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Neuralink

Electrical Engineer, Implant Embedded Systems

Austin, Texas, United States; South San Francisco, California, United StatesFrom $238.1kmidAdded 1 month ago

About this role

Neuralink is seeking an Electrical Engineer to design embedded systems for brain-computer interfaces. This role involves the creation and integration of electrical systems for devices that enable innovative interactions between humans and technology.

What you'll do

  • Design reliable, high-performance systems within strict size constraints
  • Contribute to all phases of board design and verification
  • Conduct R&D to assess the feasibility of new implant technologies
  • Ensure seamless systems integration across teams
  • Improve system performance, including latency and battery life
  • Design test setups for manufacturing quality control

What they're looking for

  • Bachelor’s degree in Electrical Engineering or equivalent
  • Strong fundamentals in electrical engineering and physics
  • Ability to design and debug complex circuits
  • Experience with mixed-signal and sensitive interface systems
  • Familiarity with lab instrumentation and data analysis
  • Knowledge of wireless systems and RF design
  • Experience in safety-critical environments
  • Understanding of electromagnetic simulation

Benefits

  • Opportunities to make a significant impact in the field
  • Career growth potential for high-impact team members
  • Comprehensive medical, dental, and vision insurance
  • Paid holidays and commuter benefits
  • Free meals and eligibility for equity compensation
  • 401(k) plan available for eligible employees
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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 a complex PCB design you've brought up from schematic to verification. What were the biggest challenges in managing power, size, and noise simultaneously?
  • Describe a time when you had to debug a system issue that spanned multiple domains (analog, digital, RF, or power). How did you isolate the root cause?