Endurance · Cycling

FTP Calculator

Your Functional Threshold Power is about 95% of the average power you hold in an all-out 20-minute effort. Enter that number and your weight to get FTP in watts and, more usefully, watts per kilogram.

FTP & power-to-weight
Test effort
Functional Threshold Power
watts
Power-to-weight
W/kg
Test
20-min
× 0.95
Rider band (men)
approx., from W/kg
This is a math estimate, not medical advice. A 20-minute estimate carries real individual error — Borszcz et al. (2018) found the agreement between a 20-minute estimate and a measured 60-minute power ran as wide as −62 to +60 W for individual riders. A maximal cycling test is strenuous; if you have a heart condition, are new to hard efforts, or are returning from a layoff, clear it with a doctor before testing.

How the math works

FTP is the highest power you can hold in a quasi-steady state for about an hour, in watts. Testing for a full hour is punishing and rarely done, so the standard field test is a 20-minute maximal effort, then a 5% cut to approximate the hour. The concept and the 0.95 factor come from Allen & Coggan (Training and Racing with a Power Meter, 2019).

FTP = 0.95 × (20-minute average power) W/kg = FTP (watts) ÷ bodyweight (kg) A full 60-minute maximal effort needs no scaling — that power is FTP by definition (factor 1.0).

The 5% haircut exists because most riders can hold more power for 20 minutes than for 60, thanks to an anaerobic contribution that fades over the longer effort. The factor was set on trained cyclists, so it fits that population best; the 60-minute test remains the reference the 20-minute estimate is standing in for.

Worked example

A cyclist finishes a 20-minute maximal test averaging 280 watts and weighs 165 lb (74.84 kg).

When this calculator is wrong

The 0.95 factor lands close on average but has a wide individual band. Borszcz et al. (2018) tested 23 trained men and found the mean difference between 95%-of-20-minute power and a measured 60-minute power was only −1 to −5 W, with strong correlations (r = 0.61–0.88) — but the individual limits of agreement ran up to −62 to +60 W. The 5% cut is a population average, not your number. A rider with a big anaerobic tank — a sprinter or pursuiter who can hold well above threshold for 20 minutes — sits at the high end, so 0.95 × 20-min prints an FTP they can't actually hold for an hour. The exception: a steady, diesel-type rider whose 20-minute power is already close to their 60-minute power will find 0.95 about right, and for tracking your own fitness at a fixed protocol the factor stays constant, so the trend is honest even when the absolute number is a few watts off.

What to do with the result

Use FTP as the anchor for training zones and interval targets, then verify it in the real world. Set your power zones as percentages of FTP, program threshold and sweet-spot work off it, and re-test every 4–6 weeks — FTP moves with fitness, and a stale number makes every zone wrong at once. Before you trust a fresh estimate for hour-long threshold work, check it against a real sustained effort: if you can't hold the new FTP for 20–30 steady minutes on a hard day, the 20-minute test flattered you and the true number is lower. Read watts and W/kg for different jobs — raw watts (and aerodynamics) decide flat time trials, while W/kg decides how you climb, so a 266 W rider at 3.55 W/kg is a stronger climber than a heavier 266 W rider at 3.09 W/kg even though the watts match.

Common questions

How do I do a 20-minute FTP test?
Warm up thoroughly (15–20 minutes with a few short openers), then ride as hard as you can hold evenly for 20 minutes on a flat road or a trainer, recording average power. Some protocols add a 5-minute all-out effort before the 20 minutes to pre-fatigue the anaerobic system; either way, the number you feed this calculator is the 20-minute average, and it's ×0.95 to get FTP.
Why multiply by 0.95?
FTP is defined at roughly 60 minutes, and most riders can hold more power for 20 minutes than for a full hour because of an anaerobic contribution that fades over the longer effort. The 5% cut approximates that gap. It's Allen & Coggan's factor, and Borszcz et al. (2018) confirmed it tracks measured 60-minute power on average — with a wide individual spread.
Is a ramp test just as accurate?
A ramp test is easier to pace and popular on indoor platforms, but the common "FTP = 75% of your best 1-minute ramp power" figure traces to platform convention rather than a primary publication, so we don't print a ramp multiplier here. The 20-minute 0.95 rule is the version with a citable source and a peer-reviewed validation behind it.
What's a good FTP in watts?
Watts alone don't answer that — a 266 W FTP is a strong club rider at 60 kg and a recreational number at 100 kg. Use W/kg. On the men's power-profile bands, recreational riders sit around 2.5–3.5 W/kg, trained club racers around 3.5–4.5, and Grand Tour climbers above 6.0 (women's bands run lower). The bands are approximate context, not a grade.
How often should I retest?
Every 4–6 weeks during a training block, or after any change big enough to move fitness — a training camp, a break, a bout of illness. Testing more often than that mostly measures test-day noise (sleep, heat, motivation) rather than a real change in threshold.
Does FTP change indoors versus outdoors?
Often, yes — many riders record a lower FTP on a trainer than on the road, from heat, a fixed position, and less motivation. It's also partly a power-meter offset. Test and train on the same setup so your zones match the workouts you'll actually do in that environment.