How Many Amps Is 18 kW at 460V?

At 460V, 18 kW pulls approximately 26.58 amps on AC three-phase (PF 0.85). This is the case typical for commercial HVAC, industrial motors, rooftop units, and three-phase panel loads. Always verify against the equipment nameplate for actual install sizing.

18 kW at 460V, AC three-phase (PF 0.85)
26.58 Amps
18 kilowatts at 460V on AC three-phase ≈ 26.58 amps
AC Single Phase (PF 0.85)46.04 A
DC (ideal baseline)39.13 A
26.58

Formulas

DC: kW to Amps

I(A) = 1000 × P(kW) ÷ V(V)

1000 × 18 ÷ 460 = 18,000 ÷ 460 = 39.13 A

AC Single Phase (PF = 0.85)

I(A) = 1000 × P(kW) ÷ (PF × V(V))

18,000 ÷ (0.85 × 460) = 18,000 ÷ 391 = 46.04 A

AC Three Phase (PF = 0.85)

I(A) = 1000 × P(kW) ÷ (√3 × PF × VL-L), where VL-L is the line-to-line voltage

18,000 ÷ (1.732 × 0.85 × 460) = 18,000 ÷ 677.21 = 26.58 A

Equipment & Circuit Sizing

Breaker Sizing

Breaker ratings are in amps, not watts, so the real install answer depends on the equipment nameplate FLA, whether the load is continuous (NEC 210.19(A) sizes the conductor and OCP at 125% of a continuous load, equivalently 80% of breaker rating), conductor ampacity and temperature rating, ambient and bundling derates, and any motor or HVAC provisions (NEC 430 / 440). At roughly 26.58A on AC three-phase at 460V, the load sits in the bracket between a 30A standard size (non-continuous) and the next size up that covers a continuous load under 210.19(A) (around 35A). The actual install pick depends on whether the load is continuous and the factors above; a conversion page can't pick a single "right" breaker from the amp draw alone.

Energy Cost

18 kW costs $3.06/hour at $0.17/kWh (rates last reviewed April 2026). See breakdown.

Power Factor Reference (AC three-phase)

How the line current for 18 kW at 460V changes with load power factor, on the same AC three-phase circuit basis the rest of the page uses. DC has no power factor; PF 1.0 represents resistive AC loads.

Load TypePF18 kW at 460V (AC three-phase)
Resistive (heaters, incandescent)122.59 A
Fluorescent lamps0.9523.78 A
LED lighting0.925.1 A
Synchronous motors0.925.1 A
Typical mixed loads0.8526.58 A
Induction motors (full load)0.828.24 A
Computers (without PFC)0.6534.76 A
Induction motors (no load)0.3564.55 A

AC Conversion Comparison

On DC, 18kW at 460V draws 39.13A. AC single-phase at PF 0.85 pulls 46.04A because reactive current is added on top of the real power. Three-phase at the same voltage needs only 26.58A per line since the same 18kW is shared across three conductors instead of one.

Circuit TypeFormulaResult
DC18,000 ÷ 46039.13 A
AC Single Phase (PF 0.85)18,000 ÷ (0.85 × 460)46.04 A
AC Three Phase (PF 0.85)18,000 ÷ (1.732 × 0.85 × 460)26.58 A

Other kW Values at 460V

kWAC 3-Phase per line, PF 0.85AC 1-Phase PF 0.85
3 kW4.43 A7.67 A
3.5 kW5.17 A8.95 A
4 kW5.91 A10.23 A
5 kW7.38 A12.79 A
6 kW8.86 A15.35 A
7.5 kW11.07 A19.18 A
8 kW11.81 A20.46 A
10 kW14.77 A25.58 A
12 kW17.72 A30.69 A
15 kW22.15 A38.36 A
18 kW26.58 A46.04 A
20 kW29.53 A51.15 A
22 kW32.49 A56.27 A
25 kW36.91 A63.94 A
30 kW44.3 A76.73 A

Frequently Asked Questions

18 kW at 460V draws about 26.58 amps on an AC three-phase circuit at PF 0.85. Alternate cases at the same voltage: 39.13A on DC, 46.04A on AC single-phase.
Three-phase at 460V draws 26.58A per line versus 46.04A single-phase. Less current per conductor means smaller wire and lower I²R losses.
460V is commercial/industrial panel voltage, not a typical AC EVSE feed to a vehicle. On three-phase 460V, 18 kW works out to about 26.58A per line (three-phase at PF 0.85). In practice, 400-480V three-phase is usually the AC input to a DC fast charger (50-350 kW CCS/NACS stations like Tesla Superchargers), which rectifies to DC and delivers that directly to the vehicle, rather than an AC EVSE connector. A 18 kW figure at 460V is most likely the AC feed to a smaller commercial cabinet or the control-side input of a larger DC fast charger, not an at-the-car AC current.
18 kW equals 18,000 watts. Multiply kilowatts by 1000.
DC: Amps = (kW × 1000) ÷ Volts. AC single-phase: Amps = (kW × 1000) ÷ (Volts × PF). AC three-phase: Amps = (kW × 1000) ÷ (VoltsL-L × √3 × PF).
This calculator provides estimates for reference purposes only. Always consult a licensed electrician and verify compliance with the National Electrical Code (NEC) and local electrical codes before performing any electrical work.