Mission workload
Inference, optimization, solving, triage or onboard anomaly detection.
Technology
EnergyIR connects mission software to low-energy onboard compute, preserving data locality and producing verifiable results under spacecraft constraints.
Inference, optimization, solving, triage or onboard anomaly detection.
Lowers workload graphs into energy-aware execution plans.
Schedules by power, heat, latency, fidelity and mission priority.
Runs stochastic processing and matrix operations close to resident data.
Signs result provenance so ground teams can audit what was computed.
Onboard versus offboard
When energy, heat, latency and bandwidth are limited, every computation matters. EnergyIR combines thermodynamic hardware, mission-aware software and cryptographic proof for environments where failure is not an option.
EnergyIR SystemsUp to 98% lower energy for core compute operations.
Up to 8.8x measured speedup on real workloads.
Run advanced models locally, not in the cloud.
Every result is signed, logged and independently re-verifiable.
Radiation-aware hardware, thermal efficient, fault tolerant.
A complete audit trail of what was computed and why.
Our platform
EnergyIR is a compiler, runtime, OS, and silicon stack purpose-built to maximize computation that stays on the spacecraft, reducing energy, data movement and dependence on Earth.
Platform detailsDevice-independent compilation to the optimal backend.
Mission-aware scheduling, energy and fidelity management.
Maximize data residency. Minimize movement.
Cryptographic certificates for every computation.
Solutions
EnergyIR helps spacecraft process more data locally, make faster decisions, and reduce dependence on high-latency ground loops.
Mission fit
EnergyIR can assess whether your workload belongs in compiler optimization, runtime scheduling, PB64 stochastic processing, CLAS16 matrix execution, or proof infrastructure.
Trust signals