Rins x Cr ≥ 25s whichever is

less

Endurance IEC 60384-

21/22

4.14 1. Preconditioning, class 2 only:

150 +0/-10 °C /1 hour, then keep for

24 ± 1 hour at room temp

2. Initial measure:

Spec: refer initial spec C, D, IR

3. Endurance test:

Temperature: NP0/X7R: 125 °C

Specified stress voltage applied for 1,000 hours:

4. High voltage series follows with below stress

condition:

Applied 2.0 x Ur for 100 V series

Applied 1.5 x Ur for 200/250 V series

Applied 1.3 x Ur for 500 V, 630 V series

Applied 1.2 x Ur for 1 KV, 2 KV, 3 KV series

5. Recovery time: 24 ± 2 hours

6. Final measure: C, D, IR

P.S. If the capacitance value is less than the minimum value permitted, then after the other measurements have been made the capacitor shall be precondition according to “IEC 60384 4.1” and then the requirement shall be met.

No visual damage

∆C/C

Class1:

NP0: within ± 2% or 1 pF, whichever is greater

Class2:

X7R: ± 15%

D.F.

Class1:

NP0: ≤ 2 x specified value

Class2:

X7R: ≥ 25 V: ≤ 5%

Rins

Class1:

NP0: ≥ 4,000 MΩ or

Rins x Cr ≥ 40s whichever is less

Class2:

X7R: ≥ 1,000 MΩ or

Rins x Cr ≥ 50s whichever is less

Voltage Proof 4.6 Specified stress voltage applied for 1~5 seconds

Ur ≤ 100 V: series applied 2.5 Ur

100 V < Ur ≤ 200 V series applied

(1.5 Ur + 100)

200 V < Ur ≤ 500 V series applied

(1.3 Ur + 100) Ur > 500 V: 1.3 Ur

Ur ≧ 1000 V: 1.2 Ur

Charge/Discharge current is less than 50 mA

No breakdown or flashover

Mid-voltage

NP0/X7R

100 V to 630 V

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Product specification

REVISION HISTORY

REVISION DATE CHANGE NOTIFICATION DESCRIPTION

Version 16 Apr. 16, 2015 - - Capacitance range & thickness

Version 15 Apr. 16, 2015 - - Electrical characteristics update

Version 14 Sep. 25, 2014 - - Electrical characteristics update

Version 13 Apr. 21, 2014 - - Electrical characteristics update

Version 12 Dec. 12, 2013 - - Electrical characteristics update

Version 11 Jun. 17, 2013 - - Test method and procedure updated

Version 10 Nov 22, 2012 - - Test method and procedure updated

Version 9 Feb 02, 2012 - - Test method and procedure updated

Version 8 Apr 22, 2011 - - NP0 0402 100V added

Version 7 Mar 01, 2011 - - Dimension updated

Version 6 Sep 30, 2010 - - Update the thickness of 0805 100V

Version 5 Sep 28, 2010 - - Product range updated

- Thickness classes and packing quantity table updated

Version 4 Jun 17, 2010 - - Update the dimension of 0805, 1206 and 1812

Version 3 Mar 25, 2010 - - Product range update

Version 2 Mar 15, 2010 - - Product range update

Version 1 Oct 30, 2009 - - Change to dual brand datasheet that describe Mid-voltage NP0/X7R

series with RoHS compliant

- Replace the "100V to 630V" part of pdf files: UP-NP0X7R_MV_100-to-

500V_0, UY-NP0X7R_MV_100-to-500V_0, NP0_16V-to-100V_6,

NP0_50-to-500V_10, X7R_16-to-500V_9 and X7R_16V-to-100V_9

- Define global part number

- Description of "Halogen Free compliant" added

- Test method and procedure updated

Version 0 Sep 08, 2005 - - New


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