Gears · Browser-based kinematics
Gear Ratio Calculator
Calculate gear ratio, driven RPM, speed reduction or overdrive, and rotation direction for one external spur-gear pair.
Reference calculator #003
Enter driver and driven gear data
Inputs stay in your browser. Values are normalized to canonical units before calculation.
Calculated output
Results
- Driven speed magnitude
- Speed relationship
- Driven rotation direction
Valid single-pair kinematic result
- One compatible external gear pair transmits motion without slip.
- Rotational-speed inputs and outputs are magnitudes; the driven gear rotates opposite to the driver.
- The speed ratio is z₂/z₁, so a value above 1 is a speed reduction and a value below 1 is an overdrive.
- Efficiency, torque capacity, backlash, deflection, strength, life, lubrication, and dynamic effects are not evaluated.
Calculation engine: gear-ratio/1.0.0
Gear ratio and speed formulas
This page uses the driven-to-driver tooth-count convention. It therefore reports a reduction ratio above 1 when the driven gear has more teeth than the driver.
| Symbol | Meaning | Unit |
|---|---|---|
i |
Speed ratio, driven teeth divided by driver teeth | ratio |
z₁ |
Driver gear tooth count | whole number |
z₂ |
Driven gear tooth count | whole number |
n₁ |
Driver rotational-speed magnitude | rpm |
n₂ |
Driven rotational-speed magnitude | rpm |
Worked speed-reduction example
For z₁ = 20, z₂ = 40, and n₁ = 1200 rpm:
- Ratio:
i = 40 / 20 = 2, reported as2:1. - Driven speed:
|n₂| = 1200 × 20 / 40 = 600 rpm. - Classification: speed reduction.
- Direction: opposite to the driver because this is one external mesh.
Worked overdrive example
For a 40-tooth driver, 20-tooth driven gear, and 1200 rpm input:
- Ratio:
i = 20 / 40 = 0.5, reported as0.5:1. - Driven speed:
|n₂| = 1200 × 40 / 20 = 2400 rpm. - Classification: overdrive or speed increase.
- Direction remains opposite to the driver.
The engine retains full floating-point precision. Display rounding is applied after calculation and does not feed back into the formulas.
How to use the gear ratio calculator
Enter the whole-number teeth on the input and output gears, then enter the positive driver-speed magnitude in rpm. The calculator returns one explicit ratio convention, the driven speed, the speed relationship, and the rotation direction. The URL stores z1, z2, and n1 only as shareable state; all parameter combinations retain the same canonical page.
After calculating, you can transfer the tooth pair to the Gear Center Distance Calculator. That handoff uses module 2 only as a clearly identified editable starting value because tooth counts alone do not define pitch diameter or center distance.
Engineering scope and limitations
This V1 model covers one compatible external spur-gear pair with no slip. The gears must still share a compatible module or diametral pitch, pressure angle, tooth form, and operating geometry.
It does not model:
- internal gears, racks, idlers, compound trains, or multiple stages;
- planetary, worm, bevel, crossed-axis, chain, or belt transmissions;
- efficiency, friction, actual output torque, power loss, or thermal limits;
- bending or contact stress, surface durability, materials, quality grade, or life;
- backlash, profile shift, shaft and bearing deflection, alignment, or dynamic loads.
A low tooth count remains mathematically valid for the ratio, so the calculator issues an engineering warning instead of blocking the result. Undercut risk must be evaluated with the selected pressure angle, tooth system, and profile shift.
Frequently asked questions
How do you calculate gear ratio from tooth counts?
Divide the driven gear tooth count by the driver gear tooth count. A 40-tooth driven gear and 20-tooth driver have a 2:1 ratio.
How do you calculate driven gear RPM?
Multiply driver RPM by driver teeth, then divide by driven teeth. With 1200 rpm, 20 driver teeth, and 40 driven teeth, the driven speed is 600 rpm.
Does a higher gear ratio reduce speed?
Under the driven-to-driver convention used here, a ratio above 1 reduces driven speed, while a ratio below 1 increases driven speed.
Do two external gears rotate in the same direction?
No. A single external gear mesh reverses rotation, so the driven gear turns opposite to the driver. This calculator reports speed as a positive magnitude and states direction separately.
Does gear ratio tell me the actual output torque?
No. The tooth ratio gives a kinematic relationship. Actual output torque also depends on input torque, efficiency, losses, tooth strength, shafts, bearings, lubrication, and operating conditions.
References and review status
Reviewed . References provide independent formula checks and context; they do not imply endorsement.
- KHK Gears — Calculation of Gear Dimensions — Public technical reference used for tooth-count and speed-ratio context in external gear geometry.
- Boston Gear — Engineering Information — Manufacturer engineering reference used to cross-check the ratio and driven-speed relationships.