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Diamond Foundry

R&D Test Engineer, Thermal/Mechanical/Reliability

Bay Area, California$125k–$155kfull-timemidAdded 1 month ago

About this role

Diamond Foundry is seeking an R&D Test Engineer to support development and validation of single-crystal diamond wafers designed to solve thermal challenges in AI, power electronics, and 5G/6G applications. You'll conduct thermal, mechanical, and reliability testing as the company scales its revolutionary diamond manufacturing process.

What you'll do

  • Design and execute thermal, mechanical, and reliability tests for diamond wafer materials and devices
  • Develop test methodologies and protocols to validate product performance and durability
  • Analyze test data and prepare technical reports with insights for R&D teams
  • Collaborate with cross-functional teams to troubleshoot thermal and mechanical issues
  • Maintain and optimize test equipment and laboratory infrastructure
  • Support scale-up efforts by establishing repeatable testing standards

What they're looking for

  • Thermal testing and characterization
  • Mechanical testing and analysis
  • Reliability engineering and failure analysis
  • Data analysis and technical documentation
  • Laboratory equipment operation and maintenance
  • Materials science fundamentals
  • Problem-solving and critical thinking
  • Cross-functional collaboration
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Diamond Foundry

Diamond Foundry manufactures single-crystal diamond wafers for high-performance semiconductor applications in AI, power electronics, and 5G/6G systems. The company is hiring laser engineers, software engineers, process engineers, test engineers, and equipment engineers to optimize its advanced diamond manufacturing processes and scale production.

View all jobs at Diamond Foundry

Likely interview questions

  • Describe your experience designing and executing thermal testing protocols. How have you characterized heat dissipation or thermal performance in semiconductor or electronics applications?
  • Walk us through a reliability testing project you've led. What failure modes were you investigating, and how did you use the results to drive product improvements?