Paritian

Electricity

Three-Phase Power Calculator

Active and apparent power of a balanced three-phase load, in watts, kW and kVA.

Results

Active power 15,588.5 W
Active power 15.588 kW
Apparent power 17.321 kVA

What this tool does

For a balanced three-phase load measured with line-to-line voltage, the total power is √3 times voltage times current times power factor. Forgetting the √3 is the most common mistake in industrial electrical calculations.

Formula

P = √3 × U × I × cos φ

Variables

SymbolMeaningUnit
uLine-to-line voltageV
iCurrentA
pfPower factor
PActive powerW
PkActive powerkW
SApparent powerkVA

Worked example

  • Line-to-line voltage400 V
  • Current25 A
  • Power factor0.9
  • Active power15,588.5 W
  • Active power15.588 kW
  • Apparent power17.321 kVA

Limitations

  • Electrical installations are governed by national wiring rules. Cable sizing also depends on installation method, grouping, ambient temperature and protection devices, which this calculator does not evaluate.
  • The calculation runs at full precision and only the display is rounded. If you copy an intermediate value and retype it, small differences can appear.

Frequently asked questions

Why is there a square root of three?

Because the three phases peak at different moments, a third of a cycle apart. The line-to-line voltage is √3 times the phase voltage, and summing the three phase powers gives √3 × U × I × cos φ when U is the line voltage. Using 3 instead of 1.732 overstates the power by 73 %.