Multi-orbit sovereign network
Low, medium and geostationary orbits combined into one resilient fabric.
Traffic is routed across several orbital layers at once. Low Earth orbit delivers low latency, medium orbit adds wide-area capacity and geostationary assets provide persistent coverage. If one layer degrades — through interference, weather or an outage — sessions move to another layer without the user noticing. Ground gateways in European jurisdiction keep data and routing under sovereign control.
- Seamless hand-over between LEO, MEO and GEO
- European gateways, European jurisdiction
- No single point of failure in the routing path
Quantum-safe encryption and key distribution
Every session protected against today's and tomorrow's attackers.
Links are secured with post-quantum key exchange, hardware-backed identities and optional quantum key distribution over optical channels. Keys never leave certified hardware, and a compromised ground node cannot expose past traffic. For classified environments, national key material can be injected and managed entirely by the customer — we operate the transport, never the secret.
- Post-quantum cryptography end to end
- Optical quantum key distribution where required
- Customer-held keys and national crypto integration
Laser backbone with radio fallback
Optical inter-satellite links carry the load, radio guarantees continuity.
The backbone runs on narrow optical beams between satellites: high bandwidth, hard to intercept, independent of congested radio spectrum. Where cloud cover or terminal constraints make optics impractical, encrypted radio channels take over automatically. The network decides per second which path offers the best combination of latency, capacity and protection.
- Directional optical links resistant to jamming
- Automatic fallback to protected radio bands
- Per-second path selection by on-board AI
AI network defence
The same AI that watches orbit also watches the link.
Jamming, spoofing, traffic analysis and unusual command patterns are detected in real time and answered automatically: beams are re-pointed, frequencies hopped, routes re-planned and affected terminals isolated. Because connectivity and space-safety run on one platform, a physical threat to a satellite and a cyber threat to a link appear in the same operational picture with the same time-to-act.
- Real-time jamming and spoofing detection
- Automatic beam, frequency and route reconfiguration
- Cyber and orbital threats in one alert queue
Position, navigation and timing assurance
A trusted clock and a trusted position, even when satnav is denied.
Precise timing and position are distributed over the same secure links, with cross-checks against multiple independent sources. When a navigation signal is jammed or spoofed, users keep an authenticated time and position reference — the foundation for financial systems, energy grids, aviation, shipping and military operations alike.
- Authenticated timing distribution
- Spoofing-resistant position cross-checks
- Backup reference for critical infrastructure
Terminals from briefcase to backbone
One network, from a pocket device to a national gateway.
The same encrypted service reaches a hand-carried terminal in a crisis zone, a vehicle or vessel on the move, an embassy roof, a corporate site and a national gateway. Terminals authenticate themselves cryptographically, receive only the traffic classes they are cleared for and can be revoked centrally within seconds if lost.
- Portable, mobile, maritime, airborne and fixed terminals
- Cryptographic device identity with instant revocation
- Clearance-based access to traffic classes