About this role
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.
SR. SOLAR CELL RELIABILITY ENGINEER (STARLINK)
Starlink believes in providing fast, reliable internet to those that need it most. We design, build, and launch the world's largest and most advanced satellite constellation that is capable of delivering high-speed internet to even the most remote locations. As we vertically integrate critical hardware, we are building and scaling heterojunction (HJT) solar cell production to power spacecraft and constellation assets with higher efficiency, lower mass, and proven reliability in the space environment.
We are looking for a Sr. Solar Cell Reliability Engineer who will own the reliability lab and the end-to-end reliability story for our solar cells in space —from wafer and cell process through module integration, environmental qualification, on-orbit performance, and continuous improvement back into manufacturing. Your work will ensure our solar cells deliver unmatched power density and durability for Starship, Starlink, AI Sat, and deep-space missions. Your work will form the backbone of the Starlink network (photons of sunlight in is directly proportional to photons of data out to customers!) and help provide internet to tens of millions of customers all around the world.
RESPONSIBILITIES:
• Own and operate the solar cell reliability lab: equipment strategy, capability roadmap, calibration, maintenance, safety, throughput, and data integrity for HJT cell and coupon reliability testing
• Define, execute, and continuously improve the space reliability test matrix for HJT solar cells (e.g., thermal cycling, thermal vacuum, humidity/damp heat as applicable, UV/photo-stability, reverse bias / hotspot, mechanical shock/vibration at cell/coupon level, radiation exposure coordination, and accelerated life tests)
• Build and own the reliability narrative for flight and program reviews: failure modes, physics of failure, acceleration models, life predictions, margins, and acceptance/qualification logic that ties lab data to on-orbit performance
• Partner with HJT process and equipment engineering (texturing, PECVD/a-Si stacks, TCO, metallization, module integration) to link process parameters, metrology, and in-line defects to reliability outcomes; drive corrective actions and design-for-reliability changes
• Establish reliability gates for process changes, tool qualifications, material substitutions, and supplier changes; own risk assessment (FMEA/PFMEA interfaces), sampling plans, and release criteria
• Develop and maintain test methods, SOPs, fixturing, and automation for high-throughput, statistically defens