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Lead the end-to-end development of AI-driven autonomous air systems, coordinating software, hardware, and defense-acquisition lifecycles to deliver next-gen combat aircraft and strike systems.
Build autonomy software for military air vehicles, including motion planning, perception, and multi-agent coordination using AI and sensor fusion.
Lead the architecture and delivery of AI-powered autonomous maritime systems, integrating software across autonomy, simulation, and command-and-control stacks for defense applications.
Builds and owns mission-critical software for autonomous air-defense systems, integrating AI, robotics, and networking to detect and neutralize airborne threats in real time.
Builds and optimizes developer tooling and CI/CD pipelines for defense tech, using Go and Python to enhance productivity and security across global Software Factories.
Build core robotics software for autonomous UAVs like Ghost, integrating AI-driven autonomy, sensor fusion, and real-time command systems in a defense-focused product environment.
Builds core robotics software for autonomous air-defense systems, integrating perception, motion planning, and sensor fusion in C++/Rust on Linux.
Lead defense-tech programs developing autonomous weapons and AI-powered systems for the U.S. Department of Defense, coordinating engineering teams and customer delivery.
Designs and integrates small military drones, focusing on system architecture, prototyping, and real-time command-and-control software for autonomy and AI-driven operations.
A Systems Security Engineer at Anduril designs and implements security architectures for defense technologies, including AI-driven command-and-control systems, aerospace vehicles, and sensors, ensuring end-to-end security across product lifecycles while collaborating with engineering and government teams.
Develop and maintain embedded Linux systems for military-grade drones, focusing on ARM board bring-up, kernel drivers, and secure platform updates.
Designs and runs flight tests for autonomous military systems, analyzing data to validate AI-driven autonomy, sensor fusion, and mission performance in fast-paced defense tech.
Builds AI-powered path-planning and route-optimization algorithms for autonomous military systems and real-time command-and-control software using C/C++, Python, and Matlab.
Build and maintain automated test frameworks and GUIs for defense hardware, including PCBAs, AUVs, and flight vehicles, using Python, NixOS, and CI/CD pipelines.
Build and ship mission-critical software for next-gen electronic warfare systems, integrating with AI-powered command-and-control platforms under tight defense-industry timelines.
Build consensus protocols and distributed state management for autonomous military vehicles, integrating real-time telemetry and GenAI agents into Anduril’s Lattice OS.
Builds autonomy, perception, and networking software for military-grade robotic systems using C++/Rust, integrating AI-driven command-and-control platforms.
Build autonomy, sensor fusion, and guidance systems for next-gen UAVs and rocket motors, integrating software with hardware from concept to deployment.
Develops perception, planning, and autonomy systems for next-gen underwater robotic vehicles using C++/Python, sensor fusion, and AI to enable safe, long-range maritime missions.
Build high-performance embedded software for a next-gen electronic warfare platform, integrating RF hardware with AI-driven command systems using Rust or Haskell.
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