1uf C03e PDF
1uf C03e PDF
pdf
Jun 22,2017
2017
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
EU RoHS Compliant
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!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
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Jun 22,2017
GRT Series
Contents
GCM Series
Product specifications are as of May 2017.
GC3 Series
Part Numbering p5
Capacitance Table p8
Cap. Table
GCJ Series
GRT Series p23 p9
GCD Series
High Effective Capacitance & High Ripple Current Chip Multilayer Ceramic
Capacitors for Automotive GC3 Series p37 p14
GCE Series
Soft Termination Chip Multilayer Ceramic Capacitors for Automotive
GCJ Series p39 p16
NMF Series
GCD Series p45 p18
Soft Termination MLSC Design Chip Multilayer Ceramic Capacitors for Automotive
GCE Series p47 p18
KCM Series
Very Large Current 3 Terminals Low ESL Chip Multilayer Ceramic Capacitors
for Automotive (EMIFILr) NFM Series p49 p18
KC3 Series
Metal Terminal Type Multilayer Ceramic Capacitors for Automotive
KCM Series p51 p19
High Effective Capacitance & High Allowable Ripple Current Metal Terminal Type
KCA Series
!Caution/Notice
/Notice
p65
Web page SimSurfing p87
Introduction p88
For applications that do not require the particular reliability such as Derating 1
the general equipment This product is suitable when a voltage continuously applied to a
capacitor in an operating circuit, is used below (derated) the rated
voltage of the capacitor. This model guarantees the test conditions in
Infotainment for Automotive
the endurance test, at a rated voltage x 100% at the maximum
The product for entertainment equipment like car navigations, car
operating temperature. A reliability assurance level equivalent to a
audios, and body control equipment like wipers, power windows.
common product can be secured, by using this product within the
voltage and temperature derated conditions recommended in the
Powertrain/Safety for Automotive
figure below.
Product used for applications (running, turning, stopping and safety
devices) which particularly concern human life, such as in devices for Recommended Conditions of the Derating Operating Voltage and Temperature
automobiles. 120
(350V)
Low inductance
300
This capacitor is designed so that the parasitic inductance
component (ESL) that the capacitor has on the high frequency side
200
becomes lower.
20
Low-inductance product suitable for noise suppression.
This product has extremely low ESL and is suitable for suppression 0
of noise, including high frequencies. -75 -50 -25 0 25 50 75 100 125 150 175
This product can also be used as a low-ESL, high-performance Product Temperature (°C)
bypass capacitor.
Derating 5
Limited to Conductive Glue Mounting
Please apply the rated voltage derating over 150°C. Please refer to
Since silver palladium is used for the external electrodes,the
detailed specifications sheet for details.
capacitor can be mounted by conductive adhesive.
2
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Jun 22,2017
SMD SMD
GMD WEB
DEC WEB
For LCD backlight inverter circuit
DEF only
WEB
DHR WEB
Based on the Electrical Appliance
DEJ and Material Safety Law of Japan
WEB
DHS WEB
3
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Jun 22,2017
Catalog Information
Catalog relates to a multilayer ceramic capacitor is below.
4
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
o Part Numbering
5Temperature Characteristics
Temperature
Temperature Characteristics Capacitance Change Each Temperature (%)
Characteristic Codes Operating
Temperature
Public Reference Temperature Capacitance Change Range –55°C *4 –10°C
Code or Temperature
STD Code Temperature Range Coefficient Max. Min. Max. Min. Max. Min.
5C C0G EIA 25°C 25 to 125°C 0±30ppm/°C –55 to 125°C 0.58 –0.24 0.4 –0.17 0.25 –0.11
5G X8G *2 25°C 25 to 150°C 0±30ppm/°C –55 to 150°C 0.58 –0.24 0.4 –0.17 0.25 –0.11
7U U2J EIA 25°C 25 to 125°C *3 –750±120ppm/°C –55 to 125°C 8.78 5.04 6.04 3.47 3.84 2.21
–55 to –40°C –4700+1000/–2500ppm/°C - - - - - -
–40 to 20°C –5350±750ppm/°C - - - - - -
9E ZLM *2 20°C –55 to 125°C
20 to 85°C –4700±500ppm/°C - - - - - -
85 to 125°C –4700+2000/–1000ppm/°C - - - - - -
C7 X7S EIA 25°C –55 to 125°C ±22% –55 to 125°C - - - - - -
C8 X6S EIA 25°C –55 to 105°C ±22% –55 to 105°C - - - - - -
D7 X7T EIA 25°C –55 to 125°C +22%, –33% –55 to 125°C - - - - - -
L8 X8L *2 25°C –55 to 150°C +15%, –40% –55 to 150°C - - - - - -
M8 X8M *2 25°C –55 to 150°C +15%, –50% –55 to 150°C - - - - - -
R6 X5R EIA 25°C –55 to 85°C ±15% –55 to 85°C - - - - - -
R7 X7R EIA 25°C –55 to 125°C ±15% –55 to 125°C - - - - - -
R9 X8R EIA 25°C –55 to 150°C ±15% –55 to 150°C - - - - - -
*1 Capacitance change is specified with 50% rated voltage applied.
*2 Murata Temperature Characteristic Code.
*3 Rated Voltage 100Vdc max: 25 to 85°C
*4 –25°C (Reference Temperature 20°C) / –30°C (Reference Temperature 25°C)
Continued on the following page.
5
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Jun 22,2017
1H EH DC50V
1J - DC63V :Package
7Capacitance
Expressed by three-digit alphanumerics. The unit is pico-farad
(pF). The first and second figures are significant digits, and the
third figure expresses the number of zeros that follow the two
numbers.
If there is a decimal point, it is expressed by the capital letter "R."
In this case, all figures are significant digits.
If any letter, other than "R" is included, this indicates the specific
part number is a non-standard part.
Ex.) Code Capacitance
R50 0.50pF
1R0 1.0pF
100 10pF
103 10000pF
Please contact us if you find any part number not provided in this table.
6
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
6Characteristics
Code Capacitance Temperature Characteristics
R ±15%, +15/-18%
Please contact us if you find any part number not provided in this table.
7
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table
How to read the Capacitance Table
Temperature
Temperature Characteristics Capacitance Change Each Temperature (%)
Characteristic Codes Operating
Temperature
Public Reference Temperature Capacitance Change Range –55°C *3 –10°C
or Temperature
STD Code Temperature Range Coefficient Max. Min. Max. Min. Max. Min.
C0G EIA 25°C 25 to 125°C 0±30ppm/°C –55 to 125°C 0.58 –0.24 0.4 –0.17 0.25 –0.11
X8G *1 25°C 25 to 150°C 0±30ppm/°C –55 to 150°C 0.58 –0.24 0.4 –0.17 0.25 –0.11
U2J EIA 25°C 25 to 125°C *2 –750±120ppm/°C –55 to 125°C 8.78 5.04 6.04 3.47 3.84 2.21
–55 to –40°C –4700+1000/–2500ppm/°C - - - - - -
–40 to 20°C –5350±750ppm/°C - - - - - -
ZLM *1 20°C –55 to 125°C
20 to 85°C –4700±500ppm/°C - - - - - -
85 to 125°C –4700+2000/–1000ppm/°C - - - - - -
X7S EIA 25°C –55 to 125°C ±22% –55 to 125°C - - - - - -
X6S EIA 25°C –55 to 105°C ±22% –55 to 105°C - - - - - -
X7T EIA 25°C –55 to 125°C +22%, –33% –55 to 125°C - - - - - -
X8L *1 25°C –55 to 150°C +15%, –40% –55 to 150°C - - - - - -
X8M *1 25°C –55 to 150°C +15%, –50% –55 to 150°C - - - - - -
X5R EIA 25°C –55 to 85°C ±15% –55 to 85°C - - - - - -
X7R EIA 25°C –55 to 125°C ±15% –55 to 125°C - - - - - -
X8R EIA 25°C –55 to 150°C ±15% –55 to 150°C - - - - - -
*1 Murata Temperature Characteristic Code.
*2 Rated Voltage 100Vdc max: 25 to 85°C
*3 –25°C (Reference Temperature 20°C) / –30°C (Reference Temperature 25°C)
8
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page. Capacitance Table
GRT Series Temperature Compensating Type
p00 ← Part Number List EIA: C0G
9
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
10
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
11-1
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
11-2
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
13
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
14
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
15-1
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
15-2
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
16-1
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
16-2
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
17
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
GCD Series High Dielectric Constant Type GCE Series High Dielectric Constant Type
p00 ← Part Number List EIA: X7R p00 ← Part Number List EIA: X7R
NFM Series
p00 ← Part Number List
18
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Jun 22,2017
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page. Capacitance Table
KCM Series High Dielectric Constant Type
p00 ← Part Number List EIA: X7S X7R
KC3 Series High Dielectric Constant Type GCG Series Temperature Compensating Type
p00 ← Part Number List EIA: X7T p00 ← Part Number List Murata Temperature Characteristic: X8G
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
Capacitance Table p00 Each number in the Part Number List refers to the page number printed at the bottom of the page.
21
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series Temperature Compensating Links are provided to the product detail pages on the web, and are shown
1.0×0.5mm below in the product number table from the PDF version of the catalog
T
max.
Rated TC
Voltage Code
Cap. Tol. Part Number which is available on the web.
0.55mm 100Vdc C0G 1.0pF ±0.25pF GRT1555C2A1R0CA02#
2.0pF ±0.25pF GRT1555C2A2R0CA02#
3.0pF
4.0pF
±0.25pF GRT1555C2A3R0CA02#
±0.25pF GRT1555C2A4R0CA02# Status and Features Icons
5.0pF ±0.25pF GRT1555C2A5R0CA02#
Data Sheet
The product details page can be output in PDF.
Series Information
This links to the introduction page of each series.
Characteristics Data
The following characteristics data of the
main products can be acquired.
F SPICE Netlist (mod type)
F S parameter (S2P type)
F Reliability Test Data *Typical data
F Shape (Dimensions)
F Rated Values
F Specification by Packaging Code/
Minimum Order Quantity
F Weight (1 pc/ø180mm reel)
Chart of Characteristic Data
The main products published characteristic data.
F Frequency characteristics (ESR, Impedance)
F DC bias characteristics
F AC voltage characteristics
F Capacitance - temperature characteristics
F Calorific property by ripple current
Design Tools SimSurfing
The SimSurfing design tools are useful for displaying
the graph, downloading CSV data and overwriting the
product number graph.
22
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Jun 22,2017
GRT Series
AEC-Q200 Compliant Chip Multilayer Ceramic Capacitors for Infotainment
GCM Series
Capacitor meet AEC-Q200 (Grade2 or Grade3).
Features
GC3 Series
1 This product has clearded test conditions meet AEC-Q200.
This series is designed for use in Car Multimedia, Car Interior, Car Comfort application and General Electronic
equipment. It is not appropriate for use in applications critical to passenger safety and car driving function (e.g. ABS,
GCJ Series
AIRBAG, etc.). Please use the GCM series is in critical applications.
General Purpose GRM Series AEC-Q200 meeted GRT Series
Maximum operating temperature: 125°C Maximum operating temperature: 125°C
GCD Series
Temperature Cycle Temperature Cycle: 5 cycles Temperature Cycle: 1,000 cycles
GCE Series
2 Meet AEC-Q200 (Grade2 or Grade3).
105°C product: Grade2.
85°C product: Grade3.
NMF Series
3 Sn plating is applied to the external electrodes; excellent solderability.
Internal Electrodes
Ni/Sn Plated Layer
Ceramic
KCM Series
Foundation Electrode Layer
<Example of Structure>
KC3 Series
Specifications
e g e
Size 0.6×0.3mm to 3.2×2.5mm
KCA Series
<Dimensions>
module and entertainment system
!Caution
/Notice
23
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
T Rated TC
1.0×0.5mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
GRT Series
(→ 1.6×0.8mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
0.9mm 100Vdc C0G 82pF ±5% GRT1885C2A820JA02# 0.9mm 50Vdc C0G 2700pF ±5% GRT1885C1H272JA02#
100pF ±5% GRT1885C2A101JA02# 3300pF ±5% GRT1885C1H332JA02#
120pF ±5% GRT1885C2A121JA02# 3900pF ±5% GRT1885C1H392JA02#
150pF ±5% GRT1885C2A151JA02# 4700pF ±5% GRT1885C1H472JA02#
180pF ±5% GRT1885C2A181JA02# 5600pF ±5% GRT1885C1H562JA02#
GC3 Series
220pF ±5% GRT1885C2A221JA02# 6800pF ±5% GRT1885C1H682JA02#
270pF ±5% GRT1885C2A271JA02# 8200pF ±5% GRT1885C1H822JA02#
330pF ±5% GRT1885C2A331JA02# 10000pF ±5% GRT1885C1H103JA02#
390pF ±5% GRT1885C2A391JA02# 25Vdc C0G 560pF ±5% GRT1885C1E561JA02#
470pF ±5% GRT1885C2A471JA02# 680pF ±5% GRT1885C1E681JA02#
GCJ Series
560pF ±5% GRT1885C2A561JA02# 820pF ±5% GRT1885C1E821JA02#
680pF ±5% GRT1885C2A681JA02# 1000pF ±5% GRT1885C1E102JA02#
820pF ±5% GRT1885C2A821JA02# 1200pF ±5% GRT1885C1E122JA02#
1000pF ±5% GRT1885C2A102JA02# 1500pF ±5% GRT1885C1E152JA02#
1200pF ±5% GRT1885C2A122JA02# 4700pF ±5% GRT1885C1E472JA02#
GCD Series
1500pF ±5% GRT1885C2A152JA02# 5600pF ±5% GRT1885C1E562JA02#
50Vdc C0G 1.0pF ±0.25pF GRT1885C1H1R0CA02# 6800pF ±5% GRT1885C1E682JA02#
2.0pF ±0.25pF GRT1885C1H2R0CA02# 8200pF ±5% GRT1885C1E822JA02#
3.0pF ±0.25pF GRT1885C1H3R0CA02# 10000pF ±5% GRT1885C1E103JA02#
4.0pF ±0.25pF GRT1885C1H4R0CA02#
GCE Series
5.0pF ±0.25pF GRT1885C1H5R0CA02#
6.0pF ±0.5pF GRT1885C1H6R0DA02#
2.0×1.25mm
7.0pF ±0.5pF GRT1885C1H7R0DA02# T Rated TC
Cap. Tol. Part Number
8.0pF ±0.5pF GRT1885C1H8R0DA02# max. Voltage Code
NMF Series
9.0pF ±0.5pF GRT1885C1H9R0DA02# 1.35mm 50Vdc C0G 18000pF ±5% GRT21B5C1H183JA02#
10pF ±5% GRT1885C1H100JA02# 22000pF ±5% GRT21B5C1H223JA02#
12pF ±5% GRT1885C1H120JA02#
15pF ±5% GRT1885C1H150JA02#
18pF ±5% GRT1885C1H180JA02#
3.2×1.6mm
KCM Series
22pF ±5% GRT1885C1H220JA02# T Rated TC
Cap. Tol. Part Number
27pF ±5% GRT1885C1H270JA02# max. Voltage Code
KC3 Series
56pF ±5% GRT1885C1H560JA02# 0.10µF ±5% GRT31C5C1H104JA02#
68pF ±5% GRT1885C1H680JA02# 25Vdc C0G 0.10µF ±5% GRT31C5C1E104JA02#
82pF ±5% GRT1885C1H820JA02# 0.12µF ±5% GRT31C5C1E124JA02#
100pF ±5% GRT1885C1H101JA02# 16Vdc C0G 0.12µF ±5% GRT31C5C1C124JA02#
120pF ±5% GRT1885C1H121JA02#
KCA Series
GRT1885C1H821JA02#
/Notice
820pF ±5%
1000pF ±5% GRT1885C1H102JA02#
1200pF ±5% GRT1885C1H122JA02#
1500pF ±5% GRT1885C1H152JA02#
1800pF ±5% GRT1885C1H182JA02#
2200pF ±5% GRT1885C1H222JA02#
0.6×0.3mm 1.0×0.5mm
GCM Series
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
0.33mm 35Vdc X5R 0.10µF ±10% GRT033R6YA104KE01# 0.55mm 50Vdc X7R 220pF ±10% GRT155R71H221KE01#
25Vdc X7R 470pF ±10% GRT033R71E471KE01# 470pF ±10% GRT155R71H471KE01#
1000pF ±10% GRT033R71E102KE01# 1000pF ±10% GRT155R71H102KE01#
GC3 Series
GRT Series
(→ 1.0×0.5mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
0.6mm 4Vdc X5R 4.7µF ±20% GRT155R60G475ME13# 1.0mm 4Vdc X6S 22µF ±20% GRT188C80G226ME13#
0.65mm 10Vdc X5R 4.7µF ±20% GRT155R61A475ME13#
6.3Vdc X6S 4.7µF ±20% GRT155C80J475ME13#
0.7mm 25Vdc X5R 2.2µF ±10% GRT155R61E225KE13#
2.0×1.25mm
16Vdc X6S 2.2µF ±10% GRT155C81C225KE13# T Rated TC
Cap. Tol. Part Number
GC3 Series
X5R 2.2µF ±10% GRT155R61C225KE13# max. Voltage Code
10Vdc X7S 2.2µF ±10% GRT155C71A225KE13# 1.35mm 50Vdc X7R 1.0µF ±10% GRT21BR71H105KE01#
X6S 2.2µF ±10% GRT155C81A225KE13# 25Vdc X6S 2.2µF ±10% GRT21BC81E225KA02#
2.5Vdc X6S 10µF ±20% GRT155C80E106ME13# 4.7µF ±10% GRT21BC81E475KA02#
X5R 2.2µF ±10% GRT21BR61E225KA02#
GCJ Series
4.7µF ±10% GRT21BR61E475KA02#
1.6×0.8mm 16Vdc X7R 2.2µF ±10% GRT21BR71C225KE01#
GCD Series
35Vdc X6S 1.0µF ±10% GRT188C8YA105KE13# X5R 2.2µF ±10% GRT21BR61C225KA02#
X5R 1.0µF ±10% GRT188R6YA105KE13# 4.7µF ±10% GRT21BR61C475KA02#
2.2µF ±10% GRT188R6YA225KE13# 10µF ±10% GRT21BR61C106KE01#
25Vdc X7R 1.0µF ±10% GRT188R71E105KE13# 10Vdc X6S 10µF ±10% GRT21BC81A106KE01#
X6S 1.0µF ±10% GRT188C81E105KE13# X5R 10µF ±10% GRT21BR61A106KE01#
GCE Series
X5R 1.0µF ±10% GRT188R61E105KE13# 6.3Vdc X5R 10µF ±10% GRT21BR60J106KE01#
2.2µF ±10% GRT188R61E225KE13# 1.4mm 50Vdc X5R 2.2µF ±10% GRT21BR61H225KE13#
16Vdc X7R 1.0µF ±10% GRT188R71C105KE13# 4.7µF ±10% GRT21BR61H475KE13#
X6S 1.0µF ±10% GRT188C81C105KE13# 35Vdc X6S 2.2µF ±10% GRT21BC8YA225KE13#
NMF Series
2.2µF ±10% GRT188C81C225KE13# 4.7µF ±10% GRT21BC8YA475KE13#
X5R 1.0µF ±10% GRT188R61C105KE13# 25Vdc X7R 2.2µF ±10% GRT21BR71E225KE13#
10Vdc X6S 1.0µF ±10% GRT188C81A105KE13# X5R 10µF ±10% GRT21BR61E106KE13#
X5R 1.0µF ±10% GRT188R61A105KE01# 16Vdc X7R 4.7µF ±10% GRT21BR71C475KE13#
2.2µF ±10% GRT188R61A225KE13# 10Vdc X7R 4.7µF ±10% GRT21BR71A475KE13#
KCM Series
6.3Vdc X7R 2.2µF ±10% GRT188R70J225KE13# 10µF ±10% GRT21BR71A106KE13#
X6S 4.7µF ±10% GRT188C80J475KE01# X5R 4.7µF ±10% GRT21BR61A475KE13#
X5R 1.0µF ±10% GRT188R60J105KE01# 22µF ±20% GRT21BR61A226ME13#
2.2µF ±10% GRT188R60J225KE13# 6.3Vdc X7R 10µF ±10% GRT21BR70J106KE13#
4.7µF ±10% GRT188R60J475KE01# X5R 4.7µF ±10% GRT21BR60J475KE13#
KC3 Series
10µF ±20% GRT188R60J106ME13# 22µF ±20% GRT21BR60J226ME13#
4Vdc X6S 1.0µF ±20% GRT188C80G105ME01# 1.45mm 25Vdc X7S 10µF ±10% GRT21BC71E106KE13#
4.7µF ±10% GRT188C80G475KE01# X5R 22µF ±20% GRT21BR61E226ME13#
10µF ±20% GRT188C80G106ME13# 16Vdc X5R 22µF ±20% GRT21BR61C226ME13#
X5R 10µF ±20% GRT188R60G106ME13# 10Vdc X6S 22µF ±20% GRT21BC81A226ME13#
KCA Series
0.95mm 25Vdc X5R 4.7µF ±10% GRT188R61E475KE13# 6.3Vdc X5R 47µF ±20% GRT21BR60J476ME13#
16Vdc X6S 4.7µF ±10% GRT188C81C475KE13# 4Vdc X5R 47µF ±20% GRT21BR60G476ME13#
X5R 4.7µF ±10% GRT188R61C475KE13#
10µF ±10% GRT188R61C106KE13#
3.2×1.6mm
GCG Series
35Vdc X6S 2.2µF ±10% GRT188C8YA225KE13# 1.8mm 50Vdc X7R 2.2µF ±10% GRT31CR71H225KE13#
X5R 4.7µF ±10% GRT188R6YA475KE13# X6S 2.2µF ±10% GRT31CC81H225KE01#
!Caution
(→ 3.2×1.6mm)
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GCM Series
3.2×2.5mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
Chip Multilayer Ceramic Capacitors for Automotive
GCM Series
Capacitor for automotive applications such as power train and safety equipment.
Features
GC3 Series
1 Ideal for powertrains and safety devices in automotive.
This product can be used for safety devices, such as the drive system control for engine ECU, air bags, and ABS.
This product has cleared test conditions more severe than that of general products (GRM Series) even in
GCJ Series
temperature cycle and humidity load tests.
General Purpose GRM Series GCM Series for Automotive
Maximum operating temperature: 125°C Maximum operating temperature: 150°C
GCD Series
Temperature Cycle: 100 cycles
Temperature Cycle Temperature Cycle: 5 cycles
(1,000 cycles for AEC-Q200 conforming products)
Test temperature: 85±2°C
Test temperature: 40±2°C
Test humidity: 80 to 85%RH
Humidity Loading Test humidity: 90 to 95%RH
Test time: 500 hours
Test time: 500 hours
GCE Series
(1,000 hours for AEC-Q200 conforming products)
NMF Series
3 Sn plating is applied to the external electrodes; excellent solderability.
Internal Electrodes
Ni/Sn Plated Layer
Ceramic
KCM Series
Foundation Electrode Layer
<Example of Structure>
e g e
KCA Series
<Dimensions>
!Caution
/Notice
29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
T Rated TC
1.0×0.5mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
GRT Series
(→ 1.6×0.8mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
0.9mm 100Vdc U2J 1500pF ±5% GCM1887U2A152JA16# 0.9mm 50Vdc U2J 1500pF ±5% GCM1887U1H152JA16#
1800pF ±5% GCM1887U2A182JA16# 1800pF ±5% GCM1887U1H182JA16#
2200pF ±5% GCM1887U2A222JA16# 2200pF ±5% GCM1887U1H222JA16#
2700pF ±5% GCM1887U2A272JA16# 2700pF ±5% GCM1887U1H272JA16#
3300pF ±5% GCM1887U2A332JA16# 3300pF ±5% GCM1887U1H332JA16#
GC3 Series
3900pF ±5% GCM1887U2A392JA16# 3900pF ±5% GCM1887U1H392JA16#
4700pF ±5% GCM1887U2A472JA16# 4700pF ±5% GCM1887U1H472JA16#
5600pF ±5% GCM1887U2A562JA16# 5600pF ±5% GCM1887U1H562JA16#
6800pF ±5% GCM1887U2A682JA16# 6800pF ±5% GCM1887U1H682JA16#
8200pF ±5% GCM1887U2A822JA16# 8200pF ±5% GCM1887U1H822JA16#
GCJ Series
10000pF ±5% GCM1887U2A103JA16# 10000pF ±5% GCM1887U1H103JA16#
50Vdc C0G 1.0pF ±0.25pF GCM1885C1H1R0CA16#
2.0pF ±0.25pF GCM1885C1H2R0CA16#
3.0pF ±0.25pF GCM1885C1H3R0CA16#
2.0×1.25mm
4.0pF ±0.25pF GCM1885C1H4R0CA16# T Rated TC
GCD Series
Cap. Tol. Part Number
5.0pF ±0.25pF GCM1885C1H5R0CA16# max. Voltage Code
GCE Series
10pF ±5% GCM1885C1H100JA16# 220pF ±5% GCM2165C2A221JA16#
12pF ±5% GCM1885C1H120JA16# 270pF ±5% GCM2165C2A271JA16#
15pF ±5% GCM1885C1H150JA16# 330pF ±5% GCM2165C2A331JA16#
18pF ±5% GCM1885C1H180JA16# 390pF ±5% GCM2165C2A391JA16#
NMF Series
22pF ±5% GCM1885C1H220JA16# 470pF ±5% GCM2165C2A471JA16#
27pF ±5% GCM1885C1H270JA16# 560pF ±5% GCM2165C2A561JA16#
33pF ±5% GCM1885C1H330JA16# 680pF ±5% GCM2165C2A681JA16#
39pF ±5% GCM1885C1H390JA16# 820pF ±5% GCM2165C2A821JA16#
47pF ±5% GCM1885C1H470JA16# 1000pF ±5% GCM2165C2A102JA16#
KCM Series
56pF ±5% GCM1885C1H560JA16# 1200pF ±5% GCM2165C2A122JA16#
68pF ±5% GCM1885C1H680JA16# 1500pF ±5% GCM2165C2A152JA16#
82pF ±5% GCM1885C1H820JA16# 1800pF ±5% GCM2165C2A182JA16#
100pF ±5% GCM1885C1H101JA16# 2200pF ±5% GCM2165C2A222JA16#
120pF ±5% GCM1885C1H121JA16# 2700pF ±5% GCM2165C2A272JA16#
KC3 Series
150pF ±5% GCM1885C1H151JA16# 3300pF ±5% GCM2165C2A332JA16#
180pF ±5% GCM1885C1H181JA16# 50Vdc C0G 4700pF ±5% GCM2165C1H472JA16#
220pF ±5% GCM1885C1H221JA16# 0.95mm 100Vdc ZLM 1000pF ±10% GCM2199E2A102KA05#
270pF ±5% GCM1885C1H271JA16# ±20% GCM2199E2A102MA05#
330pF ±5% GCM1885C1H331JA16# 1100pF ±10% GCM2199E2A112KA05#
KCA Series
GCM1885C1H222JA16# GCM2195C1H562JA16#
/Notice
(→ 2.0×1.25mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
1.0mm 630Vdc C0G 10pF ±5% GCM21A5C2J100JX01# 1.0mm 250Vdc U2J 150pF ±5% GCM21A7U2E151JX01#
12pF ±5% GCM21A5C2J120JX01# 180pF ±5% GCM21A7U2E181JX01#
15pF ±5% GCM21A5C2J150JX01# 220pF ±5% GCM21A7U2E221JX01#
18pF ±5% GCM21A5C2J180JX01# 270pF ±5% GCM21A7U2E271JX01#
22pF ±5% GCM21A5C2J220JX01# 330pF ±5% GCM21A7U2E331JX01#
GC3 Series
GRT Series
(→ 3.2×1.6mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
1.0mm 1000Vdc C0G 39pF ±5% GCM31A5C3A390JX01# 1.0mm 630Vdc C0G 560pF ±5% GCM31A5C2J561JX01#
47pF ±5% GCM31A5C3A470JX01# 680pF ±5% GCM31A5C2J681JX01#
56pF ±5% GCM31A5C3A560JX01# 820pF ±5% GCM31A5C2J821JX01#
68pF ±5% GCM31A5C3A680JX01# 1000pF ±5% GCM31A5C2J102JX01#
82pF ±5% GCM31A5C3A820JX01# 1200pF ±5% GCM31A5C2J122JX01#
GC3 Series
100pF ±5% GCM31A5C3A101JX01# 1500pF ±5% GCM31A5C2J152JX01#
120pF ±5% GCM31A5C3A121JX01# 1800pF ±5% GCM31A5C2J182JX01#
150pF ±5% GCM31A5C3A151JX01# U2J 10pF ±5% GCM31A7U2J100JX01#
180pF ±5% GCM31A5C3A181JX01# 12pF ±5% GCM31A7U2J120JX01#
220pF ±5% GCM31A5C3A221JX01# 15pF ±5% GCM31A7U2J150JX01#
GCJ Series
270pF ±5% GCM31A5C3A271JX01# 18pF ±5% GCM31A7U2J180JX01#
330pF ±5% GCM31A5C3A331JX01# 22pF ±5% GCM31A7U2J220JX01#
390pF ±5% GCM31A5C3A391JX01# 27pF ±5% GCM31A7U2J270JX01#
470pF ±5% GCM31A5C3A471JX01# 33pF ±5% GCM31A7U2J330JX01#
U2J 10pF ±5% GCM31A7U3A100JX01# 39pF ±5% GCM31A7U2J390JX01#
GCD Series
12pF ±5% GCM31A7U3A120JX01# 47pF ±5% GCM31A7U2J470JX01#
15pF ±5% GCM31A7U3A150JX01# 56pF ±5% GCM31A7U2J560JX01#
18pF ±5% GCM31A7U3A180JX01# 68pF ±5% GCM31A7U2J680JX01#
22pF ±5% GCM31A7U3A220JX01# 82pF ±5% GCM31A7U2J820JX01#
27pF ±5% GCM31A7U3A270JX01# 100pF ±5% GCM31A7U2J101JX01#
GCE Series
33pF ±5% GCM31A7U3A330JX01# 120pF ±5% GCM31A7U2J121JX01#
39pF ±5% GCM31A7U3A390JX01# 150pF ±5% GCM31A7U2J151JX01#
47pF ±5% GCM31A7U3A470JX01# 180pF ±5% GCM31A7U2J181JX01#
56pF ±5% GCM31A7U3A560JX01# 220pF ±5% GCM31A7U2J221JX01#
NMF Series
68pF ±5% GCM31A7U3A680JX01# 270pF ±5% GCM31A7U2J271JX01#
82pF ±5% GCM31A7U3A820JX01# 330pF ±5% GCM31A7U2J331JX01#
100pF ±5% GCM31A7U3A101JX01# 390pF ±5% GCM31A7U2J391JX01#
120pF ±5% GCM31A7U3A121JX01# 470pF ±5% GCM31A7U2J471JX01#
150pF ±5% GCM31A7U3A151JX01# 560pF ±5% GCM31A7U2J561JX01#
KCM Series
180pF ±5% GCM31A7U3A181JX01# 680pF ±5% GCM31A7U2J681JX01#
220pF ±5% GCM31A7U3A221JX01# 820pF ±5% GCM31A7U2J821JX01#
270pF ±5% GCM31A7U3A271JX01# 1000pF ±5% GCM31A7U2J102JX01#
330pF ±5% GCM31A7U3A331JX01# 1200pF ±5% GCM31A7U2J122JX01#
630Vdc C0G 10pF ±5% GCM31A5C2J100JX01# 1500pF ±5% GCM31A7U2J152JX01#
KC3 Series
12pF ±5% GCM31A5C2J120JX01# 1800pF ±5% GCM31A7U2J182JX01#
15pF ±5% GCM31A5C2J150JX01# 2200pF ±5% GCM31A7U2J222JX01#
18pF ±5% GCM31A5C2J180JX01# 250Vdc C0G 10pF ±5% GCM31A5C2E100JX01#
22pF ±5% GCM31A5C2J220JX01# 12pF ±5% GCM31A5C2E120JX01#
27pF ±5% GCM31A5C2J270JX01# 15pF ±5% GCM31A5C2E150JX01#
KCA Series
GCM31A5C2J181JX01# GCM31A5C2E101JX01#
/Notice
(→ 3.2×1.6mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
1.0mm 250Vdc C0G 330pF ±5% GCM31A5C2E331JX01# 1.0mm 630Vdc U2J 2200pF ±5% GCM32A7U2J222JX01#
390pF ±5% GCM31A5C2E391JX01# 1.25mm 1000Vdc U2J 1200pF ±5% GCM32B7U3A122JX01#
470pF ±5% GCM31A5C2E471JX01# 630Vdc U2J 5600pF ±5% GCM32B7U2J562JX01#
560pF ±5% GCM31A5C2E561JX01# 1.5mm 1000Vdc U2J 1500pF ±5% GCM32Q7U3A152JX01#
680pF ±5% GCM31A5C2E681JX01# 630Vdc U2J 6800pF ±5% GCM32Q7U2J682JX01#
GC3 Series
3.2×2.5mm
!Caution/
Notice
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
T Rated TC
0.6×0.3mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
T Rated TC 0.55mm 25Vdc X8L 0.10µF ±10% GCM155L81E104KE02#
Cap. Tol. Part Number
max. Voltage Code X7R 10000pF ±10% GCM155R71E103KA37#
0.33mm 25Vdc X7R 100pF ±10% GCM033R71E101KA03# 15000pF ±10% GCM155R71E153KA55#
150pF ±10% GCM033R71E151KA03# 22000pF ±10% GCM155R71E223KA55#
220pF ±10% GCM033R71E221KA03# 33000pF ±10% GCM155R71E333KA55#
GC3 Series
330pF ±10% GCM033R71E331KA03# 47000pF ±10% GCM155R71E473KA55#
470pF ±10% GCM033R71E471KA03# 16Vdc X7R 33000pF ±10% GCM155R71C333KA37#
680pF ±10% GCM033R71E681KA03# 47000pF ±10% GCM155R71C473KA37#
1000pF ±10% GCM033R71E102KA03# 68000pF ±10% GCM155R71C683KA55#
1500pF ±10% GCM033R71E152KA03# 0.10µF ±10% GCM155R71C104KA55#
GCJ Series
2200pF ±10% GCM033R71E222KE02# 0.15µF ±10% GCM155R71C154KE02#
3300pF ±10% GCM033R71E332KE02# 0.22µF ±10% GCM155R71C224KE02#
16Vdc X7R 330pF ±10% GCM033R71C331KA03# 0.6mm 10Vdc X7S 0.47µF ±10% GCM155C71A474KE36#
680pF ±10% GCM033R71C681KA03# 0.7mm 10Vdc X7S 0.68µF ±10% GCM155C71A684KE38#
2200pF ±10% GCM033R71C222KA55# 1.0µF ±10% GCM155C71A105KE38#
GCD Series
3300pF ±10% GCM033R71C332KA55#
10Vdc X7R 4700pF ±10% GCM033R71A472KA03#
6800pF ±10% GCM033R71A682KA03#
1.6×0.8mm
10000pF ±10% GCM033R71A103KA03# T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GCE Series
0.9mm 100Vdc X7R 1000pF ±10% GCM188R72A102KA37#
1.0×0.5mm 1500pF ±10% GCM188R72A152KA37#
NMF Series
0.55mm 100Vdc X7R 220pF ±10% GCM155R72A221KA37# 4700pF ±10% GCM188R72A472KA37#
330pF ±10% GCM155R72A331KA37# 6800pF ±10% GCM188R72A682KA37#
470pF ±10% GCM155R72A471KA37# 10000pF ±10% GCM188R72A103KA37#
680pF ±10% GCM155R72A681KA37# 15000pF ±10% GCM188R72A153KA37#
1000pF ±10% GCM155R72A102KA37# 22000pF ±10% GCM188R72A223KA37#
KCM Series
1500pF ±10% GCM155R72A152KA37# 50Vdc X7R 0.22µF ±10% GCM188R71H224KA64#
2200pF ±10% GCM155R72A222KA37# 25Vdc X7R 0.22µF ±10% GCM188R71E224KA55#
3300pF ±10% GCM155R72A332KA37# 0.47µF ±10% GCM188R71E474KA64#
4700pF ±10% GCM155R72A472KA37# 1.0µF ±10% GCM188R71E105KA64#
50Vdc X8L 33000pF ±10% GCM155L8EH333KE07# 16Vdc X7R 0.33µF ±10% GCM188R71C334KA37#
KC3 Series
47000pF ±10% GCM155L8EH473KE07# 0.47µF ±10% GCM188R71C474KA55#
68000pF ±10% GCM155L8EH683KE07# 1.0µF ±10% GCM188R71C105KA64#
0.10µF ±10% GCM155L8EH104KE07# 6.3Vdc X7R 2.2µF ±10% GCM188R70J225KE22#
X7R 220pF ±10% GCM155R71H221KA37#
330pF ±10% GCM155R71H331KA37#
KCA Series
(→ 2.0×1.25mm)
T Rated TC
max. Voltage Code
Cap. Tol. Part Number 3.2×2.5mm
GCM Series
3.2×1.6mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
High Effective Capacitance & High Ripple Current Chip Multilayer Ceramic Capacitors for Automotive
GCM Series
This is a high ripple resistance product for automotive excellent in DC bias
characteristics.
Features
GC3 Series
1 When a DC bias is applied, a capacitance higher than conventional products (X7R characteristics)
can be acquired.
When DC600V is applied, about twice the capacitance can be secured.
GCJ Series
20
0
Cap Change (%)
-20
GCD Series
-40
-60
New Material GC3
Conventional Material GCM
-80
5750 (in mm)/2220 (in inch)/0.1µF/630V
-100
0 100 200 300 400 500 600 700
GCE Series
DC Bias (V)
<Comparison between Capacitance - DC Bias Characteristics>
NMF Series
In the case of a product with a capacitance of 0.1µF, when the exothermic temperature reaches 20°C at frequency
f=300kHz, the amount of resistance of a product with conventional material is 1.8Arms; however, the new material
is 2.3Arms.
5750 (in mm)/2220 (in inch)/0.1µF/630V
100
KCM Series
30kHz
30kHz
1.8Arms 2.3Arms
Temperature Rise (°C)
20°C
10
300kHz
300kHz
KC3 Series
100kHz
Specifications
e g e
Size 2.0×1.25mm to 5.7×5.0mm
!Caution
/Notice
37
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
T Rated TC
2.0×1.25mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
3.2×1.6mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GCJ Series
3.2×2.5mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
NMF Series
4.5×3.2mm
KC3 Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
5.7×5.0mm
GCG Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
Soft Termination Chip Multilayer Ceramic Capacitors for Automotive
GCM Series
Cracking caused by flexing stress after board mounting is minimized due to resin
external electrodes!
Features
GC3 Series
1 The resin external electrodes suppress cracks by board deflection.
Cracking of the ceramic element is suppressed by the resin of the external electrodes, which releases the stress.
Internal Electrodes oFor Automotive (GCM Series)
GCJ Series
Resin Electrodes Layer
Ceramic
GCD Series
Foundation Electrode Layer Ni/Sn Plated Layer Occurrence of cracking on
edge of terminal electrode
Resin electrodes relieve the stress
oResin External Electrode Type (GCJ Series)
<Example of Structure>
GCE Series
Separated foundation
Conductive resin layer relieves electrode and resin electrode
the mechanical stress of the ceramic
NMF Series
Note: Cracks may occur in the capacitor body if excessive stress beyond the "guaranteed range of board bending strength (*) " provided in
the specifications is applied. Capacitors with cracks in them may cause a drop in insulation resistance, which could lead to a short circuit.
(*) For details on the guaranteed range of board bending strength, check the "Detailed Specification Sheet" on the Product Details Page.
2 Suppresses the occurrence of cracking caused by deflection stress at the time of board mounting, etc.
KCM Series
100
60
KC3 Series
40
20
0
0 1 2 3 4 5 6 7 8
KCA Series
Due to the specification of the measuring instrument, measurements can be performed up to 8mm.
Specifications
e g e
Size 1.6×0.8mm to 5.7×5.0mm
!Caution
/Notice
39
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
T Rated TC
1.6×0.8mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
GRT Series
(→ 1.6×0.8mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
0.9mm 25Vdc X8R 0.33µF ±10% GCJ188R91E334KA01# 0.9mm 16Vdc X7R 0.15µF ±10% GCJ188R71C154KA01#
0.39µF ±10% GCJ188R91E394KA01# 0.18µF ±10% GCJ188R71C184KA01#
0.47µF ±10% GCJ188R91E474KA01# 0.22µF ±10% GCJ188R71C224KA01#
X7R 1000pF ±10% GCJ188R71E102KA01# 0.27µF ±10% GCJ188R71C274KA01#
1200pF ±10% GCJ188R71E122KA01# 0.33µF ±10% GCJ188R71C334KA01#
GC3 Series
1500pF ±10% GCJ188R71E152KA01# 0.39µF ±10% GCJ188R71C394KA12#
1800pF ±10% GCJ188R71E182KA01# 0.47µF ±10% GCJ188R71C474KA12#
2200pF ±10% GCJ188R71E222KA01# 10Vdc X7R 0.12µF ±10% GCJ188R71A124KA01#
2700pF ±10% GCJ188R71E272KA01# 0.15µF ±10% GCJ188R71A154KA01#
3300pF ±10% GCJ188R71E332KA01# 0.18µF ±10% GCJ188R71A184KA01#
GCJ Series
3900pF ±10% GCJ188R71E392KA01# 0.22µF ±10% GCJ188R71A224KA01#
4700pF ±10% GCJ188R71E472KA01# 6.3Vdc X7R 2.2µF ±10% GCJ188R70J225KE01#
5600pF ±10% GCJ188R71E562KA01# 1.0mm 6.3Vdc X8L 3.3µF ±10% GCJ188L8EC335KE08#
6800pF ±10% GCJ188R71E682KA01# X8M 4.7µF ±10% GCJ188M8EC475KE08#
8200pF ±10% GCJ188R71E822KA01# X7S 3.3µF ±10% GCJ188C70J335KE02#
GCD Series
10000pF ±10% GCJ188R71E103KA01# 4.7µF ±10% GCJ188C70J475KE02#
12000pF ±10% GCJ188R71E123KA01#
15000pF ±10% GCJ188R71E153KA01#
18000pF ±10% GCJ188R71E183KA01#
2.0×1.25mm
22000pF ±10% GCJ188R71E223KA01#
GCE Series
T Rated TC
Cap. Tol. Part Number
27000pF ±10% GCJ188R71E273KA01# max. Voltage Code
NMF Series
56000pF ±10% GCJ188R71E563KA12# 1800pF ±10% GCJ216R72A182KA01#
68000pF ±10% GCJ188R71E683KA12# 2200pF ±10% GCJ216R72A222KA01#
82000pF ±10% GCJ188R71E823KA12# 2700pF ±10% GCJ216R72A272KA01#
0.10µF ±10% GCJ188R71E104KA12# 3300pF ±10% GCJ216R72A332KA01#
0.12µF ±10% GCJ188R71E124KA01# 3900pF ±10% GCJ216R72A392KA01#
KCM Series
0.15µF ±10% GCJ188R71E154KA01# 4700pF ±10% GCJ216R72A472KA01#
0.18µF ±10% GCJ188R71E184KA12# 5600pF ±10% GCJ216R72A562KA01#
0.22µF ±10% GCJ188R71E224KA12# 6800pF ±10% GCJ216R72A682KA01#
1.0µF ±10% GCJ188R71E105KA01# 8200pF ±10% GCJ216R72A822KA01#
16Vdc X8L 33000pF ±10% GCJ188L81C333KA01# 10000pF ±10% GCJ216R72A103KA01#
KC3 Series
39000pF ±10% GCJ188L81C393KA01# 12000pF ±10% GCJ216R72A123KA01#
47000pF ±10% GCJ188L81C473KA01# 15000pF ±10% GCJ216R72A153KA01#
56000pF ±10% GCJ188L81C563KA01# 18000pF ±10% GCJ216R72A183KA01#
68000pF ±10% GCJ188L81C683KA01# 22000pF ±10% GCJ216R72A223KA01#
82000pF ±10% GCJ188L81C823KA01# 50Vdc X7R 330pF ±10% GCJ216R71H331KA01#
KCA Series
(→ 2.0×1.25mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
0.95mm 100Vdc X7R 680pF ±10% GCJ219R72A681KA01# 1.45mm 25Vdc X8L 0.15µF ±10% GCJ21BL81E154KA01#
820pF ±10% GCJ219R72A821KA01# 0.18µF ±10% GCJ21BL81E184KA01#
27000pF ±10% GCJ219R72A273KA01# 0.22µF ±10% GCJ21BL81E224KA01#
33000pF ±10% GCJ219R72A333KA01# 0.27µF ±10% GCJ21BL81E274KA01#
39000pF ±10% GCJ219R72A393KA01# 0.33µF ±10% GCJ21BL81E334KA01#
GC3 Series
GRT Series
(→ 3.2×1.6mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
1.25mm 630Vdc X7R 6800pF ±10% GCJ31BR72J682KXJ1# 2.0mm 25Vdc X7S 10µF ±10% GCJ31CC71E106KA15#
10000pF ±10% GCJ31BR72J103KXJ1#
250Vdc X7R 15000pF ±10% GCJ31BR72E153KXJ1#
22000pF ±10% GCJ31BR72E223KXJ1#
3.2×2.5mm
68000pF ±10% GCJ31BR72E683KXJ1# T Rated TC
Cap. Tol. Part Number
GC3 Series
1.35mm 100Vdc X7R 0.15µF ±10% GCJ31MR72A154KA01# max. Voltage Code
GCJ Series
0.47µF ±10% GCJ31MR71H474KA01# 2.0mm 1000Vdc X7R 15000pF ±10% GCJ32DR73A153KXJ1#
0.56µF ±10% GCJ31MR71H564KA12# 22000pF ±10% GCJ32DR73A223KXJ1#
0.68µF ±10% GCJ31MR71H684KA12# 630Vdc X7R 15000pF ±10% GCJ32DR72J153KXJ1#
0.82µF ±10% GCJ31MR71H824KA12# 22000pF ±10% GCJ32DR72J223KXJ1#
1.0µF ±10% GCJ31MR71H105KA12# 33000pF ±10% GCJ32DR72J333KXJ1#
GCD Series
25Vdc X7R 0.12µF ±10% GCJ31MR71E124KA01# 47000pF ±10% GCJ32DR72J473KXJ1#
0.15µF ±10% GCJ31MR71E154KA01# 250Vdc X7R 0.10µF ±10% GCJ32DR72E104KXJ1#
0.18µF ±10% GCJ31MR71E184KA01# 0.22µF ±10% GCJ32DR72E224KXJ1#
0.22µF ±10% GCJ31MR71E224KA01# 2.3mm 100Vdc X8L 2.2µF ±10% GCJ32DL8EL225KA07#
1.5µF ±10% GCJ31MR71E155KA12# X7R 2.2µF ±10% GCJ32DR72A225KA01#
GCE Series
2.2µF ±10% GCJ31MR71E225KA12# X7S 4.7µF ±10% GCJ32DC72A475KE01#
3.3µF ±10% GCJ31MR71E335KA12# 2.8mm 50Vdc X7R 4.7µF ±10% GCJ32ER71H475KA12#
16Vdc X7R 1.5µF ±10% GCJ31MR71C155KA01# X7S 10µF ±10% GCJ32EC71H106KA01#
1.8mm 1000Vdc X7R 6800pF ±10% GCJ31CR73A682KXJ3# 25Vdc X8L 4.7µF ±10% GCJ32EL81E475KA01#
NMF Series
10000pF ±10% GCJ31CR73A103KXJ3# 16Vdc X8R 6.8µF ±10% GCJ32ER91C685KE01#
630Vdc X7R 15000pF ±10% GCJ31CR72J153KXJ3# 10µF ±10% GCJ32ER91C106KE01#
22000pF ±10% GCJ31CR72J223KXJ3# X7R 22µF ±10% GCJ32ER71C226KE01#
250Vdc X7R 33000pF ±10% GCJ31CR72E333KXJ3# 6.3Vdc X7R 47µF ±10% GCJ32ER70J476KE01#
47000pF ±10% GCJ31CR72E473KXJ3# 2.85mm 25Vdc X8L 22µF ±10% GCJ32EL8EF226KE08#
KCM Series
0.10µF ±10% GCJ31CR72E104KXJ3# X7S 22µF ±10% GCJ32EC71E226KE02#
1.9mm 100Vdc X8L 1.0µF ±10% GCJ31CL8EL105KA07#
X7R 1.0µF ±10% GCJ31CR72A105KA01#
50Vdc X7R 1.5µF ±10% GCJ31CR71H155KA12#
4.5×3.2mm
2.2µF ±10% GCJ31CR71H225KA12# T Rated TC
KC3 Series
Cap. Tol. Part Number
X7S 4.7µF ±10% GCJ31CC71H475KA01# max. Voltage Code
35Vdc X8L 0.56µF ±10% GCJ31CL8YA564KA01# 1.5mm 630Vdc X7R 68000pF ±10% GCJ43QR72J683KXJ1#
0.68µF ±10% GCJ31CL8YA684KA01# 250Vdc X7R 0.15µF ±10% GCJ43QR72E154KXJ1#
0.82µF ±10% GCJ31CL8YA824KA01# 2.0mm 1000Vdc X7R 33000pF ±10% GCJ43DR73A333KXJ1#
1.0µF ±10% GCJ31CL8YA105KA01# 47000pF ±10% GCJ43DR73A473KXJ1#
KCA Series
25Vdc X8L 0.56µF ±10% GCJ31CL81E564KA01# 630Vdc X7R 33000pF ±10% GCJ43DR72J333KXJ1#
0.68µF ±10% GCJ31CL81E684KA01# 47000pF ±10% GCJ43DR72J473KXJ1#
0.82µF ±10% GCJ31CL81E824KA01# 0.10µF ±10% GCJ43DR72J104KXJ1#
X7R 4.7µF ±10% GCJ31CR71E475KA12# 250Vdc X7R 0.22µF ±10% GCJ43DR72E224KXJ1#
GCG Series
±10% GCJ31CL8ED226KE07#
/Notice
(→ 5.7×5.0mm)
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GCM Series
GRT Series
MLSC Design Chip Multilayer Ceramic Capacitors for Automotive
GCM Series
Prevents momentary dielectric breakdown by a 2-element array structure!
Features
GC3 Series
1 Prevents momentary dielectric breakdown by a 2-element array structure!
This product consists of 2 elements arranged in 1 capacitor. It is structured so that even when 1 element is shorted,
the other capacitor element will not short.
GCJ Series
Internal Electrodes
Ceramic
Ni/Sn Plated Layer
Foundation Electrode Layer
GCD Series
2-element Array Arrangement
<Example of Structure>
2 This AEC-Q200 conforming product is ideal for the battery lines of automotive.
GCE Series
Space can be reduced in battery lines where 2 capacitors are arranged in an array.
Specifications
NMF Series
e g e
Size 1.6×0.8mm to 2.0×1.25mm
KCM Series
Capacitance 1000pF to 0.50µF
W
L
Main Applications Battery Lines and Powertrains for automotive
<Dimensions>
KC3 Series
KCA Series
GCG Series
!Caution
/Notice
45
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
T Rated TC
1.6×0.8mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
2.0×1.25mm
GCG Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
Soft Termination MLSC Design Chip Multilayer Ceramic Capacitors for Automotive
GCM Series
Further improved safety performance with a combination of a 2-element array
structure & resin external electrodes!
Features
GC3 Series
1 Avoid instantaneous dielectric breakdown with the 2-element array structure
This product is configured with 2 elements arranged in one capacitor. Even if one element short circuits, the other
element in the capacitor does not short.
GCJ Series
Internal Electrodes
Resin Electrodes Layer
Ceramic
GCD Series
2-element Array Arrangement
<Example of Structure>
GCE Series
Adopting resin electrodes as the external electrodes will suppress the occurrence of cracking in the capacitor by
mechanical stress.
oFor Automotive (GCM Series)
NMF Series
Occurrence of cracking on
KCM Series
edge of terminal electrode
KC3 Series
Separated foundation
Conductive resin layer relieves electrode and resin electrode
the mechanical stress of the ceramic
Note: Cracks may occur in the capacitor body if excessive stress beyond the "guaranteed range of board bending strength (*) " provided in
KCA Series
the specifications is applied. Capacitors with cracks in them may cause a drop in insulation resistance, which could lead to a short circuit.
(*) For details on the guaranteed range of board bending strength, check the "Detailed Specification Sheet" on the Product Details Page.
Specifications
e g e
!Caution
/Notice
47
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
T Rated TC
1.6×0.8mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
2.0×1.25mm
GCG Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
Very Large Current 3 Terminals Low ESL Chip Multilayer Ceramic Capacitors for Automotive (EMIFILr)
GCM Series
This is the most suitable Low ESL capacitors for noise measurement and power
decoupling of highspeed electrical devices.
Features
GC3 Series
1 Low ESL
Since the equivalent series inductance (ESL) is low and excellent in high frequency characteristics, this capacitor is
suitable for power supply decoupling of high-speed operation electronic equipment.
GCJ Series
Realizes Ultra low ESL by using a extremely
• 2-terminal Capacitor shorter high frequency current path
HOT
g long current distance
Current
GCD Series
g Narrow wiring width
GND
• 3-terminal capacitor
n Short current distance
GCE Series
Current HOT n Wide wiring width
n Four routes formed in parallel
GND
NMF Series
2 Contributes to a reduction in the number of components.
The number of components can be reduced by using low ESL capacitors, while maintaining functions equivalent to
2-terminal capacitor.
KCM Series
Before After
Application IC Application IC
KC3 Series
Reduction of
68 components
Specifications
2
Size 2.0×1.25mm to 3.2×1.6mm 1 j T
!Caution
3
2
e i g W
Capacitance 220pF to 1.0µF 1 3
L
Main Applications Safety equipment, Drive system control, Information and Comfort equipment 2
<Dimensions>
49
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
2.0×1.25mm
GCM Series
T Rated
Cap. Tol. Part Number
max. Voltage
3.2×1.6mm
T Rated
GCD Series
GRT Series
Metal Terminal Type Multilayer Ceramic Capacitors for Automotive
GCM Series
Bonding the metal terminals to external electrodes solves design issues by
mounting large size MLCC!
Features
GC3 Series
1 Bond metal terminals to the external electrodes of chips.
The stress applied to the chip is relieved by the elastic action of the metal terminal.
Ceramic Internal Electrode
GCJ Series
Lead-free High
Noise Board Deflection Cracks Solder Cracks Temperature
Solder
Metal Terminal
GCD Series
Reduces stress by the elastic action of the metal terminals!
GCE Series
This product is not damaged even with a board deflection of 6 mm.
Solder cracks do not occur even with 2,000 cycles of heat stress.
oComparison of Noise Reduction Effects oReduces Stress Caused by Board Deflection
80
NMF Series
No damage,
Reduced 100 even with 6 mm
Sound Pressure Level (dB)
80
/630V/220nF)
60
40
Chip Capacitor
KCM Series
40
(5750(in mm)/2220(in inch)
20 /630V/220nF)
20
0 0
Chip Capacitor Metal Terminal Type 0.0 1.0 2.0 3.0 4.0 5.0 6.0
Amount of Board Deflection (mm)
KC3 Series
Evaluation Items: 5750 (in mm)/2220 (in inch) size/DC630V/220nF
Test Method: DC50V, AC10Vp-p/3kHz
Test Board: Glass Epoxy Board (T=1.6mm)
Test Quantity: 3pc
Distance Between Microphone and Board: 5mm
Note: Results Using Murata’s Evaluation Board
KCA Series
1000 Cycles
Solder Crack
!Caution
/Notice
2000 Cycles
Compared with chips only,
this product is excellent
Solder Crack in solder cracking resistance.
51
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series
Specifications
Size 6.1×5.3mm
T
Rated Voltage 25Vdc to 100Vdc
GC3 Series
52
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series
6.1×5.3mm
GCM Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GC3 Series
10µF ±10% KCM55LR71H106KH01#
35Vdc X7R 10µF ±10% KCM55LR7YA106KH01#
15µF ±10% KCM55LR7YA156KH01#
25Vdc X7R 15µF ±10% KCM55LR71E156KH01#
3.9mm 100Vdc X7R 6.8µF ±10% KCM55QR72A685KH01#
GCJ Series
10µF ±10% KCM55QR72A106KH01#
63Vdc X7R 10µF ±10% KCM55QR71J106KH01#
50Vdc X7R 17µF ±10% KCM55QR71H176KH01#
35Vdc X7R 17µF ±10% KCM55QR7YA176KH01#
22µF ±10% KCM55QR7YA226KH01#
GCD Series
25Vdc X7R 22µF ±10% KCM55QR71E226KH01#
33µF ±10% KCM55QR71E336KH01#
X7S 47µF ±10% KCM55QC71E476KH13#
5.0mm 100Vdc X7R 10µF ±20% KCM55TR72A106MH01#
50Vdc X7R 22µF ±20% KCM55TR71H226MH01#
GCE Series
35Vdc X7R 22µF ±20% KCM55TR7YA226MH01#
33µF ±20% KCM55TR7YA336MH01#
25Vdc X7R 33µF ±20% KCM55TR71E336MH01#
6.7mm 100Vdc X7R 15µF ±20% KCM55WR72A156MH01#
NMF Series
22µF ±20% KCM55WR72A226MH01#
63Vdc X7R 22µF ±20% KCM55WR71J226MH01#
50Vdc X7R 33µF ±20% KCM55WR71H336MH01#
35Vdc X7R 47µF ±20% KCM55WR7YA476MH01#
25Vdc X7R 47µF ±20% KCM55WR71E476MH01#
KCM Series
68µF ±20% KCM55WR71E686MH01#
X7S 100µF ±20% KCM55WC71E107MH13#
KC3 Series
KCA Series
GCG Series
!Caution
/Notice
High Effective Capacitance & High Allowable Ripple Current Metal Terminal Type Multilayer Ceramic Capacitors for Automotive
Features
GC3 Series
Metal Terminal
GCD Series
2 Stacking of Chips
Achieve high capacity by stacking 2 capacitors.
oComparison of Noise Reduction Effects oReduces Stress Caused by Board Deflection
80
NMF Series
No damage,
Reduced 100 even with 6 mm
Sound Pressure Level (dB)
80
/630V/220nF)
60
40
Chip Capacitor
KCM Series
40
(5750(in mm)/2220(in inch)
20 /630V/220nF)
20
0 0
Chip Capacitor Metal Terminal Type 0.0 1.0 2.0 3.0 4.0 5.0 6.0
Amount of Board Deflection (mm)
KC3 Series
1000 Cycles
Solder Crack
!Caution/
Notice
2000 Cycles
Compared with chips only,
this product is excellent
Solder Crack in solder crackingresistance.
54
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series
3 Adopted Low Dielectric Constant Materials
Improved effective capacity and ripple resistant performance, compared to conventional products
(X7R characteristics).
GCM Series
20
New Material
(250V/1µF/X7T)
0 Conventional Material
(250V/1µF/X7R)
Cap. Change (%)
-20
-40
GC3 Series
-60
-80
-100
0 50 100 150 200 250
DC Bias (V)
GCJ Series
4 2 chips can be stacked
Realize large capacity by stacking 2 capacitors.
GCD Series
Specifications
Size 6.1×5.3mm
GCE Series
T
Rated Voltage 250Vdc to 630Vdc
NMF Series
KCM Series
KC3 Series
KCA Series
GCG Series
!Caution
/Notice
55
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
6.1×5.3mm
GCM Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GRT Series
Safety Standard Certified Metal Terminal Type Multilayer Ceramic Capacitors for Automotive
GCM Series
For Automotive IEC60384-14 X1/Y2 Class Certified Product (Basic insulation
product)
Features
GC3 Series
1 International Standard (IEC60384-14) certified product: Rated voltage AC250V (r.m.s.).
Please down load Safety Standard Certification (Type MF: X1,Y2) from Web site.
GCJ Series
2 Best suitable for class Y2 capacitors.
AC250V (r.m.s.)-rated voltage, withstand voltage of AC2000V (r.m.s.) guaranteed for 60 seconds.
GCD Series
100 to 220Vr.m.s. 100 to 400Vd.c.
C3
C1 No. Application
C3 C1 Y Cap (Primary)
C1 C2 Primary-Secondary Coupling
GCE Series
Controller
C3 Y Cap (Secondary)
C2
NMF Series
3
oInverter
100 to 400Vd.c. IGBT
KCM Series
C1
Induction
Motor
No. Application
KC3 Series
Driver
KCA Series
oDC-DC Converter
C1 No. Application
GCG Series
Controller
!Caution
/Notice
57
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series
Temperature
Solder
Metal Terminal
No damage,
100 even with 6 mm
Metal Terminal Type
board deflection!!
(5750(in mm)/2220(in inch)
Residual Ratio (%)
80
/630V)
60
Chip Capacitor
GCE Series
40
(5750(in mm)/2220(in inch)
/630V)
20
0
0.0 1.0 2.0 3.0 4.0 5.0 6.0
Amount of Board Deflection (mm)
NMF Series
1000 Cycles
Solder Crack
KC3 Series
2000 Cycles
Compared with chips only,
this product is excellent
Solder Crack in solder cracking resistance.
KCA Series
Specifications
!Caution/
Size 6.1×5.3mm
Notice
T
Rated Voltage 250Vac (r.m.s.)
58
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series
6.1×5.3mm
GCM Series
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GC3 Series
330pF ±10% KCA55L7UMF331KH01#
470pF ±10% KCA55L7UMF471KH01#
680pF ±10% KCA55L7UMF681KH01#
1000pF ±10% KCA55L7UMF102KH01#
1500pF ±10% KCA55L7UMF152KH01#
GCJ Series
2200pF ±10% KCA55L7UMF222KH01#
3300pF ±10% KCA55L7UMF332KH01#
3.9mm 250Vac(r.m.s.) U2J 4700pF ±10% KCA55Q7UMF472KH01#
5.0mm 250Vac(r.m.s.) U2J 6800pF ±20% KCA55T7UMF682MH01#
6.7mm 250Vac(r.m.s.) U2J 10000pF ±20% KCA55W7UMF103MH01#
GCD Series
GCE Series
NMF Series
KCM Series
KC3 Series
KCA Series
GCG Series
!Caution
/Notice
AgPd Termination Conductive Glue Mounting Chip Multilayer Ceramic Capacitors for Automotive
Features
GC3 Series
Conductive Adhesive
<Example of Structure>
3 Compatible up to 150°C
This capacitor lineup with X8L and X8R characteristics can be used in high temperature environments, such as in
NMF Series
* This product is for use exclusively with conductive glue mounting. It cannot be used with any mounting methods other than conductive glue
mounting.
Using solder to mount the product can result in insufficient wetting, insufficient bonding strength, and/or leaching of the Ag/Pd External
KCM Series
Electrodes (terminations), which can cause quality problems such as the chip coming loose.
Specifications
KC3 Series
e g e
Size 1.0×0.5mm to 3.2×2.5mm
L
Main Applications For automotive, power trains, sensors
<Dimensions>
GCG Series
!Caution/
Notice
60
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
GRT Series
T Rated TC
1.0×0.5mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
T Rated TC 0.7mm 50Vdc X8G 2700pF ±5% GCG2165G1H272JA01#
Cap. Tol. Part Number
max. Voltage Code 3300pF ±5% GCG2165G1H332JA01#
0.55mm 50Vdc X8G 120pF ±5% GCG1555G1H121JA01# 3900pF ±5% GCG2165G1H392JA01#
150pF ±5% GCG1555G1H151JA01# 4700pF ±5% GCG2165G1H472JA01#
180pF ±5% GCG1555G1H181JA01# 0.95mm 50Vdc X8G 5600pF ±5% GCG2195G1H562JA01#
GC3 Series
220pF ±5% GCG1555G1H221JA01# 6800pF ±5% GCG2195G1H682JA01#
270pF ±5% GCG1555G1H271JA01# 8200pF ±5% GCG2195G1H822JA01#
330pF ±5% GCG1555G1H331JA01# 10000pF ±5% GCG2195G1H103JA01#
390pF ±5% GCG1555G1H391JA01#
470pF ±5% GCG1555G1H471JA01#
GCJ Series
1.6×0.8mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GCD Series
0.9mm 50Vdc X8G 10pF ±5% GCG1885G1H100JA01#
12pF ±5% GCG1885G1H120JA01#
15pF ±5% GCG1885G1H150JA01#
18pF ±5% GCG1885G1H180JA01#
22pF ±5% GCG1885G1H220JA01#
GCE Series
27pF ±5% GCG1885G1H270JA01#
33pF ±5% GCG1885G1H330JA01#
39pF ±5% GCG1885G1H390JA01#
47pF ±5% GCG1885G1H470JA01#
NMF Series
56pF ±5% GCG1885G1H560JA01#
68pF ±5% GCG1885G1H680JA01#
82pF ±5% GCG1885G1H820JA01#
100pF ±5% GCG1885G1H101JA01#
120pF ±5% GCG1885G1H121JA01#
KCM Series
150pF ±5% GCG1885G1H151JA01#
180pF ±5% GCG1885G1H181JA01#
220pF ±5% GCG1885G1H221JA01#
270pF ±5% GCG1885G1H271JA01#
330pF ±5% GCG1885G1H331JA01#
KC3 Series
390pF ±5% GCG1885G1H391JA01#
470pF ±5% GCG1885G1H471JA01#
560pF ±5% GCG1885G1H561JA01#
680pF ±5% GCG1885G1H681JA01#
820pF ±5% GCG1885G1H821JA01#
KCA Series
2.0×1.25mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
!Caution
/Notice
T Rated TC
1.0×0.5mm max. Voltage Code
Cap. Tol. Part Number
GCM Series
GRT Series
(→ 1.6×0.8mm)
T Rated TC T Rated TC
Cap. Tol. Part Number Cap. Tol. Part Number
max. Voltage Code max. Voltage Code
GCM Series
0.9mm 50Vdc X8R 5600pF ±10% GCG188R91H562KA03# 0.9mm 16Vdc X8R 68000pF ±10% GCG188R91C683KA01#
6800pF ±10% GCG188R91H682KA03# 0.10µF ±10% GCG188R91C104KA01#
8200pF ±10% GCG188R91H822KA03# X7R 1.0µF ±10% GCG188R71C105KA01#
10000pF ±10% GCG188R91H103KA03# 10Vdc X7S 2.2µF ±10% GCG188C71A225KE01#
15000pF ±10% GCG188R91H153KA03# 6.3Vdc X7R 2.2µF ±10% GCG188R70J225KE01#
GC3 Series
22000pF ±10% GCG188R91H223KA03#
33000pF ±10% GCG188R91H333KA03#
47000pF ±10% GCG188R91H473KA03#
2.0×1.25mm
0.10µF ±10% GCG188R91H104KA01# T Rated TC
Cap. Tol. Part Number
0.12µF ±10% GCG188R91H124KA01# max. Voltage Code
GCJ Series
0.15µF ±10% GCG188R91H154KA01# 0.95mm 50Vdc X8R 18000pF ±10% GCG219R91H183KA03#
0.18µF ±10% GCG188R91H184KA01# 1.45mm 100Vdc X7R 10000pF ±10% GCG21BR72A103KA01#
0.22µF ±10% GCG188R91H224KA01# 50Vdc X8L 27000pF ±10% GCG21BL81H273KA01#
X7R 10000pF ±10% GCG188R71H103KA01# 33000pF ±10% GCG21BL81H333KA01#
15000pF ±10% GCG188R71H153KA01# 39000pF ±10% GCG21BL81H393KA01#
GCD Series
22000pF ±10% GCG188R71H223KA01# 47000pF ±10% GCG21BL81H473KA01#
27000pF ±10% GCG188R71H273KA12# 0.10µF ±10% GCG21BL81H104KA03#
33000pF ±10% GCG188R71H333KA12# 1.0µF ±10% GCG21BL8EH105KA07#
39000pF ±10% GCG188R71H393KA12# X8R 56000pF ±10% GCG21BR91H563KA03#
47000pF ±10% GCG188R71H473KA12# 68000pF ±10% GCG21BR91H683KA03#
GCE Series
56000pF ±10% GCG188R71H563KA12# 0.10µF ±10% GCG21BR91H104KA03#
68000pF ±10% GCG188R71H683KA12# X7R 0.15µF ±10% GCG21BR71H154KA01#
82000pF ±10% GCG188R71H823KA12# 0.18µF ±10% GCG21BR71H184KA01#
0.10µF ±10% GCG188R71H104KA01# 0.22µF ±10% GCG21BR71H224KA01#
NMF Series
0.15µF ±10% GCG188R71H154KA01# 0.33µF ±10% GCG21BR71H334KA01#
0.22µF ±10% GCG188R71H224KA01# 0.47µF ±10% GCG21BR71H474KA01#
25Vdc X8R 1000pF ±10% GCG188R91E102KA01# 1.0µF ±10% GCG21BR71H105KA01#
1200pF ±10% GCG188R91E122KA01# 35Vdc X8L 0.68µF ±10% GCG21BL8EG684KA07#
1500pF ±10% GCG188R91E152KA01# 1.0µF ±10% GCG21BL8EG105KA07#
KCM Series
1800pF ±10% GCG188R91E182KA01# X7R 0.68µF ±10% GCG21BR7YA684KA01#
2200pF ±10% GCG188R91E222KA01# 1.0µF ±10% GCG21BR7YA105KA01#
2700pF ±10% GCG188R91E272KA01# 25Vdc X8L 0.10µF ±10% GCG21BL81E104KA01#
3300pF ±10% GCG188R91E332KA01# 0.33µF ±10% GCG21BL81E334KA01#
3900pF ±10% GCG188R91E392KA01# X8R 39000pF ±10% GCG21BR91E393KA01#
KC3 Series
4700pF ±10% GCG188R91E472KA01# 82000pF ±10% GCG21BR91E823KA01#
5600pF ±10% GCG188R91E562KA01# 0.15µF ±10% GCG21BR91E154KA03#
6800pF ±10% GCG188R91E682KA01# 0.18µF ±10% GCG21BR91E184KA03#
8200pF ±10% GCG188R91E822KA01# 0.22µF ±10% GCG21BR91E224KA03#
10000pF ±10% GCG188R91E103KA01# 0.68µF ±10% GCG21BR91E684KE01#
KCA Series
(→ 2.0×1.25mm)
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
GCM Series
3.2×1.6mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
3.2×2.5mm
T Rated TC
Cap. Tol. Part Number
max. Voltage Code
KC3 Series
GRT Series
GRT, GCM, GC3, GCJ, GCD, GCE,
NFM, KCM, KC3, KCA, GCG !Caution/Notice WEB
GCM Series
!Caution Notice
GC3 Series
Rating .............................................................................................. 66 2. Atmosphere Surroundings
(gaseous and liquid) ........................................................ 80
1. Temperature Dependent Characteristics ............... 66
3. Piezo-electric Phenomenon .......................................... 80
2. Measurement of Capacitance ...................................... 66
GCJ Series
3. Applied Voltage and Applied Current ....................... 67
Soldering and Mounting ........................................................... 80
4. Type of Applied Voltage and
Self-heating Temperature ............................................. 67 1. PCB Design .......................................................................... 80
5. DC Voltage and AC Voltage Characteristics .......... 69 1. Notice for Pattern Forms .......................................... 80
GCD Series
6. Capacitance Aging ............................................................ 69 2. Land Dimensions .......................................................... 81
GCE Series
Soldering and Mounting ........................................................... 70 3. Adhesive Curing ................................................................. 84
NMF Series
(pick and place) Machine ............................................... 71
7. Washing ................................................................................ 85
4-1. Reflow Soldering ........................................................... 72
8. Coating .................................................................................. 85
4-2. Flow Soldering ............................................................... 73
KCM Series
Other ................................................................................................ 85
5. Washing ................................................................................ 75
1. Transportation.................................................................... 85
6. Electrical Test on Printed Circuit Board ................... 75
2. Characteristics Evaluation
7. Printed Circuit Board Cropping .................................... 75 in the Actual System ....................................................... 85
KC3 Series
8. Assembly .............................................................................. 78
Other ................................................................................................ 79
GCG Series
2. Other ...................................................................................... 79
!Caution
/Notice
65
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution
GRT Series
chip EMIFILr NFM series (henceforth just “capacitors”) opening the smallest packing unit. Do not exceed the
may be affected by the storage conditions. above atmospheric conditions for any length of time.
1-1. Store the capacitors in the following conditions: 1-2. Corrosive gas can react with the termination
Room Temperature of +5°C to +40°C and (external) electrodes or lead wires of capacitors, and
a Relative Humidity of 20% to 70%. result in poor solderability. Do not store the
GC3 Series
(1) High temperature and humidity conditions may capacitors in an atmosphere consisting of corrosive
accelerate the deterioration of solderability due to gas (e.g., hydrogen sulfide, sulfur dioxide, chlorine,
oxidation of the terminal electrodes and deterioration ammonia gas, etc.).
of taping/packaging performance. Therefore, maintain 1-3. Due to moisture condensation caused by rapid
GCJ Series
the appropriate storage temperature and humidity. humidity changes, or the photochemical change
(2) Prolonged storage may cause oxidation of the caused by direct sunlight on the terminal electrodes
electrodes and deterioration of the packaging and/or the resin/epoxy coatings, the solderability
materials. If more than six months have elapsed since and electrical performance may deteriorate. Do not
delivery, check the mounting before use. If more than store capacitors under direct sunlight or in high
GCD Series
one year has elapsed since delivery, also check the humidity conditions.
solderability before use. <Applicable to GCG Series>
1-4. After unpacking, immediately reseal, or store in a
desiccator containing a desiccant.
GCE Series
Rating
1. Temperature Dependent Characteristics
1. The electrical characteristics of a capacitor can change (2) The capacitance may change within the rated
with temperature. temperature.
1-1. For capacitors having larger temperature When you use a high dielectric constant type
NMF Series
dependency, the capacitance may change with capacitor in a circuit that needs a tight (narrow)
temperature changes. capacitance tolerance (e.g., a time-constant
The following actions are recommended in order to circuit), please carefully consider the temperature
ensure suitable capacitance values. characteristics, and carefully confirm the various
KCM Series
(1) Select a suitable capacitance for the operating characteristics in actual use conditions and the
temperature range. actual system.
20 20
10 15
Capacitance Change (%)
10
0
5
KCA Series
-10
0
-20
-5
-30
-10
-40 -15
GCG Series
-50 -20
-75 -50 -25 0 25 50 75 100 125 -75 -50 -25 0 25 50 75 100
Temperature (°C) Temperature (°C)
2. Measurement of Capacitance
!Caution
1. Measure capacitance with the voltage and frequency 1-2. The capacitance values of high dielectric constant
specified in the product specifications. type capacitors change depending on the AC voltage
1-1. The output voltage of the measuring equipment may applied. Please consider the AC voltage
decrease occasionally when capacitance is high. characteristics when selecting a capacitor to be used
Please confirm whether a prescribed measured in an AC circuit.
voltage is impressed to the capacitor.
Continued on the following page.
66
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution !Caution
GRT Series
Continued from the preceding page.
3. Applied Voltage and Applied Current
1. Do not apply a voltage to the capacitor that exceeds the
GCM Series
rated voltage as called out in the specifications.
1-1. Applied voltage between the terminals of a capacitor
shall be less than or equal to the rated voltage.
(1) When AC voltage is superimposed on DC voltage,
the zero-to-peak voltage shall not exceed the
GC3 Series
rated DC voltage.
When AC voltage or pulse voltage is applied, the
peak-to-peak voltage shall not exceed the rated
DC voltage.
(2) Abnormal voltages (surge voltage, static
GCJ Series
electricity, pulse voltage, etc.) shall not exceed
the rated DC voltage.
GCD Series
E E E 0 E
0
0 0
GCE Series
(E: Maximum possible applied voltage.)
NMF Series
result in an electrical short circuit caused by the The current flowing between the terminals of a capacitor
breakdown of the internal dielectric layers. shall be less than or equal to the rated current. Using the
The time duration until breakdown depends on the capacitor beyond this range could lead to excessive heat.
applied voltage and the ambient temperature.
2. Use a safety standard certified capacitor in a power
KCM Series
supply input circuit (AC filter), as it is also necessary to
consider the withstand voltage and impulse withstand
voltage defined for each device.
KC3 Series
4. Type of Applied Voltage and Self-heating Temperature
1. Confirm the operating conditions to make sure that no large
current is flowing into the capacitor due to the continuous [Example of Temperature Rise (Heat Generation)
application of an AC voltage or pulse voltage. in Chip Multilayer Ceramic Capacitors in Contrast
When a DC rated voltage product is used in an AC voltage to Ripple Current]
KCA Series
circuit or a pulse voltage circuit, the AC current or pulse Sample: R(R1) characteristics 10μF,
current will flow into the capacitor; therefore check the Rated voltage: DC10V
self-heating condition. Ripple Current
100
Please confirm the surface temperature of the capacitor so
GCG Series
67
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution
GRT Series
1-2. The load should be contained so that the self-heating 1-3. Since the self-heating is low in the low loss series, the
of the capacitor body remains below 20°C, when allowable power becomes extremely high compared to
measuring at an ambient temperature of 25°C. In the common X7R(R7) characteristics.
addition, use a K thermocouple of ø0.1mm with less However, when a load with self-heating of 20°C is
heat capacity when measuring, and measure in a applied at the rated voltage, the allowable power may
GC3 Series
condition where there is no effect from the radiant be exceeded. When the capacitor is used in a
heat of other components or air flow caused by high-frequency voltage circuit of 1kHz or more, the
convection. Excessive generation of heat may cause frequency of the applied voltage should be less than
deterioration of the characteristics and reliability of the 500kHz sine wave (less than 100kHz for a product
capacitor. (Absolutely do not perform measurements with rated voltage of DC3.15kV), to limit the voltage
GCJ Series
while the cooling fan is operating, as an accurate load so that the load remains within the derating
measurement may not be performed.) shown in the following figure. In the case of non-sine
wave, high-frequency components exceeding the
fundamental frequency may be included. In such a case,
please contact Murata. The excessive generation of
GCD Series
(including self-heating)
to 3,900pF
Allowable voltage [Vp-p]
560pF
KCM Series
(630V)
4,700pF 680pF
6,800pF 820pF
100 10,000pF 1,000pF 1000 to 100pF
15,000pF 1,500pF 220pF
2,200pF 1,000pF
3,300pF
KC3 Series
10 100 100
10 100 1000 10 100 1000 10 100 1000
Frequency [kHz] Frequency [kHz] Frequency [kHz]
U2J(7U) char., Rated Voltage: DC250V U2J(7U) char., Rated Voltage: DC630V U2J(7U) char., Rated Voltage: DC1kV
KCA Series
1,000pF
Allowable voltage [Vp-p]
to 2,200pF
2,200pF to 470pF
(250) 4,700pF
4,700pF 1000
1,000pF
10,000pF
100 100 10,000pF 2,200pF
GCG Series
22,000pF 4,700pF
47,000pF 100
10,000pF
10 10 10
1 10 100 1000 1 10 100 1000 1 10 100 1000
Frequency [kHz] Frequency [kHz] Frequency [kHz]
!Caution
68
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution !Caution
GRT Series
Continued from the preceding page.
5. DC Voltage and AC Voltage Characteristics
1. The capacitance value of a high dielectric constant type
[Example of DC Voltage Characteristics]
GCM Series
capacitor changes depending on the DC voltage applied.
Please consider the DC voltage characteristics when a Sample: R(R1) Characteristics 0.1μF,
capacitor is selected for use in a DC circuit. Rated Voltage 50VDC
1-1. The capacitance of ceramic capacitors may change 20
sharply depending on the applied voltage (see figure).
0
GC3 Series
Please confirm the following in order to secure the
-20
capacitance.
(1) Determine whether the capacitance change -40
GCJ Series
-80
(2) In the DC voltage characteristics, the rate of
capacitance change becomes larger as voltage -100
0 10 20 30 40 50
increases, even if the applied voltage is below the DC Voltage (V)
rated voltage. When a high dielectric constant
type capacitor is used in a circuit that requires a
GCD Series
tight (narrow) capacitance tolerance (e.g., a time
constant circuit), please carefully consider the
voltage characteristics, and confirm the various
characteristics in the actual operating conditions
of the system.
GCE Series
2. The capacitance values of high dielectric constant type
capacitors changes depending on the AC voltage applied. [Example of AC Voltage Characteristics]
Please consider the AC voltage characteristics when Sample: X7R(R7) Characteristics 10μF,
Rated Voltage 6.3VDC
NMF Series
selecting a capacitor to be used in an AC circuit.
30
20
Capacitance Change (%)
10
0
KCM Series
-10
-20
-30
-40
-50
-60
KC3 Series
0 0.5 1 1.5 2
AC Voltage (Vr.m.s.)
KCA Series
6. Capacitance Aging
1. The high dielectric constant type capacitors have the
[Example of Change Over Time (Aging Characteristics)]
Characteristics in which the capacitance value decreases
with the passage of time. 20
When you use high dielectric constant type capacitors in 10
Capacitance Change (%)
GCG Series
69
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution
GRT Series
capacitor.
Do not use a dropped capacitor because the quality and
reliability may be deteriorated.
Crack
GCJ Series
Floor
the direction in
1-1. Choose a mounting position that minimizes the which stress
stress imposed on the chip during flexing or bending acts.
(Bad Example) (Good Example)
of the board.
[Chip Mounting Close to Board Separation Point]
It is effective to implement the following measures, to reduce
KCM Series
components and carefully check the self-heating of the Contents of Measures Stress Level
capacitor before using. (1) Turn the mounting direction of the component
A > D *1
parallel to the board separation surface.
KC3 Series
the capacitor or produce excessive heat. (3) Keep the mounting position of the component
A>C
away from the board separation surface.
C
Perforation
B
KCA Series
D
A
Slit
Recommended
Screw Hole
!Caution !Caution
GRT Series
Continued from the preceding page.
2. Information before Mounting
1. Do not re-use capacitors that were removed from the
GCM Series
equipment.
2. Confirm capacitance characteristics under actual applied
voltage.
3. Confirm the mechanical stress under actual process and
equipment use.
GC3 Series
4. Confirm the rated capacitance, rated voltage and other
electrical characteristics before assembly.
5. Prior to use, confirm the solderability of capacitors that
were in long-term storage.
6. Prior to measuring capacitance, carry out a heat
GCJ Series
treatment for capacitors that were in long-term storage.
7. The use of Sn-Zn based solder will deteriorate the
reliability of the MLCC.
Please contact our sales representative or product
engineers on the use of Sn-Zn based solder in advance.
GCD Series
8. We have also produced a DVD which shows a summary of
our recommendations, regarding the precautions for
mounting. Please contact our sales representative to
request the DVD.
GCE Series
3. Maintenance of the Mounting (pick and place) Machine
1. Make sure that the following excessive forces are not
[Incorrect]
applied to the capacitors. Check the mounting in the
NMF Series
actual device under actual use conditions ahead of time. Suction Nozzle
KCM Series
precautions and recommendations for use in your
process.
(1) Adjust the lowest position of the pickup nozzle so
as not to bend the printed circuit board.
Support Pin
KC3 Series
2. Dirt particles and dust accumulated in the suction nozzle
and suction mechanism prevent the nozzle from moving
smoothly. This creates excessive force on the capacitor
during mounting, causing cracked chips. Also, the locating
KCA Series
71
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution
GRT Series
190°C (170°C)
Preheating conditions are shown in table 1. It is required to
170°C (150°C)
keep the temperature differential between the solder and 150°C (130°C)
Preheating
the components surface (ΔT) as small as possible.
2. When components are immersed in solvent after mounting,
be sure to maintain the temperature difference (ΔT) Time
GCJ Series
between the component and the solvent within the range 60-120 seconds 30-60 seconds
250
Recommended Conditions 240
Pb-Sn Solder Lead Free Solder 230
Peak Temperature 230 to 250°C 240 to 260°C 220
0 30 60 90 120
Atmosphere Air Air or N2 Soldering Time (s)
NMF Series
3. When a capacitor is mounted at a temperature lower 4-2. Too little solder paste results in a lack of adhesive
than the peak reflow temperature recommended by the strength on the termination, which may result in
KCM Series
solder manufacturer, the following quality problems can chips breaking loose from the PCB.
occur. Consider factors such as the placement of 4-3. Please confirm that solder has been applied
peripheral components and the reflow temperature smoothly to the termination.
setting to prevent the capacitor’s reflow temperature
from dropping below the peak temperature specified. Be
KC3 Series
F0-.', -,"',%120#,%2&
F0-.',1#*$Q*'%,+#,2.0-.#02'#1 [Guideline of solder paste thickness]
F-11' *#-!!300#,!#-$2-+ 12-,#1,"G-01&'x',%-,
{zzQ{z£+B
|{G}{
the land patterns of the circuit board
GCG Series
0.8
1.9
!Caution !Caution
GRT Series
Continued from the preceding page.
4-2. Flow Soldering
1. Do not apply flow soldering to chips not listed in table 2.
[Example of Temperature Conditions for Flow Soldering]
GCM Series
Temperature (°C)
Table 2 Soldering
Soldering
Chip Dimension Temperature Peak Gradual
Series Temperature Cooling
Code (L/W) Differential ΔT
GRT/GCM/GC3/GCD (Except for
Preheating
GC3 Series
characteristics of X8L(L8), X8G(5G), Peak
CHA(0C), X8R(R9)) Temperature
GCJ 18/21/31 ΔT<
=150°C
(Rated Voltage 250VDC or more) Preheating
NFM
Time
GCJ Series
30-90 seconds 5 seconds max.
2. When sudden heat is applied to the components, the
mechanical strength of the components will decrease [Allowable Flow Soldering Temperature and Time]
because a sudden temperature change causes
280
GCD Series
260
required for both of the components and the PCB.
250
Preheating conditions are shown in table 2. It is required
240
to keep the temperature differential between the solder
230
and the components surface (ΔT) as low as possible.
220
GCE Series
3. Excessively long soldering time or high soldering 0 10 20 30 40
Soldering Time (s)
temperature can result in leaching of the terminations,
causing poor adhesion or a reduction in capacitance value
In the case of repeated soldering, the accumulated
due to loss of contact between the inner electrodes and
soldering time must be within the range shown above.
terminations.
NMF Series
4. When components are immersed in solvent after
mounting, be sure to maintain the temperature
differential (ΔT) between the component and solvent
within the range shown in the table 2.
KCM Series
Recommended Conditions
Pb-Sn Solder Lead Free Solder
100 to 120°C
Preheating Peak Temperature 90 to 110°C
140 to 160°C (NFM)
Soldering Peak Temperature 240 to 250°C 250 to 260°C
KC3 Series
Atmosphere Air Air or N2
Pb-Sn Solder: Sn-37Pb
Lead Free Solder: Sn-3.0Ag-0.5Cu
5-1. The top of the solder fillet should be lower than the <Applicable to NFM Series>
thickness of the components. If the solder amount is
excessive, the risk of cracking is higher during board [NFM31HK Series]
bending or any other stressful condition.
Apply 0.06mg of bonding agent at each chip.
GCG Series
Up to Chip Thickness
!Caution
73
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution
GRT Series
by the large temperature difference occurs internally, and can be down rapidly.
the cause of cracks. Capacitors also tend to be affected by 1-3. Perform the corrections with a soldering iron as quickly
mechanical and thermal stress depending on the board preheating as possible. If the soldering iron is applied too long, there
temperature or the soldering fillet shape, and can be the cause is a possibility of causing solder leaching on the terminal
of cracks. Please refer to "1. PCB Design" or "3. Optimum solder electrodes, which will cause deterioration of the adhesive
GC3 Series
amount" for the solder amount and the fillet shapes. strength and other problems.
1. Correction with a Soldering Iron
1-1. In order to reduce damage to the capacitor, be sure to
preheat the capacitor and the mounting board. Preheat
to the temperature range shown in Table 3. A hot plate,
GCJ Series
Table 3
Chip Dimension Code Temperature of Preheating Temperature
Series Atmosphere
(L/W) Soldering Iron Tip Temperature Differential (ΔT)
GCD Series
One-hole Nozzle
an Angle of 45°
GCG Series
74
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution !Caution
GRT Series
Continued from the preceding page.
3-2. A soldering iron with a tip of ø3mm or smaller should
be used. It is also necessary to keep the soldering iron
GCM Series
from touching the components during the re-work.
3-3. Solder wire with ø0.5mm or smaller is required for
soldering.
<Applicable to KCM/KC3/KCA Series> 17 26
4. For the shape of the soldering iron tip, refer to the figure R0.5
GC3 Series
ø6.5
on the right.
Regarding the type of solder, use a wire diameter of Tip of Soldering Iron (in mm)
ø0.5mm or less (rosin core wire solder). Tip temperature: 350°C or less/
5 sec. or less/60W or less
4-1. How to Apply the Soldering Iron
Apply the tip of the soldering iron against the lower
GCJ Series
end of the metal terminal.
Copper Land
1) In order to prevent cracking caused by sudden
heating of the ceramic device, do not touch the Apply the tip of the soldering iron only
ceramic base directly. Wire Solder
on the terminal portion, without
touching the body of the chip.
2) In order to prevent deviations and dislocating of
GCD Series
the chip, do not touch the junction of the chip and
the metal terminal, and the metal portion on the
outside directly.
4-2. Appropriate Amount of Solder
The amount of solder for corrections by soldering iron,
GCE Series
Cross Section
should be lower than the height of the lower side of
the chip.
5. Washing
NMF Series
Excessive ultrasonic oscillation during cleaning can cause
the PCBs to resonate, resulting in cracked chips or broken
solder joints. Before starting your production process, test
your cleaning equipment/process to insure it does not
degrade the capacitors.
KCM Series
6. Electrical Test on Printed Circuit Board
1. Confirm position of the support pin or specific jig, when
[Not Recommended]
inspecting the electrical performance of a capacitor after
Peeling
KC3 Series
mounting on the printed circuit board.
1-1. Avoid bending the printed circuit board by the
pressure of a test-probe, etc.
Test-probe
The thrusting force of the test probe can flex the
PCB, resulting in cracked chips or open solder joints. [Recommended]
KCA Series
Provide support pins on the back side of the PCB to Support Pin
!Caution
GRT Series
are mounted. Not recommended example: The risk Board Cropping Jig
of cracks occurring in the capacitors increases due
to large stress being applied to the component
mounting position, if the portion away from the jig
is held and bent in the direction opposite the side
KCM Series
Hand Separation
Recommended Not Recommended
Direction of Load Direction of Load
KC3 Series
Load Point
Printed Circuit Board
Components
76
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Jun 22,2017
!Caution !Caution
GRT Series
Continued from the preceding page.
(2) Example of a Disc Separator
An outline of a disc separator is shown as follows. [Outline of Machine]
GCM Series
As shown in the Principle of Operation, the top
blade and bottom blade are aligned with the Top Blade
GC3 Series
be applied and cause cracks in the capacitors. [Principle of Operation] Top Blade
(1) When the adjustment of the top and bottom
blades are misaligned, such as deviating in the
top-bottom, left-right or front-rear directions
Bottom Blade
(2) The angle of the V groove is too low, depth of V-groove
GCJ Series
the V groove is too shallow, or the V groove is [Cross-section Diagram]
misaligned top-bottom Printed Circuit Board
GCD Series
strength of material of the printed circuit board.
Disc Separator
GCE Series
Not Recommended
Recommended
Top-bottom Misalignment Left-right Misalignment Front-rear Misalignment
Top Blade Top Blade Top Blade Top Blade
NMF Series
Bottom Blade Bottom Blade Bottom Blade Bottom Blade
V-groove Design
KCM Series
Example of Recommended Not Recommended
V-groove Design Left-right Misalignment Low-Angle Depth too Shallow Depth too Deep
KC3 Series
separation.
When attaching or removing boards to/from the
router type separator, carefully handle the boards
to prevent bending.
Continued on the following page.
!Caution
77
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution
GRT Series
board.
2-4. Tightening Screws
The board may be bent, when tightening screws, etc.
during the attachment of the board to a shield or Screwdriver
GCG Series
chassis.
Pay attention to the following items before
performing the work.
· Plan the work to prevent the board from bending.
· Use a torque screwdriver, to prevent
!Caution
78
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
!Caution !Caution
GRT Series
Continued from the preceding page.
<Applicable to GCG Series>
9. Selection of Conductive Adhesive, Mounting
GCM Series
Process, and Bonding Strength
The acquired bonding strength may change greatly
depending on the conductive adhesive to be used.
Be sure to confirm if the desired performance can be
acquired in the assumed mounting process with the
GC3 Series
conductive adhesive to be used.
GCJ Series
moisture proof process, such as applying a resin coating or performing solder mounting, contact Murata in advance.
enclosing with a dry inert gas.
Other
GCD Series
1. Under Operation of Equipment
1-1. Do not touch a capacitor directly with bare hands 2-2. Disposal of Waste
during operation in order to avoid the danger of an When capacitors are disposed of, they must be
electric shock. burned or buried by an industrial waste vendor with
GCE Series
1-2. Do not allow the terminals of a capacitor to come in the appropriate licenses.
contact with any conductive objects (short-circuit). 2-3. Circuit Design
Do not expose a capacitor to a conductive liquid, (1) Addition of Fail Safe Function
including any acid or alkali solutions. Capacitors that are cracked by dropping or
1-3. Confirm the environment in which the equipment will bending of the board may cause deterioration of
NMF Series
operate is under the specified conditions. the insulation resistance, and result in a short.
Do not use the equipment under the following If the circuit being used may cause an electrical
environments. shock, smoke or fire when a capacitor is shorted,
(1) Being spattered with water or oil. be sure to install fail-safe functions, such as a
(2) Being exposed to direct sunlight. fuse, to prevent secondary accidents.
KCM Series
(3) Being exposed to ozone, ultraviolet rays, or (2) Capacitors used to prevent electromagnetic
radiation. interference in the primary AC side circuit, or as a
(4) Being exposed to toxic gas (e.g., hydrogen sulfide, connection/insulation, must be a safety standard
sulfur dioxide, chlorine, ammonia gas, etc.) certified product, or satisfy the contents
KC3 Series
(5) Any vibrations or mechanical shocks exceeding the stipulated in the Electrical Appliance and Material
specified limits. Safety Law. Install a fuse for each line in case of a
(6) Moisture condensing environments. short.
1-4. Use damp proof countermeasures if using under any (3) The GC3, GCD, GCE, GCG, GCJ, GCM, KC3, and
conditions that can cause condensation. KCM series are not safety standard certified
KCA Series
2. Other products.
2-1. In an Emergency 2-4. Remarks
(1) If the equipment should generate smoke, fire, or Failure to follow the cautions may result, worst case,
smell, immediately turn off or unplug the in a short circuit and smoking when the product is
equipment. used.
GCG Series
If the equipment is not turned off or unplugged, the The above notices are for standard applications and
hazards may be worsened by supplying continuous conditions. Contact us when the products are used in
power. special mounting conditions.
(2) In this type of situation, do not allow face and Select optimum conditions for operation as they
hands to come in contact with the capacitor or determine the reliability of the product after
!Caution
79
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Notice
GRT Series
Notice
Rating
1. Operating Temperature 3. Piezo-electric Phenomenon
GCM Series
1. The operating temperature limit depends on the capacitor. 1. When using high dielectric constant type capacitors in AC
1-1. Do not apply temperatures exceeding the upper or pulse circuits, the capacitor itself vibrates at specific
operating temperature. frequencies and noise may be generated.
It is necessary to select a capacitor with a suitable Moreover, when the mechanical vibration or shock is
rated temperature that will cover the operating added to the capacitor, noise may occur.
GC3 Series
temperature range.
It is also necessary to consider the temperature
distribution in equipment and the seasonal
temperature variable factor.
1-2. Consider the self-heating factor of the capacitor.
GCJ Series
susceptible to flexing stresses since they are mounted high-frequency components to the ground, when
directly on the substrate. designing a land for the NFM series, design the
They are also more sensitive to mechanical and ground pattern to be as large as possible in order to
thermal stresses than leaded components. better bring out this characteristic.
Excess solder fillet height can multiply these stresses As shown in the figure below, noise countermeasures
KCA Series
and cause chip cracking. When designing substrates, can be made more effective by using a via to connect
take land patterns and dimensions into consideration the ground pattern on the chip mounting surface to a
to eliminate the possibility of excess solder fillet height. larger ground pattern on the inner layer.
1-2. There is a possibility of chip cracking caused by PCB
expansion/contraction with heat, because stress on a
GCG Series
80
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Jun 22,2017
Notice
GRT Series
Notice
Continued from the preceding page.
Pattern Forms
Prohibited Correct
GCM Series
Chassis
Solder (ground) Solder Resist
Electrode Pattern
GC3 Series
in section in section
Lead Wire
Solder Resist
Placing
of Chip Components
and Leaded Components
GCJ Series
in section in section
Soldering Iron
Lead Wire
Placing
GCD Series
Solder Resist
of Leaded Components
after Chip Component
in section in section
GCE Series
Solder Resist
Lateral Mounting
NMF Series
2. Land Dimensions
2-1. Please refer to the land dimensions in table 1 for flow
soldering, table 2 for reflow soldering. Chip Capacitor
Land
Please confirm the suitable land dimension by
KCM Series
evaluating of the actual SET / PCB.
c
Solder Resist
b a
KC3 Series
Table 1 Flow Soldering Method
Series Chip Dimension Code (L/W) Chip (LgW) a b c
21
250VDC (for GCJ alone)) 31 3.2g1.6 2.2 to 2.6 1.0 to 1.1 1.0 to 1.4
Flow soldering can only be used for products with a chip size from 1.6x0.8mm to 3.2x1.6mm. (in mm)
81
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Notice
GRT Series
Notice
Continued from the preceding page.
<Applicable to Part Number KCM/KC3/KCA>
Series Chip Dimension Code (L/W) Chip (LgW) a b c
GCM Series
e
short as possible to prevent mechanical damage in
W
GCJ Series
Land
the capacitor.
A longer slit design might receive more severe
LgW d e
mechanical stress from the PCB.
1.6g0.8 – –
Recommended slit design is shown in the Table.
2.0g1.25 – –
GCD Series
o Reflow Soldering
KCM Series
NFM21HC
Small diameter thru hole ø0.4
0.8
1.9
2.3
NFM21HC
0.6
KC3 Series
0.6
1.4
2.6
o Reflow Soldering Chip mounting side o Flow Soldering Chip mounting side
KCA Series
0.6
1.2
2.6
3.0
NFM31HK
(in case of 1A (1mm/A). (in case of 1A (1mm/A).
GCG Series
82
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Notice
GRT Series
Notice
Continued from the preceding page.
3. Board Design
When designing the board, keep in mind that the amount
[Relationship with amount of strain to the board
GCM Series
of strain which occurs will increase depending on the size
and material of the board. thickness, length, width, etc.]
GC3 Series
3 : Strain on center of board (μst)
L: Distance between supporting points (mm)
w: Board width (mm)
h: Board thickness (mm)
E: Elastic modulus of board (N/m2=Pa)
Y: Deflection (mm)
P: Load (N)
GCJ Series
P
Y
GCD Series
L w
GCE Series
· As the elastic modulus (E) decreases, the amount of strain increases.
→Increase the elastic modulus.
· As the board width (w) decreases, the amount of strain increases.
→Increase the width of the board.
· As the board thickness (h) decreases, the amount of strain increases.
→Increase the thickness of the board.
Since the board thickness is squared, the effect on the amount of strain
becomes even greater.
NMF Series
2. Adhesive Application
If you want to temporarily attach the capacitor to the board strength be reduced, but solderability may also suffer
KCM Series
using an adhesive agent before soldering the capacitor, first due to the effects of oxidation on the terminations
be sure that the conditions are appropriate for affixing the (outer electrodes) of the capacitor and the land surface
capacitor. If the dimensions of the land, the type of on the board.
adhesive, the amount of coating, the contact surface area, (1) Selection of Adhesive
the curing temperature, or other conditions are Epoxy resins are a typical class of adhesive.
KC3 Series
inappropriate, the characteristics of the capacitor may To select the proper adhesive, consider the following
deteriorate. points.
1. Selection of Adhesive 1) There must be enough adhesive strength to
1-1. Depending on the type of adhesive, there may be a prevent the component from loosening or slipping
decrease in insulation resistance. In addition, there is a during the mounting process.
KCA Series
chance that the capacitor might crack from contractile 2) The adhesive strength must not decrease when
stress due to the difference in the contraction rate of exposed to moisture during soldering.
the capacitor and the adhesive. 3) The adhesive must have good coatability and
1-2. If there is not enough adhesive, the contact surface shape retention properties.
GCG Series
area is too small, or the curing temperature or curing 4) The adhesive must have a long pot life.
time are inadequate, the adhesive strength will be 5) The curing time must be short.
insufficient and the capacitor may loosen or become 6) The adhesive must not be corrosive to the exterior
disconnected during transportation or soldering. of the capacitor or the board.
If there is too much adhesive, for example if it overflows 7) The adhesive must have good insulation properties.
onto the land, the result could be soldering defects, loss 8) The adhesive must not emit toxic gases or
Notice
Notice
GRT Series
Notice
Continued from the preceding page.
(2) Use the following illustration as a guide to the
amount of adhesive to apply. [Sizes: 0603(1608M) / 0805(2012M) / 1206(3216M)]
GCM Series
Adhesive
Resist
Land
GC3 Series
Board
Side View
GCJ Series
GCD Series
3. Adhesive Curing
1. Insufficient curing of the adhesive can cause chips to
disconnect during flow soldering and causes deterioration
in the insulation resistance between the terminations due
to moisture absorption.
GCE Series
5. Flow Soldering
o Set temperature and time to ensure that leaching of the
[As a Single Chip]
termination does not exceed 25% of the chip end area as A
a single chip (full length of the edge A-B-C-D shown at
KCA Series
B
right) and 25% of the length A-B shown as mounted on D
substrate. C
Termination (Outer Electrode)
A
Notice
6. Reflow Soldering
The halogen system substance and organic acid are Do not use strong acid flux.
included in solder paste, and a chip corrodes by this kind of Do not use water-soluble flux*.
solder paste. (*Water-soluble flux can be defined as non-rosin type flux
including wash-type flux and non-wash-type flux.)
Continued on the following page.
84
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
Notice
GRT Series
Notice
Continued from the preceding page.
7. Washing
{@*#1##4*32#2&#!.!'2-031',%!23*!*#,',% }@#*#!22&#.0-.#0!*#,',%!-,"'2'-,1@
GCM Series
equipment and conditions to confirm the quality, and }Q{@
+.0-.#0!*#,',%!-,"'2'-,1H#6!#11'4#-0
select the solvent for cleaning. insufficient) may result in deterioration of the
|@,13'2 *#!*#,',%1-*4#,2+7*#4#0#1'"3*r36-0 performance of the capacitors.
other foreign substances, causing deterioration of
electrical characteristics and the reliability of the
GC3 Series
capacitors.
8. Coating
{@!0!)+7 #!31#"',2&#!.!'2-0"3#2-2x#11 #*#!20#1',$-05&'!&2�+*#6.,1'-,!-#t!'#,2
GCJ Series
of the thermal contraction of the resin during curing is as close to that of the capacitor as possible.
process. A silicone resin can be used as an under-coating to buffer
The stress is affected by the amount of resin and curing against the stress.
contraction. |@#*#!20#1',2&2'1*#11&7%0-1!-.'!@
#*#!20#1',5'2&*-5!30',%!-,20!2'-,@ Using hygroscopic resins under high humidity conditions
GCD Series
The difference in the thermal expansion coefficient may cause the deterioration of the insulation resistance
#25##,!-2',%0#1',-0+-*"',%0#1',,"2&# of a capacitor.
capacitor may cause the destruction and deterioration of An epoxy resin can be used as a less hygroscopic resin.
2&#!.!'2-013!&1!0!)-0.##*',%A,"*#"2-2&# }@&#&*-%#,1712#+13 12,!#,"-0%,'!!'"0#
deterioration of insulation resistance or dielectric included in coating material, and a chip corrodes by the
GCE Series
0#)"-5,@ )',"-$-2',%+2#0'*@
-,-231#120-,%!'"27.#@
NMF Series
Other
1. Transportation 2. Characteristics Evaluation in the Actual System
1. The performance of a capacitor may be affected by the 1. Evaluate the capacitor in the actual system, to confirm
conditions during transportation. 2&22�#'1,-.0- *#+5'2&2&#.#0$-0+,!#,"
1-1. The capacitors shall be protected against excessive specification values in a finished product before using.
KCM Series
temperature, humidity, and mechanical force during |@',!#4-*2%#"#.#,"#,!7,"2#+.#0230#
transportation. dependency exists in the capacitance of high dielectric
(1) Climatic condition type ceramic capacitors, the capacitance may change
F*-5'02#+.#0230#BQ~z depending on the operating conditions in the actual
KC3 Series
F!&,%#-$2#+.#0230#'0G'0BQ|G| system. Therefore, be sure to evaluate the various
F*-5'0.0#1130#B}z) !&0!2#0'12'!1A13!&12&#*#)%#!300#,2,",-'1#
F!&,%#-$'0.0#1130#B)G+',@ 1-0.2'4'27A5&'!&5'**s#!22&#!.!'2,!#4*3#-$
H|J#!&,'!*!-,"'2'-, the capacitor.
0,1.-022'-,1&** #"-,#',13!&572&2 }@
,""'2'-,A4-*2%#1#6!##"',%2&#.0#"#2#0+',#"130%#
KCA Series
the boxes are not deformed and forces are not may be applied to the capacitor by the inductance in the
"'0#!2*7.11#"-,2-2&#',,#0.!)%',%@ actual system. Evaluate the surge resistance in the actual
{Q|@-,-2..*7#6!#11'4#4' 02'-,A1&-!)A-0.0#1130# system as required.
to the capacitor.
H{J&#,#6!#11'4#+#!&,'!*1&-!)-0.0#1130#'1 <Applicable to NFM Series>
GCG Series
..*'#"2-!.!'2-0A!&'..',%-0!0!)',%+7 ~@&##s#!21-$,-'1#13..0#11'-,!,407"#.#,"',%-,
occur in the ceramic body of the capacitor. the usage conditions, including differences in the circuit
H|J&#,2&0.#"%#-$,'0"0'4#0A1-*"#0',% -0
2- #31#"A2.#-$,-'1#A2&.#-$2&#
'0-,A25##8#01A!&11'1A#2!@'+.!21120-,%*7-, pattern to be mounted, and the mounting location. Be
the surface of the capacitor, the capacitor may sure to verify the effect on the actual device in advance.
Notice
!0!),"1&-02Q!'0!3'2@
{Q}@-,-231#!.!'2-02-5&'!!#11'4#1&-!)51
applied by dropping, etc.
A capacitor dropped accidentally during processing
may be damaged.
85
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
MEMO
86
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• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Jun 22,2017
This is the latest tool to get the electrical characteristics for Capacitors, Inductors,
and EMI Suppression Filters, and to simulate Thermistors' behavior !
cCharacteristics viewer
You can easily search and download the following data for
Multilayer Ceramic Capacitors, Polymer Capacitors, EMI
Suppression Filters (Three-terminal Capacitors, Ferrite
Beads) and Power/RF Inductors.
cComponents performance simulator
You can search by the simulation on simple circuits for
Thermistors.
cSelection tool
You can select Medium voltage Capacitors and Power
Inductors according to conditions of use.
?#"'3+4-*2%#B2#"-*2%#|z,"-4#0
cSearch tool
You can search the Murata timing device (CERALOCKr
and crystal units) that is most suitable for your IC and
access information about the recommended circuit
constant setting.
$7-30#%'12#01+730231#0
(https://my.murata.com/en/web/mymurata/), you can use
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87
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
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88
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc. C03E.pdf
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
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C03E.pdf
Jun 22,2017
Cat. No. C03E-9
Global Locations
For details please visit www.murata.com
Note
1 Export Control 2 Please contact our sales representatives or 3 Product specifications in this catalog are as of
product engineers before using the products in May 2017. They are subject to change or our
For customers outside Japan: this catalog for the applications listed below, products in it may be discontinued without
No Murata products should be used or which require especially high reliability for the advance notice. Please check with our sales
sold, through any channels, for use in the prevention of defects which might directly representatives or product engineers before
design, development, production, utilization, damage a third party’s life, body or property, or ordering. If there are any questions, please contact
maintenance or operation of, or otherwise when one of our products is intended for use our sales representatives or product engineers.
contribution to (1) any weapons (Weapons of in applications other than those specified in
Mass Destruction [nuclear, chemical or biological this catalog. 4 Please read rating and CAUTION (for storage,
weapons or missiles] or conventional weapons) operating, rating, soldering, mounting and
1 Aircraft equipment handling) in this catalog to prevent smoking
or (2) goods or systems specially designed or
intended for military end-use or utilization by and/or burning, etc.
2 Aerospace equipment
military end-users.
3 Undersea equipment 5 This catalog has only typical specifications.
For customers in Japan: Therefore, please approve our product
4 Power plant equipment specifications or transact the approval sheet
For products which are controlled items subject for product specifications before ordering.
to the “Foreign Exchange and Foreign Trade Law” 5 Medical equipment
of Japan, the export license specified by the law
6 Please note that unless otherwise specified, we
is required for export. 6 Transportation equipment (vehicles, trains,
shall assume no responsibility whatsoever for any
ships, etc.)
conflict or dispute that may occur in connection
7 Traffic signal equipment with the effect of our and/or a third party’s
intellectual property rights and other related
8 Disaster prevention / crime prevention rights in consideration of your use of our products
equipment and/or information described or contained in our
catalogs. In this connection, no representation
9 Data-processing equipment shall be made to the effect that any third parties
are authorized to use the rights mentioned above
10 Application of similar complexity and/or
under licenses without our consent.
reliability requirements to the applications
listed above
7 No ozone depleting substances (ODS) under the
Montreal Protocol are used in our manufacturing
process.
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