Nyx Industries NYX INDUSTRIES
Systems

Three systems, one stack.

Each one runs on AMD adaptive silicon inside the vehicle, with no cloud service in the loop.

How we choose the tools

We design custom logic sparingly, and we will tell you when you do not need it.

Custom logic on AMD adaptive silicon, where physics leaves no alternative

Some loops cannot be closed by general-purpose compute at any price. When the budget is set by the airframe or the vehicle rather than by the software team, the compute has to change shape.

  • Guidance and control loops with bounded, deterministic timing
  • Platforms constrained by size, weight and power
  • Contested or disconnected environments, air-gapped by design

Integration, everywhere else

Most of the time the constraint is ownership of the working system rather than compute. We integrate on whatever silicon fits your program, and we stay on the hook for it.

  • Architecture, controls, firmware and application software as one program
  • Open interfaces: ROS 2 and MAVLink, with a message architecture aligned to modular open systems practice
  • Support that outlives the integration

Where the compute lives

Every Nyx system runs on AMD adaptive platforms, chosen to fit the power budget of the machine.

PlatformRoleWhat runs thereStatus
AMD Kria K26 SOM / KV260Autonomy and visionPerception, sensor fusion and control for air, ground and legged platformsIn use
AMD Kria KD240Motion controlReal-time drive and actuator control at the point of actuationIn development
AMD Alveo U50Language model inferenceTernary language models with grounded retrieval on a single cardIn use
AMD Versal adaptive SoCsNext generationLarger models and multi-sensor fusion at the edgeRoadmap

Status labels are literal. In use means deployed and measured. Roadmap means a target we have not yet demonstrated.

Put a system on your platform.

Program offices, primes and integrators reach the founders directly. We answer with questions, not a brochure.

Build systems that have to work the first time.

Autonomy, FPGA design and embedded controls, on hardware that flies.