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Regear Calculator

Most gear ratio tools answer 'what does this ratio produce?'. This one answers the opposite question: 'what ratio produces the RPM I want?' — useful when planning a build around a target cruising speed, choosing gears to suit a large tire before ordering them, or matching a specific highway RPM rather than checking one after the fact.

TORQUESHEET RESEARCH DESK·FORMULA PUBLISHED·REVIEWED AUGUST 23, 2026
START FROM THE RPM YOU WANT

Solve for the ratio, not the result

Rather than checking what an existing ratio produces, this works backwards from a target: the engine speed you want at a given road speed, in a specific gear. Useful for planning a build, matching a highway cruise RPM, or choosing a ratio for a large tire size before buying gears.

Target engine speedrpm
At road speedmph
In transmission gear0.8 for a typical overdrive top gear
Axle ratio needed3.36:1Exact solve
Nearest available ratio3.31:11.4% numerically lower
RPM with nearest ratio1971 rpmAgainst a 2000 rpm target
Tire diameter31.61"265/70R17
RatioRPM at 70 mphDifference from target
2.73:11626 rpm-374 rpm
3.08:11834 rpm-166 rpm
3.15:11876 rpm-124 rpm
3.21:11912 rpm-88 rpm
3.31:11971 rpm-29 rpm
3.42:12037 rpm37 rpm
3.55:12114 rpm114 rpm
3.73:12221 rpm221 rpm
3.9:12323 rpm323 rpm
4.1:12442 rpm442 rpm
4.3:12561 rpm561 rpm
4.56:12716 rpm716 rpm
4.88:12906 rpm906 rpm
5.13:13055 rpm1055 rpm
5.38:13204 rpm1204 rpm

Want to check what your current ratio produces instead of starting from a target? The gear ratio calculator works in that direction, or see the ring and pinion teeth a given ratio typically uses.

HOW TO USE IT

Getting a number you can act on

  1. 01
    Decide on a target engine speed

    This is usually a comfortable cruising RPM, or an RPM that keeps a torque converter or a camshaft in its efficient range. There is no universal right answer — it depends on the engine and the goal.

  2. 02
    Set the road speed that target applies at

    70 mph is a common highway reference in the US, but use whatever speed actually matters for the build — a tow rig's cruising speed differs from a daily driver's.

  3. 03
    Enter the top gear ratio

    Whichever gear the vehicle spends the most time in at that speed — usually the highest gear, often an overdrive below 1.00.

  4. 04
    Enter the tire size that will actually be fitted

    This has to be the final tire size, not the current one — the whole point of a regear calculation is usually to compensate for a size that has changed or is about to.

  5. 05
    Compare the exact answer against what is actually available

    Ring and pinion sets come in a fixed set of ratios. The table shows how each standard option performs against your target, so the choice is made with numbers rather than a guess.

THE ARITHMETIC

What the calculator is actually doing

Nothing here is proprietary. If you would rather check it by hand, or explain it to someone at a counter, these are the same expressions the tool evaluates.

Axle ratio for a target RPMaxle ratio = (target RPM × π × tire diameter) ÷ (mph × gear ratio × 1056)

The standard RPM formula solved for axle ratio instead of RPM — the same relationship, rearranged for the question being asked.

Why start from a target instead of checking a result

The gear ratio calculator answers a forward question: given this axle ratio and this tire, what RPM results? That is the right tool when a ratio is already fixed and you want to know its consequence.

This tool exists for the opposite situation — planning before anything is bought. Someone building a tow vehicle, fitting a significantly larger tire, or simply wanting the engine to sit at a specific RPM on the highway does not yet have a ratio to check. They have a target, and the practical question is which ratio gets them there.

Both tools solve the identical underlying relationship between RPM, road speed, gear ratio, axle ratio and tire diameter — they simply solve it for a different unknown, which is why either can be used to check the other's answer.

Why the exact answer usually isn't for sale

Ring and pinion sets are manufactured in a fixed set of tooth-count combinations, which means the ratios available in the real world cluster around familiar numbers — 3.55, 3.73, 4.10, 4.56 and similar — rather than forming a continuous range.

Solve for a target RPM and the exact figure that comes out will almost never be one of those numbers. The practical decision is which side of it to land on: a numerically higher ratio than calculated slightly over-corrects, giving marginally more RPM and torque than the target asked for; a numerically lower ratio under-corrects, leaving some of the shortfall in place.

For a vehicle that tows or works for a living, over-correcting is usually the safer error — extra torque is rarely unwelcome. For a vehicle built mainly to cruise efficiently, under-correcting keeps the engine a little quieter and more relaxed. The table above shows exactly how far off each standard option leaves you, so that choice is made deliberately.

COMMON QUESTIONS

Regear Calculator FAQ

How do I calculate the axle ratio I need?+

Multiply your target RPM by π and the tire diameter, then divide by road speed, the transmission gear ratio and 1056. This tool does that calculation directly from the numbers you enter.

What RPM should I target when regearing?+

There's no universal figure — it depends on the engine and the goal. A common approach is choosing a comfortable, efficient cruising RPM at a typical highway speed, often somewhere between 1,800 and 2,500 rpm on a modern engine.

Why doesn't my calculated ratio match anything I can buy?+

Ring and pinion sets are manufactured in a fixed set of tooth-count combinations, so the calculated figure almost never lands exactly on a real option. Choose the nearest available ratio and check how far off it leaves you.

Should I round up or down to the nearest available ratio?+

For towing or heavy use, rounding up (numerically higher) usually suits better, trading slightly more RPM for more torque. For a vehicle mainly cruising, rounding down keeps the engine quieter.

Do I need to know my current gear ratio to use this?+

No — this tool works from a target RPM forward to the ratio needed, not from your current setup. If you want to compare against what you have now, the gear ratio calculator checks a known ratio's result instead.

SOURCE TRAIL

Standards and references behind these figures

The arithmetic on this page is fixed, but the boundaries and conventions around it come from published standards and manufacturer guidance. These are the documents they come from, so you can check them rather than take them on trust.

01Ford Performance — dynamometer testing and engine performance tech tipsManufacturer guidance on dyno correction and how quoted power figures are arrived at.02The Tire and Rim Association — standards filing (NHTSA docket)TRA has been the US standardising body for tire and rim interchangeability since 1903; this filing sets out dimensional practice.
!

Calculated, not measured. These figures assume nominal tire sizes and the ratios you entered. Real rolling radius changes with load, pressure and wear, and a vehicle's actual axle ratio is not always the one on the door sticker. Verify the ratio on the differential tag before spending anything on gearing.

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