Inductance / nH → µH
Convert Nanohenries to Microhenries
Convert inductance in henries and SI submultiples. Convert Nanohenries (nH) to Microhenries (µH). Find the formula, worked examples, unit definitions, and practical guidance below.
Reverse: Microhenries to Nanohenries →
How to convert nanohenries to microhenries
Inductance relates flux linkage to current under specified conditions. Mutual and self-inductance use the same units, but depend on different geometry and coupling.
Use x for the value in nH, b for the intermediate value in H, and y for the result in µH.
µH = nH × 1e-9 ÷ 0.000001
Worked examples
10 nH ≈ 0.01 µH
Step 1: (10 × 1e-9) ≈ 1e-8 H.
Step 2: 1e-8 ÷ 0.000001 ≈ 0.01 µH.20 nH ≈ 0.02 µH
Step 1: (20 × 1e-9) ≈ 2e-8 H.
Step 2: 2e-8 ÷ 0.000001 ≈ 0.02 µH.
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 Nanohenries
Nanohenries (nH) measures inductance under the conventions above. The base value in H is (x × 1e-9), where x is the numerical value in nH. Factors shown here are rounded for display; calculations use the stored factor.
About Microhenries
Microhenries (µH) measures inductance under the conventions above. The base value in H is (x × 0.000001), where x is the numerical value in µH. Factors shown here are rounded for display; calculations use the stored factor.
Definitions and sources
Carry the same physical assumptions into subsequent physics calculations.
Nanohenries to microhenries reference table
| Nanohenries (nH) | Microhenries (µH) |
|---|---|
| 1 | 0.001 |
| 5 | 0.005 |
| 10 | 0.01 |
| 25 | 0.025 |
| 50 | 0.05 |
| 100 | 0.1 |
| 1000 | 1 |
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