One framework. Many dynamic systems.

One framework. Many dynamic systems.

Dynaxis is being developed first through motorcycles, where rider movement, control input, motorcycle response and terrain continuously interact to determine performance. The underlying Control-State Intelligence architecture is designed to extend to other dynamic interactions where human control, platform behaviour and operating environment combine to shape the outcome.

MOTORCYCLES · FIRST COMMERCIAL IMPLEMENTATION

Dynaxis Gen 1 is being developed around motorcycle riding, where rider technique, spatial state, control input, motorcycle response and terrain interaction combine continuously to influence performance.

EQUESTRIAN · IDENTIFIED FUTURE DEVELOPMENT APPLICATION

A future application where rider position and control, horse movement and response, and the operating environment form a complex coupled interaction.

MOUNTAIN BIKING / CYCLING · POTENTIAL FUTURE APPLICATION

Rider movement, weighting, control input, bicycle dynamics and terrain directly influence performance, stability and control.

SNOWMOBILES · POTENTIAL FUTURE APPLICATION

Rider movement, weighting, machine dynamics, traction and changing snow or terrain conditions create a highly dynamic human-platform interaction.

SNOW SPORTS · POTENTIAL FUTURE APPLICATION

Snowboarding and skiing involve human movement, balance, loading and terrain interaction directly influencing the resulting dynamic state.

OTHER RIDER-CONTROLLED PLATFORMS

Potential future application across other two-wheel or rider-controlled systems where human spatial state and control materially influence platform response.

FUTURE HUMAN-PLATFORM INTERACTIONS

Future exploration of dynamic systems where human control, platform behaviour and environmental conditions combine to determine performance.

CONTROL-STATE EXPLORATION

Dynaxis is being developed around the principle that, in many dynamic activities, the human forms part of the dynamic control system.

DYNAXIS SYSTEMS LIMITED · PATENT PENDING

Built for dynamic systems