Engineered for mission-critical operations with next-gen cryptography, energy-efficient performance, and easy integration, it’s the smart choice for both defence and industrial drone fleets.
It is the world’s first quantum-resilient communication technology of its kind, developed specifically for Unmanned Aerial Vehicles (UAVs). It is a unique combination of post-quantum secure encryption, hardware-based root-of-trust, and fast data protection in a compact, lightweight module lightweight unit suitable for any mission-critical use case.
We provide secure, compliant communication infrastructure for organizations that have no room for error. Whether it's finance, healthcare, energy, or defense, our platform is now trusted throughout North America, Europe, the Middle East, and Asia—delivering quantum-resistant innovation to the world's most challenging sectors.
It is a secure communication system for UAVs using next-generation, quantum-resistant cryptography like CRYSTALS-Kyber. This protects mission-critical drone data and control signals from both current and future quantum computing threats, ensuring long-term security for defense, government, and telecom sectors.
The platform meets leading US and international standards—including NIST PQC (FIPS 203), FIPS 140-2/3, and utilizes validated quantum-resilient algorithms. This ensures compliance and future-readiness for government and critical infrastructure deployments.
It offers built-in post-quantum encryption, hardware root-of-trust, real-time tamper detection, secure OTA updates, and hardware-based random key generation (QRNG). The design is modular and supports multiple communication protocols and easy integration with legacy systems, all with minimal power consumption for UAV operations.
Quantum-resilient cryptography combined with tamper-resistant hardware, secure key provisioning, and continuous crypto health checks provide robust protection. Real-time encryption secures video, telemetry, and control data, preventing eavesdropping or interception by adversaries—even with future quantum capabilities.