(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Explanation of Symbols in This Catalog
L x W dimension: products of 0.6 x 0.3 mm or less
Low dissipation for high frequency
By devising ceramic materials and electrode materials,
low dissipation is achieved in frequency bands of VHF,
UHF and microwave or beyond.
Low inductance
This capacitor is designed so that
the parasitic inductance component (ESL)
that the capacitor has on the high frequency
side becomes lower.
Product suitable for acoustic noise reduction and low distortion
This product suppresses acoustic noise,
which occurs when a ceramic capacitor is used,
by devising the materials and configuration.
Product resistant to deflection cracking
This capacitor is designed to prevent failures as much
as possible by short mode caused by cracking
when there is board deflection.
Product with solder cracking suppression
This capacitor is configured with metal terminals
and leads connected to the chip.
The metal terminals and leads relieve the stress from expansion
and contraction of the solder, to suppress solder cracking.
Voltage and temperature derating recommended product
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 the endurance test,
at a rated voltage x 100% at the maximum operating temperature.
A reliability assurance level equivalent to a common product
can be secured, by using this product within the voltage and
temperature derated conditions recommended in the figure below.
Recommended Conditions of the Derating Operating Voltage and Temperature
Operating Voltage/Rated Voltage (%)
120
100
80
60
40
125°C Type
105°C Type
85°C Type
20
0
0
25
50
75
100
125
150
Product Temperature (°C)
EU RoHS
Compliant
All the products in this catalog comply with EU RoHS.
EU RoHS is "the European Directive 2011/65/EU on the Restriction of the Use
of Certain Hazardous Substances in Electrical and Electronic Equipment."
For more details, please refer to our website 'Murata's Approach for EU RoHS'
(http://www.murata.com/info/rohs.html).
!Note
• Please read rating and
!CAUTION
(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Contents
Product specifications are as of
Part Numbering
Selection Guide
Capacitance Table
p2
p5
p6
Cap. Table
August 2014
.
For General Purpose GRM Series
High Frequency High Q Type
1005(in mm)/0402(in inch) Size Max. GJM Series
Top & Bottom Electrode Type for Bonding
GMA
Series
Product for Bonding/AuSn Soldering
GMD Series
High Frequency High Q Type
1608(in mm)/0603(in inch) Size Min. GQM Series
Resin External Electrode Type GRJ Series
p87
p7
p109
p8
p111
p9
p114
p123
p10
p11
GRJ Series
!Caution/
Notice
LLR Series
LLM Series
LLL Series
LLA Series
KR3 Series
KRM Series
GR3 Series
High Effective Capacitance &
High Allowable Ripple Current GR3 Series
Metal Terminal Type For General Purpose
KRM Series
Metal Terminal Type High Effective Capacitance &
High Allowable Ripple Current KR3 Series
8-Terminal Low ESL Type LLA Series
p125
p12
p127
p13
p130
p133
p14
p14
LW Reversed Low ESL Type LLL Series
p135
p15
10-Terminal Low ESL Type LLM Series
p137
p15
ESR Controlled Low ESL Type LLR Series
p139
p15
!Caution/Notice
Qualified Standards
Introduction of Website SimSurfing
Product Information
p141
p163
p165
p166
Please check the MURATA home page (http://www.murata.com/)
if you cannot find the part number in the catalog.
GQM Series
GMD Series
GMA Series
p17 separate volume
p1–p16
GJM Series
GRM Series
!Note
• Please read rating and
!CAUTION
(for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
o
Part Numbering
Chip Monolithic Ceramic Capacitors for General
(Part Number)
qProduct
ID
wSeries
Product ID
GJ
GM
GQ
Code
M
A
D
M
3
GR
J
M
KR
3
M
A
LL
L
M
R
eChip
Dimensions (LgW)
Code
02
03
05
08
0D
15
18
1U
21
22
31
32
42
43
55
Dimensions (LgW)
0.4g0.2mm
0.6g0.3mm
0.5g0.5mm
0.8g0.8mm
0.38g0.38mm
1.0g0.5mm
1.6g0.8mm
0.6g1.0mm
2.0g1.25mm
2.8g2.8mm
3.2g1.6mm
3.2g2.5mm
4.5g2.0mm
4.5g3.2mm
5.7g5.0mm
Size Code (in inch)
01005
0201
0202
0303
015015
0402
0603
02404
0805
1111
1206
1210
1808
1812
2220
Continued on the following page.
GR
q
M
w
18
e
8
B1 1H
y
102
u
K
i
A01 D
o
!0
rHeight
Dimension (T) (Except
KRp)
r t
Series
High frequency HiQ type
1005(in mm)/0402(in inch) size max.
Top & bottom electrode type for bonding
Product for bonding/AuSn soldering
High frequency HiQ type
1608(in mm)/0603(in inch) size min.
High effective capacitance &
High allowable ripple current
Resin external electrode type
General purpose products
Metal terminal type/High effective capacitance &
High allowable ripple current
Metal terminal type
8-terminal low ESL type
LW reversed low ESL type
10-terminal low ESL type
ESR Controlled low ESL type
Code
2
3
4
5
6
7
8
9
A
B
C
D
E
M
Q
S
X
Dimension (T)
0.2mm
0.3mm
0.4mm
0.5mm
0.6mm
0.7mm
0.8mm
0.85mm
1.0mm
1.25mm
1.6mm
2.0mm
2.5mm
1.15mm
1.5mm
2.8mm
Depends on individual standards.
rHeight
Dimension (T) (KRp Only)
Code
E
F
K
L
Q
T
W
Dimension (T)
1.8mm
1.9mm
2.7mm
2.8mm
3.7mm
4.8mm
6.4mm
Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.
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.
• This catalog has only typical specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
(Part Number)
GR
q
M
w
18
e
8
B1 1H
y
102
u
K
i
A01 D
o
!0
r t
Continued from the preceding page.
tTemperature
Characteristics
Temperature
Characteristic Codes
Code
1X
2C
3C
3U
4C
5C
7U
B1
B3
C7
C8
D7
D8
E7
R1
R6
R7
Public
STD Code
SL
CH
CJ
UJ
CK
C0G
U2J
B
*1
B
X7S
X6S
X7T
X6T
X7U
R
*1
X5R
X7R
JIS
JIS
JIS
JIS
JIS
EIA
EIA
JIS
JIS
EIA
EIA
EIA
EIA
EIA
JIS
EIA
EIA
Temperature Characteristics
Reference Temperature Capacitance Change
or Temperature
Temperature
Range
Coefficient
20°C
20°C
20°C
20°C
20°C
25°C
25°C
20°C
20°C
25°C
25°C
25°C
25°C
25°C
20°C
25°C
25°C
20 to 85°C
20 to 125°C
20 to 125°C
20 to 85°C
20 to 125°C
25 to 125°C
25 to 125°C *2
–25 to 85°C
–25 to 85°C
–55 to 125°C
–55 to 105°C
–55 to 125°C
–55 to 105°C
–55 to 125°C
–55 to 125°C
–55 to 85°C
–55 to 125°C
+350 to –1000ppm/°C
0±60ppm/°C
0±120ppm/°C
–750±120ppm/°C
0±250ppm/°C
0±30ppm/°C
–750±120ppm/°C
±10%
±10%
±22%
±22%
+22%, –33%
+22%, –33%
+22%, –56%
±15%
±15%
±15%
Operating
Temperature
Range
–55 to 125°C
–55 to 125°C
–55 to 125°C
–25 to 85°C
–55 to 125°C
–55 to 125°C
–55 to 125°C
–25 to 85°C
–25 to 85°C
–55 to 125°C
–55 to 105°C
–55 to 125°C
–55 to 105°C
–55 to 125°C
–55 to 125°C
–55 to 85°C
–55 to 125°C
Capacitance Change Each Temperature (%)
–55°C
Max.
-
0.82
1.37
-
2.56
0.58
8.78
-
-
-
-
-
-
-
-
-
-
Min.
-
–0.45
–0.9
-
–1.88
–0.24
5.04
-
-
-
-
-
-
-
-
-
-
Max.
-
0.49
0.82
4.94
1.54
0.4
6.04
-
-
-
-
-
-
-
-
-
-
*3
Min.
-
–0.27
–0.54
2.84
–1.13
–0.17
3.47
-
-
-
-
-
-
-
-
-
-
-
0.33
0.55
3.29
1.02
0.25
3.84
-
-
-
-
-
-
-
-
-
-
–10°C
Max.
Min.
-
–0.18
–0.36
1.89
–0.75
–0.11
2.21
-
-
-
-
-
-
-
-
-
-
*1 Capacitance change is specified with 50% rated voltage applied.
*2 Rated Voltage 100Vdc max: 25 to 85°C
*3 –25°C (Reference Temperature 20°C) / –30°C (Reference Temperature 25°C)
yRated
Voltage
Code
0E
0G
0J
1A
1C
1E
1H
1J
1K
2A
2D
2E
2W
2H
2J
3A
3D
3F
YA
Rated Voltage
DC2.5V
DC4V
DC6.3V
DC10V
DC16V
DC25V
DC50V
DC63V
DC80V
DC100V
DC200V
DC250V
DC450V
DC500V
DC630V
DC1kV
DC2kV
DC3.15kV
DC35V
uCapacitance
Expressed by three-digit alphanumerics. The unit is picofarad
(pF). The first and second figures are significant digits, and the
third figure expresses the number of zeros which 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 alphabet, other than "R", is included, this indicates the
specific part number is a non-standard part.
Ex.)
Code
R50
1R0
100
103
iCapacitance
Tolerance
Code
B
C
D
F
G
J
K
M
W
Capacitance Tolerance
±0.1pF
±0.25pF
±0.5pF (10pF and below)
±0.5% (10pF and over)
±1%
±2%
±5%
±10%
±20%
±0.05pF
Continued on the following page.
Capacitance
0.50pF
1.0pF
10pF
10000pF
Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.
I have recently been working on a USB flash drive filter driver, which is overloaded below the disk driver and is a lower-level filter driver. Now I want to interact with the application layer, so I a...
I have been experimenting with RTC these days, but I often find that the values in BKP are inexplicably lost. I have a few questions and understandings about these. I hope the moderator can confirm th...
The seventh line from the bottom --- "ADC10MEM." This is not a period, it should be ADC10MEM0 (default), or ADC10MEMx:lol:lol:lol [[i] This post was last edited by woaiweibo on 2013-10-31 21:39 [/i]]...
Which manufacturer and model of microcontroller do you use when making microcontrollers? What are the advantages of these microcontrollers? Please talk about it, on the one hand, to provide some sugge...
Hello everyone! Does anyone have any information about wireless remote control, as well as source code, and preferably wireless function module functions? This is too much to ask. I want to learn abou...
[i=s] This post was last edited by jeehuiken on 2017-11-30 15:21 [/i] [size=4] I borrowed the NEWBIT development board from EEworld Forum -> Community Activities -> Borrowing Development Boards. I spe...
1. Introduction
RFID (radio frequency identification) is a non-contact automatic identification technology that emerged in the 1990s. It uses the characteristics of radio frequency signal prop...[Details]
In
circuit design,
current
measurement
is widely used, and the main fields are divided into three categories: in measurement,
the electric meter
is used to measure the curre...[Details]
System design is a complex process. It is not enough to just use ICs. There are many details to consider. This article uses a high-fidelity music playback system as an example to introduce how to s...[Details]
Abstract: In order to generate a stable excitation signal, the design of a digital frequency synthesizer is implemented on FPGA using Verilog hardware language. The design includes accumulator, wav...[Details]
Electronic systems are located at different points on the automotive power bus and therefore often need to operate under very stringent power requirements. These include load dump, cold crank, very lo...[Details]
Aromatic gases are widely present in food, medicine, cosmetics and various daily chemical products, such as snacks, liquor, spices, Chinese herbal medicines, plasters, perfumes, soaps, shampoos, et...[Details]
1. Introduction
Testing the temperature of steel billets before rolling is an important measure to ensure the quality of steel. Traditional manual testing is difficult to ensure product qu...[Details]
This controller uses PIC16C54 single-chip microcomputer as the controller, and it is very easy to use: just connect a telephone line to the loudspeaker through the controller, and you can rem...[Details]
Abstract: Aiming at the needs of coal-rock acoustic emission signal monitoring system, a data acquisition circuit with 24-bit resolution and 16-channel synchronous data acquisition function is desi...[Details]
The rectified DC voltage is then converted back to AC using power electronics such as insulated gate bipolar transistors.
The output voltage is switched on and off at a high frequency, control...[Details]
This article will introduce a design method for a distributed control system used in a tracking car, which can perform distributed control of motor modules, sensor modules, and lighting control mod...[Details]
Temperature compensated quartz crystal oscillator (TCXO) is widely used as a high-precision frequency source in communication systems, radar navigation systems, precision measurement and control sy...[Details]
In the "digital pressure measurement" experimental device of applied physics, the subject technical knowledge of analog circuits, digital circuits, sensors and single-chip microcomputers is used. In o...[Details]
Every time I go home and walk up the stairs, I am always scared. The corridor lights are often broken, and no one changes the bulbs, or they are not smart enough and need to be operated manually. E...[Details]
People who often surf the Internet until late at night, their families always complain that turning on the big lights in the living room affects their rest, but some people don't have keyboard ligh...[Details]