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KYOCERA AVX 100nF MLCC, 600 V dc, 630 V dc V, ±10% , SMD

Номер на артикул на RS: 135-0201Марка: KYOCERA AVX№ по каталога на производителя: 1812CC104KAZ2A
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Технически документи

Спецификации

Capacitance

100nF

Voltage

600 V dc, 630 V dc

Package/Case

1812 (4532M)

Mounting Type

Surface Mount

Dielectric

X7R

Tolerance

±10%

Dimensions

4.5 x 3.2 x 2.8mm

Length

4.5mm

Depth

3.2mm

Height

2.8mm

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-55°C

Terminal Type

Surface Mount

Детайли за продукта

AVX 1812 Series X7R Dielectric Capacitors

AVX X7R dielectric series capacitors are temperature stable capacitors and fall into the EIA Class II materials. Temperature variation of capacitance is within ±15% from -55°C to +125°C. This
Capacitance change is non-linear. X7R dielectric chip usage covers the broad spectrum of industrial applications where known changes in capacitance due to applied voltages are acceptable.

Информацията за складовите наличности временно не е налична.

Моля, проверете отново по-късно.

Информацията за складовите наличности временно не е налична.

P.O.A.

KYOCERA AVX 100nF MLCC, 600 V dc, 630 V dc V, ±10% , SMD

P.O.A.

KYOCERA AVX 100nF MLCC, 600 V dc, 630 V dc V, ±10% , SMD
Информацията за складовите наличности временно не е налична.

Технически документи

Спецификации

Capacitance

100nF

Voltage

600 V dc, 630 V dc

Package/Case

1812 (4532M)

Mounting Type

Surface Mount

Dielectric

X7R

Tolerance

±10%

Dimensions

4.5 x 3.2 x 2.8mm

Length

4.5mm

Depth

3.2mm

Height

2.8mm

Maximum Operating Temperature

+125°C

Minimum Operating Temperature

-55°C

Terminal Type

Surface Mount

Детайли за продукта

AVX 1812 Series X7R Dielectric Capacitors

AVX X7R dielectric series capacitors are temperature stable capacitors and fall into the EIA Class II materials. Temperature variation of capacitance is within ±15% from -55°C to +125°C. This
Capacitance change is non-linear. X7R dielectric chip usage covers the broad spectrum of industrial applications where known changes in capacitance due to applied voltages are acceptable.