kVA Calculator — Convert kVA, kW, Amps and Power Factor

Convert between apparent power, real power, current and power factor for single-phase, three-phase and DC systems.

kVA, kW, amps and power factor converter

Apparent power and real power are not the same thing

kVA is apparent power: volts times amps, without regard to what the load does with them. kW is real power: the part that actually does work and shows up on your meter. The ratio between them is the power factor.

kW = kVA × PF kVA = kW ÷ PF

For a purely resistive load such as a heater, the two are equal and the power factor is 1. For motors, transformers and anything with a magnetic field or a rectifier front end, current and voltage fall out of step and kVA exceeds kW.

This matters commercially because equipment is rated in kVA while you are billed, for the most part, in kW. A transformer or generator must supply the apparent power, so a 100 kVA set with a load at 0.75 power factor can only deliver 75 kW of useful work.

The formulas, by system

SystemkVAAmps from kVA
DCV × I ÷ 1000kVA × 1000 ÷ V
Single-phase ACV × I ÷ 1000kVA × 1000 ÷ V
Three-phase AC√3 × V × I ÷ 1000kVA × 1000 ÷ (√3 × V)

The square root of 3, about 1.732, appears in three-phase formulas because the three phase voltages are offset by 120 degrees and the resulting vector sum is larger than any single phase. In a three-phase system, V is the line-to-line voltage, not the line-to-neutral voltage.

Three worked examples

1. Sizing a standby generator

A facility has 80 kW of load at a power factor of 0.8. The apparent power is 80 ÷ 0.8 = 100 kVA. A 100 kVA generator would be running at its limit, so in practice a 125 kVA set is chosen to allow for motor starting and future load. Note that the generator must be sized on kVA, not on the 80 kW figure that appears on the load schedule.

2. Checking a service in amps

A 45 kVA transformer secondary at 208 V three-phase. Current equals 45,000 ÷ (1.732 × 208) = 125 A. That is why 45 kVA is a common transformer size for a 125 A service — the numbers line up exactly.

3. A single-phase machine

A 10 kW single-phase load at 240 V and 0.9 power factor draws 10,000 ÷ (240 × 0.9) = 46.3 A. Ignoring the power factor would give 41.7 A and a circuit sized about 10% too small.

What a low power factor costs you

Correcting a poor power factor with capacitors is usually straightforward and pays for itself quickly under a tariff with a reactive charge. The power factor calculator on this site sizes the correction for you.

How this calculator is verified

The relationships implemented here are the standard definitions of apparent, real and reactive power in single-phase and balanced three-phase systems. Results assume a sinusoidal supply and a balanced load. Non-linear loads such as variable frequency drives and switch-mode supplies need harmonic analysis, which this calculator does not perform.

  • IEEE — IEEE 1459, the standard for definitions of power quantities under sinusoidal, non-sinusoidal, balanced and unbalanced conditions.
  • NIST — SI definitions of the watt, volt and ampere.
  • NEMA — motor and generator rating standards, including the kVA basis for machine ratings.

Formulas and worked examples last verified: 19 September 2026.

FAQ

How do I convert kVA to kW?

Multiply kVA by the power factor. A 100 kVA load at 0.8 power factor is 80 kW. For a purely resistive load the power factor is 1 and kVA equals kW.

How do I convert kVA to amps?

For single-phase, amps equal kVA times 1000 divided by volts. For three-phase, amps equal kVA times 1000 divided by the square root of 3 times volts. At 208 V three-phase, 45 kVA is 125 A.

Why is equipment rated in kVA and not kW?

Because the physical size and heating of a transformer or generator depend on current, and current depends on apparent power. A machine rated in kW would have a different capacity at every power factor, so manufacturers use kVA, which is independent of the load characteristic.

What is a good power factor?

Between 0.95 and 0.98 is generally considered good for an industrial or commercial installation. Below 0.90 most utilities apply a penalty, and below 0.85 the penalty becomes significant. Correcting above 0.98 risks over-correction and harmonic resonance.

How do I calculate amps from kW?

Divide kW by the power factor to get kVA, then convert kVA to amps. For three-phase: amps equal kW times 1000 divided by the square root of 3 times volts times power factor. Skipping the power factor understates the current and undersizes the circuit.

What is the difference between kVA and kVAr?

kVA is total apparent power. kVAr is reactive power, the portion that oscillates between the source and the magnetic or electric fields of the load without doing useful work. The three relate as kVA squared equals kW squared plus kVAr squared.

Does a UPS need to be sized in kVA?

Yes. A UPS is rated in both kVA and kW, and both limits apply. A UPS rated 100 kVA and 80 kW cannot deliver 100 kW even though the kVA rating appears higher. Check both numbers against your load.

How many amps is a 25 kVA transformer?

At 480 V three-phase, 25 kVA is about 30 A. At 240 V single-phase it is about 104 A. The voltage and phase configuration determine the answer, which is why the calculator asks for both.

What causes a low power factor?

Inductive loads: motors, transformers, ballasts and induction furnaces all draw magnetising current that does no useful work. Lightly loaded motors have a particularly poor power factor, often 0.5 or below at 25% load.

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