Supercapacitor Leakage Current

Estimate steady leakage current from an equivalent parallel leakage resistance using I=V/R. Real supercapacitor leakage can depend on voltage, temperature, and settling time.

Description

Estimate steady leakage current from an equivalent parallel leakage resistance using I=V/R. Real supercapacitor leakage can depend on voltage, temperature, and settling time.

Supercapacitor Leakage Current: Estimate steady leakage current from an equivalent parallel leakage resistance using I=V/R. Real supercapacitor leakage can depend on voltage, temperature, and settling time.

When to use Supercapacitor Leakage Current

Use this electronics calculation for a first-pass component, converter, signal, motor, or sensor estimate when the stated operating conditions and units match the device data.

Voltage (V)
Required number input.
Equivalent leakage resistance (Ω)
Required number input.

How Supercapacitor Leakage Current works

Estimate steady leakage current from an equivalent parallel leakage resistance using I=V/R. Real supercapacitor leakage can depend on voltage, temperature, and settling time. The tool evaluates the supplied inputs together and returns the named outputs below; it does not infer omitted operating conditions or change the units shown.1

Leakage Current A
The resulting leakage current a returned as a number.

Limitations and assumptions

  • Supercapacitor energy and self-discharge models depend on capacitance tolerance, ESR, leakage that changes with voltage and time, balancing, temperature, aging, and safe cell voltage. A single RC model may poorly represent long-duration behavior.
  • Use finite inputs in the displayed units and preserve more precision than the final presentation requires. Independently verify safety-critical, financial, compliance, or production decisions.

Alternative or Complementary approaches

Check the result against the current datasheet and worst-case operating corners, then verify the circuit or measurement with simulation and bench testing where failure matters.

References

  1. Supercapacitor — Wikipedia contributors

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