Horsepower Calculator using torque and RPM to find power in hp, kW or PS. It also finds torque or RPM from power and checks whether an engine’s peak power and torque specs line up.
Enter torque and the speed it was measured at. Horsepower is torque times RPM divided by 5,252, so both numbers must come from the same point on the curve.
Power at Each Speed, Same Torque
| Speed | hp | kW |
|---|---|---|
| 1,000 RPM | 66.6 | 49.7 |
| 2,000 RPM | 133.3 | 99.4 |
| 3,000 RPM | 199.9 | 149.1 |
| 4,000 RPM | 266.6 | 198.8 |
| 5,000 RPM | 333.2 | 248.5 |
| 6,000 RPM | 399.8 | 298.2 |
| 7,000 RPM | 466.5 | 347.9 |
| 8,000 RPM | 533.1 | 397.5 |
Real torque curves are not flat, so read this as what the same torque would give at each speed. It shows why a high-revving engine makes big power from modest torque.
Torque Needed at Each Speed, Same Power
| Speed | lb-ft | N·m |
|---|---|---|
| 1,000 RPM | 1,750 | 2,373 |
| 2,000 RPM | 875.0 | 1,186 |
| 3,000 RPM | 583.3 | 790.9 |
| 4,000 RPM | 437.5 | 593.2 |
| 5,000 RPM | 350.0 | 474.5 |
| 6,000 RPM | 291.7 | 395.4 |
| 7,000 RPM | 250.0 | 339.0 |
| 8,000 RPM | 218.8 | 296.6 |
The same power at lower speed needs more torque. That is why a diesel truck and a sports car can share a horsepower figure but feel nothing alike.
Horsepower Calculator for Torque, RPM and Spec Sheets
Horsepower is not measured on its own. It comes from torque and the speed that torque is made at. The horsepower calculator works that relationship in any direction, so you can find power from torque, torque from power, or the RPM where the two meet.
A fourth mode checks a published spec sheet, like 300 hp at 6,500 RPM and 280 lb-ft at 4,500 RPM, to see whether all four numbers can be true at once. Units can be set to hp and lb-ft, kW and N·m, PS and N·m, or hp and lb-in for electric motors.
Torque Times RPM Divided by 5,252
One mechanical horsepower is 550 ft·lbf of work per second, or 33,000 ft·lbf per minute, as listed in the NIST Guide to the SI. A crank turning once covers 2π radians, so dividing 33,000 by 2π gives the familiar constant.
$$\text{hp} = \frac{T_{\text{lb-ft}} \times \text{RPM}}{5{,}252}$$
The exact value is 5,252.1, and the tool uses it unrounded. Driveline maker Dana uses the same formula in its Spicer horsepower and torque calculator. The default entry of 350 lb-ft at 5,000 RPM works out to 333.2 hp.
In SI units the formula needs no constant at all. Power in watts equals torque in N·m times shaft speed in radians per second, which is why the fourth result card shows the shaft speed in rad/s.
$$P_{\text{W}} = T_{\text{N}\cdot\text{m}} \times \frac{2\pi \times \text{RPM}}{60}$$
The result is power wherever the torque was measured. Torque from an engine dyno or a factory sheet gives crank power. Torque read off a chassis dyno gives wheel power, which already has drivetrain losses taken out.
Why Do the Curves Always Cross at 5,252 RPM?
At 5,252 RPM the speed and the constant cancel, so horsepower and lb-ft read the same number. Below that speed the torque figure is always higher, and above it the power figure is always higher. Engine Labs explains it the same way, as simple math rather than anything about the engine.
The crossing point is a quirk of the units, not a law of engines. Change the units and it moves, which the third result card tracks for whatever system you pick.
| Power and torque units | Numbers match at |
|---|---|
| hp and lb-ft | 5,252 RPM |
| PS and N·m | 7,023 RPM |
| kW and N·m | 9,549 RPM |
| hp and lb-in | 63,025 RPM |
A dyno chart that seems to cross somewhere else is almost always drawn with two vertical scales. One owner on TractorByNet reported his truck’s curves meeting near 2,600 RPM and was told flatly that it was impossible. Curves plotted against separate axes can meet anywhere on the page, so read the scales before reading the crossing.
Is the Constant 5,252 or 63,025?
Both are right, for different torque units. The same TractorByNet thread has one member posting torque times RPM over 63,025 and another calling it wrong, but 63,025 is simply 5,252 times 12 for torque in pound-inches.
The Electric Motor setting works in lb-in for that reason, so the 63,025 form applies there. Nameplate speed matters with motors too. A 4-pole motor on 60 Hz has a synchronous speed of 1,800 RPM, as an engineer on the Mike Holt forum works out, but it runs a little slower under load, so the nameplate RPM gives the torque at rated power.
Checking a Spec Sheet With the Horsepower Calculator
The most common mistake is pairing peak power with the peak torque RPM. A diesel owner on CumminsForum divided 325 hp by the 1,600 RPM torque peak and got about 1,066 lb-ft, far above the engine’s advertised figure of roughly 650 lb-ft.
Peak power and peak torque almost never share an RPM. Once another member placed the power peak at 2,900 RPM, the torque there came out near 588 lb-ft, which fits under the rated peak.
The Check a Spec Sheet mode runs both tests at once. Torque at the power peak can never exceed peak torque, and power at the torque peak can never exceed peak power. For 325 hp at 2,900 RPM and 650 lb-ft at 1,600 RPM, the tool returns 588.6 lb-ft at the power peak and 198.0 hp at the torque peak.
Those two results also describe how the engine pulls. This one keeps about 91% of its peak torque across a 1,300 RPM gap, which the first card reports as the torque drop and the gap between the peaks. When either test fails, the tool flags a likely typo, and a swapped pair of RPM figures is the usual culprit.
Horsepower Units and What They Hide
Power ratings travel between markets in three units that look alike and are not. Mixing them up is an easy way to misjudge one car against another by a few percent.
hp, kW and PS
NIST puts one mechanical horsepower at 745.7 W and one metric horsepower at 735.5 W, so PS is about 1.4% smaller. A European car rated at 200 PS makes about 197 hp, not 200.
Kilowatts are the SI figure behind both. The first result card shows every power unit at once, so the default 333.2 hp also reads as 248.5 kW and 337.8 PS. Torque converts the same way, with 1 lb-ft equal to 1.3558 N·m and 1 kgf·m equal to 9.80665 N·m.
Same Horsepower, Different Engines
Because power is torque times speed, the same horsepower can come from very different engines. The default 333 hp takes 875 lb-ft at 2,000 RPM but only 219 lb-ft at 8,000 RPM, which the second table in the tool lays out speed by speed.
The reverse holds for torque. An engine holding a flat 500 lb-ft makes about 238 hp at 2,500 RPM and about 476 hp at 5,000 RPM. The fourth card puts a number on it, showing the power gained for every extra 1,000 RPM if torque held steady.
If all you have is a time slip rather than a torque figure, horsepower has to be estimated from vehicle weight and ET or trap speed instead. That is a different method with its own assumptions, built on weight and acceleration rather than on a shaft measurement.