Technical Document
Specifications
Brand
KEMETCapacitance
390pF
Voltage
50V dc
Package/Case
0402 (1005M)
Mounting Type
Surface Mount
Dielectric
C0G
Tolerance
±5%
Dimensions
1 x 0.5 x 0.5mm
Length
1mm
Depth
0.5mm
Height
0.5mm
Series
C
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-55°C
Product details
C Series
Surface Mount Multilayer Ceramic Chip Capacitors, 6.3 – 250 VDC (Commercial Grade)
Temperature stable within the range -55°C to +125°C
Wide range of case sizes, voltage ratings and capacitance values range from 10pF to 47μF
Non-polar device, minimizing installation concerns
100% pure matte Tin-plated termination finish allowing for excellent solderability
Typical applications include decoupling, bypass, filtering and transient voltage suppression
€ 26.00
€ 0.26 Each (Supplied on a Reel) (ex VAT)
€ 30.94
€ 0.309 Each (Supplied on a Reel) (inc. VAT)
Production pack (Reel)
100
€ 26.00
€ 0.26 Each (Supplied on a Reel) (ex VAT)
€ 30.94
€ 0.309 Each (Supplied on a Reel) (inc. VAT)
Stock information temporarily unavailable.
Production pack (Reel)
100
Stock information temporarily unavailable.
| quantity | Unit price | Per Reel |
|---|---|---|
| 100 - 225 | € 0.26 | € 6.50 |
| 250 - 475 | € 0.23 | € 5.75 |
| 500 - 1225 | € 0.21 | € 5.25 |
| 1250+ | € 0.21 | € 5.25 |
Technical Document
Specifications
Brand
KEMETCapacitance
390pF
Voltage
50V dc
Package/Case
0402 (1005M)
Mounting Type
Surface Mount
Dielectric
C0G
Tolerance
±5%
Dimensions
1 x 0.5 x 0.5mm
Length
1mm
Depth
0.5mm
Height
0.5mm
Series
C
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-55°C
Product details
C Series
Surface Mount Multilayer Ceramic Chip Capacitors, 6.3 – 250 VDC (Commercial Grade)
Temperature stable within the range -55°C to +125°C
Wide range of case sizes, voltage ratings and capacitance values range from 10pF to 47μF
Non-polar device, minimizing installation concerns
100% pure matte Tin-plated termination finish allowing for excellent solderability
Typical applications include decoupling, bypass, filtering and transient voltage suppression


