Estimate the single-phase line amps needed when a rotary phase converter and step-up transformer are used to power 460V or 480V three-phase equipment from 230V single-phase service.
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Enter the equipment's 480V three-phase full-load amps. The calculator estimates transformer kVA, 240V three-phase current on the converter side, and the expected single-phase input current.
A 480V setup has two current conversions. The load amps at 480V are lower than the current on the 240V transformer primary, and the single-phase line has to supply the whole system.
The clean way to calculate this is to convert the three-phase load into kVA, then divide that power by the single-phase input voltage. The allowance accounts for normal transformer and converter losses.
30A at 480V three-phase is about 24.9 kVA. On 230V single-phase with a 92% allowance, that is about 118A input.
The machine may only draw 30A at 480V three-phase, but the phase converter and transformer are fed from lower-voltage single-phase power.
For 480V equipment powered from 230V single-phase through a converter and transformer, multiply the 480V three-phase amps by about 4.
Phoenix can size the rotary phase converter, transformer package, breaker range, and wire guidance around your actual equipment list. For compressors, HVAC, pumps, CNC equipment, and multiple motors, starting load matters as much as running amps.
Use NLT, PLT, NLTA, or PLTA packages when you have 230V single-phase service and need 460V three-phase output.
Compressor and HVAC loads should be sized for locked-rotor and starting demand, not just running amperage.
List every motor that can run at the same time and identify the largest motor that starts while the others are already running.
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