StatGardenREF. DESK
Calculators/Physics/Electric Motor Torque Calculator
Physics

Electric Motor Torque Calculator

Torque delivered by a motor from its power rating and shaft speed in RPM.

Published 27 August 2026

What this calculator does

An electric motor is normally rated by its power output and its running speed in RPM, and torque, the twisting force at the shaft, follows from those two figures rather than the other way around. This calculator answers the how to calculate torque of motor question directly: given the power rating and RPM printed on a motor's nameplate, it works out the torque it delivers at that speed.

The torque formula for motor sizing is torque equals power divided by angular speed, with angular speed expressed in radians per second from the RPM figure. This is the reverse of starting with a known force and lever arm to find torque, which is covered by the mechanical torque calculator on this site; this page starts from the motor's power and speed rating instead, which is how motor torque is most often quoted in practice.

The formula

FormulaTorque (N·m) = Power (W) × 60 / (2π × RPM)

Angular speed in radians per second equals RPM × 2π ÷ 60. Torque then equals power in watts divided by that angular speed, which simplifies to torque = power × 60 ÷ (2π × RPM). The result is also shown converted to pound-feet.

TermMeaning
TorqueThe twisting force delivered at the motor shaft, in newton-metres.
PowerThe motor's rated power output, in watts.
RPMRevolutions per minute, the shaft's rotational speed at the rated power.

The inputs explained

FieldWhat to enter
Power (W)The motor's power rating, in watts (1 kW = 1,000 W).
Shaft speed (RPM)The shaft speed at that power rating, in revolutions per minute.

When to use it

Sizing a motor from a nameplate rating

Most motor nameplates list power and RPM rather than torque directly. This works out the torque so it can be compared against what a driven load actually needs.

Comparing motors running at different speeds

Two motors with the same power rating but different RPM deliver different torque, since torque falls as speed rises for a fixed power output. This makes that trade-off explicit.

Checking a gearbox or pulley reduction

Knowing the motor's output torque before a reduction stage is the starting point for working out torque after gearing.

Worked examples

Every figure in the tables below is produced by this page’s own calculator at build time, so the numbers and the tool always agree. Select any row to load that scenario.

How does torque change with shaft speed at a fixed motor power?

A 750 W motor at a range of shaft speeds.

750 W motor
Shaft speedTorqueTorque in lb-ft
500 RPM14.324 N·m10.565
750 RPM9.549 N·m7.043
1000 RPM7.162 N·m5.282
1450 RPM4.939 N·m3.643
2900 RPM2.470 N·m1.822
3600 RPM1.989 N·m1.467
At 750 W, a slower 500 RPM shaft delivers about 14.3 N·m of torque, while the same power at a faster 2,900 RPM delivers only about 2.5 N·m. For a fixed power rating, torque and speed trade off against each other.

Questions

What is the torque formula for a motor?

Torque equals power divided by angular speed: τ = P / ω, where ω (in radians per second) equals RPM × 2π ÷ 60. This rearranges to τ = P × 60 ÷ (2π × RPM).

Why does torque fall as RPM rises for the same power?

Power is the rate of doing work, equal to torque multiplied by angular speed. If power is fixed, torque and angular speed must move in opposite directions: spin faster and there is less twisting force available, spin slower and there is more.

Does this apply to petrol engines too?

The same power-torque-RPM relationship holds for any rotating machine, including internal combustion engines, though engine torque curves are usually far from constant across the RPM range, unlike many electric motors near their rated point.

How is this different from the torque and rotational power calculator?

That calculator starts from a known force and lever arm to find torque, then derives the power it delivers at a given RPM. This one runs the calculation the other way: starting from a motor's rated power and RPM to find the torque it produces.

To calculate torque from a force and lever arm instead, see the torque and rotational power calculator.