Anduril Industries
Manufacturing Engineer, Fury
About this role
Join Anduril's Fury team to engineer the manufacturing processes for advanced autonomous aircraft, scaling from prototype to full production. You'll own critical product areas spanning aircraft structures, composites, and electromechanical systems, driving tooling, process flows, and build documentation for defense-grade hardware.
What you'll do
- Own manufacturing value chain for assigned product areas from prototype through production rate
- Design and develop tooling for fabrication and assembly of structural components
- Create process flows that decompose complex assemblies into logical subassemblies and sub-processes
- Author build documentation including work instructions, quality plans, and inspection requirements
- Drive manufacturability improvements and iterate designs for production efficiency
- Collaborate with design and production teams to support aircraft-class hardware integration
What they're looking for
- Manufacturing engineering and process design
- Tooling development and fixture design
- Aircraft structures and composite materials knowledge
- Electromechanical assembly experience
- Technical documentation and work instruction authoring
- Quality planning and inspection methodology
- CAD and manufacturing software proficiency
- Rapid prototyping and production scaling
Opens the application — the Jobs AI extension fills it for you. Set up autofill
Opens the official application on the employer’s site. No login required.
Anduril Industries
Anduril Industries builds autonomous defense systems including underwater vehicles, unmanned aircraft, and electronic warfare platforms for the Department of Defense. The company is hiring across mechanical engineering, mission operations, software development, technical leadership, and advanced manufacturing roles to support the design, deployment, and production of these mission-critical systems.
- Website
- anduril.com
Likely interview questions
- Describe your experience scaling a manufacturing process from prototype to production rate—what were the key challenges?
- How have you approached designing tooling for complex structural assemblies, and what trade-offs did you consider?