Power & Energy Interactive engineering tool

Horsepower Calculator — AC Two Phase (4-Wire) Power Supply

Analyze a two-phase 4-wire AC motor circuit: horsepower, per-phase voltage, efficiency, power factor, and per-phase current. Enter any four of the five variables and the calculator returns the fifth.

  • US + metric
  • Formula shown
  • Shareable results

Horsepower — AC Two Phase (4-wire)

hp
V
A
EFF
PF
Horsepower 4.46 hp (3.32 kW)
Apparent power (2 × E × I) 4,600 VA
Real input power (2 × E × I × PF) 3,910 W
Mechanical output 3,320 W
Formula & method

HP = 2 · E · I · EFF · PF / 745.7


			

A two-phase 4-wire supply is two independent single-phase circuits 90° apart, so the total real power is 2 × per-phase voltage × per-phase current × power factor — the factor of 2 is what distinguishes it (single phase = 1, two-phase 4-wire = 2, three phase = √3). Multiply by efficiency for shaft power, then divide by 745.7 W per horsepower (metric divides by 1000 for kW). Enter the per-phase voltage and current, with efficiency and power factor as decimals from 0 to 1. Note: two-phase power is largely legacy; most systems are single- or three-phase.

For preliminary and educational use. Verify against the motor nameplate and applicable electrical codes for wiring and protection.

This completes the single / two / three-phase horsepower set for a two-phase, 4-wire AC supply. It ties together horsepower, voltage, current, efficiency, and power factor: enter any four and it returns the fifth.

Why the factor is 2

A two-phase 4-wire system is really two separate single-phase circuits, 90° apart, each with its own pair of wires. Each phase delivers its own E · I · PF of real power, so the total is exactly twice a single phase: HP = 2 · E · I · EFF · PF / 745.7. That is the whole story of the phase factor — 1 for single phase, 2 for two-phase 4-wire, and √3 (≈ 1.732) for three phase. Use the per-phase voltage and per-phase current, and enter efficiency and power factor as decimals between 0 and 1.

Solve in any direction

  • Current — the per-phase amps a known motor draws, for conductor and overload sizing.
  • Horsepower — the shaft power implied by measured voltage and current.
  • Efficiency or power factor — backed out from the other four; a solved value above 1.0 signals inconsistent inputs.

A note on two-phase systems

Two-phase power is largely historical — it survives in a few legacy installations but nearly all modern supplies are single- or three-phase. If you are not certain your supply is genuinely two-phase 4-wire, you probably want the single-phase or three-phase calculator instead.

Worked example

A 230 V (per phase) two-phase 4-wire motor drawing 10 A per phase at 0.85 efficiency and 0.85 power factor delivers HP = 2 · 230 · 10 · 0.85 · 0.85 / 745.7 ≈ 4.46 hp (3.32 kW) — exactly twice the single-phase result for the same figures. It draws 4600 VA of apparent power and 3910 W of real power, of which 3324 W reaches the shaft.

Variables

Symbol Meaning US unit SI unit
HP Mechanical output power hp kW
E Per-phase voltage V V
I Per-phase current A A
EFF Motor efficiency (decimal) 0u20131 0u20131
PF Power factor (decimal) 0u20131 0u20131

Standards referenced

Two-phase 4-wire AC motor power relations NEC 430 (motor full-load current, reference)

Verified Constants and formula two-source checked (PumpCalcs engineering review, 2026-07-28).

Embed this calculator

Paste this where you want the calculator to appear. Please keep the attribution link.

<iframe src="https://pumpcalcs.com/embed/two-phase-motor-hp/" width="100%" height="640" style="border:1px solid #ccc" title="Horsepower Calculator — AC Two Phase (4-Wire) Power Supply — PumpCalcs" loading="lazy"></iframe>
<p><a href="https://pumpcalcs.com/calculators/two-phase-motor-hp/">Horsepower Calculator — AC Two Phase (4-Wire) Power Supply</a> by PumpCalcs</p>