We build AI-guided interceptors to counter drones and cruise missiles, along with the software platform that powers them.
Our customers are NATO-aligned militaries and defense institutions, and our systems are regularly deployed during live exercises and operational demonstrations across Europe, the Middle East, and Asia.
Founded in 2024, we have grown to 90 people, raised over $60M, and increased revenue 40× this year.
We are now entering a new phase of international expansion, industrial scaling, fundraising, and product development.
ROLE & Missions: STRUCTURAL DESIGN & ANALYSISDesign and analyze the primary and secondary composite structures of our interceptor airframes (fuselage, wings/control surfaces, internal load-bearing components)Perform structural and stress analysis combining hand calculations and finite element analysis (FEA) to justify margins under static, dynamic, and high-acceleration loadsDefine and document load paths, free-body diagrams, and failure modes for all major structural elementsOwn composite laminate design, layup schedules, and bonding/joining strategies for carbon fiber structuresWEIGHT & PERFORMANCE OPTIMIZATIONAggressively optimize structural weight without compromising strength, given the platform's speed and maneuverability requirementsWork with Aerodynamics and Propulsion teams to balance structural mass, CG, and vibration constraints against flight performance targetsEvaluate design trade-offs between composite and metallic/CNC solutions where each makes senseTESTING & VALIDATIONSupport structural, vibration, shock, and environmental qualification testing of airframe components and subassembliesAnalyze test and flight data to identify failure modes, including:Fatigue and fractureCG shiftsVibration-induced damageSupport fast structural repairs and troubleshooting during flight test campaignsMANUFACTURABILITY & PRODUCTIONWork directly with manufacturing partners and internal fab.