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Mechanical Design Engineer – Starlink Production
Company | SpaceX |
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Location | Redmond, WA, USA |
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Salary | $95000 – $130000 |
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Type | Full-Time |
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Degrees | Bachelor’s |
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Experience Level | Junior |
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Requirements
- Bachelor’s degree in an engineering discipline
- +1 year of experience designing mechanical systems using 3D CAD software and 2D drawings
Responsibilities
- Design and develop structures, mechanisms and automation equipment to enable high volume production of Starlink Satellites
- Demonstrate extreme ownership of projects through their entire lifecycle, from initial concept generation through fabrication and production bring-up
- Balance simultaneous projects of varying scope and complexity in a fast-paced environment
- Partner with flight design and production teams to develop the satellite, factory and production processes in parallel
- Solve complex, open-ended problems with an emphasis on speed of execution and efficiency
- Hone your organizational skills as you coordinate with internal SpaceX resources and external vendors and maintain a project schedule and budget
- Assemble and commission the equipment you design
Preferred Qualifications
- Prior work experience with structural design and analysis
- Experience with custom machine design; electromechanical systems, motors, actuators, linear rails, bearings, lifting/rigging, etc.
- Ability to perform structures hand calculations
- Strong expertise in design for manufacturability and design for assembly including experience taking products from development to high-volume production
- Familiarity with drafting standards and the application of GD&T
- Solid understanding of common manufacturing processes and machines including mills, lathes, manual and CNC, and hands-on machining experience
- Experience with Siemens Unigraphics (UGS/NX) and Teamcenter CAD/PDM systems
- Experience with finite element analysis, such as FEMAP pre/post processing, NASTRAN Solver, ANSYS Workbench, NX Advance Simulation
- Experience with manufacturing process development, facility and line layouts, process failure mode effects analysis, and error proofing