KEMET 100pF Multilayer Ceramic Capacitor MLCC, 50V dc V, ±5% , SMD

Bulk discount available

Subtotal (1 pack of 25 units)*

£1.05

(exc. VAT)

£1.25

(inc. VAT)

Add to Basket
Select or type quantity
In Stock
  • 1,425 unit(s) ready to ship
  • Plus 750 unit(s) ready to ship from another location
  • Plus 21,650 unit(s) shipping from 28 October 2025
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units
Per unit
Per Pack*
25 - 225£0.042£1.05
250 - 475£0.04£1.00
500 - 975£0.037£0.93
1000 - 2475£0.035£0.88
2500 +£0.032£0.80

*price indicative

Packaging Options:
RS Stock No.:
264-4292
Mfr. Part No.:
C0805C101J5GACTU
Brand:
KEMET
Find similar products by selecting one or more attributes.
Select all

Brand

KEMET

Capacitance

100pF

Voltage

50V dc

Package/Case

0805 (2012M)

Mounting Type

Surface Mount

Dielectric

C0G

Tolerance

±5%

Dimensions

2 x 1.25 x 0.78mm

Length

2mm

Depth

1.25mm

Height

0.78mm

Series

C

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

+125°C

COO (Country of Origin):
MX

KEMET C0805 Series


Surface Mount Multilayer Ceramic Chip Capacitors
Ultra-Stable, Low Loss, Class I capacitor series with Tin (Sn) Termination

The KEMET C0G dielectric features a 125°C maximum operating temperature and is considered stable. The Electronics Components, Assemblies & Materials Association (EIA) characterizes C0G dielectric as a Class I material.

−55°C to +125°C operating temperature range
Lead (Pb)-free, RoHS, and REACH compliant
Voltage DC: 50 VDC
Available in size 0805


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.

Related links