GNM314R71H102KD01D Murata, GNM314R71H102KD01D Datasheet - Page 86

GNM314R71H102KD01D

Manufacturer Part Number
GNM314R71H102KD01D
Description
Manufacturer
Murata
Type
Ceramicr
Datasheet

Specifications of GNM314R71H102KD01D

Capacitance
1000pF
No. Of Capacitors
4
Tolerance (+ Or -)
10%
Voltage
50VDC
Number Of Terminals
8Terminal
Temp Coeff (dielectric)
X7R
Operating Temp Range
-55C to 125C
Mounting Style
Surface Mount
Package / Case
1206
Construction
SMT Chip
Failure Rate
Not Required
Product Height (mm)
0.8mm
Product Depth (mm)
1.6mm
Product Length (mm)
3.2mm
Lead Diameter (nom)
Not Requiredmm
Terminal Pitch
0.8mm
Lead Free Status / RoHS Status
Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
GNM314R71H102KD01D
Manufacturer:
MURATA
Quantity:
120 000
3
!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
• 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.
sales representatives or product engineers before ordering.
!Note
84
No.
14
15
16 Durability
LLL/LLA/LLM Series Specifications and Test Methods (2)
LLL/LLA/LLM Series Specifications and Test Methods (2)
Continued from the preceding page.
Temperature
Sudden
Change
High
Temperature
High
Humidity
(Steady
State)
• Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
• This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
Item
Appearance No marking defects
Capacitance
Change
D.F.
I.R.
Dielectric
Strength
Appearance No marking defects
Capacitance
Change
D.F.
I.R.
Appearance No marking defects
Capacitance
Change
D.F.
I.R.
R6, R7, C7, C8: Within 12.5%
R6, R7, C7, C8: 0.120 max.
50 · F min.
No failure
R6, R7, C7, C8: Within 12.5%
R6, R7, C7, C8: 0.2 max.
12.5 · F min.
R6, R7, C7, C8: Within 12.5%
* LLL153C70G474: Within 20%
R6, R7, C7, C8: 0.2 max.
25 · F min.
In case Non "*" is added in PNs table, please refer to LLL/LLA/LLM Series Specifications and Test Methods (1).
In case "*" is added in PNs table, please refer to LLL/LLA/LLM Series Specifications and Test Methods (2).
Specifications
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 listed in the following
table. Let sit for 24 2 hours at room temperature,
then measure.
• Initial measurement
Apply the rated voltage at 40 2 C and 90 to 95% humidity for
500 12 hours.
The charge/discharge current is less than 50mA.
Apply the rated DC voltage.
•Initial measurement
•Measurement after test
Apply 150% of the rated voltage for 1000 12 hours at the
maximum operating temperature 3 C.
The charge/discharge current is less than 50mA.
•Initial measurement
•Measurement after test
Perform a heat treatment at 150
let sit for 24 2 hours at room temperature. Perform the initial
measurement.
Perform a heat treatment at 150
let sit for 24 2 hours at room temperature. Perform the initial
measurement.
Perform a heat treatment at 150
let sit for 24 2 hours at room temperature, then measure.
Perform a heat treatment at 150
let sit for 24 2 hours at room temperature. Perform the initial
measurement.
Perform a heat treatment at 150
let sit for 24 2 hours at room temperature, then measure.
Time (min.)
Temp. ( C)
Step
Min. Operating
Temp.
30 3
1
+
0
3
Test Method
Temp.
Room
2 to 3
2
+
+
+
+
+
0
10
0
10
0
10
0
10
0
10
C for one hour and then
C for one hour and then
C for one hour and then
C for one hour and then
C for one hour and then
Min. Operating
Temp.
30 3
3
+
0
3
Temp.
Room
2 to 3
4
C02E.pdf
09.9.18

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