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C0805C222J5HACTU - 

SMD Multilayer Ceramic Capacitor, 0805 [2012 Metric], 2200 pF, 50 V, ± 5%, X8R, C Series

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Fabricante:
KEMET KEMET
Referencia del fabricante:
C0805C222J5HACTU
Código Farnell:
1789731
Gama de productos
Serie C
Gama de productos
Serie C
Hoja de datos técnicos:
(EN)
Disponibilidad:
Fuera de producción
Vea todos los documentos técnicos

Información del producto

:
X8R
:
0805 [2012 Metric]
:
-
:
50
:
-55
:
2200
:
-55
:
150
:
50
:
No SVHC (15-Jun-2015)
:
MSL 1 - Unlimited
:
150
:
C Series
:
-
:
0805 [Métrica 2012]
:
No SVHC (15-Jun-2015)
:
MSL 1 - Ilimitado
:
2200
:
± 5%
:
Cinta Cortada
:
± 5%
:
Cut Tape
:
X8R
:
Serie C
:
MSL 1 - Ilimitado
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Resumen del producto

The Kemet C series commercial grade multilayer ceramic chip capacitor is ultra stable X8R dielectric material which exhibits no change in capacitance with respect to time and voltage. There will be minimal change in capacitance with reference to ambient temperature. X8R dielectric capacitors were developed for decoupling, filtering and critical applications where reliability at higher operating temperatures is concern. Standard end terminations use a nickel barrier layer and a matte tin finish to provide excellent soldering ability for customers. MLCCs are monolithic devices that consist of laminated layers of specially formulated, ceramic dielectric materials interspersed with a metal electrode system. The layered formation is then fired at high temperature to produce a sintered and volumetrically efficient capacitance device. A conductive termination is integrated on the chip for connection.
  • Capacitance values ranging from 10pF to 0.22µF
  • EIA 0402, 0603, 0805, 1206, 1210 and 1812 case sizes available
  • DC voltage rating of 25V, 50V and 100V
  • High temperature range of -55°C to 150°C
  • Capacitance tolerances of ±1%, ±2%, ±5%, ±10% and ±20%
  • Non polarity device, minimize installation concerns
  • High ripple current capability
  • Extremely low ESR and ESL
  • High thermal stability

Aplicaciones

Industrial, Electrónica de Consumo, Dispositivos Portátiles, Administración de Potencia