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

Glossary · Motion control and drives

Inverse kinematics

Also known as: Backward kinematics, Reverse kinematics

German: Inverse Kinematik

In robotics and motion control, inverse kinematics is the calculation of the joint or axis positions that place the tool or end effector at a desired position and orientation. Depending on the kinematics, there may be several solutions, one, or none.

  • Motion control

In one sentence

Inverse kinematics calculates the joint positions needed to put a robot's tool at a desired position and orientation.

Example

When a robot program specifies a Cartesian target, the controller uses inverse kinematics to find the six joint angles and picks the configuration set in the program.

How it applies

  • Engineering: Six-axis robots usually have several solutions for one pose (for example elbow up or down). Programs store a configuration so the robot always chooses the same one.
  • Commissioning: Near singularities, small Cartesian moves require very fast joint moves; controllers slow down or stop there.
  • Operation: Linear moves through a singularity can fail with an error; joint moves avoid this.
  • Documentation: Explain configurations and singularities in programming manuals with figures, and describe the error messages and recovery. Tell readers that unexpected joint motion near singularities is possible and must be considered when teaching near people.

Inverse vs. forward kinematics

Forward kinematics always has one answer: where the tool is for given joints. Inverse kinematics solves the opposite problem and may be ambiguous or unsolvable.

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

Source: AI TechDoc Knowledge editorial definition, based on robotics 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!