Improve crystal growth, reduce gravity-driven defects, and optimize fabrication processes for space-based semiconductor manufacturing.
Semiconductor crystal growth on Earth is limited by buoyancy-driven convection, which creates defects and non-uniformities. Microgravity eliminates these effects — but optimizing the process in space requires expensive, iterative experimentation.
Model crystal growth under varying microgravity conditions to predict wafer quality and optimize pull rates, temperatures, and dopant concentrations.
Forecast defect density and distribution for different process configurations, minimizing waste and maximizing usable wafer area.
Find the process window that maximizes yield for your target material and specification, reducing the number of flights to production readiness.
Book a demo to see how G-SPACE predicts crystal quality and optimizes growth parameters.