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STARK, a defence technology company, seeks a Senior Software Engineer focused on aerial swarming to enable real-time cooperative autonomy on next-gen multi-UAV platforms.
You will work with decentralized routing, ROS2, and embedded compute to build robust, scalable swarming functionality, bridging simulations to field deployment.
Travel for field tests, cross-disciplinary collaboration, and hands-on software ownership are key to success.
About UsSTARK is a new kind of defence technology company revolutionizing the way autonomous systems are deployed across multiple domains. We design, develop and manufacture high-performance unmanned systems that are software-defined, mass-scalable, and cost-effective. This provides our operators with a decisive edge in highly contested environments.
We're focused on delivering deployable, high-performance systems - not future promises. In a time of rising threats, the company is bolstering the technological edge of NATO Allies and their Partners to deter aggression and defend Europe - today.
About the teamWe move fast, ship real software, and operate under constraints most engineers never encounter — low-bandwidth networks, air-gapped devices, high-stakes decision loops. There is no room for abstraction for its own sake. Everything we build ends up in the hands of real operators in the field.
Our Team is dedicated to a mission of pure strikes.
Your missionAs aSenior Software Engineer with a focus on Aerial Swarming, you will play a critical role in enabling real-time cooperative autonomy onboard next-generation multi-UAV platforms. You will work directly with decentralized routing networks, ROS2-based systems, and embedded compute platforms to build robust, efficient, and scalable swarming functionality.
You will contribute as a highly skilled individual contributor—hands-on with the system—bridging diverse codebases, optimizing real-time communications, and taking software from simulation through field deployment. Your work will be essential to ensuring that our autonomous multi-vehicle systems operate reliably in real-world, resource-constrained environments.