Electrostatic Capacitance / µF → nF
Convert Microfarads to Nanofarads
Convert capacitance in farads and common submultiples. Convert Microfarads (µF) to Nanofarads (nF). Find the formula, worked examples, unit definitions, and practical guidance below.
Reverse: Nanofarads to Microfarads →
How to convert microfarads to nanofarads
Capacitance is charge per potential difference. Older CGS electrostatic units with geometric names are excluded to avoid mixing unit systems. Values do not account for tolerance or voltage dependence.
Use x for the value in µF, b for the intermediate value in F, and y for the result in nF.
nF = µF × 0.000001 ÷ 1e-9
Worked examples
10 µF ≈ 10000 nF
Step 1: (10 × 0.000001) ≈ 0.00001 F.
Step 2: 0.00001 ÷ 1e-9 ≈ 10000 nF.20 µF ≈ 20000 nF
Step 1: (20 × 0.000001) ≈ 0.00002 F.
Step 2: 0.00002 ÷ 1e-9 ≈ 20000 nF.
Results are rounded to 12 significant digits. Converting units does not increase the precision of the original measurement. Very large or small values outside JavaScript’s finite numeric range are rejected.
About Microfarads
Microfarads (µF) measures electrostatic capacitance under the conventions above. The base value in F is (x × 0.000001), where x is the numerical value in µF. Factors shown here are rounded for display; calculations use the stored factor.
About Nanofarads
Nanofarads (nF) measures electrostatic capacitance under the conventions above. The base value in F is (x × 1e-9), where x is the numerical value in nF. Factors shown here are rounded for display; calculations use the stored factor.
Definitions and sources
Carry the same physical assumptions into subsequent physics calculations.
Microfarads to nanofarads reference table
| Microfarads (µF) | Nanofarads (nF) |
|---|---|
| 1 | 1000 |
| 5 | 5000 |
| 10 | 10000 |
| 25 | 25000 |
| 50 | 50000 |
| 100 | 100000 |
| 1000 | 1000000 |
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