KEMET 1μF Multilayer Ceramic Capacitor MLCC, 16V dc V, ±10% , SMD

Subtotal (1 reel of 4000 units)*

£100.00

(exc. VAT)

£120.00

(inc. VAT)

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Temporarily out of stock
  • 4,000 unit(s) shipping from 23 July 2026
  • Plus 4,000 unit(s) shipping from 15 October 2026
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Units
Per unit
Per Reel*
4000 +£0.025£100.00

*price indicative

RS Stock No.:
170-0054
Mfr. Part No.:
C0805C105K4RACAUTO
Brand:
KEMET
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Brand

KEMET

Capacitance

1µF

Voltage

16V dc

Package/Case

0805 (2012M)

Mounting Type

Surface Mount

Dielectric

X7R

Tolerance

±10%

Dimensions

2 x 1.25 x 0.9mm

Length

2mm

Depth

1.25mm

Height

0.9mm

Series

C

Terminal Type

Surface Mount

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-55°C

Suppression Class

Class II

Kemet 0805 Automotive Grade SMT MLCC Ceramic Capacitors


0805 size AEC–Q200 automotive qualified SMT MLCC ceramic capacitors with a robust design suitable for harsh environments. These automotive grade SMT MLCC ceramic capacitors have a C0G dielectric with an operating temperature range of -55 to +125°C and offer a high thermal stability, a high ripple current capability and an extremely low ESR and ESL. Typical applications for these automotive grade SMT MLCC capacitors include in-cabin or under-hood mission and safety critical automotive circuits such as critical timing, tuning, circuits requiring low loss, circuits with pulse, high current, decoupling, bypass, filtering, transient voltage suppression, blocking and energy storage.

Approvals

AEC–Q200 automotive qualified


0805 Range


Nickel barrier terminations covered with a layer of plated Tin (NiSn). Applications include mobile phones, video and tuner designs, COG/NPO is the most popular formulation of the "temperature compensating", EIA Class I ceramic materials, X7R, X5R formulations are called "temperature stable" ceramics and fall into the EIA Class II materials, Y5V, Z5U formulations are for general purpose use in a limited temperature range, EIA Class II materials; these characteristics are ideal for decoupling applications.

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