40 HP Motor Amps — Full-Load Current, Wire & Breaker Size

Full-load current of a 40 horsepower motor at every standard voltage, with minimum conductor size and maximum breaker and fuse ratings worked out for each.

A 40 HP motor draws 104 A at 230 V and 52 A at 460 V three-phase.

40 HP three-phase motor

40 HP three-phase induction motor — current and circuit sizing
VoltageFull-load ampsConductor ampacity (125%)Min. copper wire, 75°CMax. inverse-time breaker (250%)Max. time-delay fuse (175%)
200 V120 A150.0 A1/0 AWG300 A225 A
208 V114 A142.5 A1/0 AWG300 A200 A
230 V104 A130.0 A1 AWG300 A200 A
460 V52 A65.0 A6 AWG150 A100 A
575 V41 A51.2 A6 AWG110 A80 A

40 HP DC motor

40 HP direct-current motor
Armature voltageFull-load ampsConductor ampacity (125%)
240 V140 A175.0 A
500 V67 A83.8 A
550 V61 A76.2 A

40 HP two-phase motor

40 HP two-phase, 4-wire motor
VoltageFull-load amps
230 V90 A
460 V45 A
575 V36 A

40 HP is 29.84 kW of shaft output. Wire sizes above are the smallest copper conductor whose 75°C ampacity covers 125% of full-load current; 14 AWG is the practical minimum for power circuits. They do not include voltage drop — on long runs check the voltage drop calculator — or derating for hot locations or crowded conduits. Breaker and fuse values are maximums with the next-standard-size-up allowance applied; smaller devices are fine if the motor starts without tripping.

Motor wire & breaker size calculator

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Other horsepower ratings

Frequently asked questions

How many amps does a 40 HP motor draw?

A 40 HP motor draws 104 A at 230 V and 52 A at 460 V three-phase. These are the code table values used for circuit sizing; the actual nameplate current is usually a little lower.

What size wire and breaker for a 40 HP three-phase motor at 460 V?

Full-load current is 52 A, so conductors need at least 65.0 A of ampacity: 6 AWG copper at 75°C. The inverse-time breaker may be up to 150 A and a dual-element time-delay fuse up to 100 A.

NECTables.com is an independent reference and is not affiliated with, endorsed by, or a substitute for the National Fire Protection Association (NFPA). NEC® and National Electrical Code® are registered trademarks of the NFPA. Values shown are commonly published engineering data and independent calculations based on the methods of NFPA 70; they are not a reproduction of the Code. Always confirm against the edition adopted in your jurisdiction, including local amendments, and consult a licensed electrician or engineer before doing electrical work.