The opportunity
SpaceX was founded under the belief that a future where humanity is out exploring the stars is fundamentally more exciting than one where we are not. Today SpaceX is actively developing the technologies to make this possible, with the ultimate goal of enabling human life on Mars.
What you'll do
Design, build, and activate fluids systems for the distribution of key gases: (e.g. specialty and bulk gases), chemicals (e.g., hydrofluoric acid, solvents) and exhaust systems used in solar cell processes, including tanks, pumps, heat exchangers, gas panels, valves, scrubbers, and abatement systems
Cradle-to-grave project ownership including requirement definition, design,: justification of key decisions, equipment procurement, build coordination, commissioning and project management throughout
Design modular systems capable of being manufactured at scale for future solar production facilities
Apply fluids/mechanical engineering skills such as P&ID development,: equipment sizing, detailed fluid and thermal analysis, system-level CONOP development, structural analysis, materials and component selection.
Perform safety/hazard assessments (ex. FMEAs, HAZOPs) to ensure appropriate: hazardous system design, including emergency shutdown CONOPs, redundancy, and general compliance with hazardous material safety standards
Design, build, and deploy data acquisition and control systems for fluid facilities control and monitoring
What they're looking for
- Collaborate with process engineers to integrate fluid systems with: manufacturing equipment and optimize delivery rates, purity levels, and recovery/recycling of process fluids to support high-yield production
- Support installation, commissioning, and troubleshooting of fluid systems,: working closely with facilities operations, EHS, automation, and procurement teams to resolve issues and implement improvements
- Ensure regulatory compliance with OSHA, EPA, ASME, NFPA, and SEMI standards: for chemical and gas handling in semiconductor-like environments
- Track system performance metrics (e.g., flow rates, contamination levels,: downtime) and contribute to continuous improvement initiatives, such as lean manufacturing and sustainability efforts for fluid reuse