The loop has to close in microseconds, inside the airframe, with nothing to phone home to.
Deterministic guidance and autonomy on reconfigurable silicon, sized to the platform rather than to the software team.
What it costs you
This is the one segment where the compute really is the constraint.
General-purpose compute does not fit
The power and thermal budget is decided by the airframe. A module that needs a fan and a heatsink has already lost the argument before anyone benchmarks it.
Latency you cannot bound you cannot certify
An operating system and a scheduler introduce jitter that is fine in a data center and unacceptable in a guidance loop. Worst case is the only case that matters.
Dependency is program risk
Cloud services, foreign model weights and single-vendor stacks are procurement problems before they are technical ones, and they surface late.
See it running
Field footage from our own programs. No renders, no simulation.
Where this has been proven
Autonomy stack, flight proven measured
Perception and control on one low-power module, flown across fixed-wing, ground and legged platforms.
AMD Kria KV260US Army xTech award awarded
Competitively awarded against a national field for fire control and flight guidance. Demonstration October 2026.
Public competitive resultUnit airborne swarm measured
Multi-vehicle coordination on the same stack, with preflight discipline that verifies data flow rather than configuration.
Nyx internal programThe first step
A scoped demonstration against your platform and your threat case, with the success criteria agreed before anything is built.
For program-sensitive inquiries, contact us directly rather than through a web form.
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