Design. Engineer. Manufacture

Creating motion technology and VR solutions for land, air, and sea.

Key Features

In House Manufacturing

Delta Kinetic Fabrication

Our design and manufacture process is done completely in-house to ensure security and quality.

Up to 6 Degrees of Freedom

Motion simulation platforms with 3, 4, and 6 degrees of freedom through linear and crank actuators.

Resilient Networks

We partnered with Blueflame Digital to provide reliable technology in high risk environments.

Motion Simulators

3-DoF motion platform

  • can move in pitch (tilting forwards and backwards), roll (tilting side to side), and heave (moving up and down).
  • recreates the feeling of driving over bumps, going up and down hills, or leaning into corners.
  • used in Royal Navy Reserve RHIB training and other boat crew training simulators.

4-DoF motion platform

  • 3-DoF platform but adds yaw, which rotates the simulator left and right
  • allows the cabin to turn as if the vehicle is changing direction
  • designed for truck driving, powerboat, racing, and flight simulators.

6-DoF motion platform

  • can move in pitch, roll, yaw, heave, surge (forward and backward movement), and sway (side-to-side movement)
  • allows the simulator to closely replicate how a real vehicle or aircraft feels during acceleration, braking, cornering, turbulence, and changes in direction.
  • customised for flight, marine, and other full-cabin training simulators

Resilient Networks

We partnered with Actuate Motion to create Resilient Networks. Our Resilient Networks are dedicated, private communication infrastructures deployed in isolated or operational environments- such as ports, mines, or industrial sites- where traditional internet access is not sufficiently secure or available. We ensure that they can operate independently of public networks and are able to handle massive data volumes while offering high security against threats. They combine specialised radios and standalone battery systems to allow uninterrupted connection between workers and devices. This makes them essential for critical operations that require continuous, fail-safe uptime regardless of external conditions- e.g. a port during high-risk repairs or a hurricane.

Engineering Process

We follow a structured engineering process to design and manufacture products. It begins by discussing your ideas and requirements before creating 2D and 3D CAD models using SolidWorks. These digital models are reviewed and refined until they meet both your expectations and engineering standards. We then build prototypes in our in-house manufacturing facility, allowing engineers to test the design, identify any issues, and make improvements quickly without relying on external suppliers. The in-house manufacturing provides higher security as opposed to outsourcing manufacturing. Once the prototype has been tested and refined, the product is redesigned where necessary using Design for Manufacture (DFM) principles to ensure it is efficient and cost-effective to produce. Finally, the completed design is manufactured in-house, enabling the company to maintain quality, improve production efficiency, and deliver a finished product that meets your requirements.

To learn more about our actuators click linear actuators or crank actuators.