Integrated Avionics & Flight Control

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.

99.999%

System Uptime

<2ms

Control Latency

Triple

Redundancy Architecture

DO-254

Hardware Certified

Core Platforms

Avionics System Architecture

Modular, scalable, and certified solutions designed for UAVs, manned fighters, and commercial airliners.

Integrated Modular Avionics (IMA)

Partitioned computing architecture that consolidates multiple avionics functions onto shared hardware, reducing SWaP-C while maintaining strict temporal and spatial isolation.

ARINC 664Avionics EthernetA429/FD-125

Fly-By-Wire & Flight Control

Digital control systems with full-authority envelope protection, adaptive control algorithms, and fault-tolerant actuator management for high-AoA and supersonic flight regimes.

FBWEnvelope ProtectionRUD
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Sensor Fusion & Navigation

Multi-source inertial navigation fused with GNSS, radar, and EO/IR data for GPS-denied environments. Includes INS, DVL, and terrain-referenced navigation (TRN).

Kalman FilteringINS/GNSSTRN
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Cockpit Displays & HMI

Multi-function displays (MFDs), Head-Up Displays (HUDs), and glass cockpit interfaces with customizable symbology, voice control integration, and crew alerting systems.

LCD/OLEDHUDEADI/EHSI
Data Flow

System Integration Architecture

Seamless bidirectional communication across all flight domains with deterministic latency and cryptographic security.

Sensors & Payloads

IMU, Radar, EO/IR, Altimeters

Data Acquisition

ADCS, Signal Conditioning

Core Processing

IMA Rack, Flight Computer

Actuators & Control

Flight Surfaces, Thrust Vector

Cockpit & Uplink

Displays, SATCOM, Link 16

Certification & Standards

Engineering Compliance

Every subsystem is developed and validated against the highest aerospace and defense standards.

Software DO-178C / ED-12C

Level A/B certified flight-critical software with comprehensive verification, coverage analysis, and configuration management.

Hardware DO-254 / ED-80

Rigorous development lifecycle for FPGA, ASIC, and VLSI components used in safety-critical avionics systems.

Environmental DO-160G / MIL-STD-810H

Qualified for extreme temperature, vibration, shock, EMI/EMC, and altitude conditions across the flight envelope.

Cybersecurity RTCA DO-356A / DO-326A

Defense-in-depth architecture, secure boot, encrypted datalinks, and continuous threat monitoring for modern airframes.

Technical FAQ

Engineering Inquiries

What redundancy architecture do you recommend for fly-by-wire systems?
We typically implement triple-modular redundancy (TMR) with independent voting logic, cross-strapping channels, and dissimilar software/hardware designs to eliminate common-cause failures. For critical flight control laws, we provide quadruplex options with majority voting and fault isolation units (FIU).
Do your IMA platforms support ARINC 664 Part 7 (AFDX)?
Yes. Our A400-series IMA rack is fully compliant with ARINC 664 Part 7, supporting virtual links, bandwidth management, and deterministic latency guarantees required for commercial and military transport aircraft networks.
How do you handle GPS-denied navigation for autonomous operations?
Our navigation suite fuses high-grade ring laser gyroscopes, tactical accelerometers, and terrain contour matching (TERCOM) with Doppler velocity logs. When GNSS is degraded or spoofed, the system seamlessly transitions to dead reckoning and celestial/terrain referencing with <50m CEP over 200nm.
What cybersecurity certifications are included in the baseline avionics package?
All platforms ship with hardware-level cryptographic modules (FIPS 140-3 validated), secure boot chains, and DO-356A baseline security engineering. We also provide OTA secure update pipelines and continuous intrusion detection systems (IDS) for networked airframes.

Integrate Advanced Avionics into Your Platform

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.