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Stair rise & run calculator

Step count, riser height and comfort check for a straight staircase.

Published 6 August 2026 · Updated 25 September 2026

What this calculator does

Stairs are set by the total rise, which cannot change, so the target riser height is only a starting point. A 260 cm rise with a target of 18 cm gives 14 steps at an actual 18.57 cm, because 260 does not divide evenly.

The comfort rule is that twice the riser plus the tread should land between 60 and 65 cm. This staircase gives 64.1 cm and passes. It encodes something real about how people walk: a taller riser needs a shallower tread to keep the stride natural, and getting the balance wrong makes a staircase tiring in a way that is hard to put a finger on.

The formula

FormulaSteps = round(total rise / target riser); comfort: 60 ≤ 2×riser + tread ≤ 65 cm

The step count is the total rise divided by the target riser, rounded to the nearest whole number. The actual riser is then the total rise divided by that count, which is why it rarely matches the target. Total run is the steps less one multiplied by the tread depth, and the stringer is the diagonal across the whole flight.

TermMeaning
RiseTotal floor-to-floor height, which is fixed by the building.
RiserThe height of one step. All risers in a flight must be equal.
TreadThe depth of one step, front to back.
StringerThe sloping board carrying the steps, whose length is the flight diagonal.

The inputs explained

FieldWhat to enter
Total floor-to-floor rise (cm)Total floor-to-floor rise in centimetres, including floor finishes at both levels.
Target riser height (cm)Target riser height. The actual will differ, since the rise must divide into whole steps.
Tread depth (cm)Tread depth. Deeper treads suit shallower risers.

When to use it

Designing a staircase

The step count and actual riser are the first figures to settle, and everything else follows from them.

Checking an existing flight

Measuring an uncomfortable staircase against the comfort rule usually explains why it feels wrong.

Planning the space needed

The total run determines how much floor a staircase consumes, which is often the binding constraint.

Worked examples

Every figure in the tables below is produced by this page’s own calculator at build time, so the numbers and the tool always agree. Select any row to load that scenario.

How does the target riser change the flight?

The same rise divided by a range of target riser heights.

260 cm total rise, 27 cm treads
Target riserNumber of stepsActual riser heightComfort check (2×riser + tread)
16 cm1616.25 cm59.5 cm: outside the usual 60–65 cm comfort range
17 cm1517.33 cm61.7 cm: comfortable
18 cm1418.57 cm64.1 cm: comfortable
19 cm1418.57 cm64.1 cm: comfortable
20 cm1320.00 cm67.0 cm: outside the usual 60–65 cm comfort range
Targets of 18 and 19 cm produce the identical flight, 14 steps at 18.57 cm, because both round to the same step count. Only the 17 and 18 cm targets land inside the 60 to 65 cm comfort band with a 27 cm tread; 16 cm is too shallow and 20 cm too steep.

Questions

Why is the actual riser different from my target?

Because the total rise must divide into a whole number of equal steps. A 260 cm rise with an 18 cm target gives 14.4 steps, which rounds to 14, and 260 divided by 14 is 18.57. The target only selects the step count.

What is the stair comfort rule?

Twice the riser plus the tread should fall between about 60 and 65 cm. It reflects natural stride length: a taller step needs a shallower tread. Staircases outside the range feel cramped or stretched even when each dimension seems reasonable alone.

Must all the risers be equal?

Yes, and this is a genuine safety matter rather than a preference. People climb stairs without looking, and a single riser differing by even a centimetre causes trips. Building codes require uniformity within a few millimetres across a flight.

How much floor space will the stairs need?

The total run figure, which for this example is 351 cm. Steeper stairs use less floor but are harder to climb and may not meet code. Building regulations set maximum riser and minimum tread dimensions, which cap how steep you can go.

For railing spindles, see the baluster spacing calculator. For a ramp instead, see the ramp slope calculator.