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Capacitance Calculator

Result

0.000100F

Result: 0.000100 F
How the result movesV → F

Capacitance is charge divided by voltage: one millicoulomb held at 10 V is 0.0001 F, or 100 µF. The farad is an enormous unit — real parts are measured in microfarads, nanofarads and picofarads, so expect a lot of leading zeros here.

Worked examples

How it's calculated

C = Q ÷ V

  1. StepEnter the charge the capacitor holds, in coulombs.
  2. StepEnter the voltage measured across its terminals.
  3. StepDivide; the result is the capacitance in farads.
  4. ResultMultiply by one million to read it in microfarads.

Reference table

Charge, voltageSame value in µFCapacitance
0.005, 25020 µF0.00002
0.001, 10100 µF0.0001
0.001, 5200 µF0.0002
0.1, 502000 µF0.002

Questions

What is capacitance?

The charge a component holds per volt applied to it. One farad means one coulomb of charge for every volt.

Why is the answer such a small number?

Because the farad is far larger than anything you will hold in your hand. A typical smoothing capacitor is 0.001 F, which everyone writes as 1000 µF instead.

How do I convert farads to microfarads?

Multiply by one million. 0.0001 F is 100 µF, and 0.000000001 F is one nanofarad.

Does capacitance change with the voltage?

For an ideal capacitor, no — more voltage simply stores proportionally more charge. Real ceramic parts do lose capacitance under a DC bias, and electrolytics drift with age and temperature.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.