KEMET 150 nF Multilayer Ceramic Capacitor, 50V dc, ±5 %, Surface

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Subtotal (1 pack of 5 units)*

£4.28

(exc. VAT)

£5.135

(inc. VAT)

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Units
Per unit
Per Pack*
5 - 95£0.856£4.28
100 - 245£0.502£2.51
250 - 495£0.478£2.39
500 - 995£0.38£1.90
1000 +£0.34£1.70

*price indicative

RS Stock No.:
139-2871
Mfr. Part No.:
C1206C154J5JACTU
Brand:
KEMET
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Brand

KEMET

Product Type

Multilayer Ceramic Capacitor

Capacitance

150nF

Voltage

50V dc

Package/Case

1206

Construction

Stacked

Mount Type

Surface

Packaging

Tape & Reel

Dielectric

U2J

Tolerance

±5 %

Automotive Standard

AEC-Q200

Termination Type

Surface Mount

Minimum Operating Temperature

-55°C

Series

U2J C

Height

1.6mm

Length

3.2mm

Standards/Approvals

J-STD-020, IPC-7351, EIA 624, EIA 556, EIA 481, EIA 1206, EIA 0805, EIA 0603

Width

1.6mm

Maximum Operating Temperature

125°C

Suppression Class

Class I

KEMET 1206 U2J Series MLCC


KEMETs U2J series multilayer chip capacitors (MLCC) are considered a "stable" capacitor and have a maximum operating temperature of 125°C.U2J dielectric exhibits a negligible shift in capacitance regarding voltage, it also extends the available capacitance range of class 1 MLCC to achieve values only previously available using class 11dielectric materials .Operating temperature range of −55°C to +125°C.DC voltage ratings of 10 V, 16 V, 25 V and 50 V.

Features


Capacitance offerings ranging from 1.0 nF up to 470 nF

Lead (Pb)-free, RoHS and REACH compliant

Low noise solution similar to C0G

Low dissipation factor DF < 0.1%

Low ESR and ESL

High thermal stability

High ripple current capability

Applications


Resonant Circuit applications

Applications that require Q and stability

1206 Range


C0G (NP0) is the most popular formulation of the "temperature-compensating", EIA Class I ceramic materials

X7R formulations are called "temperature stable" Ceramics and fall into EIA Class II materials

Y5V formulations are for general-purpose use in a limited temperature range.These characteristics make Y5V Ideal for decoupling applications

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