GRM155 ETC, GRM155 Datasheet - Page 13

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GRM155

Manufacturer Part Number
GRM155
Description
High Dielectric Constant Type 6.3/16/25/50v
Manufacturer
ETC
Datasheet

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No.
14
15
16
17 Durability
Continued from the preceding page.
!Note
Resistance
to
Soldering
Heat
Temperature
Sudden
Change
High
Temperature
High
Humidity
(Steady)
• 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
• 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.
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.
Item
Appearance
Capacitance
Change
Q/D.F.
I.R.
Dielectric
Strength
Appearance
Capacitance
Change
D.F.
I.R.
Dielectric
Strength
Appearance
Capacitance
Change
D.F.
I.R.
Appearance
Capacitance
Change
D.F.
I.R.
Capacitors
No defects or abnormalities
B1, B3, R6, C7, C8 : Within T7.5%
F1, F5 : Within T20%
B1, B3, R6, C7, C8 : 0.1 max.
F1, F5 : 0.2 max.
More than 50Ω • F
No defects
No defects or abnormalities
B1, B3, R6, C7, C8 : Within T7.5%
F1, F5 : Within T20%
B1, B3, R6, C7, C8 : 0.1 max.
F1, F5 : 0.2 max.
More than 50Ω • F
No defects
No defects or abnormalities
B1, B3, R6, C7, C8 : Within T12.5%
F1, F5 : Within T30%
B1, B3, R6, C7, C8 : 0.2 max.
F1, F5 : 0.4 max.
More than 12.5Ω • F
No defects or abnormalities
B1, B3, R6, C7, C8 : Within T12.5%
F1, F5 : Within T30%
B1, B3, R6, C7, C8 : 0.1 max.
F1, F5 : 0.4 max.
More than 25Ω • F
Specifications
*Preheating for GRM32/43/55
Preheat the capacitor at 120 to 150D for 1 minute.
Immerse the capacitor in an eutectic solder solution at
270W/Y5D for 10W/Y0.5 seconds. Set at room temperature for
24W/Y2 hours (temperature compensating tyoe) or 48W/Y4
hours (high dielectric constant type), then measure.
#Initial measurement for high dielectric constant type
Perform a heat treatment at 150W0/Y10D for one hour and
then set at room temperature for 48W/Y4 hours.
Perform the initial measurement.
Fix the capacitor to the supporting jig in the same manner and
under the same conditions as (10).
Perform the five cycles according to the four heat treatments
shown in the following table.
Set for 24 W/Y 2 hours (temperature compensating type) or
48 W/Y 4 hours (high dielectric constant type) at room
temperature, then measure.
#Initial measurement for high dielectric constant type
Perform a heat treatment at 150W0/Y10D for one hour and
then set at room temperature for 48W/Y4 hours.
Perform the initial measurement.
Apply the rated voltage at 40W/Y2D and 90 to 95% humidity for
500W/Y12 hours. The charge/discharge currentis less than
50mA.
#Initial measurement
Perform a heat treatment at 150W0/Y10D for one hour and
then let sit for 48W/Y4 hours at room temperature. Perform the
initial measurement.
#Measurement after test
Perform a heat treatment at 150W0/Y10D for one hour and
then let sit for 48W/Y4 hours at room temperature, then
measure.
Apply 150% of the rated voltage for 1000W/Y12 hours at the
maximum operating temperature W/Y3D. Let sit for 48W/Y4
hours at room temperature, then measure.
The charge/ discharge current is less than 50mA.
#Initial measurement
Perform a heat treatment at 150W0/Y10D for one hour and
then let sit for 48W/Y4 hours at room temperature. Perform the
initial measurement.
#Measurement after test
Perform a heat treatment at 150W0/Y10D for one hour and
then let sit for 48W/Y4 hours at room temperature, then
measure.
Temp. (D)
Time (min.)
Step
Step
1
2
Temp. W0/Y3
Operating
30T3
Min.
1
100D to 120D
170D to 200D
Temperature
Test Method
Temp.
Room
2 to 3
2
W
0
Temp. W3/Y0
Operating
30T3
Max.
3
1 min.
1 min.
Time
Temp.
Room
2 to 3
4

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