Motorcycle Ergonomics Simulator / riding position data

Cruiser riding position ergonomics: reach and angles

For a rider with the default 560 mm torso, 320 mm upper arm, 340 mm forearm, 450 mm thigh, 450 mm shin, 840 mm inseam (about 33 in), the cruiser riding position (feet further forward: bar 400 mm forward and 310 mm above the hip, footpeg 500 mm forward and 480 mm below the hip, 700 mm seat height, 8 deg torso lean) models to a 100.7 deg knee angle and 75.5 deg elbow angle, both within geometric reach, and a +140 mm inseam-minus-seat gap. Computed with the Rider Triangle geometry model, method version 1.0.0, reviewed 2026-09-11.

Cruiser preset control coordinates, hip-relative
ControlValue
Bar reach from hip400 mm
Bar height above hip310 mm
Footpeg forward of hip500 mm
Footpeg below hip480 mm
Seat height700 mm
Torso forward lean8 deg

Modeled result

Modeled knee angle
100.7 deg
Modeled elbow angle
75.5 deg
Inseam minus seat height
+140 mm
Geometric fit band
30/100, a strained geometric posture band. Not a comfort or safety measurement.

What the cruiser position changes

The cruiser category (feet further forward) moves the footpeg and handlebar coordinates relative to the hip, and changes the torso-lean assumption used to place the shoulder. Moving the footpeg further forward and the handlebar further forward and lower increases forward lean and can close down the elbow and knee angles for a given limb length; moving the seat lower shifts the inseam-minus-seat comparison without changing arm or leg geometry at all. These are broad editorial planning categories, not specifications for a manufacturer or model, and seat height and control layout vary widely within any one style. The computed angles above use this tool's own law-of-cosines solver against the default rider measurements; change the measurements in the simulator to model your own body.

A knee or elbow angle near 180 degrees is closer to straight; a smaller angle is more bent. An unreachable result means the straight-line distance between the joint endpoints is outside the sum or difference of the two limb segments for that body, not a measurement error. None of this establishes comfort, footing, clearance, or safe control; confirm the real motorcycle in person.

Open this setup in the simulator