CalculatorBoom

Convert Nanohenries to Femtohenries

Nanohenry (nH) to Femtohenry (fH) inductance conversion — enter any value below to get an instant result, or use the table for common values.

Results from this calculator are estimates provided for general informational purposes only, based on formulas, rates, and standards commonly accepted as of 2026. Figures may differ slightly from other calculators or professional sources due to rounding methods, differing assumptions, or regional regulations, and rules may change over time. Always consult a qualified professional — such as a financial advisor, healthcare provider, or other relevant specialist — before making decisions based on these results.

The numeric value you want to convert. Decimals are accepted.

Result

1 Nanohenry = 1000000 Femtohenries

1 Femtohenry = 1E-06 Nanohenries

1 nH in every supported unit

Conversion chart: Nanohenry to Femtohenries

Conversion table

Nanohenry (nH) Femtohenry (fH)
0.01 nH 10000 fH
0.1 nH 100000 fH
1 nH 1000000 fH
2 nH 2000000 fH
3 nH 3000000 fH
5 nH 5000000 fH
10 nH 10000000 fH
20 nH 20000000 fH
50 nH 50000000 fH
100 nH 1E+08 fH
1000 nH 1E+09 fH

Nanohenry (nH)

Definition: One billionth of a henry (1 nH = 0.000000001 H), used for the very small inductances found in high-frequency and high-speed digital circuits.

History: It became practically relevant as radio-frequency and microwave engineering, and later high-speed digital signal-integrity work, needed to quantify inductance well below the microhenry scale, including parasitic inductance from wires and leads.

Current use: The typical unit for specifying bond-wire inductance in integrated-circuit packaging, PCB trace inductance, and small RF-tuning inductors used in gigahertz-range wireless circuits.

Femtohenry (fH)

Definition: One quadrillionth of a henry (1 fH = 10⁻¹⁵ H), an extremely small inductance unit at the edge of what is practically measurable.

History: It emerged from the same SI prefix ladder used for femtofarad-scale capacitance, applied where advanced semiconductor and superconducting circuit research needed to quantify inductance below the picohenry scale.

Current use: Found mainly in advanced research contexts such as superconducting quantum circuit design and precision on-chip interconnect modeling, where inductance at this scale meaningfully influences circuit behavior.

Supported Units

Unit Symbol In Henry
Henry H 1 H
Kilohenry kH 1000 H
Millihenry mH 0.001 H
Microhenry µH 1E-06 H
Nanohenry nH 1E-09 H
Picohenry pH 1E-12 H
Femtohenry fH 1E-15 H
Abhenry abH 1E-09 H
Stathenry statH 8.98755E+11 H
Weber/Ampere Wb/A 1 H

About These Parameters

Value
The inductance value you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from a tiny nanohenry PCB-trace parasitic to a large power-transformer winding's multi-henry rating.
From Unit
The unit your input value is currently measured in — an inductor datasheet's millihenry or microhenry rating, or a historical figure quoted in abhenries or stathenries from the older CGS unit systems.
To Unit
The unit you want the result converted into. Use the swap button to flip From and To instantly, handy when translating a datasheet value into a different SI-prefixed scale or back to the base henry.

How Inductance Conversion Works

The Formula

Every unit here is defined by a fixed multiplier relative to the henry. To convert a value from one unit to another:

result = value × (factor of "From" unit ÷ factor of "To" unit)

For Nanohenry → Femtohenry: multiply by 1000000. For example, 1 nH × 1000000 = 1000000 fH.

Why Inductors Span Such a Wide Range of Units

A henry is a relatively large amount of inductance for a physical coil to produce — winding enough turns around a large enough core to reach a full henry generally means a bulky component, the kind found in mains-frequency power transformers and large chokes. Most inductors used in switching power supplies, RF circuits, and signal filtering only need a fraction of a henry to do their job, which is why millihenries and microhenries are the everyday scale for real components. At the other extreme, any wire, PCB trace, or connector lead has some small amount of unavoidable "parasitic" inductance — usually measured in nanohenries or picohenries — that becomes significant only at the high frequencies and fast switching speeds used in modern digital and RF electronics.

SI Henries vs. CGS Abhenries and Stathenries

Before the SI system unified electrical units around the henry, volt, and ampere, 19th-century physicists worked in the centimeter-gram-second (CGS) system, which split into two competing branches: the electromagnetic (emu) branch, whose inductance unit is the abhenry (equal to a tiny one billionth of a henry), and the electrostatic (esu) branch, whose unit is the stathenry (equal to a massive 898.8 billion henries). That enormous gap — the mirror image of the abfarad/statfarad relationship in capacitance — comes from the same speed-of-light-squared relationship that links the esu and emu systems throughout classical electromagnetism. Modern electronics almost never uses either CGS unit directly, but they still turn up when translating older theoretical physics texts into today's henry-based units.

Example

An inductance of 1 nH equals 1000000 fH. For scale, a small RF inductor on a circuit board might be rated around 10 microhenries, a typical switching power-supply inductor might be a few hundred microhenries to a few millihenries, and a large mains-frequency power transformer winding can reach several henries.

Frequently Asked Questions

How many Femtohenries are in 1 Nanohenry?

1 Nanohenry (nH) equals exactly 1000000 Femtohenries (fH).

Why are inductors almost never rated in whole henries?

A henry is a relatively large amount of inductance to build into a small, practical coil — reaching a full henry typically requires a bulky winding around a large magnetic core, the kind used in mains-frequency transformers. Everyday inductors in power supplies, RF circuits, and filters only need a fraction of a henry, so they're rated in millihenries or microhenries instead.

Is weber/ampere the same thing as a henry?

Yes — they're mathematically identical. The henry is defined as exactly one weber of magnetic flux linkage per ampere of current (1 H = 1 Wb/A), so expressing an inductance in webers per ampere gives the exact same numeric value as expressing it in henries.

Why is the stathenry so much larger than the abhenry?

Both come from the older centimeter-gram-second (CGS) system, but from opposite branches: the abhenry is a CGS electromagnetic (emu) unit, while the stathenry is a CGS electrostatic (esu) unit. The two branches are related by the speed of light squared, which is why the abhenry (10⁻⁹ henries) and stathenry (about 8.9876 × 10¹¹ henries) sit roughly 21 orders of magnitude apart despite both measuring inductance.

What's a typical inductance value for common electronics?

It depends heavily on the application: RF and high-frequency tuning circuits often use nanohenry to microhenry inductors, switching power-supply inductors commonly range from a few microhenries to a few millihenries, and large mains-frequency transformer or motor windings can reach several henries. Kilohenry-scale inductance is essentially never seen outside specialized grid equipment.

Convert Nanohenry to Other Inductance Units

Possible Inductance Conversions

Femtohenry to Nanohenries Abhenry to Stathenries Stathenry to Webers/Ampere Nanohenry to Picohenries Picohenry to Nanohenries Henry to Femtohenries Kilohenry to Abhenries Kilohenry to Femtohenries Nanohenry to Abhenries Kilohenry to Millihenries Abhenry to Microhenries Henry to Microhenries Microhenry to Stathenries Henry to Abhenries Femtohenry to Henries Kilohenry to Picohenries Microhenry to Abhenries Picohenry to Kilohenries Weber/Ampere to Henries Weber/Ampere to Femtohenries Nanohenry to Millihenries Stathenry to Nanohenries Millihenry to Picohenries Picohenry to Femtohenries Kilohenry to Henries Millihenry to Webers/Ampere Weber/Ampere to Stathenries Microhenry to Femtohenries Nanohenry to Henries Picohenry to Microhenries Millihenry to Stathenries Abhenry to Henries Microhenry to Millihenries Kilohenry to Microhenries Nanohenry to Stathenries Abhenry to Nanohenries Femtohenry to Webers/Ampere Picohenry to Henries Millihenry to Nanohenries Microhenry to Picohenries Millihenry to Abhenries Henry to Millihenries Kilohenry to Webers/Ampere Nanohenry to Kilohenries Stathenry to Kilohenries Millihenry to Henries Nanohenry to Webers/Ampere Stathenry to Microhenries Abhenry to Millihenries Weber/Ampere to Kilohenries Weber/Ampere to Millihenries Femtohenry to Kilohenries Stathenry to Abhenries Millihenry to Femtohenries Henry to Picohenries Weber/Ampere to Picohenries Microhenry to Henries Femtohenry to Abhenries Kilohenry to Stathenries Millihenry to Kilohenries Weber/Ampere to Abhenries Stathenry to Henries Picohenry to Millihenries Femtohenry to Millihenries Femtohenry to Picohenries Microhenry to Kilohenries Microhenry to Webers/Ampere Stathenry to Millihenries Nanohenry to Microhenries Abhenry to Femtohenries Abhenry to Webers/Ampere Femtohenry to Stathenries Abhenry to Kilohenries Weber/Ampere to Nanohenries Stathenry to Picohenries Henry to Webers/Ampere Nanohenry to Femtohenries Stathenry to Femtohenries Femtohenry to Microhenries Picohenry to Webers/Ampere Weber/Ampere to Microhenries Henry to Kilohenries Microhenry to Nanohenries Millihenry to Microhenries Henry to Stathenries Picohenry to Abhenries Kilohenry to Nanohenries Henry to Nanohenries Picohenry to Stathenries Abhenry to Picohenries

See also