• 01

    Industrial automation

    Motion control, machine interfaces, deterministic fieldbus links and equipment that has to run for a decade.

  • 02

    Robotics

    Real-time control loops, sensor fusion, safe motion and the compute that has to fit inside a moving machine.

  • 03

    Machine vision & imaging

    High-speed sensor interfacing, FPGA image pipelines and inference close to the sensor.

  • 04

    Medical devices

    Precision analogue front ends, traceable design records and hardware built to survive an audit.

  • 05

    Aerospace & defence

    High-reliability electronics, long lifecycles, documented design decisions and controlled component sourcing.

  • 06

    Industrial IoT

    Low-power sensor nodes, secure connectivity, fleet provisioning and firmware you can update in the field.

  • 07

    Automotive electronics

    CAN and automotive Ethernet, harsh-environment hardware and functional-safety-aware design practice.

  • 08

    Scientific instrumentation

    High-speed acquisition, timing accuracy, noise budgets and measurement you can defend with numbers.

What they share

Three requirements that turn up in every one of them

Long life, no reboot

These products sit in machines, vehicles and installations for ten years or more, often somewhere nobody will visit. Component lifecycle, field update paths and failure behaviour are design inputs, not afterthoughts.

Deterministic behaviour

Averaging fast is not the requirement. A control loop, a safety interlock or a line-scan pipeline has to meet its deadline every single cycle, and be able to prove it.

Documented decisions

Audits, certifications and the engineer who inherits the project in four years all need the same thing: written reasons for the choices, and measurements that back them up.

Get in touch

Your sector not listed?

The list describes where our work has ended up, not a limit. If your product has sensors, a deadline and a certification path, the engineering is the same conversation.