About The Position

The Insource Manufacturing team is responsible for designing, building, and qualifying custom equipment and automation systems to enable high-volume production of Starlink products. As a Mechanical Engineer in this group, you will take end-to-end ownership of critical manufacturing equipment and material handling systems. This role requires a detail-oriented engineer who is passionate about designing robust mechanical and automation systems, optimizing existing equipment, and developing novel solutions that push the boundaries of high-volume manufacturing while minimizing risk and maximizing efficiency in our state-of-the-art Starlink factory.

Requirements

  • Bachelor’s degree in mechanical, manufacturing, materials, or other engineering discipline
  • 1+ years of experience professional experience with mechanical design, analysis, testing, or manufacturing (internship experience is applicable)
  • 1+ years of experience with CAD and FEA software packages

Nice To Haves

  • Experience with custom machine design including electromechanical systems, end-of-arm tooling, motors, actuators, linear rails, bearings, and lifting/rigging
  • Proficient in 3D CAD (Siemens NX preferred) and Teamcenter
  • Solid understanding and application of GD&T, mechanical engineering fundamentals, structural analysis, and failure modes of complex mechanical systems
  • Prior ownership of a complex component or assembly from initial design through production ramp
  • Experience applying common manufacturing processes (welding, machining, assembly, inspection) and designing for manufacturability
  • Hands-on experience with mills, lathes, manual and CNC machines
  • Experience with FEA, structural hand calculations, and sizing of mechanical components
  • Self-motivated with strong organizational, written, and oral communication skills

Responsibilities

  • Own manufacturing subsystems and equipment from conceptual design through fabrication, commissioning, and high-volume production ramp
  • Develop design criteria, collaborate on requirements with cross-functional teams, and drive system-level optimization
  • Perform failure modes and effects analysis (FMEA), reliability modeling, and stress testing to predict and mitigate potential failures and improve overall equipment effectiveness (OEE)
  • Design and develop production equipment including structures, mechanisms, robot end effectors, automation systems, and material handling solutions
  • Uptime Optimization: Monitor and track equipment performance metrics using data analytics; identify bottlenecks and downtime causes, then implement preventive and predictive maintenance strategies to maximize operational availability
  • Evaluate and select equipment suppliers and vendors based on reliability, performance, and business needs; oversee installation, commissioning, and ongoing performance of both internally designed and vendor-supplied equipment
  • Demonstrate extreme ownership of projects through their entire lifecycle while balancing multiple initiatives in a fast-paced environment
  • Collaborate closely with design, manufacturing, and test teams to develop products and production processes in parallel
  • Solve complex, open-ended problems with an emphasis on speed of execution, efficiency, and scalability
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