KYOCERA AVX 100nF MLCC, 50V dc V, ±10% , SMD

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RS-stocknr.:
174-7392
Fabrikantnummer:
08055F104K4T2A
Fabrikant:
KYOCERA AVX
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Merk

KYOCERA AVX

Capacitance

100nF

Voltage

50V dc

Package/Case

0805 (2012M)

Mounting Type

Surface Mount

Dielectric

X8R

Tolerance

±10%

Dimensions

2.01 x 1.25 x 1.4mm

Automotive Standard

AEC-Q200

Length

2.01mm

Depth

1.25mm

Height

1.4mm

Terminal Type

SMT

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

+150°C

AVX 0805 Automotive MLCC Capacitors


AVX automotive MLCCs were designed for use in applications up to 150°C. These capacitors are manufactured with a X8R and XL8 dielectric material. They are a highly reliable capacitor with low loss and stable capacitance over temperature. They are ideal for automotive under the hood sensors and various industrial applications. AEC-Q200 qualified.

Features


Excellent Reliability
Low ESR/ESL
X8R and X8L are both AEC-Q200 qualified
Designed for use in applications up to 150°C

Applications


Automotive on engine applications
Oil exploration applications
Hybrid commercial applications

Automotive MLC capacitors cover a wide range of case sizes, capacitance values, and working voltages. These products are not suitable for automotive industry only, but for all improved reliability applications as well. Capacitors are continuously tested in QA (Quality Assurance) laboratories. Results of these tests enable to maintain superior quality.

Voltage: 16V to 500V
Case Size: 0402 to 2220
Capacitance Range: 1pF to 22uF
Dielectric: NP0 (C0G), X7R, X8R


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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