TDK 1μF Multilayer Ceramic Capacitor MLCC, 100V dc V, ±10% , SMD

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RS-stocknr.:
903-8809
Fabrikantnummer:
CGA5L2X7R2A105K160AA
Fabrikant:
TDK
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Merk

TDK

Capacitance

1µF

Voltage

100V dc

Package/Case

1206 (3216M)

Mounting Type

Surface Mount

Dielectric

X7R

Tolerance

±10%

Dimensions

3.2 x 1.6 x 1.6mm

Length

3.2mm

Depth

1.6mm

Height

1.6mm

Series

CGA

Terminal Type

Solder

Maximum Operating Temperature

+125°C

Suppression Class

Class II

Minimum Operating Temperature

-55°C

Land van herkomst:
JP

TDK CGA Automotive 1206 series, X5R, X7R and Y5V Dielectric


From TDK, the CGA Series of Multilayer Ceramic Capacitors (MLCCs) provides a highly reliable solution. Utilising precision technology, this series of MLCCs is constructed with multiple thin ceramic dielectric layers enabling high capacitance. These MLCCs feature low ESR ensuring low self-heating and high ripple resistance. CGA multilayer ceramic capacitors also have low ESL and excellent frequency characteristics.

Features and Benefits:


Excellent heat resistance

Greater mechanical strength

Superior reliability

Guaranteed performance from a matured manufacturing process

Available with a range of dielectrics

Suitable for high accuracy automatic mounting

Low stray capacitance

Applications:


These MLCCs are AEC-Q200 qualified and suitable for automotive applications. Typical applications include automotive battery line smoothing, sensor modules and engine control units. CAG Series ceramic capacitors are ideal for anti-lock brake systems and automotive infotainment systems. Other recommended applications include smart meters, smart grids, solar inverters, AC-DC battery chargers, transportation and agriculture.


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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