Vishay 100pF Multilayer Ceramic Capacitor MLCC, 50V dc V, ±5% , Through Hole

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£3.82

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£4.58

(inc. VAT)

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RS Stock No.:
122-0685
Mfr. Part No.:
K101J15C0GF53H5H
Brand:
Vishay
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Brand

Vishay

Capacitance

100pF

Voltage

50V dc

Mounting Type

Through Hole

Dielectric

C0G

Tolerance

±5%

Dimensions

3.8 x 3.8 x 2.6mm

Length

3.8mm

Depth

3.8mm

Height

2.6mm

Series

K...H Series

Lead Spacing

5 mm

Maximum Operating Temperature

+175°C

Minimum Operating Temperature

-55°C

Terminal Type

Radial

COO (Country of Origin):
CN

Vishay K...H Series High Operating Temperature Multilayer Ceramic Capacitors (C0G HOTcaps)


K…H multilayer ceramic capacitors from Vishay are AEC-Q200 qualified and suitable for the harshest automotive operating conditions. These MLCCs feature an unmatched maximum operating temperature of +175°C, and are constructed from a stable C0G dielectric. These radial ceramic capacitors have a capacitance change of ±330 ppm/K between -55°C and +175°C. Providing a new standard of performance and reliability, the HOTcap range from Vishay is produced with a unique wet build process and noble metal electrodes.

Featuring 100% tinned copper clad leads, straight leads or crimped leads are available, with spacing of 2.5 mm or 5 mm. Vishay K…H high operating temperature MLCCs also feature UL 94 V-0 flame retardant epoxy resin.

AEC-Q200 qualified (PPAP available)
High reliability
High performance
Radial mounting style
Designed for application in the most extreme operating conditions
Unmatched maximum operating temperature of +175°C for ceramic dielectrics
Wet build process with high reliability MLCC insert

Applications


Suitable automotive applications include EMI filtering in functional areas such as cable harnesses, turbo chargers, throttle values, brake system controls, exhaust gas and seat position sensors.

Approvals

EIA 198, IEC 60384-9, AEC-Q200


C0G (NP0) Dielectric


Capacitors with stable and predictable characteristics over temperature and time, suitable for filtering, sample and hold and timing circuits where high Q and good stability are required.

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