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Engineering · GD&T

Angularity.

An orientation tolerance for surfaces and axes at any specified angle other than 0° or 90°. Tolerance zone is two parallel planes (or a cylinder) at the basic angle to a referenced datum.

Symbol
Category
Orientation
Datum required?
Yes
Standard
ASME Y14.5

01 · Definition

Same as parallelism, different angle.

Angularity completes the orientation triplet alongside parallelism (0°) and perpendicularity (90°). For any other angle, angularity is the right control.

The basic angle (the nominal target) is shown on the drawing as a basic dimension — typically boxed (e.g., 30° in a frame). The angularity tolerance specifies how much the actual feature can deviate from that basic angle, expressed as a tolerance zone bounded by two parallel planes (or a cylinder) at the basic angle to the datum.

02 · FCF and example

Angled mounting surface for sensor.

∠ 0.005 A
Angularity, 0.005″ tolerance zone at basic angle (specified separately as a basic dim) to datum A

A defense electronics housing with a sensor-mount surface specified at 30° to the base (datum A). The drawing shows the basic angle in a frame (e.g., a boxed 30°) and the angularity FCF as ∠ 0.005 A. The actual surface must lie within two planes 0.005″ apart, both oriented exactly 30° from datum A.

Inspection: 5-axis CMM with the actual surface measured against the basic-angle plane. The high-low difference is the actual angularity error.

Production: 5-axis machining is the right tool. 3+2 indexed lets you mill the angled surface in one setup with full surface-finish control. See Kitamura 5-axis deep-dive.

03 · Common applications

Where angularity matters.

  • Aerospace bracket pad-up surfaces at non-square mounting angles
  • Optical mounts for off-axis sensors and beam-splitters
  • Defense fire-control housings where sensor packages mount at calculated angles
  • Hydraulic manifolds with angled port intersections
  • UAV pylons and missile-mount hardware with off-vertical attachment angles

Technically reviewed by the True Precision Machining engineering team · Last reviewed June 2026

Standards referenced: ASME Y14.5-2018

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