Bike Gear Inches Calculator

Bike Gear Inches Calculator

Compare bicycle gearing by chainring, cassette, tire diameter, cadence, rollout, speed, climbing ratio, and high gear range before swapping parts or loading up for a ride.

🚲Bike gearing presets

Wheel, cadence, and ride target

Gear inches use effective outside tire diameter, so tire size matters.
Measure tire height loaded if you want the closest rollout estimate.
Speed is calculated from cadence and rollout, not from effort.
Use this for the lowest gear speed on steep climbs.
Used only to rate whether the low gear is friendly for the ride type.

🔗Drivetrain tooth counts

For 1x bikes, enter the same value as the largest chainring.
The small rear cog creates the highest gear.
The large rear cog creates the lowest climbing gear.
Used for the sample cassette table below.
Useful for checking normal cadence speed.
Enter actual cogs to build a mini gear chart for the selected middle chainring.

Formula: gear inches = effective wheel diameter x chainring teeth / rear cog teeth. Rollout and speed are then calculated from the wheel circumference and cadence.

Gear inches results

Lowest climbing gear
27.7
gear inches
34 x 34 with 27.7 in wheel
Highest gear
125.9
gear inches
50 x 11 with 27.7 in wheel
Speed at target cadence
19.4
mph in cruising gear
middle ring and cog
Gear range
454%
high gear divided by low gear
range comparison

📊Calculated cassette chart

Rear cog Gear inches Rollout Speed at target cadence Use read
17T55.414.5 ft14.8 mphCruise

🛞Gear inch reference bands

16-22 Very low
Steep dirt, heavy loads, and slow technical climbing.
23-32 Low
Useful touring, gravel, and endurance climbing range.
45-75 Cruise
Common rolling-road and path riding gears.
100+ High
Fast pavement, tailwinds, descents, or racing speeds.

📐Reference tables

Bike setup Common low gear Common high gear Planning note
Loaded touring18-24 in85-105 inLower gears protect knees during long climbs with bags.
Gravel 1x22-30 in90-110 inChoose the chainring by the low gear you need most.
Road compact28-36 in115-125 inGood high speed, but steep climbs may need a bigger cassette.
Trail MTB16-22 in75-95 inLow gears matter more than top speed off pavement.
Wheel and tire Approx diameter Effect on gear inches Best use
700c x 2527.4 inBaseline road valueRoad bikes and fast endurance bikes.
700c x 4528.3 inAbout 3 percent taller than 700 x 25Gravel bikes with larger tires.
29 x 2.2529.2 inNoticeably taller for same teethMountain bikes and bikepacking rigs.
20 inch folder20.6 inMuch lower unless chainring is largeFolding and compact-wheel bikes.
Cadence Low gear feel Cruise use Check
60 rpmSlow grindCasual or tired climbingIf this is the only option, lower gearing may help.
75 rpmManageable climb spinComfortable mixed ridingGood target for loaded climbs.
90 rpmQuick spinCommon road cadenceUseful for comparing cruising speed.
105 rpmVery fast spinSprints or descentsHigh gear may matter if you often spin out.

💡Gearing tips

Start with the lowest gear. A drivetrain that is too tall on the easiest climb can ruin a loaded trip, while a slightly smaller high gear is often easy to live with.
Compare tire changes honestly. A bigger tire raises every gear a little; a smaller wheel lowers every gear unless the chainring or cassette changes too.

Until you’re trying to maintain speed descending quickly with your buddies or conquer a steep hill filled with groceries, bicycle gears seem theoretical. That is when you realize if they’re working for you or not. It is then you know whether your low gear is actualy low enough to let you ride seated rather than standing and grinding along.

Gear inches provide an easy-to-compare reference for what a bike setup will feel like, regardless of cassette size, number of chainrings, or wheel size. How do you measure? It’s simple: Take the number of teeth in the chainring(s) and multiply them by effective tire diameter. Then divide by the number of teeth in the cog(s). This gives you how far the bike moves for each turn of the pedals compared to a wheel with the same diameter if it were directly connected.

How to Calculate Your Bicycle Gears

High numbers = fast (more speed for every pedal stroke); low numbers = easy pedaling at speed (easier spinning when loaded). Since tires are actualy higher off the ground, the same number of teeth will yield different gear inches on 29er mountain bike as on a 700c road bike. Enter your actual wheel and tire size into the calculator above and it does the math for you; so no guessing which cassette to order anymore!

The other number; cadence, makes those figures dynamic. If your relaxed pace on flat ground is 90 rpm, a similar ratio could feel like a crawl on a slope or a struggle on a climb. So the tool also asks for a different climbing cadence. Most of us will slow down automaticly as the hills get steeper or the bags heavier, so a lower target rpm make sense. Then it outputs how quickly you’ll travel in the lowest gear at that cadence, which helps give you a realistic feel for if you’re going to be able to turn the pedals while seated.

And there’s this subtle thing: Tire diameter matters. When I switched from my usual 25 mm road tire to 45 mm gravel tire, each gear was about three percent lower. It doesn’t sound like much on paper, but it makes a difference over longer rides when you prefer consistency across different surfaces. On the flip side, a smaller wheel reduce all your gears, unless you adjust by upping your chainring size. Many riders who bring several wheelsets on trips find that swapping out the tires changes the feeling of entire drivetrain.

On the page, there are also reference tables of typical ranges for various types of rides. Touring bikes loaded down tend toward low gears in the low twenties so knees survives repeated climbs with weight. Road bikes geared for speed lean the other way and push into the hundreds gear inches on high end for fast descents and tailwind sprints. Endurance and gravel bikes often falls somewhere in between.

This explains why so many people are ending up with a 1x drivetrain. It is simpler and provides a wider range cassette, but it sacrifices some top speed. The other trap to avoid is thinking about only the highest number. You might think, “I’ll get a tall top end. That’s cool,” but if it’s wet out and the road gets steep, how far are you going to be able to ride?

You can use the calculator to size up both ends of your range without spending any money on parts, and know if what you’re proposing will fix what you need fixed on your own rides. Weight of the rider and anticipated load also come into play… Meaning that there is other factors that has been ignored. For example, a sporty rider with no luggage will be able to wring more out of a taller low gear then if they’re planning to lug a weeks worth of camping gear. That’s why the tool have a load profile setting. It adjusts the target low gear for your expected load. This shows how these numbers changes depending on what you might carry.

The numbers only count when they count for the kinds of rides you want to do in the first place. Once you move from a big to a little wheel, change your planned terrain, or change your typical effort level, what felt right on one bike may not feel the same as another. Running different combos through the calculator before any swap helps avoid wasted time and cash, and makes this vague number something you could of believed in on the next uphill.

Bike Gear Inches Calculator

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