Skip to main content

Neuralink

Microfabrication Engineer (R&D)

Fremont, California, United StatesFrom $209kmidAdded 1 month ago

About this role

Neuralink is seeking a Microfabrication Engineer to develop advanced micro-fabricated medical devices, specifically thin-film microelectrode arrays. This role involves design, fabrication, testing, and documentation, while working in a cleanroom environment to enhance neural interfacing technology.

What you'll do

  • Design and fabricate thin-film microelectrode arrays
  • Develop advanced processing techniques for production
  • Conduct benchtop experiments to assess product performance
  • Perform statistical analysis for product improvements
  • Oversee in vivo studies for design validation
  • Prepare SOPs and technical documentation

What they're looking for

  • Experience with microfabrication technology
  • Experimental design and data analysis
  • Strong communication skills
  • Ability to handle hazardous substances
  • Proficiency with analytic process equipment
  • Detail-oriented documentation skills

Benefits

  • Opportunity to work with talented experts
  • Rapid growth potential
  • Medical, dental, and vision insurance
  • Paid holidays
  • Commuter benefits
  • Meals provided
  • Equity compensation
Apply with Autofill

Opens the application — the Jobs AI extension fills it for you. Set up autofill

Opens the official application on the employer’s site. No login required.

Neuralink

Neuralink develops brain-computer interface technology and neurosurgical robots to enable direct interaction between the brain and computing systems. The company is hiring engineers across clinical implementation, user interface design, manufacturing, and software development to support its pioneering medical devices and surgical systems.

View all jobs at Neuralink

Likely interview questions

  • Walk us through your experience with thin-film microfabrication processes. What equipment have you worked with, and what were the key challenges you encountered?
  • Describe a time when you designed an experiment to characterize the relationship between fabrication parameters and device performance. How did you analyze the results and communicate your findings?