Glossary Updates12 new terms added to the glossaries · October 2, 2026, 22:44 CEST
AI TechDocKnowledge

Glossary · Motion control and drives

Linear motor

Also known as: Linear servo motor

German: Linearmotor

In motion control, a linear motor is an electric motor whose primary part (forcer) and secondary part (magnet track or reaction rail) are laid out flat, so it produces a linear force and motion directly instead of torque and rotation.

  • Motion control

In one sentence

A linear motor produces straight-line force and motion directly, like an unrolled rotary motor, without screws or belts.

Example

A semiconductor handling system uses linear motors for fast, precise X-Y positioning without ball screws.

How it applies

  • Engineering: Linear motors reach high speeds, accelerations and accuracy. They need a linear encoder, guides, a cable management system and, for vertical axes, a brake or counterbalance since there is no self-locking.
  • Commissioning: Commutation, loop tuning and end stops are set up carefully; the high dynamics make limit and collision behavior important.
  • Maintenance: Magnet tracks attract ferromagnetic particles and tools; cleanliness and covers matter.
  • Documentation: Warn about strong magnetic fields (risk for people with pacemakers or implants), crushing between the forcer and the magnet track, and uncontrolled falling of vertical axes. Explain safe handling of magnet tracks during installation.

Linear motor vs. linear actuator

A linear actuator converts rotary motion into linear motion, for example with a ball screw or belt. A linear motor generates linear force directly.

By knowledge.aitechdoc.world · Published September 26, 2026 · Last reviewed

Source: AI TechDoc Knowledge editorial definition, based on motion control practice

Definitions follow the cited standards and specifications. Where a source is a copyrighted publication, such as an ISO, IEC or EN standard, the definition is a close paraphrase, not a verbatim quotation, so as not to infringe copyright. We recommend reading the original publication. The sections “How it applies” are editorial commentary by AI TechDoc Knowledge and are not part of any standard.

Seen a mistake? Send us a note!