High-reliability cockpit systems, fly-by-wire architecture, and autonomous navigation platforms engineered for extreme operational environments. DO-178C/DO-254 certified from day one.
Modular, scalable, and certified solutions designed for UAVs, manned fighters, and commercial airliners.
Partitioned computing architecture that consolidates multiple avionics functions onto shared hardware, reducing SWaP-C while maintaining strict temporal and spatial isolation.
Digital control systems with full-authority envelope protection, adaptive control algorithms, and fault-tolerant actuator management for high-AoA and supersonic flight regimes.
Multi-source inertial navigation fused with GNSS, radar, and EO/IR data for GPS-denied environments. Includes INS, DVL, and terrain-referenced navigation (TRN).
Multi-function displays (MFDs), Head-Up Displays (HUDs), and glass cockpit interfaces with customizable symbology, voice control integration, and crew alerting systems.
Seamless bidirectional communication across all flight domains with deterministic latency and cryptographic security.
IMU, Radar, EO/IR, Altimeters
ADCS, Signal Conditioning
IMA Rack, Flight Computer
Flight Surfaces, Thrust Vector
Displays, SATCOM, Link 16
Every subsystem is developed and validated against the highest aerospace and defense standards.
Level A/B certified flight-critical software with comprehensive verification, coverage analysis, and configuration management.
Rigorous development lifecycle for FPGA, ASIC, and VLSI components used in safety-critical avionics systems.
Qualified for extreme temperature, vibration, shock, EMI/EMC, and altitude conditions across the flight envelope.
Defense-in-depth architecture, secure boot, encrypted datalinks, and continuous threat monitoring for modern airframes.
From preliminary design reviews to flight testing, our avionics engineering team provides end-to-end support. Request a system architecture review or schedule a technical deep-dive.