!Note • This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our
sales representatives or product engineers before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Chip Monolithic
Ceramic Capacitors
Cat.No.C02E-16
C02E.pdf
10.12.20
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
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areinsubject
to change
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in it may
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• Please
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10.12.20
sales representatives
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• This catalog
has only
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
o Part Numbering
Chip Monolithic Ceramic Capacitors
(Part Number)
GR
M
18
8
q
w
e
r t
B1 1H
y
102
K
u
i
A01 D
o
wSeries
Product ID
GR
GQ
GM
GN
LL
GJ
GA
!0
rDimension (T) (Except GNM)
qProduct ID
Code
Dimension (T)
Code
Series
2
0.2mm
J
Soft Termination Type
3
0.3mm
M
Tin Plated Layer
5
0.5mm
4
Only for Information Devices / Tip & Ring
6
0.6mm
7
Only for Camera Flash Circuit
7
0.7mm
M
High Frequency for
Flow/Reflow Soldering
8
0.8mm
9
0.85mm
A
Monolithic Microchip
A
1.0mm
D
For Bonding
B
1.25mm
M
Capacitor Array
C
1.6mm
L
Low ESL Type
D
2.0mm
R
Controlled ESR Low ESL Type
E
2.5mm
A
8-termination Low ESL Type
F
3.2mm
M
10-termination Low ESL Type
M
1.15mm
M
High Frequency Low Loss Type
N
1.35mm
2
For AC250V (r.m.s.)
Q
1.5mm
3
Safety Standard Certified Type
R
1.8mm
S
2.8mm
X
Depends on individual standards.
eDimensions (LgW)
rElements (GNM Only)
Code
Dimensions (LgW)
EIA
02
0.4g0.2mm
01005
Code
Elements
03
0.6g0.3mm
0201
2
2-elements
05
0.5g0.5mm
0202
4
4-elements
08
0.8g0.8mm
0303
0D
0.38g0.38mm
015015
0M
0.9g0.6mm
0302
15
1.0g0.5mm
0402
18
1.6g0.8mm
0603
1M
1.37g1.0mm
0504
21
2.0g1.25mm
0805
22
2.8g2.8mm
1111
31
3.2g1.6mm
1206
32
3.2g2.5mm
1210
42
4.5g2.0mm
1808
43
4.5g3.2mm
1812
52
5.7g2.8mm
2211
55
5.7g5.0mm
2220
Continued on the following page.
Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.
2
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• Please
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10.12.20
sales representatives
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• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Continued from the preceding page.
tTemperature Characteristics
Temperature Characteristic Codes
Code
Public STD Code
Temperature Characteristics
Reference
Temperature
Temperature
Range
Capacitance Change or
Temperature Coefficient
Operating
Temperature Range
1X
SL *1
JIS
20°C
20 to 85°C
+350 to -1000ppm/°C
-55 to 125°C
2C
CH *1
JIS
20°C
20 to 125°C
0±60ppm/°C
-55 to 125°C
2P
PH *1
JIS
20°C
20 to 85°C
-150±60ppm/°C
-25 to 85°C
2R
RH *1
JIS
20°C
20 to 85°C
-220±60ppm/°C
-25 to 85°C
2S
SH *1
JIS
20°C
20 to 85°C
-330±60ppm/°C
-25 to 85°C
2T
TH *1
JIS
20°C
20 to 85°C
-470±60ppm/°C
-25 to 85°C
3C
CJ *1
JIS
20°C
20 to 125°C
0±120ppm/°C
-55 to 125°C
3P
PJ *1
JIS
20°C
20 to 85°C
-150±120ppm/°C
-25 to 85°C
3R
RJ *1
JIS
20°C
20 to 85°C
-220±120ppm/°C
-25 to 85°C
3S
SJ *1
JIS
20°C
20 to 85°C
-330±120ppm/°C
-25 to 85°C
3T
TJ *1
JIS
20°C
20 to 85°C
-470±120ppm/°C
-25 to 85°C
3U
UJ *1
JIS
20°C
20 to 85°C
-750±120ppm/°C
-25 to 85°C
4C
CK *1
JIS
20°C
20 to 125°C
0±250ppm/°C
-55 to 125°C
5C
C0G *1
EIA
25°C
25 to 125°C
0±30ppm/°C
-55 to 125°C
5G
X8G *1
EIA
25°C
25 to 150°C
0±30ppm/°C
-55 to 150°C
6C
C0H *1
EIA
25°C
25 to 125°C
0±60ppm/°C
-55 to 125°C
6P
P2H *1
EIA
25°C
25 to 85°C
-150±60ppm/°C
-55 to 125°C
6R
R2H *1
EIA
25°C
25 to 85°C
-220±60ppm/°C
-55 to 125°C
6S
S2H *1
EIA
25°C
25 to 85°C
-330±60ppm/°C
-55 to 125°C
6T
T2H *1
EIA
25°C
25 to 85°C
-470±60ppm/°C
-55 to 125°C
7U
U2J *1
EIA
25°C
25 to 125°C *6
-750±120ppm/°C
-55 to 125°C
B1
B *2
JIS
20°C
-25 to 85°C
±10%
-25 to 85°C
B3
B
JIS
20°C
-25 to 85°C
±10%
-25 to 85°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
D8
X6T
EIA
25°C
-55 to 105°C
+22, -33%
-55 to 105°C
E7
X7U
EIA
25°C
-55 to 125°C
+22, -56%
-55 to 125°C
F1
F *2
JIS
20°C
-25 to 85°C
+30, -80%
-25 to 85°C
F5
Y5V
EIA
25°C
-30 to 85°C
+22, -82%
-30 to 85°C
L8
X8L
*3
25°C
-55 to 150°C
+15, -40%
-55 to 150°C
R1
R *2
JIS
20°C
-55 to 125°C
±15%
-55 to 125°C
R3
R
JIS
20°C
-55 to 125°C
±15%
-55 to 125°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
W0
-
-
25°C
-55 to 125°C
±10% *4
+22, -33% *5
*1 Please refer to table for Capacitance Change under reference temperature.
*2 Capacitance change is specified with 50% rated voltage applied.
*3 Murata Temperature Characteristic Code.
*4 Apply DC350V bias.
*5 No DC bias.
*6 Rated Voltage 100Vdc max : 25 to 85°C
-55 to 125°C
Continued on the following page.
Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.
3
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
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productsand/or
in it may
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without advance notice. Please check with our
• Please
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!Note • This
!Note
C02E.pdf
10.12.20
sales representatives
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before ordering.
• This catalog
has only
typical specifications
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Continued from the preceding page.
oCapacitance Change from each temperature
JIS Code
Capacitance Change from 20°C (%)
Murata Code
–55°C
–25°C
–10°C
Max.
Min.
Max.
Min.
Max.
1X
–
–
–
–
–
Min.
–
2C
0.82
–0.45
0.49
–0.27
0.33
–0.18
2P
–
–
1.32
0.41
0.88
0.27
2R
–
–
1.70
0.72
1.13
0.48
2S
–
–
2.30
1.22
1.54
0.81
2T
–
–
3.07
1.85
2.05
1.23
3C
1.37
–0.90
0.82
–0.54
0.55
–0.36
3P
–
–
1.65
0.14
1.10
0.09
3R
–
–
2.03
0.45
1.35
0.30
3S
–
–
2.63
0.95
1.76
0.63
3T
–
–
3.40
1.58
2.27
1.05
3U
–
–
4.94
2.84
3.29
1.89
4C
2.56
–1.88
1.54
–1.13
1.02
–0.75
EIA Code
Capacitance Change from 25°C (%)
Murata Code
–55°C
–30°C
–10°C
Max.
Min.
Max.
Min.
Max.
Min.
5C/5G
0.58
–0.24
0.40
–0.17
0.25
–0.11
6C
0.87
–0.48
0.59
–0.33
0.38
–0.21
6P
2.33
0.72
1.61
0.50
1.02
0.32
6R
3.02
1.28
2.08
0.88
1.32
0.56
6S
4.09
2.16
2.81
1.49
1.79
0.95
6T
5.46
3.28
3.75
2.26
2.39
1.44
7U
8.78
5.04
6.04
3.47
3.84
2.21
yRated Voltage
uCapacitance
0G
DC4V
0J
DC6.3V
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.
1A
DC10V
Ex.)
Code
Capacitance
1C
DC16V
R50
0.5pF
1E
DC25V
1R0
1.0pF
YA
DC35V
100
10pF
1H
DC50V
103
10000pF
2A
DC100V
2D
DC200V
2E
DC250V
YD
DC300V
2H
DC500V
2J
DC630V
3A
DC1kV
Code
Rated Voltage
0E
DC2.5V
3D
DC2kV
3F
DC3.15kV
BB
DC350V (for Camera Flash Circuit)
E2
AC250V
GC
X1/Y2; AC250V (Safety Standard Certified Type GC)
GF
Y2, X1/Y2; AC250V (Safety Standard Certified Type GF)
GD
Y3; AC250V (Safety Standard Certified Type GD)
GB
X2; AC250V (Safety Standard Certified Type GB)
Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.
4
Continued on the following page.
PDF catalog
is downloaded
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of Murata
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co., ltd.
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areinsubject
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• Please
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!Note • This
!Note
C02E.pdf
10.12.20
sales representatives
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before ordering.
• This catalog
has only
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Continued from the preceding page.
iCapacitance Tolerance
Capacitance Step
Code
Capacitance Tolerance
TC
Series
W
±0.05pF
CΔ
GRM/GJM
V9.9pF
0.1pF
GRM/GJM
V9.9pF
0.1pF
V1pF
0.1pF
±0.1pF
B
±0.25pF
C
±0.5pF
D
±2%
G
±5%
J
±10%
K
±20%
M
Z
CΔ
+80%, -20%
R
GQM
1.1 to 9.9pF 1pF Step and E24 Series
CΔ
GRM/GJM
V9.9pF
except CΔ
GRM
V5pF
* 1pF
V1pF
0.1pF
0.1pF
CΔ
GQM
CΔ
GRM/GJM
5.1 to 9.9pF
0.1pF
except CΔ
GRM
5.1 to 9.9pF
* 1pF
CΔ
GQM
5.1 to 9.9pF 1pF Step and E24 Series
1.1 to 9.9pF 1pF Step and E24 Series
CΔ
GJM
U10pF
E12 Series
CΔ
GQM
U10pF
E24 Series
CΔ, SL, U2J
GRM/GA3
U10pF
E12 Series
CΔ
GQM/GJM
U10pF
B, R, X7R, X5R, ZLM
GRJ/GRM/GR7/GA3
E24 Series
E6 Series
C0G
GNM
E6 Series
B, R, X7R, X5R, ZLM
GR4, GMD
E12 Series
B, R, X7R, X7S
GRM/GMA
E6 Series
X5R, X7R, X7S
GNM
E3 Series
X7R
GA2
E3 Series
X5R, X7R, X7S, X6S
LLL/LLR/LLA/LLM
E3 Series
F, Y5V
GRM
E3 Series
Depends on individual standards.
* E24 series is also available.
oIndividual Specification Code (Except LLR)
Expressed by three figures.
oESR (LLR Only)
!0Packaging
Code
Packaging
L
ø180mm Embossed Taping
D
ø180mm Paper Taping
Code
ESR
E
ø180mm Paper Taping (LLL15)
E01
100mΩ
K
ø330mm Embossed Taping
E03
220mΩ
J
ø330mm Paper Taping
E05
470mΩ
F
ø330mm Paper Taping (LLL15)
E07
1000mΩ
B
Bulk
C
Bulk Case
T
Bulk Tray
Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.
5
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is downloaded
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• Please
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this catalog
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!Note • This
!Note
C02E.pdf
10.12.20
sales representatives
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before ordering.
• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
AC250V Type (Which Meet Japanese Law) GA2 Series
g
e
T
1. Chip monolithic ceramic capacitor for AC lines.
2. A new monolithic structure for small, high
capacitance capable of operating at high voltage
levels.
3. Sn-plated external electrodes realize good
solderability.
4. Only for reflow soldering
5. Capacitance 0.01 to 0.1uF for connecting lines and
470 to 4700pF for connecting lines to earth.
L
Part Number
GA242Q
GA243D
GA243Q
GA255D
L
4.5 ±0.3
4.5 ±0.4
5.7 ±0.4
W
Dimensions (mm)
W
T
e min.
2.0 ±0.2 1.5 +0, -0.3
2.0 +0, -0.3
3.2 ±0.3
0.3
1.5 +0, -0.3
5.0 ±0.4 2.0 +0, -0.3
g min.
2.5
3.2
■ Applications
Noise suppression filters for switching power supplies,
telephones, facsimiles, modems.
■ Reference Standard
GA2 series obtains no safety approval.
This series is based on the standards of the
electrical appliance and material safety law of Japan
(separated table 4).
Electrode g
min.
(mm)
Electrode e
(mm)
1.5
2.5
0.3 min.
1.5
2.5
0.3 min.
3.2
1.5
2.5
0.3 min.
4.5
3.2
1.5
2.5
0.3 min.
4700pF ±20%
4.5
3.2
2.0
2.5
0.3 min.
X7R (EIA)
10000pF ±20%
4.5
3.2
1.5
2.5
0.3 min.
AC250 (r.m.s.)
X7R (EIA)
22000pF ±20%
4.5
3.2
1.5
2.5
0.3 min.
GA243DR7E2473MW01L
AC250 (r.m.s.)
X7R (EIA)
47000pF ±20%
4.5
3.2
2.0
2.5
0.3 min.
GA255DR7E2104MW01L
AC250 (r.m.s.)
X7R (EIA)
0.10μF ±20%
5.7
5.0
2.0
3.2
0.3 min.
Part Number
Rated Voltage
(V)
TC Code
(Standard)
GA242QR7E2471MW01L
AC250 (r.m.s.)
X7R (EIA)
470pF ±20%
4.5
2.0
GA242QR7E2102MW01L
AC250 (r.m.s.)
X7R (EIA)
1000pF ±20%
4.5
2.0
GA243QR7E2222MW01L
AC250 (r.m.s.)
X7R (EIA)
2200pF ±20%
4.5
GA243QR7E2332MW01L
AC250 (r.m.s.)
X7R (EIA)
3300pF ±20%
GA243DR7E2472MW01L
AC250 (r.m.s.)
X7R (EIA)
GA243QR7E2103MW01L
AC250 (r.m.s.)
GA243QR7E2223MW01L
Capacitance
Length L Width W Thickness T
(mm)
(mm)
(mm)
187
Product Information
Safety Standard
Certified GA3 Series
Do not use these products in any Automotive
Power train or Safety equipment including Battery
chargers for Electric Vehicles and Plug-in Hybrids.
Only Murata products clearly stipulated as
"for Automotive use" can be used for automobile
applications such as Power train and Safety equipment.
AC250V Type
GA2 Series
e
■ Features
Only for Applications
For General Purpose
GRM/GRJ Series
Chip Monolithic Ceramic Capacitors
PDF catalog
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of Murata
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• Please
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!Note • This
!Note
C02E.pdf
10.12.20
Product Information
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
AC250V(r.m.s.)
Type (Whichand
Meet
Japanese
Law) Specifications and Test Methods
GA2
Series Specifications
Test
Methods
No.
Item
1
Operating
Temperature Range
Specifications
Test Method
Y55 to W125D
2
Appearance
No defects or abnormalities
Visual inspection
3
Dimensions
Within the specified dimensions
Using calipers and micrometers
Y
No failure should be observed when voltage in the table is
applied between the terminations for 60T1 sec., provided the
charge/discharge current is less than 50mA.
4
Dielectric Strength
No defects or abnormalities
5
Insulation Resistance
(I.R.)
More than 2,000MΩ
6
Capacitance
Within the specified tolerance
7
Dissipation
Factor (D.F.)
0.025 max.
Nominal Capacitance
CU10,000pF
CF10,000pF
Test Voltage
AC575V (r.m.s.)
AC1500V (r.m.s.)
The insulation resistance should be measured with DC500T50V
and within 60T5 sec. of charging.
The capacitance/D.F. should be measured at a frequency of
1T0.2kHz and a voltage of AC1T0.2V (r.m.s.)
The capacitance measurement should be made at each step
specified in the Table.
8
Capacitance
Temperature
Characteristics
Cap. Change
Within T15%
(Temp. Range: Y55 to W125D)
Step
1
2
3
4
5
Temperature (D)
25T2
Min. Operating Temp.T3
25T2
Max. Operating Temp.T2
25T2
#Pretreatment
W 0
Perform a heat treatment at 150 Y10D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*
As in Fig., discharge is made 50 times at 5 sec. intervals from
the capacitor (Cd) charged at DC voltage of specified.
9
Discharge
Test
(Application:
Nominal
Capacitance
CF10,000pF)
R3
Appearance
R1
No defects or abnormalities
10kV
V
Ct
R2
Cd
Ct: Capacitor under test Cd: 0.001μF
R1: 1,000Ω R2: 100MΩ R3: Surge resistance
10
Adhesive Strength
of Termination
No removal of the terminations or other defects should occur.
Solder the capacitor to the testing jig (glass epoxy board) shown
in Fig. 1.
Then apply 10N force in the direction of the arrow. The soldering
should be done using the reflow method and should be
conducted with care so that the soldering is uniform and free of
defects such as heat shock.
10N, 10T1s
Glass Epoxy Board
Fig. 1
11
Appearance
No defects or abnormalities
Capacitance
Within the specified tolerance
D.F.
0.025 max.
Vibration
Resistance
Solder the capacitor to the test jig (glass epoxy board).
The capacitor should be subjected to a simple harmonic motion
having a total amplitude of 1.5mm, the frequency being varied
uniformly between the approximate limits of 10 and 55Hz. The
frequency range, from 10 to 55Hz and return to 10Hz, should be
traversed in approximately 1 min. This motion should be applied
for a period of 2 hrs. in each of 3 mutually perpendicular
directions (total of 6 hrs.).
Solder resist
Cu
Glass Epoxy Board
* "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Continued on the following page.
188
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this catalog
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!Note • This
!Note
C02E.pdf
10.12.20
Continued from the preceding page.
Specifications
Test Method
φ4.5
40
d
c
a
12 Deflection
100
20 50 Pressurizing
speed: 1.0mm/s
Pressurize
t : 1.6
Fig. 2
LZW
(mm)
4.5Z2.0
4.5Z3.2
5.7Z5.0
13
Solderability of
Termination
Humidity
14
Insulation
No marking defects
Capacitance
Change
Within T15%
D.F.
0.05 max.
I.R.
More than 1,000MΩ
Dielectric
Strength
In accordance with item No.4
Appearance
No marking defects
Capacitance
Change
Within T10%
0.025 max.
More than 2,000MΩ
Dielectric
Strength
In accordance with item No.4
Appearance
No marking defects
Capacitance
Change
Within T15%
D.F.
0.05 max.
I.R.
More than 2,000MΩ
Temperature
Cycle
Dielectric
Strength
Dimension (mm)
b
c
7.0
2.4
7.0
3.7
8.0
5.6
In accordance with item No.4
Flexure=1
d
Capacitance meter
45
1.0
75% of the terminations are to be soldered evenly and continuously.
Appearance
D.F.
Resistance
15 to Soldering I.R.
Heat
16
a
3.5
3.5
4.5
R230
45
(in mm)
Fig. 3
Immerse the capacitor in a solution of ethanol (JIS-K-8101) and
rosin (JIS-K-5902) (25% rosin in weight proportion).
Immerse in solder solution for 2T0.5 sec.
Immersing speed: 25T2.5mm/s
Temp. of solder: 245T5°C Lead Free Solder (Sn-3.0Ag-0.5Cu)
235T5°C H60A or H63A Eutectic Solder
The capacitor should be subjected to 40T2D, relative humidity of
90 to 98% for 8 hrs., and then removed in room condition* for 16
hrs. until 5 cycles.
Preheat the capacitor as in table.
Immerse the capacitor in solder solution at 260T5D for 10T1
sec. Let sit at room condition* for 24T2 hrs., then measure.
#Immersing speed: 25T2.5mm/s
#Pretreatment
W 0
Perform a heat treatment at 150 Y10D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*
*Preheating
Step
1
2
Temperature
100 to 120D
170 to 200D
Time
1 min.
1 min.
Fix the capacitor to the supporting jig (glass epoxy board) shown
in Fig. 4.
Perform the 5 cycles according to the 4 heat treatments listed in
the following table.
Let sit for 24T2 hrs. at room condition,* then measure.
Step
1
2
3
4
Temperature (D)
Min. Operating Temp.T3
Room Temp.
Max. Operating Temp.T2
Room Temp.
Time (min.)
30T3
2 to 3
30T3
2 to 3
#Pretreatment
0
Perform a heat treatment at 150W
Y10D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*
Solder resist
Cu
Glass Epoxy Board
Fig. 4
* "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
Continued on the following page.
189
AC250V Type
GA2 Series
b
Solder the capacitor to the testing jig (glass epoxy board) shown
in Fig. 2.
Then apply a force in the direction shown in Fig. 3. The soldering
should be done using the reflow method and should be
conducted with care so that the soldering is uniform and free of
defects such as heat shock.
Safety Standard
Certified GA3 Series
No marking defects
Product Information
Item
Z
X
W
V
T
"%&!#$^Q,U
No.
Only for Applications
AC250V(r.m.s.) Type (Which Meet Japanese
Law) Specifications
Specifications and Test Methods
GA2 Series
Methods
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
or oursmoking
productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
read rating and
storage,
operating, rating,
soldering,
mounting
and handling)
this catalog
to prevent
burning,
etc.
!Note • This
!Note
C02E.pdf
10.12.20
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
AC250V(r.m.s.)
Type (Whichand
Meet
Japanese
Law) Specifications and Test Methods
GA2
Series Specifications
Test
Methods
Continued from the preceding page.
No.
Item
Humidity
17 (Steady
State)
Specifications
Appearance
No marking defects
Capacitance
Change
Within T15%
D.F.
0.05 max.
I.R.
More than 1,000MΩ
Dielectric
Strength
In accordance with item No.4
Appearance
No marking defects
Capacitance
Change
Within T20%
D.F.
0.05 max.
I.R.
More than 1,000MΩ
18 Life
19
Humidity
Loading
Test Method
Let the capacitor sit at 40T2D and relative humidity of 90 to 95%
W24
for
500Y
0hrs.
Remove and let sit for 24T2 hrs. at room condition,* then
measure.
#Pretreatment
W 0
Perform a heat treatment at 150Y10D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*
Apply voltage and time as in Table at maximum operating
temperature T3D. Remove and let sit for 24T2 hrs. at room
condition,* then measure. The charge / discharge current is
less than 50mA.
Nominal Capacitance
Test Time
Test Voltage
W48
CU10,000pF
1,000Y 0 hrs. AC300V (r.m.s.)
W48
CF10,000pF
1,500
Y 0 hrs. AC500V (r.m.s.) *
* Except that once each hour the voltage is increased to
AC1,000V (r.m.s.) for 0.1 sec.
Dielectric
Strength
In accordance with item No.4
Appearance
No marking defects
Capacitance
Change
Within T15%
D.F.
0.05 max.
I.R.
More than 1,000MΩ
Dielectric
Strength
In accordance with item No.4
#Pretreatment
Apply test voltage for 60T5 min. at test temperature.
Remove and let sit for 24T2 hrs. at room condition.*
Apply the rated voltage at 40T2D and relative humidity of 90 to
W24
95%
for 500Y
0hrs.
Remove and let sit for 24T2 hrs. at room condition,* then
measure.
#Pretreatment
Apply test voltage for 60T5 min. at test temperature.
Remove and let sit for 24T2 hrs. at room condition.*
Product Information
* "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
190
PDF catalog
is downloaded
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the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
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areinsubject
to change
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productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
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storage,
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soldering,
mounting
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this catalog
to prevent
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!Note • This
!Note
C02E.pdf
10.12.20
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
For General Purpose
GRM/GRJ Series
Chip Monolithic Ceramic Capacitors
Safety Standard Certified GA3 Series UL, IEC60384-14 Class X1/Y2 Type GC
e
T
1. Chip monolithic ceramic capacitor (certified as
conforming to safety standards) for AC lines.
2. A new monolithic structure for small, high
capacitance capable of operating at high voltage
levels.
3. Compared to lead type capacitors, this new
capacitor is greatly downsized and low-profiled to
1/10 or less in volume, and 1/4 or less in height.
4. Type GC can be used as an X1-class and Y2-class
capacitor, line-by-pass capacitor of UL1414.
5. +125 degree C guaranteed
6. Only for reflow soldering
g
Only for Applications
e
■ Features
L
GA355D
L
5.7 ±0.4
Dimensions (mm)
W
T
e min.
5.0 ±0.4 2.0 ±0.3
0.3
g min.
4.0
AC250V Type
GA2 Series
Part Number
W
■ Standard Certification
■ Applications
Do not use these products in any Automotive
Power train or Safety equipment including Battery
chargers for Electric Vehicles and Plug-in Hybrids.
Only Murata products clearly stipulated as
"for Automotive use" can be used for automobile
applications such as Power train and Safety equipment.
Standard No.
Class
UL1414
Line By-pass
VDE
IEC 60384-14
EN 60384-14
BSI
EN 60065 (14.2)
IEC 60384-14
EN 60384-14
SEMKO
IEC 60384-14
EN 60384-14
ESTI
EN 60065
IEC 60384-14
Rated Voltage
Safety Standard
Certified GA3 Series
UL
AC250V
(r.m.s.)
X1, Y2
Electrode g
min.
(mm)
Electrode e
(mm)
2.0
4.0
0.3 min.
2.0
4.0
0.3 min.
5.0
2.0
4.0
0.3 min.
5.0
2.0
4.0
0.3 min.
Part Number
Rated Voltage
(V)
TC Code
(Standard)
Capacitance
(pF)
Length L Width W Thickness T
(mm)
(mm)
(mm)
GA355DR7GC101KY02L
AC250 (r.m.s.)
X7R (EIA)
100 ±10%
5.7
5.0
GA355DR7GC151KY02L
AC250 (r.m.s.)
X7R (EIA)
150 ±10%
5.7
5.0
GA355DR7GC221KY02L
AC250 (r.m.s.)
X7R (EIA)
220 ±10%
5.7
GA355DR7GC331KY02L
AC250 (r.m.s.)
X7R (EIA)
330 ±10%
5.7
191
Product Information
1. Ideal for use as Y capacitor or X capacitor for
various switching power supplies
2. Ideal for modem applications
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
or oursmoking
productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
read rating and
storage,
operating, rating,
soldering,
mounting
and handling)
this catalog
to prevent
burning,
etc.
!Note • This
!Note
C02E.pdf
10.12.20
Product Information
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Chip Monolithic Ceramic Capacitors
Safety Standard Certified GA3 Series IEC60384-14 Class Y2, X1/Y2 Type GF
e
g
e
■ Features
1. Available for equipment based on IEC/EN60950
and UL1950. Besides, the GA352/355 types are
available for equipment based on IEC/EN60065,
UL1492, and UL6500.
2. Type GF can be used as a Y2-class capacitor.
3. A new monolithic structure for small, high
capacitance capable of operating at high voltage
levels.
4. +125 degree C guaranteed
5. Only for reflow soldering
T
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
L
Part Number
GA342A
GA342D
GA342Q
GA352Q
GA355D
GA355Q
L
W
Dimensions (mm)
T
1.0 +0, -0.3
2.0 ±0.2
2.0 ±0.2
1.5 +0, -0.3
2.8 ±0.3
1.5 +0, -0.3
2.0 +0, -0.3
5.0 ±0.4
1.5 +0, -0.3
W
4.5 ±0.3
5.7 ±0.4
e min. g min.
2.5
0.3
4.0
■ Standard Certification
■ Applications
1. Ideal for use on line filters and couplings for
DAA modems without transformers
2. Ideal for use on line filters for information
equipment
3. Ideal for use as Y capacitor or X capacitor for
various switching power supplies (GA352/355 types
only)
UL
Status of Certification
Standard
No.
Class
UL1414
X1, Y2
UL 60950-1
Y
Size : 4.5×2.0mm
Rated
Size : 5.7×2.8mm Voltage
and over
Y
Y
Y
VDE
IEC 60384-14 X1, Y2
SEMKO EN 60384-14
Y2
AC250V
(r.m.s.)
Applications
Do not use these products in any Automotive
Power train or Safety equipment including Battery
chargers for Electric Vehicles and Plug-in Hybrids.
Only Murata products clearly stipulated as
"for Automotive use" can be used for automobile
applications such as Power train and Safety equipment.
Size
Switching power
supplies
4.5×2.0mm
Y
Communication
network devices
such as a modem
5.7×2.8mm and over
Electrode g
min.
(mm)
Electrode e
(mm)
2.0
2.5
0.3 min.
2.0
2.5
0.3 min.
2.0
2.0
2.5
0.3 min.
4.5
2.0
2.0
2.5
0.3 min.
22 ±5%
4.5
2.0
2.0
2.5
0.3 min.
SL (JIS)
27 ±5%
4.5
2.0
1.0
2.5
0.3 min.
AC250 (r.m.s.)
SL (JIS)
33 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGF390JW31L
AC250 (r.m.s.)
SL (JIS)
39 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGF470JW31L
AC250 (r.m.s.)
SL (JIS)
47 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGF560JW31L
AC250 (r.m.s.)
SL (JIS)
56 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGF680JW31L
AC250 (r.m.s.)
SL (JIS)
68 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGF820JW31L
AC250 (r.m.s.)
SL (JIS)
82 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342QR7GF101KW01L
AC250 (r.m.s.)
X7R (EIA)
100 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GF151KW01L
AC250 (r.m.s.)
X7R (EIA)
150 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342DR7GF221KW02L
AC250 (r.m.s.)
X7R (EIA)
220 ±10%
4.5
2.0
2.0
2.5
0.3 min.
GA342DR7GF331KW02L
AC250 (r.m.s.)
X7R (EIA)
330 ±10%
4.5
2.0
2.0
2.5
0.3 min.
GA342QR7GF471KW01L
AC250 (r.m.s.)
X7R (EIA)
470 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA352QR7GF471KW01L
AC250 (r.m.s.)
X7R (EIA)
470 ±10%
5.7
2.8
1.5
4.0
0.3 min.
GA342QR7GF681KW01L
AC250 (r.m.s.)
X7R (EIA)
680 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA352QR7GF681KW01L
AC250 (r.m.s.)
X7R (EIA)
680 ±10%
5.7
2.8
1.5
4.0
0.3 min.
GA342DR7GF102KW02L
AC250 (r.m.s.)
X7R (EIA)
1000 ±10%
4.5
2.0
2.0
2.5
0.3 min.
GA352QR7GF102KW01L
AC250 (r.m.s.)
X7R (EIA)
1000 ±10%
5.7
2.8
1.5
4.0
0.3 min.
Rated Voltage
(V)
TC Code
(Standard)
Capacitance
(pF)
GA342D1XGF100JY02L
AC250 (r.m.s.)
SL (JIS)
10 ±5%
4.5
2.0
GA342D1XGF120JY02L
AC250 (r.m.s.)
SL (JIS)
12 ±5%
4.5
2.0
GA342D1XGF150JY02L
AC250 (r.m.s.)
SL (JIS)
15 ±5%
4.5
GA342D1XGF180JY02L
AC250 (r.m.s.)
SL (JIS)
18 ±5%
GA342D1XGF220JY02L
AC250 (r.m.s.)
SL (JIS)
GA342A1XGF270JW31L
AC250 (r.m.s.)
GA342A1XGF330JW31L
Part Number
Length L Width W Thickness T
(mm)
(mm)
(mm)
Continued on the following page.
192
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
or oursmoking
productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
read rating and
storage,
operating, rating,
soldering,
mounting
and handling)
this catalog
to prevent
burning,
etc.
!Note • This
!Note
C02E.pdf
10.12.20
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Electrode e
(mm)
1.5
4.0
0.3 min.
1.5
4.0
0.3 min.
5.0
1.5
4.0
0.3 min.
5.7
5.0
1.5
4.0
0.3 min.
5.7
5.0
2.0
4.0
0.3 min.
Length L Width W Thickness T
(mm)
(mm)
(mm)
GA352QR7GF152KW01L
AC250 (r.m.s.)
X7R (EIA)
1500 ±10%
5.7
2.8
GA355QR7GF182KW01L
AC250 (r.m.s.)
X7R (EIA)
1800 ±10%
5.7
5.0
GA355QR7GF222KW01L
AC250 (r.m.s.)
X7R (EIA)
2200 ±10%
5.7
GA355QR7GF332KW01L
AC250 (r.m.s.)
X7R (EIA)
3300 ±10%
GA355DR7GF472KW01L
AC250 (r.m.s.)
X7R (EIA)
4700 ±10%
AC250V Type
GA2 Series
Capacitance
(pF)
Safety Standard
Certified GA3 Series
TC Code
(Standard)
Product Information
Rated Voltage
(V)
Only for Applications
Electrode g
min.
(mm)
Part Number
For General Purpose
GRM/GRJ Series
Continued from the preceding page.
193
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
or oursmoking
productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
read rating and
storage,
operating, rating,
soldering,
mounting
and handling)
this catalog
to prevent
burning,
etc.
!Note • This
!Note
C02E.pdf
10.12.20
Chip Monolithic Ceramic Capacitors
Safety Standard Certified GA3 Series IEC60384-14 Class Y3 Type GD
e
g
e
■ Features
T
1. Available for equipment based on IEC/EN60950
and UL1950.
2. Type GD can be used as a Y3-class capacitor.
3. A new monolithic structure for small, high
capacitance capable of operating at high voltage
levels.
4. +125 degree C guaranteed
5. Only for reflow soldering
L
Part Number
GA342A
GA342D
GA342Q
GA343D
GA343Q
■ Applications
1. Ideal for use on line filters and couplings for
DAA modems without transformers
2. Ideal for use on line filters for information
equipment
W
Dimensions (mm)
T
1.0 +0, -0.3
2.0 ±0.2
2.0 ±0.2
1.5 +0, -0.3
2.0 +0, -0.3
3.2 ±0.3
1.5 +0, -0.3
L
W
4.5 ±0.3
4.5 ±0.4
e min. g min.
0.3
2.5
■ Standard Certification
Standard No.
Do not use these products in any Automotive
Power train or Safety equipment including Battery
chargers for Electric Vehicles and Plug-in Hybrids.
Only Murata products clearly stipulated as
"for Automotive use" can be used for automobile
applications such as Power train and Safety equipment.
Class
Rated Voltage
Y3
AC250V(r.m.s.)
UL 60950-1
UL
Product Information
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
IEC 60384-14
EN 60384-14
SEMKO
Applications
Size
Switching power
supplies
4.5×3.2mm and under
Y
Communication
network devices
such as a modem
Electrode g
min.
(mm)
Electrode e
(mm)
2.0
2.5
0.3 min.
2.0
2.5
0.3 min.
2.0
2.0
2.5
0.3 min.
4.5
2.0
2.0
2.5
0.3 min.
22 ±5%
4.5
2.0
2.0
2.5
0.3 min.
SL (JIS)
27 ±5%
4.5
2.0
1.0
2.5
0.3 min.
AC250 (r.m.s.)
SL (JIS)
33 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGD390JW31L
AC250 (r.m.s.)
SL (JIS)
39 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGD470JW31L
AC250 (r.m.s.)
SL (JIS)
47 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGD560JW31L
AC250 (r.m.s.)
SL (JIS)
56 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGD680JW31L
AC250 (r.m.s.)
SL (JIS)
68 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342A1XGD820JW31L
AC250 (r.m.s.)
SL (JIS)
82 ±5%
4.5
2.0
1.0
2.5
0.3 min.
GA342QR7GD101KW01L
AC250 (r.m.s.)
X7R (EIA)
100 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD151KW01L
AC250 (r.m.s.)
X7R (EIA)
150 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD221KW01L
AC250 (r.m.s.)
X7R (EIA)
220 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD331KW01L
AC250 (r.m.s.)
X7R (EIA)
330 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD471KW01L
AC250 (r.m.s.)
X7R (EIA)
470 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD681KW01L
AC250 (r.m.s.)
X7R (EIA)
680 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD102KW01L
AC250 (r.m.s.)
X7R (EIA)
1000 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA342QR7GD152KW01L
AC250 (r.m.s.)
X7R (EIA)
1500 ±10%
4.5
2.0
1.5
2.5
0.3 min.
GA343QR7GD182KW01L
AC250 (r.m.s.)
X7R (EIA)
1800 ±10%
4.5
3.2
1.5
2.5
0.3 min.
GA343QR7GD222KW01L
AC250 (r.m.s.)
X7R (EIA)
2200 ±10%
4.5
3.2
1.5
2.5
0.3 min.
GA343DR7GD472KW01L
AC250 (r.m.s.)
X7R (EIA)
4700 ±10%
4.5
3.2
2.0
2.5
0.3 min.
Part Number
Rated Voltage
(V)
TC Code
(Standard)
Capacitance
(pF)
GA342D1XGD100JY02L
AC250 (r.m.s.)
SL (JIS)
10 ±5%
4.5
2.0
GA342D1XGD120JY02L
AC250 (r.m.s.)
SL (JIS)
12 ±5%
4.5
2.0
GA342D1XGD150JY02L
AC250 (r.m.s.)
SL (JIS)
15 ±5%
4.5
GA342D1XGD180JY02L
AC250 (r.m.s.)
SL (JIS)
18 ±5%
GA342D1XGD220JY02L
AC250 (r.m.s.)
SL (JIS)
GA342A1XGD270JW31L
AC250 (r.m.s.)
GA342A1XGD330JW31L
194
Length L Width W Thickness T
(mm)
(mm)
(mm)
PDF catalog
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Therefore,
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• Please
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this catalog
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!Note • This
!Note
C02E.pdf
10.12.20
sales representatives
or product
engineers
before ordering.
• This catalog
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Safety Standard Certified GA3 Series IEC60384-14 Class X2 Type GB
g
e
T
1. Type GB can be used as an X2-class capacitor.
2. Chip monolithic ceramic capacitor (certified as
conforming to safety standards) for AC lines.
3. A new monolithic structure for small, high
capacitance capable of operating at high voltage
levels.
4. Compared to lead type capacitors, this new
capacitor is greatly downsized and low-profiled to
1/10 or less in volume, and 1/4 or less in height.
5. +125 degree C guaranteed
6. Only for reflow soldering
Part Number
GA355Q
GA355D
GA355E
GA355X
L
5.7 ±0.4
W
g min.
3.0
AC250V Type
GA2 Series
L
Dimensions (mm)
W
T
e min.
1.5 +0,-0.3
2.0 +0,-0.3
5.0 ±0.4
0.3
2.5 +0,-0.3
2.9 +0,-0.4
■ Standard Certification
■ Applications
Standard No.
Class
Rated Voltage
IEC 60384-14
EN 60384-14
X2
AC250V
(r.m.s.)
Safety Standard
Certified GA3 Series
Ideal for use as X capacitor for various switching
power supplies
VDE
SEMKO
Do not use these products in any Automotive
Power train or Safety equipment including Battery
chargers for Electric Vehicles and Plug-in Hybrids.
Only Murata products clearly stipulated as
"for Automotive use" can be used for automobile
applications such as Power train and Safety equipment.
ESTI
Electrode g
min.
(mm)
Electrode e
(mm)
1.5
3.0
0.3 min.
1.5
3.0
0.3 min.
5.0
2.0
3.0
0.3 min.
5.7
5.0
2.5
3.0
0.3 min.
47000 ±10%
5.7
5.0
2.5
3.0
0.3 min.
56000 ±10%
5.7
5.0
2.9
3.0
0.3 min.
Part Number
Rated Voltage
(V)
TC Code
(Standard)
Capacitance
(pF)
Length L Width W Thickness T
(mm)
(mm)
(mm)
GA355QR7GB103KW01L
AC250 (r.m.s.)
X7R (EIA)
10000 ±10%
5.7
5.0
GA355QR7GB153KW01L
AC250 (r.m.s.)
X7R (EIA)
15000 ±10%
5.7
5.0
GA355DR7GB223KW01L
AC250 (r.m.s.)
X7R (EIA)
22000 ±10%
5.7
GA355ER7GB333KW01L
AC250 (r.m.s.)
X7R (EIA)
33000 ±10%
GA355ER7GB473KW01L
AC250 (r.m.s.)
X7R (EIA)
GA355XR7GB563KW06L
AC250 (r.m.s.)
X7R (EIA)
195
Product Information
e
■ Features
Only for Applications
For General Purpose
GRM/GRJ Series
Chip Monolithic Ceramic Capacitors
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
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productsand/or
in it may
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without advance notice. Please check with our
• Please
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this catalog
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!Note • This
!Note
C02E.pdf
10.12.20
Safety
Standard
Certified Type
GA3
Series
Specifications
and GC/GD/GF/GB
Test Methods Specifications and Test Methods
No.
Item
1
Operating
Temperature Range
Specifications
Test Method
Y55 to W125D
2
Appearance
No defects or abnormalities
Visual inspection
3
Dimensions
Within the specified dimensions
Using calipers and micrometers
Y
No failure should be observed when voltage in the table is
applied between the terminations for 60T1 sec., provided the
charge/discharge current is less than 50mA.
4
Dielectric Strength
No defects or abnormalities
Test Voltage
DC1075V
AC1500V (r.m.s.)
AC2000V (r.m.s.)
No self healing breakdowns or flash-overs have taken place in
the capacitor.
10 impulses of alternating polarity are subjected.
(5 impulses for each polarity)
The interval between impulses is 60 sec.
Applied Pulse: 1.2/50μs
Applied Voltage: 2.5kVo-p
6
Insulation Resistance
(I.R.)
More than 6,000MΩ
The insulation resistance should be measured with DC500T50V
and within 60T5 sec. of charging.
7
Capacitance
Within the specified tolerance
8
Dissipation
Factor (D.F.)
Q
9
AC250V Type
GA2 Series
5
Pulse Voltage
(Application: Type
GD/GF)
Safety Standard
Certified GA3 Series
Type GB
Type GC/GD
Type GF
Product Information
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Char.
X7R
SL
Specification
D.F.V0.025
QU400W20C*2 (CF30pF)
QU1000
(CU30pF)
The capacitance/Q/D.F. should be measured at a frequency of
1T0.2kHz (SL char.: 1T0.2MHz) and a voltage of
AC1T0.2V (r.m.s.)
The capacitance measurement should be made at each step
specified in the Table.
Capacitance
Temperature
Characteristics
Char.
Capacitance Change
X7R
Within T15%
Temperature characteristic guarantee is Y55 to W125D
Char.
Temperature Coefficient
SL
W350 to Y1000ppm/D
Temperature characteristic guarantee is W20 to W85D
Appearance
No defects or abnormalities
I.R.
More than 1,000MΩ
Step
1
2
3
4
5
Temperature (D)
25T2 (20T2 for SL char.)
Min. Operating Temp.T3
25T2 (20T2 for SL char.)
Max. Operating Temp.T2
25T2 (20T2 for SL char.)
SL char. :
The capacitance should be measured at even 85D between step
3 and step 4.
#Pretreatment for X7R char.
W 0
Perform a heat treatment at 150Y10 D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*1
As in Fig., discharge is made 50 times at 5 sec. intervals from
the capacitor (Cd) charged at DC voltage of specified.
R3
Discharge
Test
10
(Application:
Type GC)
Dielectric
Strength
10kV
In accordance with item No.4
R1
V
Ct
R2
Cd
Ct: Capacitor under test Cd: 0.001μF
R1: 1,000Ω R2: 100MΩ R3: Surge resistance
11
Adhesive Strength
of Termination
No removal of the terminations or other defect should occur.
Solder the capacitor to the testing jig (glass epoxy board) shown
in Fig. 1.
Then apply 10N force in the direction of the arrow. The soldering
should be done using the reflow method and should be
conducted with care so that the soldering is uniform and free of
defects such as heat shock.
10N, 10T1s
Glass Epoxy Board
Fig. 1
*1 "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
*2 "C" expresses nominal capacitance value (pF).
Continued on the following page.
196
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
or oursmoking
productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
read rating and
storage,
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mounting
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this catalog
to prevent
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!Note • This
!Note
C02E.pdf
10.12.20
Continued from the preceding page.
No.
12
Item
Vibration
Resistance
Specifications
Appearance
No defects or abnormalities
Capacitance
Within the specified tolerance
D.F.
Q
Char.
X7R
Test Method
Solder the capacitor to the test jig (glass epoxy board).
The capacitor should be subjected to a simple harmonic motion
having a total amplitude of 1.5mm, the frequency being varied
uniformly between the approximate limits of 10 and 55Hz. The
frequency range, from 10 to 55Hz and return to 10Hz, should be
traversed in approximately 1 min. This motion should be applied
for a period of 2 hrs. in each of 3 mutually perpendicular
directions (total of 6 hrs.).
Specification
D.F.V0.025
QU400W20C*2 (CF30pF)
QU1000
(CU30pF)
SL
Solder resist
Cu
Only for Applications
Safety Standard Certified Type GC/GD/GF/GB
Specifications
andand
TestTest
Methods
GA3 Series
Specifications
Methods
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
φ4.5
40
d
c
a
100
13 Deflection
20 50 Pressurizing
speed: 1.0mm/s
Pressurize
t : 1.6
Fig. 2
LZW
(mm)
4.5Z2.0
4.5Z3.2
5.7Z2.8
5.7Z5.0
14
Solderability of
Termination
Appearance
Capacitance
Change
Resistance
15 to Soldering
I.R.
Heat
Dielectric
Strength
a
3.5
3.5
4.5
4.5
Dimension (mm)
b
c
7.0
2.4
7.0
3.7
8.0
3.2
8.0
5.6
R230
Capacitance meter
Char.
X7R
SL
Capacitance Change
Within T10%
Within T2.5% or T0.25pF
(Whichever is larger)
More than 1,000MΩ
45
1.0
75% of the terminations are to be soldered evenly and continuously.
No marking defects
Flexure=1
d
45
(in mm)
Fig. 3
Immerse the capacitor in a solution of ethanol (JIS-K-8101) and
rosin (JIS-K-5902) (25% rosin in weight proportion).
Immerse in solder solution for 2T0.5 sec.
Immersing speed: 25T2.5mm/s
Temp. of solder: 245T5°C Lead Free Solder (Sn-3.0Ag-0.5Cu)
235T5°C H60A or H63A Eutectic Solder
Preheat the capacitor as in table. Immerse the capacitor in
solder solution at 260T5D for 10T1 sec. Let sit at room
condition*1 for 24T2 hrs., then measure.
#Immersing speed: 25T2.5mm/s
#Pretreatment for X7R char.
W 0
Perform a heat treatment at 150Y10 D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*1
*Preheating
In accordance with item No.4
Step
1
2
Temperature
100 to 120D
170 to 200D
Time
1 min.
1 min.
*1 "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
*2 "C" expresses nominal capacitance value (pF).
Continued on the following page.
197
Safety Standard
Certified GA3 Series
b
AC250V Type
GA2 Series
Solder the capacitor to the testing jig (glass epoxy board) shown
in Fig. 2.
Then apply a force in the direction shown in Fig. 3. The soldering
should be done using the reflow method and should be
conducted with care so that the soldering is uniform and free of
defects such as heat shock.
No marking defects
Product Information
$%& !VWX"_#
Z`^U,QR
Glass Epoxy Board
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
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productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
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soldering,
mounting
and handling)
this catalog
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!Note
C02E.pdf
10.12.20
Safety
Standard
Certified Type
GA3
Series
Specifications
and GC/GD/GF/GB
Test Methods Specifications and Test Methods
Continued from the preceding page.
No.
Item
Appearance
Capacitance
Change
D.F.
Q
16
Temperature
Cycle
AC250V Type
GA2 Series
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Char.
X7R
SL
Char.
X7R
SL
Capacitance Change
Within T15%
Within T2.5% or T0.25pF
(Whichever is larger)
Specification
D.F.V0.05
QU400W20C*2 (CF30pF)
QU1000
(CU30pF)
I.R.
More than 3,000MΩ
Dielectric
Strength
In accordance with item No.4
Test Method
Fix the capacitor to the supporting jig (glass epoxy board) shown
in Fig. 4.
Perform the 5 cycles according to the 4 heat treatments listed in
the following table.
Let sit for 24T2 hrs. at room condition,*1 then measure.
Step
1
2
3
4
Temperature (D)
Min. Operating Temp.T3
Room Temp.
Max. Operating Temp.T2
Room Temp.
Time (min.)
30T3
2 to 3
30T3
2 to 3
#Pretreatment for X7R char.
0
Perform a heat treatment at 150W
Y10 D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*1
Solder resist
Cu
Glass Epoxy Board
Fig. 4
Appearance
Capacitance
Change
Humidity
17 (Steady
State)
Product Information
Safety Standard
Certified GA3 Series
Specifications
No marking defects
D.F.
Q
Char.
X7R
SL
Char.
X7R
SL
Capacitance Change
Within T15%
Within T5.0% or T0.5pF
(Whichever is larger)
Specification
D.F.V0.05
QU275W5/2C*2 (CF30pF)
QU350
(CU30pF)
I.R.
More than 3,000MΩ
Dielectric
Strength
In accordance with item No.4
Appearance
No marking defects
Capacitance
Change
D.F.
Q
18 Life
No marking defects
I.R.
Char.
X7R
SL
Char.
X7R
SL
Capacitance Change
Within T20%
Within T3.0% or T0.3pF
(Whichever is larger)
Specification
D.F.V0.05
QU275W5/2C*2 (CF30pF)
QU350
(CU30pF)
More than 3,000MΩ
Before this test, the test shown in the following is performed.
·Item 11 Adhesive Strength of Termination (applied force is 5N)
·Item 13 Deflection
Let the capacitor sit at 40T2D and relative humidity of 90 to 95%
W24
for 500Y
0 hrs.
Remove and let sit for 24T2 hrs. at room condition,*1 then
measure.
#Pretreatment for X7R char.
0
Perform a heat treatment at 150W
Y10D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*1
Before this test, the test shown in the following is performed.
·Item 11 Adhesive Strength of Termination (apply force is 5N)
·Item 13 Deflection
Impulse Voltage
Each individual capacitor should
be subjected to a 2.5kV (Type
GC/GF: 5kV) Impulse (the
voltage value means zero to
peak) for three times. Then the
capacitors are applied to life test.
GB
In accordance with item No.4
100
90
50
(%)
30
0
t
T
T1
T2
Apply
voltage as in Table for 1,000 hrs. at 125W2
Y0D, relative
humidity 50% max.
Type
Dielectric
Strength
Front time (T1)=1.2μs=1.67T
Time to half-value (T2)=50μs
GC
GF
GD
Applied Voltage
AC312.5V (r.m.s.), except that once each hour the
voltage is increased to AC1,000V (r.m.s.) for 0.1 sec.
AC425V (r.m.s.), except that once each hour the
voltage is increased to AC1,000V (r.m.s.) for 0.1 sec.
Let sit for 24T2 hrs. at room condition,*1 then measure.
#Pretreatment for X7R char.
W 0
Perform a heat treatment at 150Y10
D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*1
*1 "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
*2 "C" expresses nominal capacitance value (pF).
Continued on the following page.
198
PDF catalog
is downloaded
from!CAUTION
the website (for
of Murata
Manufacturing
co., ltd.
Therefore,
it’s specifications
areinsubject
to change
or oursmoking
productsand/or
in it may
be discontinued
without advance notice. Please check with our
• Please
read rating and
storage,
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soldering,
mounting
and handling)
this catalog
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burning,
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!Note • This
!Note
C02E.pdf
10.12.20
Appearance
Capacitance
Change
19
Humidity
Loading
D.F.
Q
Specifications
Test Method
No marking defects
Char.
X7R
SL
Char.
X7R
SL
Capacitance Change
Within T15%
Within T5.0% or T0.5pF
(Whichever is larger)
Specification
D.F.V0.05
QU275W5/2C*2 (CF30pF)
QU350
(CU30pF)
I.R.
More than 3,000MΩ
Dielectric
Strength
In accordance with item No.4
Before this test, the test shown in the following is performed.
·Item 11 Adhesive Strength of Termination (apply force is 5N)
·Item 13 Deflection
Apply the rated voltage at 40T2D and relative humidity of 90 to
W24
95%
for 500Y
0 hrs. Remove and let sit for 24T2 hrs. at room
condition,*1 then measure.
#Pretreatment for X7R char.
0
Perform a heat treatment at 150W
Y10 D for 60T5 min. and then
let sit for 24T2 hrs. at room condition.*1
The capacitor should be individually wrapped in at least one but
not more than two complete layers of cheesecloth. The
capacitor should be subjected to 20 discharges. The interval
between successive discharges should be 5 sec. The UAC
should be maintained for 2 min. after the last discharge.
F
S1
Tr
S2
C1
UAC
L1
R
L2
C2
C3
L3
Cx
Ct
Ut
L4
Oscilloscope
20
Active
Flammability
The cheesecloth should not be on fire.
C1,2
L1 to 4
Ct
Cx
F
: 1μFT10%
C3
: 0.033μFT5% 10kV
: 1.5mHT20% 16A Rod core choke
: 3μFT5% 10kV
R
: 100ΩT2%
: Capacitor under test
UAC : URT5%
: Fuse, Rated 16A
UR
: Rated Voltage
Ut
: Voltage applied to Ct
Ux
Type
GD, GB
GC, GF
Ui
Ui
2.5kV
5kV
time
The burning time should not exceed 30 sec.
The tissue paper should not ignite.
Test Specimen
45°
200T5mm
Passive
Flammability
About 8mm
21
The capacitor under test should be held in the flame in the
position which best promotes burning. Each specimen should
be exposed to the flame only once. Time of exposure to flame:
30 sec.
Length of flame : 12T1mm
Gas burner
: Length 35mm min.
Inside Dia. 0.5T0.1mm
Outside Dia. 0.9mm max.
Gas
: Butane gas Purity 95% min.
Tissue
About 10mm Thick Board
*1 "Room condition" Temperature: 15 to 35D, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
*2 "C" expresses nominal capacitance value (pF).
199
Safety Standard
Certified GA3 Series
Item
Product Information
No.
Only for Applications
Continued from the preceding page.
AC250V Type
GA2 Series
Safety Standard Certified Type GC/GD/GF/GB
Specifications
andand
TestTest
Methods
GA3 Series
Specifications
Methods
For General Purpose
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sales representatives
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• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
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this catalog
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!Note • This
!Note
C02E.pdf
10.12.20
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
GRM/GRJ/GR4/GR7/GA2/GA3 Series Reference Data (Typical Example)
■ Capacitance - Temperature Characteristics
C0G/U2J/SL Characteristics
X7R Characteristics
20
30
15
20
U2J
X7R Char. Spec.(upper)
5
C0G
SL
0
U2J
C0G
−5
Cap. Change (%)
Cap. Change (%)
Only for Applications
10
10
0
-10
−10
SL
−20
−60
X7R Char. Spec.(lower)
-20
−15
−40 −20
0
20
40
60
80
-30
-60
100 120 140
-40
-20
0
AC250V Type
GA2 Series
20
40
60
80
100 120 140
Temperature (°C)
Temperature (°C)
GR4 Series
20
15
Safety Standard
Certified GA3 Series
Cap. Change (%)
10
5
0
-5
–10
–15
–20
–60
–40 –20
0
20
40
60
80
100 120 140
■ Impedance - Frequency Characteristics
GRM Series (C0G Char. 250V)
GRM Series (C0G Char. 630V)
100k
10k
10k
1k
22pF
10pF
1k
47pF
100pF
Z (Ω)
Z (Ω)
100
47pF
100
10
10
1
10pF
470pF
100pF
1000pF
1
100m
1M
10M
100M
1G
10G
100m
1M
10M
Frequency (Hz)
100M
1G
10G
Frequency (Hz)
GRM Series (C0G Char. 1kV)
GRM Series (X7R Char. 250V)
100k
1k
10k
100
10pF
1000pF
1k
22pF
100
10
47pF
Z (Ω)
Z (Ω)
Product Information
Reference Data
Temperature (°C)
100pF
100000pF
10000pF
1
10
100m
1
100m
1M
10M
100M
Frequency (Hz)
1G
10G
10m
1M
10M
100M
1G
Frequency (Hz)
Continued on the following page.
200
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!Note • This
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C02E.pdf
10.12.20
GRM/GRJ/GR4/GR7/GA2/GA3 Series Reference Data (Typical Example)
Continued from the preceding page.
■ Impedance - Frequency Characteristics
GRM Series (X7R Char. 630V)
GRJ Series (X7R Char. 250V)
100
1k
(1)
For General Purpose
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sales representatives
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10
(3)
1000pF
(1) GRJ21AR72E102KWJ1D
(2) GRJ21BR72E103KWJ3L
(3) GRJ31BR72E223KWJ1L
(4) GRJ31CR72E473KWJ3L
(5) GRJ31CR72E104KWJ3L
(6) GRJ55DR72E105KWJ1L
(4)
Z (Ω)
Z (Ω)
10
10000pF
100000pF
(5)
1
1
(6)
0.1
100m
10M
100M
Frequency (Hz)
1G
0.01
1M
10M
100M
1G
Frequency (Hz)
GRJ Series (X7R Char. 630V)
AC250V Type
GA2 Series
10m
1M
Only for Applications
(2)
100
GR4 Series
100
1k
(1)
(2)
100
10
1
(6)
(7)
(8)
100pF
1000pF
Safety Standard
Certified GA3 Series
(1) GRJ31BR72J102KWJ1L
(2) GRJ31BR72J222KWJ1L
(3) GRJ31BR72J472KWJ1L
(4) GRJ31BR72J103KWJ1L
(5) GRJ32QR72J223KWJ1L
(6) GRJ32DR72J473KWJ1L
(7) GRJ43DR72J104KWJ1L
(8) GRJ55DR72J224KWJ1L
10
Z (Ω)
Z (Ω)
(3)
(4)
(5)
4700pF
1
0.1
100m
10M
100M
10m
1M
1G
10M
Frequency (Hz)
100M
1G
Frequency (Hz)
GA2 Series
Product Information
Reference Data
0.01
1M
GA3 Series (Type GF)
1k
1K
100
100
1000pF
1000pF
10
Z (Ω)
Z (Ω)
10
10000pF
100000pF
2200pF
1
1
100m
100m
10m
1M
10m
1M
10M
100M
Frequency (Hz)
10M
1G
100M
1G
Frequency (Hz)
GA3 Series (Type GD)
GA3 Series (Type GB)
100
1K
150pF
100
10
1000pF
10000pF
Z (Ω)
Z (Ω)
10
2200pF
1
1
0.1
56000pF
100m
33000pF
10m
1M
10M
100M
Frequency (Hz)
1G
0.01
1M
10M
100M
1G
Frequency (Hz)
Continued on the following page.
201
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!Note • This
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C02E.pdf
10.12.20
GRM/GRJ/GR4/GR7/GA2/GA3 Series Reference Data (Typical Example)
Continued from the preceding page.
■ Capacitance - AC Voltage Characteristics
GA3 Series (Type GF/GD, X7R Char.)
GA3 Series (Type GB)
at Room Condition (25°C)
at Room Condition (25°C)
60
60
40
40
20
20
Cap. Change (%)
Cap. Change (%)
Only for Applications
For General Purpose
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sales representatives
or product
engineers
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• This catalog
has only
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0
-20
56000pF
0
100
200
300
400
500
■ Capacitance - DC Bias Characteristics
GR7 Series
20
0
(1) GR721AW0BB103KW01D
GR721AW0BB153KW01D
GR721BW0BB223KW03L
GR731AW0BB223KW01D
GR721BW0BB273KW03L
GR731AW0BB273KW01D
GR731AW0BB333KW01D
Cap. Change (%)
-20
(2)
-40
(1)
-60
(2) GR731AW0BB103KW01D
GR731AW0BB153KW01D
GR731BW0BB223KW01L
GR731BW0BB333KW01L
GR731CW0BB473KW03L
-80
Product Information
Reference Data
-100
0
50
100
150
200
DC Bias (V)
202
250
300
-60
0
200
400
600
AC Voltage [V(r.m.s.)]
AC Voltage [V(r.m.s.)]
AC250V Type
GA2 Series
33000pF
-20
-40
-40
-60
Safety Standard
Certified GA3 Series
10000pF
0
350
800
1000
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!Note • This
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C02E.pdf
10.12.20
Package
Taping is the standard packaging method.
c Minimum Quantity Guide
0.8
4,000
-
1.0
4,000
-
1.25
-
3,000
1.0
4,000
-
1.25
-
3,000
1.6
-
2,000
1.0
4,000
-
1.25
-
3,000
1.5
-
2,000
2.0
-
1,000
1.0
-
3,000
1.5
-
2,000
1.5
-
1,000
2.0
-
1,000
2.5
-
500
GRJ31/GRM31/GR731
3.2
1.6
3.2
4.5
4.5
2.5
2.0
3.2
GRJ55/GRM55/GR455
5.7
5.0
2.0
-
1,000
GA242
4.5
2.0
1.5
-
2,000
1.5
-
1,000
2.0
-
1,000
2.0
-
1,000
1.0
-
3,000
1.5
-
2,000
2.0
-
2,000
1.5
-
1,000
2.0
-
1,000
1.5
-
1,000
1.5
-
1,000
2.0
-
1,000
2.5
-
500
2.7
-
500
2.9
-
500
GA243
4.5
3.2
GA255
5.7
5.0
GA342
4.5
2.0
GA343
4.5
3.2
GA352
5.7
2.8
GA355
5.7
5.0
Only for Applications
0.8
AC250V Type
GA2 Series
Embossed Tape
1.6
Safety Standard
Certified GA3 Series
Paper Tape
1.25
GRJ43/GRM43/GR443
Safety Std.
Certification
T
2.0
GRM42/GR442
AC250V
W
GRJ21/GRM21/GR721
GRJ32/GRM32
ø180mm Reel
L
Product Information
Package
GRM18
Medium
Voltage
Quantity (pcs.)
Dimensions (mm)
Part Number
c Tape Carrier Packaging
(1) Appearance of Taping
q Embossed Tape
w Paper Tape
Cover Tape: 0.06mm in thickness
Top Tape: 0.05mm in thickness
Sprocket Hole: As specified in (2)
Sprocket Hole: As specified in (2)
Cavity for Chip: As specified in (2)
Cavity for Chip: As specified in (2)
Bottom Tape: 0.05mm in thickness
Base Tape: As specified in (2)
Packed Chips Chip
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Base Tape: As specified in (2)
Packed Chips Chip
Continued on the following page.
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C02E.pdf
10.12.20
Package
Continued from the preceding page.
(2) Dimensions of Tape
q Embossed Tape
W0.1
4.0T0.05
B
AC250V Type
GA2 Series
Safety Standard
Certified GA3 Series
GRJ32/GRM32
(TU1.25mm)
Direction of Feed
B*
1.45
0.3T0.1
1.75T0.1
A
2.5 max.
A*
ø1.5Y0
4.0T0.1
Direction of Feed
GRJ31/GRM31/GR731
(TU1.25mm)
2.0T0.05
1.75T0.1
A
Part Number
8.0T0.1*1
B
4.0T0.1
0.25T0.1
3.5T0.05
2.0T0.05
8.0T0.3
W0.1
ø1.5Y0
GRJ21/GRM21/GR721
(TU1.25mm)
2.25
2.0
3.6
2.9
3.6
3.7 max.
A*
B*
GRM42/GR442/GA242/GA342
Part Number
2.5
5.1
GRJ43/GRM43/GR443/GA243/GA343
3.6
4.9
GA352
3.2
6.1
GRJ55/GRM55/GR455/GA255/GA355
5.4
6.1
*1 4.0±0.1mm in case of GRM42/GR442/GA242/GA342
*Nominal Value
*Nominal Value
(in mm)
w Paper Tape
(3) Dimensions of Reel
8mm width, 4mm pitch Tape
4.0T0.1
2.0T0.05
1.1 max.
1.75T0.1
A
13.0T1.0 (Tape width 8mm)
17.0T1.0 (Tape width 12mm)
8.0T0.3
W0.1
ø1.5Y0
3.5T0.05
4.0T0.1
B
2.0T0.5
Direction of Feed
180 +0
-1.5
ø13T0.2
+1
60 -0
Product Information
Package
12mm width, 8mm/4mm pitch Tape
5.5T0.05
Only for Applications
8mm width, 4mm pitch Tape
12.0T0.3
For General Purpose
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ø21T0.8
Part Number
GRM18
A*
B*
1.05
1.85
+1.0
9.0 -0 (Tape width 8mm)
GRJ21/GRM21/GR721
(T=1.0mm)
1.45
2.25
GRM31/GR731
(T=1.0mm)
2.0
3.6
GRM32
(T=1.0mm)
2.9
3.6
*Nominal Value
(in mm)
+1.0
13.0 -0 (Tape width 12mm)
(in mm)
Continued on the following page.
204
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!Note • This
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C02E.pdf
10.12.20
Continued from the preceding page.
Vacant section
Chip mounting unit Vacant section
160 min.
190 min.
210 min.
(Top Tape or Cover Tape alone)
Direction of feed
AC250V Type
GA2 Series
(in mm)
Top Tape or Cover Tape
Safety Standard
Certified GA3 Series
180°
165 to
Base Tape
Product Information
Package
(4) Taping Method
q Tapes for capacitors are wound clockwise. The
sprocket holes are to the right as the tape is pulled
toward the user.
w Part of the leader and part of the empty tape should be
attached to the end of the tape as shown at right.
e The top tape or cover tape and base tape are not
attached at the end of the tape for a minimum of 5
pitches.
r Missing capacitors number within 0.1% of the number
per reel or 1 pc, whichever is greater, and are not
continuous.
t The top tape or cover tape and bottom tape should not
protrude beyond the edges of the tape and should not
cover sprocket holes.
y Cumulative tolerance of sprocket holes, 10 pitches:
T0.3mm.
u Peeling off force: 0.1 to 0.6N in the direction shown at
right.
Only for Applications
Package
For General Purpose
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205
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• Please
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!Note • This
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C02E.pdf
10.12.20
!Caution
■ Storage and Operating Conditions
Operating and storage environment
Do not use or store capacitors in a corrosive
atmosphere, especially where chloride gas, sulfide
gas, acid, alkali, salt or the like are present. In
addition, avoid exposure to moisture. Before cleaning,
bonding or molding this product, verify that these
processes do not affect product quality by testing the
performance of a cleaned, bonded or molded product
in the intended equipment. Store the capacitors
where the temperature and relative humidity do not
exceed 5 to 40 degrees centigrade and 20 to 70%.
■ Handling
1. Vibration and impact
Do not expose a capacitor to excessive shock or
vibration during use.
2. Do not directly touch the chip capacitor, especially
the ceramic body. Residue from hands/fingers may
create a short circuit environment.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT
AND CAUSE FUMING OR PARTIAL DISPERSION
WHEN THE PRODUCT IS USED.
Product Information
!Caution
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Only for Applications
For General Purpose
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sales representatives
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• This catalog
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206
Use capacitors within 6 months of delivery.
Check the solderability after 6 months or more.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT
AND CAUSE FUMING OR PARTIAL DISPERSION
WHEN THE PRODUCT IS USED.
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C02E.pdf
10.12.20
!Caution
■ Caution (Rating)
Positional
Measurement
DC Voltage
V0-p
DC+AC Voltage
V0-p
AC250V Type
GA2 Series
AC Voltage
Vp-p
Pulse Voltage (1)
Vp-p
Pulse Voltage (2)
Safety Standard
Certified GA3 Series
Voltage
Only for Applications
1. Operating Voltage
When DC-rated capacitors are to be used in AC or ripple
current circuits, be sure to maintain the Vp-p value of the
applied voltage or the Vo-p which contains DC bias within
the rated voltage range.
When the voltage is applied to the circuit, starting or
stopping may generate irregular voltage for a transit
period because of resonance or switching. Be sure to use
a capacitor with a rated voltage range that includes these
irregular voltages.
When DC-rated capacitors are to be used in input circuits
from a commercial power source (AC filter), be sure to
use Safety Certified Capacitors because various
regulations for withstanding voltage or impulses,
established for all equipment, should be taken into
consideration.
For General Purpose
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Vp-p
Product Information
!Caution
2. Operating Temperature, Self-generated Heat, and
Load Reduction at High-frequency Voltage Condition
Keep the surface temperature of a capacitor below the
upper limit of its rated operating temperature range.
Be sure to take into account the heat generated by the
capacitor itself. When the capacitor is used in a highfrequency voltage, pulse voltage, it may self-generate
heat due to dielectric loss.
(1) In the case of X7R char.
Applied voltage should be the load such as selfgenerated heat is within 20°C on the condition of
atmosphere temperature 25°C. When measuring, use a
thermocouple of small thermal capacity -K of ø0.1mm
in conditions where the capacitor is not affected by
radiant heat from other components or surrounding
ambient fluctuations. Excessive heat may lead to
deterioration of the capacitor's characteristics and
reliability. (Never attempt to perform measurement
with the cooling fan running. Otherwise, accurate
measurement cannot be ensured.)
Continued on the following page.
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C02E.pdf
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!Caution
Continued from the preceding page.
(2) In case of C0G, U2J char.
Due to the low self-heating characteristics of lowdissipation capacitors, the allowable electric power of
these capacitors is generally much higher than that of
X7R characteristic capacitors.
When a high frequency voltage that causes 20°C selfheating to the capacitor is applied, it will exceed the
capacitor's allowable electric power.
The frequency of the applied sine wave voltage should be
less than 500kHz (less than 100kHz in the case of rated
voltage: DC3.15kV). The applied voltage should be less
than the value shown in figure below.
In the case of non-sine wave that includes a harmonic
frequency, please contact our sales representatives or
product engineers. Excessive heat may lead to
deterioration of the capacitor's characteristics and
reliability. (Never attempt to perform measurement with
the cooling fan running. Otherwise, accurate
measurement cannot be ensured.)
The capacitors less than 22pF can be applied maximum
4.0kV peak to peak at 100kHz or less only for the ballast
or the resonance usage in the LCD backlight inverter
circuit.
We are also offering free software/the capacitor selection
tool: "Murata Medium Voltage Capacitors Selection Tool
by Voltage Form," which will assist you in selecting a
suitable capacitor.
The software can be downloaded from Murata's Website.
(http://www.murata.com/designlib/mmcsv/index.html).
By inputting capacitance values and the applied voltage
waveform of the specific capacitor series, this software
will calculate the capacitor's power consumption and list
suitable capacitors (non-sine wave is also available).
The temperature of the surface
of capacitor: 125˚C or less (including self-heating)
C0G char., Rated Voltage: DC630V
Allowable voltage [Vp-p]
to 100pF
(250)
1
10
100
Frequency [kHz]
1
10
100
Frequency [kHz]
to 22pF
27 to 47pF
(3150)
1000
1
10
100
Frequency [kHz]
1000
U2J char., Rated Voltage: DC250V
(250)
10,000pF
U2J char., Rated Voltage: DC1kV
1
10
100
Frequency [kHz]
(630)
1,000pF
2,200pF
100
(500)1000
1
10
100
Frequency [kHz]
(500)1000
Allowable voltage [Vp-p]
1000
1
10
100
Frequency [kHz]
(500)1000
U2J char., Rated Voltage: DC3.15kV
10000
to 100pF
150pF
220pF
1000
100
1000
to 680pF
10000
to 470pF
10
100
Frequency [kHz]
U2J char., Rated Voltage: DC630V
U2J char., Rated Voltage: DC2kV
10000
(1000)
1000
to 4,700pF
100
to 100pF
100
1
1000
1000
Allowable voltage [Vp-p]
Allowable voltage [Vp-p]
820pF
1000pF
100
10000
100
560pF
680pF
1000
C0G char., Rated Voltage: DC3.15kV
to 470pF
(630)
1
10
100
Frequency [kHz]
(500)1000
Allowable voltage [Vp-p]
100
C0G char., Rated Voltage: DC1kV
10000
Allowable voltage [Vp-p]
Allowable voltage [Vp-p]
1000
Allowable voltage [Vp-p]
C0G char., Rated Voltage: DC250V
1000
Allowable voltage [Vp-p]
Product Information
!Caution
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Only for Applications
For General Purpose
GRM/GRJ Series
sales representatives
or product
engineers
before ordering.
• This catalog
has only
typical specifications
because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
to 33pF
47pF
100pF
(3150)
1000
1
10
100
Frequency [kHz]
1000
The sine-wave frequency VS allowable voltage
Continued on the following page.
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C02E.pdf
10.12.20
!Caution
Continued from the preceding page.
FUSE
AC IN
Only for Applications
3. Fail-safe
Failure of a capacitor may result in a short circuit. Be sure
to provide an appropriate fail-safe function such as a fuse
on your product to help eliminate possible electric shock,
fire, or fumes.
Please consider using fuses on each AC line if the
capacitors are used between the AC input lines and earth
(line bypass capacitors), to prepare for the worst case,
such as a short circuit.
Product Information
!Caution
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
4. Test Condition for AC Withstanding Voltage
(1) Test Equipment
Tests for AC withstanding voltage should be made with
equipment capable of creating a wave similar to a
50/60 Hz sine wave.
If the distorted sine wave or overload exceeding the
specified voltage value is applied, a defect may be
caused.
(2) Voltage Applied Method
The capacitor's leads or terminals should be firmly
connected to the output of the withstanding voltage test
equipment, and then the voltage should be raised from
near zero to the test voltage. If the test voltage is applied
directly to the capacitor without raising it from near zero,
it should be applied with the zero cross.* At the end of the
test time, the test voltage should be reduced to near zero,
and then the capacitor's leads or terminals should be
taken off the output of the withstanding voltage test
equipment. If the test voltage is applied directly to the
capacitor without raising it from near zero, surge voltage
may occur and cause a defect.
Voltage sine wave
*ZERO CROSS is the point where voltage sine wave
passes 0V.
- See the figure at right -
For General Purpose
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sales representatives
or product
engineers
before ordering.
• This catalog
has only
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
0V
zero cross
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT AND
CAUSE FUMING OR PARTIAL DISPERSION WHEN THE
PRODUCT IS USED.
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!Note • This
!Note
C02E.pdf
10.12.20
Only for Applications
For General Purpose
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sales representatives
or product
engineers
before ordering.
• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
!Caution
Caution (Soldering and Mounting)
1. Vibration and Impact
Do not expose a capacitor to excessive shock or vibration
during use.
2. Circuit Board Material
It is possible for the chip to crack by the expansion and
shrinkage of a metal board.
Please contact us if you want to use our ceramic
capacitors on a metal board such as Aluminum.
3. Land Layout for Cropping PC Board
Choose a mounting position that minimizes the stress imposed on the chip during flexing or bending of the board.
[Chip Mounting Close to Board Separation Point]
AC250V Type
GA2 Series
[Component Direction]
Locate chip
horizontal to the
direction in which
stress acts.
Safety Standard
Certified GA3 Series
C
Perforation
B
D
A
Chip arrangement
Worst AGCGB~D Best
Slit
Product Information
!Caution
Continued on the following page.
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C02E.pdf
10.12.20
!Caution
Continued from the preceding page.
4. Reflow Soldering
[Standard Conditions for Reflow Soldering]
,,,
,,,
,,,
Infrared Reflow
Temperature (D)
200°C
Only for Applications
Soldering
Peak Temperature
Gradual
Cooling
ΔT
170°C
150°C
130°C
Preheating
Time
,,,
,,,
,,,
AC250V Type
GA2 Series
60-120 seconds 30-60 seconds
Vapor Reflow
Temperature (D)
Soldering
Peak Temperature
Gradual
Cooling
ΔT
Safety Standard
Certified GA3 Series
When components are exposed to sudden heat, their
mechanical strength can be decreased due to the
extreme temperature changes which can cause flexing
and result in internal mechanical damage, which will
cause the parts to fail. In order to prevent mechanical
damage, preheating is required for both the components
and the PCB board. Preheating conditions are shown in
Table 1. It is required to keep the temperature differential
between the soldering and the components surface (ΔT)
as small as possible.
Solderability of Tin plating termination chips might be
deteriorated when low temperature soldering profile
where peak solder temperature is below the Tin melting
point is used. Please confirm the solderability of Tin
plating termination chips before use.
When components are immersed in solvent after
mounting, be sure to maintain the temperature difference
(ΔT) between the component and solvent within the
range shown in the Table 1.
170°C
150°C
130°C
Table 1
Preheating
Temperature Differential
G--18/21/31
ΔTV190D
G--32/42/43/52/55
ΔTV130D
60-120 seconds
Recommended Conditions
Lead Free Solder
Peak Temperature
230-250°C
230-240°C
240-260°C
Atmosphere
Air
Air
Air or N2
Pb-Sn Solder: Sn-37Pb
Lead Free Solder: Sn-3.0Ag-0.5Cu
,,,
,,,
,,,
[Allowable Soldering Temperature and Time]
Soldering Temperature (D)
Pb-Sn Solder
Infrared Reflow Vapor Reflow
Time
20 seconds max.
Product Information
!Caution
Part Number
270
260
250
240
230
0
30
60
90
Soldering Time (sec.)
In the case of repeated soldering, the accumulated
soldering time must be within the range shown above.
Optimum Solder Amount for Reflow Soldering
Overly thick application of solder paste results in
excessive solder fillet height.
This makes the chip more susceptible to mechanical and
thermal stress on the board and may cause cracked
chips.
Too little solder paste results in a lack of adhesive
strength on the outer electrode, which may result in chips
breaking loose from the PCB.
Make sure the solder has been applied smoothly to the
end surface to a height of 0.2mm min.
For General Purpose
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sales representatives
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
[Optimum Solder Amount for Reflow Soldering]
0.2mm min.
in section
Inverting the PCB
Make sure not to impose an abnormal mechanical shock on
the PCB.
Continued on the following page.
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Product Information
!Caution
!Caution
Continued from the preceding page.
5. Flow Soldering
When components are exposed to sudden heat, their
mechanical strength can be decreased due to the
extreme temperature changes which can cause flexing
and result in internal mechanical damage, which will
cause the parts to fail. Additionally, an excessively long
soldering time or high soldering temperature results in
leaching by the outer electrodes, causing poor adhesion
or a reduction in capacitance value due to loss of contact
between electrodes and end termination.
In order to prevent mechanical damage, preheating is
required for both the components and the PCB board.
Preheating conditions are shown in Table 2. It is required
to keep temperature differential between the soldering
and the components surface (ΔT) as small as possible.
When components are immersed in solvent after
mounting, be sure to maintain the temperature difference
between the component and solvent within the range
shown in Table 2.
Do not apply flow soldering to chips not listed in Table 2.
Table 2
,,,
,,,
,,,
,,,
,,,
,,,
[Standard Conditions for Flow Soldering]
Temperature (D)
Soldering
Peak Temperature
ΔT
Preheating
60-120 seconds
Temperature Differential
Time
5 seconds max.
[Allowable Soldering Temperature and Time]
270
260
250
240
230
0
Part Number
Gradual
Cooling
170°C
150°C
130°C
Soldering Temperature (D)
Safety Standard
Certified GA3 Series
AC250V Type
GA2 Series
Only for Applications
For General Purpose
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sales representatives
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• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
10
20
30
Soldering Time (sec.)
ΔTV150D
G--18/21/31
In the case of repeated soldering, the accumulated
soldering time must be within the range shown above.
Recommended Conditions
Pb-Sn Solder
Lead Free Solder
Peak Temperature
240-250°C
250-260°C
Atmosphere
Air
N2
Pb-Sn Solder: Sn-37Pb
Lead Free Solder: Sn-3.0Ag-0.5Cu
Optimum Solder Amount for Flow Soldering
The top of the solder fillet should be lower than the
thickness of components. If the solder amount is
excessively large, the risk of cracking is higher during
board bending or under any other stressful conditions.
Up to Chip Thickness
Adhesive
in section
Continued on the following page.
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C02E.pdf
10.12.20
Continued from the preceding page.
6. Correction with a Soldering Iron
components and the PCB), should be within the
conditions of table 3.
It is required to keep the temperature differential between
the soldering Iron and the component's surface (ΔT) as
small as possible.
After soldering, do not allow the component/PCB to cool
down rapidly.
The operating time for the re-working should be as short
as possible. When re-working time is too long, it may
cause solder leaching, in turn causing a reduction of the
adhesive strength of the terminations.
Part Number
AC250V Type
GA2 Series
Table 3
Temperature Preheating Temperature
of Soldering
Differential Atmosphere
Temperature
Iron tip
(ΔT)
G--18/21/31
350°C max. 150°C min.
ΔTV190D
air
G--32/42/43/
52/55
280°C max. 150°C min.
ΔTV130D
air
Optimum Solder Amount when re-working Using a
Soldering Iron
For sizes smaller than Gpp18, the top of the solder fillet
should be lower than 2/3 of the thickness of the
component or 0.5mm whichever is smaller.
For sizes larger than Gpp21, the top of the solder fillet
should be lower than 2/3 of the thickness of the
component.
If the solder amount is excessive, the risk of cracking is
higher during board bending or under any other stressful
conditions.
A Soldering iron ø3mm or smaller should be used.
It is also necessary to keep the soldering iron from
touching the components during the re-work.
Solder wire with ø0.5mm or smaller is required for
soldering.
Safety Standard
Certified GA3 Series
*Applicable for both Pb-Sn and Lead Free Solder.
Pb-Sn Solder: Sn-37Pb
Lead Free Solder: Sn-3.0Ag-0.5Cu
Solder Amount
in section
7. Washing
Excessive output of ultrasonic oscillation during cleaning
causes PCBs to resonate, resulting in cracked chips or
broken solder. Take note not to vibrate PCBs.
FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY
RESULT, WORST CASE, IN A SHORT CIRCUIT AND
FUMING WHEN THE PRODUCT IS USED.
213
Product Information
!Caution
When sudden heat is applied to the components by use
of a soldering iron, the mechanical strength of the
components will decrease because the extreme
temperature change causes deformations inside the
components.
In order to prevent mechanical damage to the
components, preheating is required for both the
components and the PCB board.
Preheating conditions, (The "Temperature of the
Soldering Iron Tip", "Preheating Temperature,"
"Temperature Differential" between iron tip and the
Only for Applications
!Caution
For General Purpose
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sales representatives
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• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
PDF catalog
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of Murata
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productsand/or
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• Please
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!Note • This
!Note
C02E.pdf
10.12.20
Only for Applications
For General Purpose
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sales representatives
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• This catalog
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• This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Notice
Notice (Soldering and Mounting)
1. Construction of Board Pattern
After installing chips, if solder is excessively applied to
the circuit board, mechanical stress will cause destruction
resistance characteristics to lower. To prevent this, be
extremely careful in determining shape and dimension
before designing the circuit board diagram.
Construction and Dimensions of Pattern (Example)
Flow Soldering
Chip Capacitor
LgW
Solder Resist
AC250V Type
GA2 Series
c
L
W
b
a
b
c
1.6g0.8
0.6-1.0
0.8-0.9
0.6-0.8
2.0g1.25
1.0-1.2
0.9-1.0
0.8-1.1
3.2g1.6
2.2-2.6
1.0-1.1
1.0-1.4
Flow soldering : 3.2g1.6 or less available.
Land
a
Reflow Soldering
Safety Standard
Certified GA3 Series
LgW
Product Information
Notice
a
b
c
1.6g0.8
0.6-0.8
0.6-0.7
0.6-0.8
2.0g1.25
1.0-1.2
0.6-0.7
0.8-1.1
3.2g1.6
2.2-2.4
0.8-0.9
1.0-1.4
3.2g2.5
2.0-2.4
1.0-1.2
1.8-2.3
4.5g2.0
2.8-3.4
1.2-1.4
1.4-1.8
4.5g3.2
2.8-3.4
1.2-1.4
2.3-3.0
5.7g2.8
4.0-4.6
1.4-1.6
2.1-2.6
5.7g5.0
4.0-4.6
1.4-1.6
3.5-4.8
(in mm)
Dimensions of Slit (Example)
Chip Capacitor
Slit
Solder Resist
d
L
e
W
Land
Preparing the slit helps flux cleaning and resin
coating on the back of the capacitor.
However, the length of the slit design should
be as short as possible to prevent mechanical
damage in the capacitor.
A longer slit design might receive more severe
mechanical stress from the PCB.
Recommended slit design is shown in the
Table.
LgW
d
e
1.6g0.8
-
-
2.0g1.25
-
-
3.2g1.6
1.0-2.0
3.2-3.7
3.2g2.5
1.0-2.0
4.1-4.6
4.5g2.0
1.0-2.8
3.6-4.1
4.5g3.2
1.0-2.8
4.8-5.3
5.7g2.8
1.0-4.0
4.4-4.9
5.7g5.0
1.0-4.0
6.6-7.1
(in mm)
Continued on the following page.
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C02E.pdf
10.12.20
Continued from the preceding page.
Land Layout to Prevent Excessive Solder
Mounting Close to a Chassis
d1
Chassis
Mounting with Leaded Components
Solder (Ground solder)
Mounting Leaded Components Later
Soldering Iron
Lead Wire of
Component to be
Connected Later.
Lead Wire Connected
to a Part Provided
with Lead Wires.
Examples
to Be Avoided
Adhesive
Base board
in section
Land Pattern
d2
Solder Resist
d1