Unit Convertio

Trusted unit conversions based on SI and NIST scientific standards

Electric Conductance Converter

Convert electric conductance measurements.

Popular Electric Conductance Conversions

Complete List of Electric Conductance Units for Conversion

1 Kilosiemens [kS] = 1000.00 Siemens [S]

Kilosiemens to Siemens, Siemens to Kilosiemens

1 Millisiemens [mS] = 0.00100000 Siemens [S]

Millisiemens to Siemens, Siemens to Millisiemens

1 Microsiemens [µS] = 0.00000100000 Siemens [S]

Microsiemens to Siemens, Siemens to Microsiemens

1 Nanosiemens [nS] = 1.00000e-9 Siemens [S]

Nanosiemens to Siemens, Siemens to Nanosiemens

1 Picosiemens [pS] = 1.00000e-12 Siemens [S]

Picosiemens to Siemens, Siemens to Picosiemens

1 Mho [] = 1.00000 Siemens [S]

Mho to Siemens, Siemens to Mho

1 Abmho [ab℧] = 1.00000e+9 Siemens [S]

Abmho to Siemens, Siemens to Abmho

1 Statmho [stat℧] = 1.11265e-12 Siemens [S]

Statmho to Siemens, Siemens to Statmho

How this electric conductance converter works

Siemens (S) is used as the internal base unit. Every value you enter is first converted to Siemens using exact SI factors, then translated to the requested unit with the same data pulled from the SI Brochure and NIST SP 811.

Key electric conductance relationships

  • 1 Kilosiemens = 1,000 Siemens
  • 1 Millisiemens = 0.001 Siemens
  • 1 Microsiemens = 1.0000e-6 Siemens
  • 1 Nanosiemens = 1.0000e-9 Siemens
  • 1 Picosiemens = 1.0000e-12 Siemens

Where electric conductance units are used

Electrical engineers, PCB designers, and maintenance teams convert these electrical quantities while specifying circuits, troubleshooting faults, and documenting test data. The electric conductance converter covers real-world units such as Siemens and Kilosiemens, giving teams a trusted reference when cross-checking data between labs, suppliers, and regulatory filings.

Tips for accurate electric conductance conversions

  • Always verify the unit symbol in your worksheet—this converter normalizes values through Siemens, which is the SI reference for electric conductance measurements.
  • When jumping between Siemens and Kilosiemens, watch metric prefixes and rounding. A misplaced milli-, micro-, or kilo- prefix can produce errors of several orders of magnitude.
  • Document the context (test conditions, instrument resolution, uncertainty) whenever you publish electric conductance conversions so coworkers and auditors can reproduce your results.
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