AxiomArc is an autonomous agent that monitors spacecraft radiation environments, runs effects analysis across your entire board stack, and delivers hardened design recommendations — 24/7, without a ticket queue.
Verifying that a spacecraft circuit survives in orbit takes months of manual simulation, radiation testing, and cross-referencing component databases. The engineers who can do this work are scarce. The simulations take too long. And the moment something shifts — an orbit change, a new component, a solar event — you're starting over.
Radiation hardening shouldn't require a team of specialists and a six-month gate review. It should be a continuous, automated process — built into the design loop from the first schematic to the day the hardware launches.
AxiomArc replaces the months of grunt work. It reads your component lists, cross-references radiation failure databases, models TID and SEE rates for your specific orbit, flags the weak points, and outputs hardened design guidance — in hours, not months.
Upload your component list or schematic. AxiomArc cross-references every part against rad-hard failure databases (TID, SEE, SEL) and returns a ranked risk report with failure probabilities by orbit region.
Specify your orbital parameters. The agent pulls space radiation environment data (CREME96, AP-8/AE-8) and models cumulative dose, trapped particle flux, and solar event vulnerability for your exact altitude and inclination.
For Xilinx/AMD Versal, rad-hard processors, ethernet PHYs, and PCIe switches — the agent identifies TMR requirements, scrubbing rates, and configuration hardening for your specific radiation environment.
Watchdog agent runs continuously, tracking new component qualification data, rad-hard errata notices, and solar event predictions. Alerts when your stack has a newly exposed vulnerability — no manual check required.
The agent doesn't just flag problems — it generates hardened design recommendations. Mitigated component substitutions, redundancy architecture, layout modifications, and shielding guidance ranked by effectiveness vs. weight penalty.
Generates complete radiation hardness assurance (RHA) documentation for your design review: failure mode summaries, mitigation traceability, radiation test plans, and audit-ready reports for NASA/ESA compliance.
Drop a component list, BOM, schematic export, or board description. The agent parses everything — part numbers, quantities, power budgets, interfaces.
Enter orbital parameters (altitude, inclination, mission duration) or radiation zone. AxiomArc pulls the appropriate space radiation models and sets up your analysis environment.
The agent cross-references every component against radiation failure databases, models cumulative and transient effects, and identifies single-event vulnerabilities across your full board stack.
Get a ranked risk report with failure probabilities, hardened design recommendations, mitigation options, and RHA documentation — ready for your design review, not a first draft.
Radiation effects analysis cycle time
Saved per orbit insertion with pre-qualified components
Continuous monitoring vs. point-in-time audits
AxiomArc was built for the engineers who understand this better than anyone — the ones who've lived through a board respin after a radiation test failure, who know what a single-event latchup costs in schedule and budget, and who are tired of spending months doing work an AI agent could do in days.
This isn't a chatbot for radiation 101. It's a working tool for engineers who already know the domain — augmented by an AI that knows your design, your orbit, and your component stack as well as you do.
The goal is simple: every spacecraft electronics designer — from aerospace primes to smallsat startups — has access to continuous, autonomous radiation hardening that used to require a government lab and a year of testing. We're building that future now.