I = P / VNo power factor needed for DC circuits.
Find the current in amps for a 50 watt load. Select the circuit voltage and system type below — DC, single-phase AC, or three-phase AC — and the calculator shows the result instantly. The table below lists results at common voltages.
Power factor varies by load. Use the equipment value when available.
I = P / VCustom voltage is always supported.
Results at common voltages. AC values use power factor = 0.9.
| Voltage | DC (I = P/V) | AC 1φ (PF 0.9) | AC 3φ (PF 0.9) |
|---|---|---|---|
| 12 V | 4.1667 A | 4.6296 A | 2.6729 A |
| 24 V | 2.0833 A | 2.3148 A | 1.3365 A |
| 48 V | 1.0417 A | 1.1574 A | 0.668229 A |
| 120 V | 0.416667 A | 0.462963 A | 0.267292 A |
| 240 V | 0.208333 A | 0.231481 A | 0.133646 A |
I = P / VNo power factor needed for DC circuits.
I = P / (V × PF)Single-phase AC — multiply voltage by power factor.
I = P / (√3 × V × PF)Three-phase AC — divide by √3 ≈ 1.732.
DC or resistive: 50 / 120 = 0.4167 A. Single-phase AC at PF 0.9: 50 / (120 × 0.9) = 0.463 A.
DC or resistive: 50 / 240 = 0.2083 A. Single-phase AC at PF 0.9: 50 / (240 × 0.9) = 0.2315 A.
DC: 50 / 12 = 4.1667 A. This is common for 12V battery and solar systems.