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PDF GRM31Mxxxx Data sheet ( Hoja de datos )

Número de pieza GRM31Mxxxx
Descripción GR Series / Monolithic Ceramic Capacitors
Fabricantes Murata Electronics 
Logotipo Murata Electronics Logotipo



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Capacitors
Monolithic Ceramic Capacitors GR_R6/R7/F5/E4 (X5R/X7R/Y5V/Z5U)
High Dielectric Constant Type 6.3/16/25/50V
ege
LW
Part Number
L
Dimensions (mm)
WT
e
GRM155
1.0 ±0.05 0.5 ±0.05 0.5 ±0.05 0.15 to 0.3
GRM188* 1.6 ±0.1 0.8 ±0.1 0.8 ±0.1 0.2 to 0.5
GRM216
0.6 ±0.1
GRM219
2.0 ±0.1 1.25 ±0.1 0.85 ±0.1 0.2 to 0.7
GRM21B
1.25 ±0.1
GRM319
GRM31M
3.2 ±0.15 1.6 ±0.15
0.85 ±0.1
1.15 ±0.1
0.3 to 0.8
GRM31C
3.2 ±0.2 1.6 ±0.2 1.6 ±0.2
* Bulk Case : 1.6 ±0.07(L)g0.8 ±0.07(W)g0.8 ±0.07(T)
g min.
0.4
0.5
0.7
1.5
Part Number
GRM155R61A683KA01
GRM155R61A104KA01
GRM188R61A334KA61
GRM188R61A474KA61
GRM188R61A684KA61
GRM188R61A105KA61
GRM188R60J105KA01
GRM219R61A105KC01
GRM21BR61A225KA01
GRM219R60J155KC01
GRM21BR60J225KA01
GRM21BR60J335KA11
GRM21BR60J475KA11
GRM319R61A225KC01
GRM31XR61A335KC12
GRM31CR61A475KA01
GRM31MR60J475KC11
GRM31CR61A106KA01
GRM31CR60J106KA01
GRM31CR60J226ME20
GRM32ER61A106KC01
GRM55DR61H106KA01
GRM15XR71H221KA86
GRM155R71H221KA01
GRM15XR71H331KA86
GRM155R71H331KA01
GRM15XR71H471KA86
GRM155R71H471KA01
GRM15XR71H681KA86
GRM155R71H681KA01
GRM15XR71H102KA86
GRM155R71H102KA01
GRM15XR71H152KA86
GRM155R71H152KA01
DataSheet4GUR.Mc1o5m5R71H222KA01
TC Code
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X5R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
X7R (EIA)
Rated Voltage
(Vdc)
Capacitance*
10 68000pF±10%
10 0.1µF±10%
10 0.33 µF±10%
10 0.47µF±10%
10 0.68µF±10%
10 1µF ±10%
D6.3ataSheet4U.c1oµmF ±10%
10 1µF ±10%
10 2.2µF ±10%
6.3 1.5µF ±10%
6.3 2.2µF ±10%
6.3 3.3µF ±10%
6.3 4.7µF ±10%
10 2.2µF ±10%
10 3.3µF ±10%
10 4.7µF ±10%
6.3 4.7µF ±10%
10 10µF ±10%
6.3 10µF ±10%
6.3 22µF ±20%
10 10µF ±10%
50 10µF ±10%
50 220pF±10%
50 220pF±10%
50 330pF±10%
50 330pF±10%
50 470pF±10%
50 470pF±10%
50 680pF±10%
50 680pF±10%
50 1000pF±10%
50 1000pF±10%
50 1500pF±10%
50 1500pF±10%
50 2200pF±10%
Length L
(mm)
1.0
1.0
1.6
1.6
1.6
1.6
1.6
2.0
2.0
2.0
2.0
2.0
2.0
3.2
3.2
3.2
3.2
3.2
3.2
3.2
3.2
5.7
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Width W
(mm)
Thickness T
(mm)
0.5 0.50
0.5 0.50
0.8 0.80
0.8 0.80
0.8 0.80
0.8 0.80
0.8 0.80
1.25 0.90
1.25 1.25
1.25 0.90
1.25 1.25
1.25 1.25
1.25 1.25
1.6 0.90
1.6 1.30
1.6 1.60
1.6 1.15
1.6 1.60
1.6 1.60
1.6 1.60
2.5 2.50
5.0 2.00
0.5 0.25
0.5 0.50
0.5 0.25
0.5 0.50
0.5 0.25
0.5 0.50
0.5 0.25
0.5 0.50
0.5 0.25
0.5 0.50
0.5 0.25
0.5 0.50
0.5 0.50
Continued on the following page.
DataShee
!Note • This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specification or transact the approval sheet for product specification
before ordering. Especially, please read rating and !CAUTION (for storage and operating, rating, soldering and mounting, handling) in them to prevent smoking and/or burning, etc.
• You are able to read a detailed specification in the website (http://search.murata.co.jp/) before to require our product specification or to transact the approval sheet for product specification.
DataSheet4 U .com

1 page




GRM31Mxxxx pdf
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Capacitors
Continued from the preceding page.
Specifications
No. Item
Temperature
Compensating Type
High Dielectric Type
Test Method
No bias
Within the specified tolerance
(Table A-1)
B1, B3 : WithinT10%
(Y25D to W85D)
R1, R7 : Within±15%
(Y55D to W125D)
R6 : WithinT15%
(Y55D to W85D)
E4 : Within W22/Y56%
(W10D to W85D)
F1 : Within W30/Y80%
(Y25D to W85D)
F5 : Within W22/Y82%
(Y30D to W85D)
The capacitance change should be measured after 5min. at
each specified temp. stage.
(1)Temperature Compensating Type
The temperature coefficient is determind using the capacitance
measured in step 3 as a reference.
When cycling the temperature sequentially from step 1 through
5 (5C : W25D to W125D/C : W20D to W125D : other temp.
coeffs. : W25D to W85D/W20D to W85D) the capacitance
should be within the specified tolerance for the temperature
coefficient and capacitance change as Table A-1.
The capacitance drift is caluculated by dividing the differences
between the maximum and minimum measured values in the
step 1, 3 and 5 by the cap. value in step 3.
50% of
the Rated
Voltage
B1 : Within W10/–30%
R1 : Within W15/–40%
F1 : Within W30/–95%
Step
1
2
3
Temperature (D)
Reference TemperatureT2
Y55T3 (for C)/Y25T3 (for other TC)
Reference TemperatureT2
4 125T3 (for C)/85T3 (for other TC)
5 Reference TemperatureT2
Capacitance
9 Temperature
Characteristics
(2) High Dielectric Constant Type
The ranges of capacitance change compared with the 20D
value over the temperature ranges shown in the table should
be within the specified ranges.*
In case of applying voltage, the capacitance change should be
measured after 1 more min. with applying voltage in
equilibration of each temp. stage.
Step
Temperature (°C)
Applying Voltage (V)
1 Reference TemperetureT2
Within T0.2% or T0.05pF
Capacitance (Whichever is larger.)
Drift *Not apply to 1X/25V
*Initial measurement for high
dielecDtricactaonSsthaentetyt4peU.com
Perform a heat treatment at
150W0/–10°C for one hour
and then set for 48T4 hours
at room temperature.
Perform the initial
measurement.
–55T3 (for R1, R7, R6)
2 –25T3 (for B1, B3, F1)
–30T3 (for F5)/10T3 (for E4)
3 Reference TemperetureT2
No bias
125T3 (for R1, R7)/
4 85T3 (for B1, B3, R6
F1, F5, E4)
5 Reference TemperetureT2
6 –55T3 (for R1)/
–25T3 (for B1, F1)
50% of the rated
7 Reference TemperetureT2
voltage
et4U.com
No removal of the terminations or other defect should occur
c
8
125T3 (for R1)/
85T3 (for B1, F1)
Solder the capacitor to the test jig (glass epoxy board) shown in
Fig. 1a using an eutectic solder. Then apply 10N* force in
parallel with the test jig for 10T1 sec.
The soldering should be done either with an iron or using the
reflow method and should be conducted with care so that the
soldering is uniform and free of defects such as heat shock.
*2N (GRp03), 5N (GRp15, GRM18)
DataShee
Adhesive Strength
10
of Termination
Fig. 1a
Solder resist
Baked electrode or
copper foil
(in mm)
Type
a
b
c
GRp03
GRp15
0.3 0.9 0.3
0.4 1.5 0.5
GRM18
GRM21
1.0 3.0 1.2
1.2 4.0 1.65
GRM31
GRM32
2.2 5.0 2.0
2.2 5.0 2.9
GRM43
3.5 7.0 3.7
GRM55
4.5 8.0 5.6
Continued on the following page.
DataSheet4U.com
!Note • This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specification or transact the approval sheet for product specification
before ordering. Especially, please read rating and !CAUTION (for storage and operating, rating, soldering and mounting, handling) in them to prevent smoking and/or burning, etc.
• You are able to read a detailed specification in the website (http://search.murata.co.jp/) before to require our product specification or to transact the approval sheet for product specification.
DataSheet4 U .com

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GRM31Mxxxx arduino
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Capacitors
No. Item
Specifications
Test Method
Operating
1 Temperature
Range
B1, B3, F1 : Y25D to W85D
R6 : Y55D to W85D
F5 : Y30D to W85D
C8 : Y55D to W105D, C7 : -55D to W125D
2 Rated Voltage
See the previous pages
3 Appearance
4 Dimensions
No defects or abnormalities
Within the specified dimensions
5 Dielectric Strength No defects or abnormalities
6
Insulation
Resistance
7 Capacitance
More than 50• F
Within the specified tolerance
*Table 1
GRM155 B3/R6 1A 124 to 224
GRM185 B3/R6 1A 105
GRM188 B3/R6 1C/1A 225
GRM219 B3/R6 1A 475
GRM21B B3/R6 1C/1A 106
Reference Temperature : 25D
(B1, B3, F1 : 20D)
The rated voltage is defined as the maximum voltage which
may be applied continuously to the capacitor.
When AC voltage is superimposed on DC voltage, VP-P or VO-P,
whichever is larger, should be maintained within the rated
voltage range.
Visual inspection
Using calipers
No failure should be observed when 250% of the rated voltage
is applied between the terminations for 1 to 5 seconds,
provided the charge/discharge current is less than 50mA.
The insulation resistance should be measured with a DC voltage
not exceeding the rated voltage at Reference Temperature and
75%RH max. and within 1 minutes of charging, provided the
charge/discharge current is less than 50mA.
The capacitance should be measured at Reference
Temperature at the frequency and voltage shown in the table.
Capacitance
CV10µF (10V min.)*1
CV10µF (6.3V max.)
CG10µF
Frequency
1T0.1kHz
1T0.1kHz
120T24Hz
Voltage
1.0T0.2Vrms
0.5T0.1Vrms
0.5T0.1Vrms
*1 However the Voltage is 0.5W/Y0.1Vrms about Table 1
items on the left side.
B1, B3, R6, C7, C8 : 0.1 max.
F1, F5 : 0.2 max.
The D.F. should be measured at Reference Temperature at the
frequency and voltage shown in the table.
8
Dissipation Factor
(D.F.)
*Table 1
GRM155 B3/R6 1A 124 to 224
GRM185 B3/R6 1A 105
GRM188 B3/R6 1C/1A 225
GRM219 B3D/Ra6t1aAS4h75eet4U.com
GRM21B B3/R6 1C/1A 106
Capacitance
CV10µF (10V min.)*1
CV10µF (6.3V max.)
CG10µF
Frequency
1T0.1kHz
1T0.1kHz
120T24Hz
Voltage
1.0T0.2Vrms
0.5T0.1Vrms
0.5T0.1Vrms
*1 However the Voltage is 0.5W/Y0.1Vrms about Table 1
items on the left side.
et4U.com
No bias
B1, B3 : Within W/Y10% (Y25D to W85D)
F1 : Within W30/Y80% (Y25D to W85D)
R6 : Within W/Y15% (Y55D to W85D)
F5 : Within W22/Y82% (Y30D to W85D)
C7 : Within W/Y22% (Y55D to W125D)
C8 : Within W/Y22% (Y55D to W105D)
Capacitance
9 Temperature
Characteristics
50% of B1: Within W10/Y30%
the Rated
Voltage
F1: Within W30/Y95%
The capacitance change should be measured after 5min. at
each specified temp. stage.
The ranges of capacitance change compared with the
Reference Temperature value over the temperature ranges
shown in the table should be within the specified ranges.*
In case of applying voltage, the capacitance change should be
measured after 1 more min. with applying voltage in
equilibration of each temp. stage.
*GRM43 B1/R6 0J/1A 336/476 only : 1.0T0.2Vrms
DataShee
Step
Temperature (°C)
Applying Voltage (V)
1 Reference TemperetureT2
–55T3 (for R6, C7, C8)/
2 –25T3 (for B1, B3, F1)
–30T3 (for F5)
3 Reference TemperetureT2
No bias
85T3 (for B1, B3, F1, R6, F5)
4 125T3 (for C7)/
105T3 (for C8)/
5 20T2
6
–25T3 (for B1, F1)
50% of the rated
7 20T2
voltage
8 85T3 (for B1, F1)
#Initial measurement for high dielectric constant type
Perform a heat treatment at 150 W0/Y10°C for one hour and
then set for 48T4 hours at room temperature.
Perform the initial measurement.
Continued on the following page.
DataSheet4U.com
!Note • This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specification or transact the approval sheet for product specification
before ordering. Especially, please read rating and !CAUTION (for storage and operating, rating, soldering and mounting, handling) in them to prevent smoking and/or burning, etc.
• You are able to read a detailed specification in the website (http://search.murata.co.jp/) before to require our product specification or to transact the approval sheet for product specification.
DataSheet4 U .com

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