Dielectric absorption
The inability of a charged capacitor to completely discharge when briefly discharged
Dielectric absorption is the name given to the effect by which a previously charged capacitor discharges incompletely when discharged, even over many seconds for some materials. Although an ideal capacitor would remain at zero volts after being discharged, real capacitors will develop a small voltage from time-delayed dipole discharging, a phenomenon that is also called dielectric relaxation, "soakage", or "battery action".
Nº Q600435 ★
Common · Knowledge
Dielectric absorption
The inability of a charged capacitor to completely discharge when briefly discharged
Dielectric absorption is the name given to the effect by which a previously charged capacitor discharges incompletely when discharged, even over many seconds for some materials. Although an ideal capacitor would remain at zero volts after being discharged, real capacitors will develop a small voltage from time-delayed dipole discharging, a phenomenon that is also called dielectric relaxation, "soakage", or "battery action".
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From Wikipedia
Dielectric absorption is the name given to the effect by which a previously charged capacitor discharges incompletely when discharged, even over many seconds for some materials. Although an ideal capacitor would remain at zero volts after being discharged, real capacitors will develop a small voltage from time-delayed dipole discharging, a phenomenon that is also called dielectric relaxation, "soakage", or "battery action". For some dielectrics, such as a couple of polymer films, the resulting voltage may be near .02% of the original voltage, but it can be as much as 15% for electrolytic capacitors. The voltage at the terminals generated by the dielectric absorption may possibly cause problems in the function of an electronic circuit or can be a safety risk to personnel. In order to prevent shocks, high-voltage or large electrolytic capacitors are often stored or shipped with shorting wires that need to be removed before they are used and/or permanently connected bleeder resistors. When disconnected at one or both ends, DC high-voltage cables can also "recharge themselves" to dangerous voltages.
Text: Wikipédia, CC BY-SA 4.0. ·
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