Cornell Dubilier Supercapacitors
Super Power for Your Applications

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Enjoy the Wide Range of Options for
Exceptional Energy Storage and Delivery

Today’s digital world runs on power – and interruptions of it cost time, money and business. Cornell Dubilier Supercapacitors not only reduce size and weight of your power sources but improve run-time and battery life, protect against power loss and provide unlimited discharge cycles.

You can depend on Cornell Dubilier Supercapacitors for rapid, reliable power for literally millions of duty cycles – even in demanding conditions.

Featured Products

Cornell Dubilier DSF Series Supercapacitors

DSF Series Supercapacitors

Cornell Dubilier’s DSF Series Supercapacitors deliver higher voltage, greater power density, extremely low self-discharge rate, low ESR and ultra-fast charging.

Cornell Dubilier DGH Series Supercapacitors

DGH Series Supercapacitors

The DGH Series includes 21 different value/voltage combinations, ranging in capacitance from 0.5F to 600F with voltage ratings from 2.7 to 5.5WVDC.

Cornell Dubilier Electric Double-Layer Supercapacitors

Electric Double-Layer Supercapacitors

These supercapacitors can replace or extend battery life in on-board memory backup, offering higher power than batteries and greater energy than typical aluminum electrolytic capacitors.

Cornell Dubilier Hybrid LIC Supercapacitors

Hybrid LIC Supercapacitors

VMF and VPF Hybrid LIC Supercapacitors provide 10F to 220F .capacitance values, low equivalent series resistance (ESR), high current handling and are rated up to 500,000 charge/discharge cycles

Resources

DGH Series Supercapacitors
Tech Specs Video

In this episode, learn about Cornell Dubilier’s DGH Supercapacitors, which offer working voltages of 2.7V and 5.5VDC, standard values up to 350F, ESR notably lower than competing capacitors and speedy charge and discharge rates.

Supercapacitor Technical Guide

Cornell Dubilier tells you everything you need to know about supercapacitors, including construction, typical applications, capacitance, leakage current, life expectancies, soldering guidelines and safety considerations.