85°C Series

85°C  

Serien

  

Rated voltage . Temperature . Useful life

Characteristics

VF
6.3 V– 600 V · -40 °C ~+85 °C · 6000 h at 85 °C

Standard Performances · Bottom cooling Design · Smaller Size

optional design for permanent and deep charge-discharge application

VFL
350 V– 600 V · -40 °C ~+85 °C · 12000 h at 85 °C
Long live · Bottom cooling Design · Smaller Size
optional design for permanent and deep charge-discharge application
FX2
350 V– 600 V · -40 °C ~+85 °C · 12000 h at 85 °C
Long live 
optional design for permanent and deep charge-discharge application
FX3

  

400 V– 500 V · -40 °C ~+85 °C · 10000 h at 85 °C
More Compact Design  ·  Long live 
optional design for permanent and deep charge-discharge application
HCGW

  

350 V– 500 V · -10 °C ~+85 °C · 6000 h at 85 °C
High Capacitance  ·  Ultra compact 
optional design for permanent and deep charge-discharge application
HCGW2
400 V– 500 V · -10 °C ~+85 °C · 6000 h at 85 °C
Higher Capacitance  ·  Ultra compact 
optional design for permanent and deep charge-discharge application
HCGW3
350 V– 500 V · -10 °C ~+70 °C · 5000 h at 70 °C
Highest Capacitance  ·  Ultra compact 
optional design for permanent and deep charge-discharge application
HCGF5

160 V– 250 V · -25 °C ~+85 °C · 6000 h at 85 °C

Standard Performances · Small Diameter Design

optional design for permanent and deep charge-discharge application

HCGF6 350 V– 500 V · -25 °C ~+85 °C · 6000 h at 85 °C

Standard Performances

optional design for permanent and deep charge-discharge application

VFR 350 V– 500 V · -40 °C ~+85 °C · 6000 h at 85 °C

High Ripple Current · bottom cooling design · low ESR

VFLR 350 V– 500 V · -40 °C ~+85 °C · 12000 h at 85 °C

Long Life · High Ripple Current · bottom cooling design · low ESR

FXW 350V–450V · -10°C~+85°C · 12000h at 85°C
High capacitance · Ultra compact · Long Life
optional design for permanent and deep charge-discharge application
NEW
FXW2 350V–500V · -10°C~+85°C · 12000h at 85°C
Higher capacitance · Ultra compact · Long Life
optional design for permanent and deep charge-discharge application