Senior Director of Avionics Engineering (R3401)
Shield AI
What You'll Do
- Lead the end-to-end development of avionics systems across aircraft platforms, from concept through flight test and production.
- Architect and guide the integration of flight computers, mission processors, navigation systems, RF communications, and payload interfaces.
- Develop robust, GPS-/RF-denied navigation solutions integrating INS, visual odometry, radar-aided systems, and other sensors.
- Build and manage a high-performing multi-disciplinary engineering team (EE, embedded SW, RF, systems, test).
- Ensure avionics meet performance, safety, environmental, and EMI/EMC compliance standards, including DO-254, DO-178C, MIL-STD-810, and MIL-STD-461.
- Collaborate across autonomy, software, airframe, and manufacturing teams to ensure cohesive and high-performance system integration.
- Drive technical planning, supplier decisions, and make/buy strategies for avionics subsystems.
- Lead design reviews, system validation, failure analysis, and flight test readiness.
Avionics Architecture & Design
- System-level avionics architecture (modular, redundant, SWaP-optimized)
- Distributed computing/networking (e.g., Ethernet, CAN, ARINC 429, MIL-STD-1553)
- Sensor and payload integration (e.g., EO/IR, radar, SIGINT, LIDAR)
- Proven experience designing and leading complex avionics systems architecture
- Expertise in distributed computing and avionics data buses (e.g., Ethernet, CAN, ARINC 429, MIL-STD-1553)
- Integration of mission and flight computers, navigation systems, radios, and payload interfaces
Flight Computers & Embedded Systems
- Selection/design of mission and flight control computers
- Real-time embedded systems (RTOS, bare-metal, or Linux-based)
- Board bring-up, BSP development, and hardware/software co-design
Power & Signal Integrity
- Power distribution for avionics systems (28VDC, high-reliability power supplies)
- EMI/EMC design and testing (MIL-STD-461)
- Signal integrity for high-speed digital buses (e.g., PCIe, Ethernet)
Software Engineering Knowledge
- DO-178C software lifecycle concepts
- Avionics middleware (e.g., DDS, ROS 2, custom pub/sub frameworks)
- Cybersecurity for embedded and avionics systems (air gap, encryption, secure boot)
Leadership-Oriented Technical Skills
- Technical roadmap planning and architecture evolution
- Make/buy decisions for avionics and COTS components
- Supplier management (technical performance, quality, delivery)
- Cost, schedule, and risk tradeoffs in technical planning
- Mentorship and team technical upskilling