• Long lifetime
  • High ripple current
  • Low ESR
  • Capacitance
47µF ~ 2200µF
  • Tolerance
±20%
  • Operating Temp
-55°C ~ 105°C
  • RoHS
ROHS
  • Voltage Rated DC
160V ~ 500V
  • Lifetime
8000 @ 105°C

The **SNAPSIC HV** series is an aluminum electrolytic capacitor manufactured to international standards integrating high altitude, very high reliability, dc-dc converters, line-operated dc power supplies and energy storage. It offers optimal performance for applications requiring reliability and energy efficiency.

 

Typical applications :

  • Filtering
  • Energy storage
PN
Capacitance
Voltage Rated AC
Tolerance
Mounting
Operating Temp
RoHS
Voltage Rated DC
A716020 220µF - ±20% - - - 160V
A716021 330µF - ±20% - - - 160V
A716024 470µF - ±20% - - - 160V
A716025 680µF - ±20% - - - 160V
A716027 1000µF - ±20% - - - 160V
A716031 1500µF - ±20% - - - 160V
A716032 2200µF - ±20% - - - 160V
A716040 150µF - ±20% - - - 200V
A716041 220µF - ±20% - - - 200V
A716044 330µF - ±20% - - - 200V
A716045 470µF - ±20% - - - 200V
A716046 560µF - ±20% - - - 200V
A716049 680µF - ±20% - - - 200V
Compliance and certifications
certification
DIN
certification
IEC
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Main applications

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Frequently Asked Questions

Find answers to the most frequently asked questions about our products and services.
Why are Electrolyte Capacitors Forward Biased?

For safety purposes, these types of capacitors need to be forward biased in their configuration. This is mainly due to the characteristics of the electrolyte that has been used in their construction. The positive terminal always needs to have a larger amount of voltage than that of the negative terminal. If the situation were reversed and the negative terminal suddenly had a higher voltage than the positive terminal (which is also referred to as reversing the voltage polarity), the aluminum material that is used as the dielectric could short circuit and become damaged. It could also overheat, which could cause a substantial leak. 

The capacitor could also vaporize, which could cause the entire enclosure to burst under the right circumstances. It is important to note, however, that this phenomenon is very rare.

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