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Stair Angle Calculator

Rise, run and stringer geometry

Calculate Stair Rise, Run and Angle

Calculate stair angle from one step, an entire flight or a design target. See actual riser height, tread depth, total run, stringer length, slope and the 2R + T comfort check in a live staircase diagram.

Measurement mode

Dimensions

Reference checks

Stair geometry result

How to calculate or figure out a stair angle

Divide vertical rise by horizontal run, then apply the inverse tangent. The same ratio can come from one representative step or from the entire flight. A stringer is the hypotenuse of the total-rise and total-run triangle.

Design mode

Design mode divides total rise into a whole number of equal risers. It rounds the riser count upward so the actual riser does not exceed the entered target, then uses one fewer tread than risers for a typical floor-to-floor flight.

Stair stringer, railing and trim angles

The displayed flight angle is also the primary slope reference for a straight stringer and a railing that follows the stair pitch. Compound cuts, landing transitions, posts, nosings and molding profiles may require additional project-specific angles.

2R + T check

The common comfort relationship adds twice the riser height to tread depth. It is a design aid, not a universal code rule. Landings, nosings, headroom, handrails, guards, width, consistency and local amendments still require project-specific review.

What stair angle is comfortable?

Many residential stairs fall roughly in the 30–37 degree range, but geometry and legal requirements vary. Use the editable range as a planning comparison only.

Are the number of treads and risers equal?

For a typical floor-to-floor flight, there is usually one fewer tread than risers because the upper floor acts as the final walking surface.

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