Newton Meter Calculator

Convert a torque value to N*m, lb-ft, or lb-in, or calculate torque, force, or lever-arm length from measurements you know.

Advanced options
Torque in N*m
N*m
Torque in lb-ft
lb-ft
Torque in lb-in
lb-in
Required force in newtons
N
Required force in pound-force
lbf
Required lever arm in meters
m
Required lever arm in inches
in
Did we solve your problem today?


How to use our Newton Meter Calculator

  1. Choose the task under "What do you want to find?".
  2. For conversion, enter the torque number and choose the unit printed beside it in your manual, drawing, or torque wrench setting.
  3. For a torque equation task, enter the known force or lever-arm length and choose the matching units.
  4. Use "Advanced options" to change the force angle if it is not 90 degrees; a blank angle uses the perpendicular-force assumption of 90 degrees.
  5. Select "Calculate", then check that the leading answer has the unit you need and that the entered angle matches how the force is actually applied.
Example inputs for Newton Meter Calculator
Example inputs for Newton Meter Calculator

Definitions

Torque: A turning effect around a pivot or rotation axis. This calculator reports its magnitude, not clockwise or counterclockwise direction.

Newton-meter (N*m): The SI unit of torque. One N*m is produced by a one-newton force applied one meter from a pivot at a right angle.

lb-ft: Pound-force feet, a torque unit used in many US vehicle and tool specifications. It may also be written ft-lb or lbf*ft.

Lever arm: The distance from the pivot to the point where the force is applied.

Perpendicular force: The part of a force acting at a right angle to the lever arm. This is the part that creates torque.

Angle between force and lever arm: The smaller angle between the lever arm and the force direction. A 90-degree angle gives the greatest torque for the same force and length.

Pound-force (lbf): A unit of force, not mass. One lbf equals about 4.44822 N.


Torque by force angleTorque from a 100 N force on a 0.5 m lever arm. Perpendicular force at 90 degrees produces the most torque.Torque by force angleTorque from a 100 N force on a 0.5 m lever arm30 deg25 N*m45 deg35.4 N*m60 deg43.3 N*m90 deg50 N*mAngle between force and lever arm
Torque by force angle
Perpendicular force at 90 degrees produces the most torque.

Common mistakes and quick fixes

Mistake: Entering a wrench setting in N*m while "Torque unit" is set to lb-ft.
Fix: Choose the unit printed beside the source number before calculating. Changing the unit changes what the entered number means.

Mistake: Treating lb-ft as pounds of mass.
Fix: Use lb-ft for torque and lbf for force. Pounds of mass are not a force value.

Mistake: Measuring from the end of a handle instead of from the pivot.
Fix: Measure from the rotation axis to the exact point where the force is applied.

Mistake: Leaving the angle at 90 degrees when the force is pushed along the handle.
Fix: Enter the smaller angle between the force direction and lever arm. An angled force produces less torque than a perpendicular force.

Mistake: Typing a comma as a decimal mark, such as 1,5.
Fix: Use a decimal point for fractions, such as 1.5. Use commas only as thousands separators, such as 1,000.


Limitations & Key Assumptions / Boundary Conditions

  • The calculator uses torque magnitude only. It does not calculate clockwise or counterclockwise direction, vector components, or net torque from multiple forces.
  • The entered angle must be greater than 0 and less than 180 degrees. At 0 or 180 degrees, the perpendicular force component is zero.
  • Use the pivot-to-force distance, not the full handle length unless the force is applied exactly at the handle end.
  • Friction, bending, flexing, off-center loading, and tool calibration can make real applied torque differ from this ideal calculation.
  • N*m has the same physical dimensions as a joule, but this calculator uses N*m as torque, not energy.
  • Displayed values are rounded to the selected decimal places while calculations use unrounded values.

Methodology

Calculation method

The calculator converts torque to N*m, force to newtons, and lever-arm length to meters before solving. It then uses the part of the force that is perpendicular to the lever arm.

τ (torque in N*m) = F (force in N) * r (lever-arm length in m) * sin(θ)

θ is the angle between the force direction and lever arm. At 90 degrees, sin(θ) is 1, so the full force contributes to torque. [1]

Finding force or length

For "Find required force" and "Find lever arm", the calculator rearranges the same equation. A zero force or zero lever arm cannot be used in the matching inverse calculation because it would require division by zero.

F (force in N) = τ / (r * sin(θ))

r (lever-arm length in m) = τ / (F * sin(θ))

Unit conversions

The torque conversions use 1 lb-ft = 1.3558179483314004 N*m and 1 lb-in = 0.1129848290276167 N*m. The force and length conversions include 1 lbf = 4.4482216152605 N and 1 in = 0.0254 m.

lb-ft = N*m / 1.3558179483314004

Worked example

A 100 N force applied 0.5 m from a pivot at 90 degrees produces 50 N*m. That converts to about 36.878 lb-ft and 442.537 lb-in when three decimal places are selected.

τ = 100 * 0.5 * sin(90 degrees) = 50 N*m


Sources