Tehnička dokumentacija
Tehnički podaci
Brand
KEMETTechnology
Polymer
Capacitance
1.5mF
Dielectric Material Family
Aluminium
Voltage
6.3V dc
Mounting Type
Surface Mount
Equivalent Series Resistance
10mΩ
Lead Pitch
4.6mm
Tolerance
±20%
Length
10.3mm
Depth
10.3mm
Height
12.6mm
Maximum Operating Temperature
+105°C
Dimensions
10.3 x 10.3 x 12.6mm
Series
A765
Electrolyte Type
Solid
Ripple Current
4.1A
Minimum Operating Temperature
-55°C
Diameter
10mm
Polarised
Polar
Leakage Current
1.89 mA
Lifetime
2000h
Zemlja podrijetla
China
Detalji o proizvodu
KEMET A765 Series
The KEMET A765 Series Surface Mount Conductive Polymer Aluminium Solid Electrolytic capacitors are designed for greater stability and longer life across a wide range of temperatures. The polymer capacitors are highly conductive generating less heat internally during operation. It includes low ESR properties, high ripple capability and open failure mode.
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Provjerite ponovno kasnije.
KM 3,526
Each (In a Pack of 5) (bez PDV-a)
KM 4,125
Each (In a Pack of 5) (s PDV-om)
5
KM 3,526
Each (In a Pack of 5) (bez PDV-a)
KM 4,125
Each (In a Pack of 5) (s PDV-om)
5
Kupujte na veliko
količina | Jedinična cijena | Po pakovanje |
---|---|---|
5 - 20 | KM 3,526 | KM 17,63 |
25+ | KM 3,504 | KM 17,52 |
Tehnička dokumentacija
Tehnički podaci
Brand
KEMETTechnology
Polymer
Capacitance
1.5mF
Dielectric Material Family
Aluminium
Voltage
6.3V dc
Mounting Type
Surface Mount
Equivalent Series Resistance
10mΩ
Lead Pitch
4.6mm
Tolerance
±20%
Length
10.3mm
Depth
10.3mm
Height
12.6mm
Maximum Operating Temperature
+105°C
Dimensions
10.3 x 10.3 x 12.6mm
Series
A765
Electrolyte Type
Solid
Ripple Current
4.1A
Minimum Operating Temperature
-55°C
Diameter
10mm
Polarised
Polar
Leakage Current
1.89 mA
Lifetime
2000h
Zemlja podrijetla
China
Detalji o proizvodu
KEMET A765 Series
The KEMET A765 Series Surface Mount Conductive Polymer Aluminium Solid Electrolytic capacitors are designed for greater stability and longer life across a wide range of temperatures. The polymer capacitors are highly conductive generating less heat internally during operation. It includes low ESR properties, high ripple capability and open failure mode.