GA355QR7GB103KW01L Murata Electronics, GA355QR7GB103KW01L Datasheet - Page 196

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GA355QR7GB103KW01L

Manufacturer Part Number
GA355QR7GB103KW01L
Description
Manufacturer
Murata Electronics
Datasheet

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!Note
178
No.
10
11
*1 "Room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
*2 "C" expresses nominal capacitance value (pF).
1
2
3
4
5
6
8
9
GA3 Series Specifi cations and Test Methods
Operating
Temperature Range
Appearance
Dimensions
Dielectric Strength
(Application: Type
GD/GF)
Insulation Resistance
(I.R.)
Capacitance
Dissipation
Factor (D.F.)
Q
Capacitance
Temperature
Characteristics
Discharge
Test
(Application:
Adhesive Strength
of Termination
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifi cations. Therefore, please approve our product specifi cations or transact the approval sheet for product specifi cations before ordering.
Type GC)
Item
Appearance
I.R.
Dielectric
Strength
–55 to +125°C
No defects or abnormalities
Within the specified dimensions
No defects or abnormalities
No self healing breakdowns or flash-overs have taken place in
the capacitor.
More than 6,000MΩ
Within the specified tolerance
Temperature characteristic guarantee is –55 to +125°C
Temperature characteristic guarantee is +20 to +85°C
No defects or abnormalities
More than 1,000MΩ
In accordance with item No.4
No removal of the terminations or other defect should occur.
Char.
Char.
Char.
X7R
X7R
SL
SL
QU400+20C*
QU1000
Temperature Coefficient
+350 to –1000ppm/°C
Capacitance Change
Specification
Within ±15%
D.F.V0.025
Specifications
2
(CF30pF)
(CU30pF)
Visual inspection
Using calipers and micrometers
No failure should be observed when voltage in the table is
applied between the terminations for 60±1 sec., provided the
charge/discharge current is less than 50mA.
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
The insulation resistance should be measured with DC500±50V
and within 60±5 sec. of charging.
The capacitance/Q/D.F. should be measured at a frequency of
1±0.2kHz (SL char.: 1±0.2MHz) and a voltage of
AC1±0.2V (r.m.s.).
The capacitance measurement should be made at each step
specified in the Table.
SL char. :
The capacitance should be measured at even 85°C between
step 3 and step 4.
As in Fig., discharge is made 50 times at 5 sec. intervals from
the capacitor (Cd) charged at DC voltage of specified.
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.
Perform a heat treatment at 150
let sit for 24±2 hrs. at room condition.*
Type GB
Type GC/GD
Type GF
R1: 1,000Ω
10kV
Step
1
2
3
4
5
R3
Ct: Capacitor under test
V
R2: 100MΩ
Test Method
Max. Operating Temp.±2
25±2 (20±2 for SL char.)
Min. Operating Temp.±3
25±2 (20±2 for SL char.)
25±2 (20±2 for SL char.)
Fig. 1
Cd
Continued on the following page.
Temperature (°C)
W
Y10
10N, 10±1s
AC1500V (r.m.s.)
AC2000V (r.m.s.)
Glass Epoxy Board
R3: Surge resistance
0
°C for 60±5 min. and then
DC1075V
1
R1
Cd: 0.001μF
Ct
R2
C02E.pdf
Oct.1,2012

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