KEMET 100nF Multilayer Ceramic Capacitor MLCC, 50V dc V, ±10% , Through Hole

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Subtotal (1 reel of 300 units)*

£57.00

(exc. VAT)

£69.00

(inc. VAT)

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Units
Per unit
Per Reel*
300 - 600£0.19£57.00
900 +£0.181£54.30

*price indicative

RS Stock No.:
173-5603
Mfr. Part No.:
C410C104K5N5TA9170
Brand:
KEMET
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Brand

KEMET

Capacitance

100nF

Voltage

50V dc

Package/Case

9170

Mounting Type

Through Hole

Dielectric

X8L

Tolerance

±10%

Dimensions

2.41 x 4.32mm

Length

4.32mm

Automotive Standard

AEC-Q200

Series

Aximax 400

Minimum Operating Temperature

-55°C

Terminal Type

Axial

Maximum Operating Temperature

+150°C

KEMET C410 Series


KEMET C410 multilayer ceramic capacitors are moulded and conformal coated with axial leads. The C410 series is fired at high temperatures to produce a high capacitance values in a small physical form. The Kemet C410 series is available in three ceramic dielectric materials that make this range suitable for a wide range of applications, such as resonant circuits, bypass or coupling

Features and Benefits:
Dielectric materials available: C0G, X7R or Z5U
Axial leads
Operating temperature range of −55°C to +150°C
Lead (Pb)-free, RoHS and REACH compliant
Low ESR and ESL
High thermal stability
High ripple current capability
Non-polar
Matte tin-plated lead finish allowing for excellent solderability

Typical applications include:
Decoupling, bypass and filtering in environments such as down-hole oil exploration
Under-hood automotive
Aerospace and defence

KEMET’s Aximax conformally coated axial through-hole ceramic capacitors in Ultra-Stable X8R dielectric feature a 150°C maximum operating temperature, offering the latest in high temperature dielectric technology and reliability for extreme temperature applications. It offers the same temperature capability as conventional X8R, but without the capacitance loss due to applied DC voltage. Ultra-Stable X8R exhibits no change in capacitance with respect to voltage and boasts a minimal change in capacitance with reference to ambient temperature. It is a suitable replacement for higher capacitance and larger footprint devices that fail to offer capacitance stability. Capacitance change with respect to temperature is limited to ±15% from −55°C to 150°C.

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