VisionX provides AI‑driven onboard intelligence for space and defense missions, delivering mission‑critical flight computers and software that run on real‑time operating systems for health monitoring, fault management, and data processing.
Funding
Funding not disclosed
Founders
Product
Problem
Space and defense missions require reliable, real‑time onboard computing to monitor system health, manage faults, and process large volumes of sensor data, but traditional flight computers lack the adaptive AI capabilities needed for autonomous operation in harsh LEO, GEO, and deep‑space environments.
Solution
VisionX delivers AI‑driven flight computers and smart payload controllers that run on real‑time operating systems and incorporate FPGA‑based AI accelerators. Proprietary algorithms enable on‑board health monitoring, fault detection, and adaptive response without ground intervention. The platforms support multiple space‑qualified interfaces (MIL‑STD‑1553, CAN, SpaceWire, RS422/RS485) to integrate seamlessly with satellite subsystems. By processing data directly on the spacecraft, VisionX reduces latency, conserves bandwidth, and enhances mission resilience across a range of orbital regimes.
Target Audience
Primary customers are satellite manufacturers, defense contractors, and mission integrators that require high‑performance, autonomous onboard computing for LEO, GEO, and deep‑space missions.
Features
- Real‑time flight computers with health monitoring, fault management, and time synchronization functions
- FPGA‑based AI accelerators executing proprietary algorithms for on‑board data analysis
- Support for space‑qualified communication protocols (MIL‑STD‑1553, CAN, SpaceWire, RS422/RS485)
- Integrated software stack for interface coordination, telemetry/command oversight, and network health surveillance
- Ground support tools for procedure execution, telecommand monitoring, and real‑time data visualization
- End‑to‑end verification workflow including closed‑loop testing, subsystem validation, and environmental stress screening