Technology
The technology behind intelligent quantum satellites
Four engineering domains work together: computing that thinks in orbit, quantum links that cannot be silently intercepted, quantum sensors that measure what classical instruments cannot, and a platform that carries it all.
Overview
Core technologies

Onboard AI Computing
Radiation-tolerant edge processing for autonomous spacecraft
An intelligent satellite needs to decide in orbit, not after the next downlink. AIQSAT builds the onboard computing stack: radiation-tolerant AI accelerators, model compression and a flight software layer that lets neural networks run safely next to the platform's critical functions.

Quantum Communication
Quantum key distribution and optical links between orbit and ground
Quantum communication makes an intercepted link detectable by physics rather than by policy. We work on satellite quantum key distribution, free-space optical terminals and the classical post-processing that turns single photons into usable encryption keys.

Quantum Sensing & Photonic Payloads
Atomic clocks, cold-atom sensors and entangled photon sources
Quantum sensors measure time, gravity and magnetic fields with an accuracy classical instruments cannot reach. Combined with AI-based signal processing, they turn faint physical effects into usable geophysical, navigational and situational data.

Satellite Platform & Ground Segment
The bus, the links and the automated chain down to your systems
Intelligent payloads need a platform that can carry them and a ground segment that can use them. We design the satellite bus, the inter-satellite network and the automated tasking and processing chain that delivers results into operational systems.
