GRM1885C1H100JA01D Murata, GRM1885C1H100JA01D Datasheet - Page 210

Multilayer Ceramic Capacitors (MLCC) - SMD/SMT 0603 10pF 50volts C0G 5%

GRM1885C1H100JA01D

Manufacturer Part Number
GRM1885C1H100JA01D
Description
Multilayer Ceramic Capacitors (MLCC) - SMD/SMT 0603 10pF 50volts C0G 5%
Manufacturer
Murata
Series
GRMr
Datasheet

Specifications of GRM1885C1H100JA01D

Voltage Rating
50 Volts
Operating Temperature Range
- 55 C to + 125 C
Temperature Coefficient / Code
C0G (NP0)
Product
General Type MLCCs
Dimensions
0.8 mm W x 1.6 mm L x 0.8 mm H
Termination Style
SMD/SMT
Capacitance
10 pF
Tolerance
5 %
Package / Case
0603 (1608 metric)
Dielectric Characteristic
C0G / NP0
Capacitance Tolerance
± 5%
Capacitor Case Style
0603
No. Of Pins
2
Capacitor Mounting
SMD
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
GRM1885C1H100JA01D
Manufacturer:
MURATA
Quantity:
640 000
Part Number:
GRM1885C1H100JA01D
Manufacturer:
MURATA
Quantity:
4 000
Part Number:
GRM1885C1H100JA01D 0603 NPO 10PJ 50V
Manufacturer:
MURATA/村田
Quantity:
20 000
!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
3. Fail-safe
4. Test Condition for AC Withstanding Voltage
(1) Test Equipment
(2) Voltage Applied Method
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.
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.
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.
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.
*ZERO CROSS is the point where voltage sine wave
- See the figure at right -
Continued from the preceding page.
passes 0V.
• 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.
AC IN
0V
Voltage sine wave
zero cross
FUSE
!Caution
209
C02E.pdf
10.12.20

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