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Convert Millisiemens to Micromhos

Millisiemens (mS) to Micromho (µmho) electric conductance 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 Millisiemens = 1000 Micromhos

1 Micromho = 0.001 Millisiemens

1 mS in every supported unit

Conversion chart: Millisiemens to Micromhos

Conversion table

Millisiemens (mS) Micromho (µmho)
0.01 mS 10 µmho
0.1 mS 100 µmho
1 mS 1000 µmho
2 mS 2000 µmho
3 mS 3000 µmho
5 mS 5000 µmho
10 mS 10000 µmho
20 mS 20000 µmho
50 mS 50000 µmho
100 mS 100000 µmho
1000 mS 1000000 µmho

Millisiemens (mS)

Definition: One-thousandth of a siemens, an SI-prefixed submultiple commonly used for conductance values in the range typical of everyday electronic components and biological tissue measurements.

History: The milli- prefix is part of the original metric system dating to 1795 and was applied to the siemens as soon as the unit itself entered official use in 1935 and later the SI in 1971.

Current use: Frequently seen in electrochemistry, biosensor, and bioimpedance work — for example, describing the conductance of skin, electrolyte solutions, or small electronic sensor elements, where whole-siemens values would be inconveniently large fractions.

Micromho (µmho)

Definition: One-millionth of a mho — the direct non-SI predecessor to the modern microsiemens, and numerically identical to it (1 micromho = 1 microsiemens).

History: It was the standard way of expressing small conductance values throughout the era when "mho" was the accepted unit name, before the 1971 SI adoption of "siemens" prompted a gradual, decades-long shift in terminology across engineering and scientific literature.

Current use: Still appears in legacy water-quality, electrochemistry, and instrumentation documentation written before the terminology shift, and remains readable to anyone familiar with the modern microsiemens since the two units are exactly equal.

Supported Units

Unit Symbol In Siemens
Siemens S 1 S
Megasiemens MS 1000000 S
Kilosiemens kS 1000 S
Millisiemens mS 0.001 S
Microsiemens µS 1E-06 S
Ampere/Volt A/V 1 S
Mho ℧ 1 S
Gemmho gemmho 1E-06 S
Micromho µmho 1E-06 S
Abmho abmho 1E+09 S
Statmho statmho 1.11235E-12 S
Quantized Hall Conductance e²/h 3.87405E-05 S

About These Parameters

Value
The conductance value you want to convert, expressed in the "From" unit. Accepts decimals, and can represent anything from a picosiemens-level insulator leakage figure to a gigasiemens-scale superconductor measurement.
From Unit
The unit your input value is currently measured in — a modern component datasheet's siemens (S) rating, or a legacy figure quoted in mho, abmho, or statmho.
To Unit
The unit you want the result converted into. Use the swap button to flip From and To instantly, which is handy when translating an older mho-based figure into the modern siemens or vice versa.

How Electric Conductance Conversion Works

The Formula

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

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

For Millisiemens → Micromho: multiply by 1000. For example, 1 mS × 1000 = 1000 µmho.

Conductance Is the Reciprocal of Resistance

Conductance and resistance describe the same physical relationship between voltage and current from opposite directions: resistance (ohms) measures how strongly a component opposes current flow, while conductance (siemens) measures how readily it allows current through. Because they are exact reciprocals (G = 1/R), a very good conductor — a thick copper busbar, for example — has a tiny resistance and a correspondingly large conductance, while a good insulator has a huge resistance and a conductance so small it is usually expressed in picosiemens or smaller. This reciprocal relationship is also why conductances of components wired in parallel simply add together, while their resistances do not.

From Mho to Siemens

Before 1971, the unit of conductance had no single settled name: engineers commonly called it the "mho" — "ohm" spelled backwards, with an upside-down omega (℧) as its symbol — to emphasize that it was resistance's reciprocal. The International Electrotechnical Commission formally adopted "siemens," named for Ernst Werner von Siemens, in 1935, and the unit was folded into the International System of Units in 1971, gradually displacing "mho" in textbooks, standards, and datasheets over the following decades. The two units remain numerically identical (1 mho = 1 S), so older equipment and literature that still uses "mho" converts to the modern siemens with a factor of exactly 1.

Example

A conductance of 1 mS equals 1000 µmho. For scale, a typical incandescent light bulb filament has a conductance around 0.08 siemens (roughly 12 ohms of resistance), a thick copper ground strap can exceed several thousand siemens, and a high-quality electrical insulator's leakage conductance is often measured in picosiemens or smaller.

Frequently Asked Questions

How many Micromhos are in 1 Millisiemens?

1 Millisiemens (mS) equals exactly 1000 Micromhos (µmho).

What is the difference between conductance and conductivity?

Conductance (siemens) describes a specific object or component's ability to conduct current — it depends on that object's size, shape, and material. Conductivity (siemens per meter) is a material property that strips out size and shape, describing how well a material conducts current per unit length regardless of the particular sample. Use this converter for whole-component conductance; use the companion Electric Conductivity Converter for the size-independent material property.

Is mho the same as siemens?

Yes — mho and siemens are numerically identical (1 mho = 1 S). "Mho" was the informal, widely used name for the unit before the International Electrotechnical Commission standardized "siemens" in 1935, and it still appears in older equipment, textbooks, and some U.S. water-quality literature.

Why is the quantized Hall conductance such a small, oddly specific number?

The quantized Hall conductance (e²/h ≈ 3.87405 × 10⁻⁵ S) is a fundamental physical constant, not a rounded engineering unit — it's built from the elementary charge (e) and the Planck constant (h). Discovered by Klaus von Klitzing in 1980, it's the exact step size by which conductance jumps in the quantum Hall effect, and because it depends only on fundamental constants, it's used today as a precision reference for realizing the ohm and siemens in metrology labs.

What are abmho and statmho used for today?

Abmho (from the CGS-EMU system) and statmho (from the CGS-ESU system) are both 19th-century units of conductance that predate the SI. They're rarely used in modern engineering, but still appear occasionally in historical physics literature and in theoretical work that frames electromagnetic calculations natively in CGS units rather than SI.

Convert Millisiemens to Other Electric Conductance Units

Possible Electric Conductance Conversions

Statmho to Amperes/Volt Megasiemens to Quantized Hall Conductances Microsiemens to Amperes/Volt Micromho to Amperes/Volt Mho to Siemens Quantized Hall Conductance to Gemmhos Mho to Megasiemens Microsiemens to Siemens Siemens to Abmhos Siemens to Kilosiemens Kilosiemens to Microsiemens Gemmho to Quantized Hall Conductances Statmho to Siemens Siemens to Micromhos Gemmho to Micromhos Kilosiemens to Statmhos Kilosiemens to Quantized Hall Conductances Millisiemens to Amperes/Volt Gemmho to Siemens Ampere/Volt to Siemens Kilosiemens to Micromhos Mho to Quantized Hall Conductances Quantized Hall Conductance to Mhos Siemens to Amperes/Volt Ampere/Volt to Kilosiemens Megasiemens to Micromhos Micromho to Gemmhos Statmho to Mhos Kilosiemens to Siemens Statmho to Quantized Hall Conductances Microsiemens to Gemmhos Abmho to Siemens Megasiemens to Millisiemens Micromho to Siemens Mho to Abmhos Millisiemens to Statmhos Ampere/Volt to Microsiemens Quantized Hall Conductance to Siemens Kilosiemens to Millisiemens Microsiemens to Megasiemens Gemmho to Abmhos Microsiemens to Abmhos Kilosiemens to Megasiemens Megasiemens to Kilosiemens Quantized Hall Conductance to Statmhos Mho to Microsiemens Ampere/Volt to Millisiemens Microsiemens to Millisiemens Statmho to Microsiemens Statmho to Micromhos Abmho to Quantized Hall Conductances Kilosiemens to Amperes/Volt Abmho to Gemmhos Abmho to Microsiemens Statmho to Kilosiemens Abmho to Millisiemens Ampere/Volt to Statmhos Millisiemens to Mhos Micromho to Kilosiemens Ampere/Volt to Quantized Hall Conductances Microsiemens to Quantized Hall Conductances Ampere/Volt to Micromhos Micromho to Quantized Hall Conductances Kilosiemens to Mhos Megasiemens to Siemens Megasiemens to Gemmhos Mho to Amperes/Volt Gemmho to Megasiemens Millisiemens to Gemmhos Gemmho to Microsiemens Abmho to Statmhos Micromho to Statmhos Quantized Hall Conductance to Kilosiemens Millisiemens to Siemens Megasiemens to Statmhos Micromho to Millisiemens Ampere/Volt to Gemmhos Quantized Hall Conductance to Megasiemens Ampere/Volt to Mhos Megasiemens to Mhos Micromho to Mhos Quantized Hall Conductance to Abmhos Siemens to Gemmhos Millisiemens to Megasiemens Microsiemens to Statmhos Siemens to Microsiemens Mho to Kilosiemens Megasiemens to Abmhos Megasiemens to Microsiemens Kilosiemens to Abmhos Siemens to Quantized Hall Conductances Abmho to Kilosiemens Statmho to Gemmhos Siemens to Statmhos Micromho to Microsiemens Microsiemens to Micromhos Quantized Hall Conductance to Millisiemens Mho to Micromhos Siemens to Megasiemens Statmho to Megasiemens Siemens to Millisiemens Gemmho to Amperes/Volt Millisiemens to Microsiemens Siemens to Mhos Microsiemens to Mhos Gemmho to Statmhos Millisiemens to Quantized Hall Conductances Statmho to Abmhos Millisiemens to Kilosiemens Mho to Gemmhos Quantized Hall Conductance to Micromhos Mho to Millisiemens Gemmho to Millisiemens Gemmho to Mhos Millisiemens to Micromhos Millisiemens to Abmhos Microsiemens to Kilosiemens Quantized Hall Conductance to Microsiemens Mho to Statmhos Quantized Hall Conductance to Amperes/Volt Abmho to Micromhos Micromho to Abmhos Abmho to Amperes/Volt Ampere/Volt to Megasiemens Statmho to Millisiemens Ampere/Volt to Abmhos Kilosiemens to Gemmhos Micromho to Megasiemens Abmho to Mhos Megasiemens to Amperes/Volt Gemmho to Kilosiemens Abmho to Megasiemens

See also