Henries to Stathenries Converter

Convert henries to stathenries instantly with our free electrical inductance conversion calculator. Enter any value for accurate results.

H
=
stH
1.1127E-12
Stathenries (stH)
1 H = 1.1127E-12 stH
🔄 Swap Units (Stathenries → Henries)
1 H
=
1.1127E-12 stH
1 Henry = 1.1127 × 10-12 Stathenries

How to Convert Henries to Stathenries

To convert an inductance measurement from henries to stathenries, divide the inductance value by the conversion factor. Since one henry is equal to 1.1127 × 10-12 stathenries, you can use this formula:

stathenries = henries ÷ 8.9876 × 1011

The inductance in stathenries is equal to the henries divided by 8.9876 × 1011.

Example: Convert 5 henries to stathenries.

Using the formula: stathenries = henries ÷ 8.9876 × 1011

stathenries = 5 H ÷ 8.9876 × 1011 = 5.5633E-12 stH

Therefore, 5 henries equals 5.5633E-12 stathenries.

How Many Stathenries Are in a Henry?

There are 1.1127 × 10-12 stathenries in one henry.

1 H = 1.1127 × 10-12 stH

What Is a Henry?

The henry (symbol: H) is the SI derived unit of electrical inductance, named after the American scientist Joseph Henry who independently discovered electromagnetic induction around the same time as Michael Faraday. One henry is defined as the inductance of a circuit in which an electromotive force (EMF) of one volt is produced when the current through the circuit changes at a rate of one ampere per second (1 H = 1 V·s/A = 1 kg·m²/(s²·A²)). In practical terms, one henry is a very large inductance. Most electronic components have inductance values measured in millihenries (μH) or microhenries (mH). However, large power transformers and reactor coils can have inductance values of several henries. Inductance is the property of an electrical conductor that opposes a change in current flowing through it. When current flows through a conductor, it creates a magnetic field around it. If the current changes, the magnetic field changes, which induces a voltage that opposes the change (Lenz’s law). This self-induced voltage is proportional to the rate of change of current, with the proportionality constant being the inductance. The henry is also used to measure mutual inductance between two conductors, where a change in current in one conductor induces a voltage in the other.

One henry is equal to:

  • 1,000 millihenries (mH)
  • 1,000,000 microhenries (μH)
  • 109 abhenries (abH)
  • 1.1127 × 10−12 stathenries (stH)
  • 0.001 kilohenries (kH)

What Is a Stathenry?

The stathenry (symbol: stH) is the unit of electrical inductance in the centimetre–gram–second electrostatic (CGS-ESU) system of units. One stathenry is an extremely large inductance, equal to approximately 8.988 × 1011 henries (about 899 billion henries). The enormous size of the stathenry in SI terms arises from the fundamental structure of the CGS-ESU system, which is based on Coulomb’s law with the electric constant set to unity. The conversion factor involves the square of the speed of light (c²), which is a very large number: 1 stathenry = c² × 10−9 henries, where c = 2.998 × 1010 cm/s. Because one stathenry is so enormously large compared to practical inductance values, the stathenry is essentially never used for practical measurements. It serves primarily as a theoretical unit within the CGS-ESU framework. The relationship between the stathenry and the abhenry reflects the ratio between the ESU and EMU systems: 1 stathenry = c² × 10−18 × 109 abhenries ≈ 8.988 × 1020 abhenries. This enormous ratio is a consequence of the speed of light appearing in the conversion between electrostatic and electromagnetic CGS units.

One stathenry is equal to:

  • 8.988 × 1011 henries (H)
  • 8.988 × 1014 millihenries (mH)
  • 8.988 × 1017 microhenries (μH)
  • 8.988 × 1020 abhenries (abH)

Understanding Electrical Inductance Units

Inductance is the property of an electrical conductor by which a change in current flowing through it induces an electromotive force (EMF) in the conductor itself (self-inductance) or in a nearby conductor (mutual inductance). It is one of the fundamental quantities in electromagnetism, along with resistance and capacitance.

The physical basis of inductance is Faraday’s law of electromagnetic induction: a changing magnetic field induces an electric field. When current flows through a conductor, it creates a magnetic field. If the current changes, the magnetic field changes, which induces a voltage that opposes the change in current (Lenz’s law). The ratio of the induced voltage to the rate of current change is the inductance.

Major Unit Families

  • SI units: The henry (H) is the SI unit of inductance, with standard metric prefixes: μH (microhenry, 10−6 H), mH (millihenry, 10−3 H), kH (kilohenry, 103 H), MH (megahenry, 106 H), GH (gigahenry, 109 H).
  • CGS-EMU: The abhenry (abH) is the inductance unit in the CGS electromagnetic system. 1 abH = 10−9 H = 1 nanohenry. It is a very small unit.
  • CGS-ESU: The stathenry (stH) is the inductance unit in the CGS electrostatic system. 1 stH ≈ 8.988 × 1011 H. It is an enormously large unit due to the factor of c² in the conversion.

Inductance in Practice

  • Electronic components: Chip inductors: 0.001–1,000 μH. Power inductors: 0.1–100 mH. Transformers: 0.01–100 H.
  • Parasitic inductance: PCB traces: ~1 nH/cm. IC bond wires: 1–5 nH. Through-hole vias: 0.5–2 nH.
  • Audio equipment: Speaker voice coils: 0.5–3 mH. Crossover network inductors: 0.1–10 mH.
  • Power systems: Large power transformers: 0.1–10 H. Reactor coils: 0.01–1 H.

Converting Between Inductance Units

All inductance units measure the same physical quantity, so converting between them is a matter of multiplying by the appropriate conversion factor. For SI prefix conversions, each step is a factor of 1,000. The CGS conversions involve fixed factors: 1 abH = 10−9 H (exact) and 1 stH = c² × 10−9 H (where c ≈ 2.998 × 1010 cm/s).

Tips for Inductance Conversions

  • For SI metric conversions (μH, mH, H, kH, MH, GH), each prefix step is a factor of 1,000.
  • The abhenry equals exactly 10−9 henries, which is the same as 1 nanohenry (nH). This makes conversion straightforward.
  • The stathenry is enormous: 1 stH ≈ 899 billion henries. The conversion factor involves the speed of light squared (c²).
  • The ratio of 1 stathenry to 1 abhenry is c² (in CGS units) ≈ 8.988 × 1020. This reflects the fundamental relationship between electrostatic and electromagnetic units.
  • Most practical electronic inductors have values between 0.01 μH and 100 mH. Very few components exceed 10 H.
  • When reading component datasheets, pay attention to whether the inductance is in μH, mH, or H. A factor-of-1,000 error can be catastrophic in circuit design.
  • In RF (radio frequency) circuits, inductance values are typically in the 0.1–100 μH range. In power electronics, they are typically 1–100 mH.

Henries to Stathenries Conversion Table

The following table shows conversions from henries to stathenries.

HenriesStathenries (stH)
1.0000E+11 H0.111265
2.0000E+11 H0.22253
3.0000E+11 H0.333795
4.0000E+11 H0.44506
5.0000E+11 H0.556325
6.0000E+11 H0.66759
7.0000E+11 H0.778855
8.0000E+11 H0.89012
9.0000E+11 H1.00139
1.0000E+12 H1.11265
2.0000E+12 H2.2253
3.0000E+12 H3.33795
4.0000E+12 H4.4506
5.0000E+12 H5.56325
6.0000E+12 H6.6759
7.0000E+12 H7.78855
8.0000E+12 H8.9012
9.0000E+12 H10.0139
1.0000E+13 H11.1265
2.0000E+13 H22.253
3.0000E+13 H33.3795
4.0000E+13 H44.506
5.0000E+13 H55.6325
6.0000E+13 H66.759
7.0000E+13 H77.8855
8.0000E+13 H89.012
9.0000E+13 H100.139
1.0000E+14 H111.265

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