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Builds AI-powered command-and-control software for defense systems, integrating autonomy, networking, and cyber capabilities for real-world military deployments.
Builds secure, scalable back-end services for an AI-driven defense platform, integrating autonomy, computer vision, and sensor fusion in Go, Python, or Rust.
Develop core robotics software for autonomous UAVs like Ghost, focusing on autonomy, sensor fusion, and real-time command systems in a defense-focused environment.
Build and maintain core robotics software for autonomous air-defense systems, including perception, motion planning, and sensor fusion, using C++/Rust on Linux.
Builds automated test platforms for AI-powered space systems, verifying hardware and software integration for military satellites and payloads.
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 owns software for autonomous air-defense systems that detect, track, and neutralize drone threats using AI, robotics, and real-time networking.
Build and scale AI-powered command-and-control software for military systems, integrating autonomy, networking, and distributed data layers to enable real-time decision-making at the tactical edge.
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.
Design and integrate security architectures for defense systems, including AI command platforms and aerospace vehicles, ensuring compliance and resilience across the full product lifecycle.
Lead weapons integration for autonomous air systems, designing interfaces and plans to safely mount and operate munitions on military platforms using MIL-STD-1553/1760 and datalinks.
Designs and validates AI-powered command-and-control systems for defense, integrating sensors, algorithms, and hardware to meet mission-critical requirements.
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.
Develops high-performance embedded software (Haskell-focused) for military electronic warfare systems, interfacing RF hardware, DSP algorithms, and Lattice OS; ensures deterministic builds and real-time mission-critical reliability.
Lead a team of embedded systems engineers building mission-critical, AI-powered software for defense applications using Rust and C++ in resource-constrained environments.
Develop low-level firmware for embedded systems on spacecraft, integrating sensors and microcontrollers to support military space missions and real-time command-and-control.
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