Job Description
About Us
STARK is a defense technology company revolutionizing the way autonomous systems are deployed across multiple domains. We design, develop and manufacture high-performance unmanned vehicles that are software-defined, mass-scalable, and cost effective – giving NATO and its allies a decisive edge in the most contested environments. We're focused on delivering deployable, high-performance systems—not future promises. In a time of rising threats, STARK is bolstering the technological edge of NATO Allies and their Partners to deter aggression and defend Europe—today.
Your mission
As a Robotics Engineer with a focus on embedded perception systems, you will play a critical role in enabling real-time autonomy onboard next-generation UAV platforms. You will work directly with camera data pipelines, ROS2-based systems, and embedded compute platforms to build robust, efficient, and scalable perception functionality.
You will contribute as a highly skilled individual contributor—hands-on with the system—bridging diverse codebases and enabling data flows across native ROS2 nodes, legacy frameworks, and containerized third-party modules. Your work will be essential to ensuring that our autonomous systems operate reliably in real-world, resource-constrained environments.
Responsibilities
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Develop and integrate real-time perception pipelines on embedded platforms such as the Jetson Nano NX.
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Migrate legacy monolithic systems to ROS2, refactoring and modularizing components for better scalability and maintainability.
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Enable and optimize image data access across native and containerized components (e.g., Dockerized ROS2 processes).
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Design and implement low-level camera and sensor drivers for real-time vision acquisition.
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Collaborate with AI, controls, and hardware teams to ensure tight integration between perception and other onboard subsystems.
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Profile and debug system performance under embedded constraints (compute, thermal, bandwidth), ensuring stability and robustness in field deployments.
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Contribute to system-level architecture discussions with a focus on communication reliability and modularity.
Qualifications
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Bachelor's or Master's degree in Engineering or a related technical field.
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Strong experience with ROS2, including real-world deployment and integration of perception modules.
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Proficient in Python and C++ for embedded and robotics development.
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Solid background in robotics, autonomous systems, embedded development, or aerospace applications.
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Familiarity with embedded Linux platforms, particularly NVIDIA Jetson devices.
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Experience integrating containerized processes (e.g., Docker) into onboard robotic systems.
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Ability to navigate and coordinate between different frameworks (ROS2, legacy/custom codebases, third-party modules).
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Strong problem-solving and debugging skills, especially in real-time or resource-constrained environments.
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Effective communicator and team player in multidisciplinary engineering teams.
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Self-driven, organized, and adaptable to fast-paced development cycles.
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Willingness to travel occasionally for field testing and deployment.
