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Neuralink

Manufacturing Engineer

Austin, Texas, United StatesFrom $139kmidAdded 1 month ago

About this role

Neuralink is seeking a Manufacturing Engineer to enhance and optimize production processes for brain interface devices. The ideal candidate will focus on innovative manufacturing solutions and quality assurance while ensuring compliance with medical device regulations.

What you'll do

  • Scope and manage projects to meet aggressive timelines
  • Design 3D CAD and 2D drawings with DFX focus
  • Rapid prototyping and sourcing new technologies
  • Maintain vendor relationships to enhance capabilities
  • Develop and execute test plans for product verification
  • Identify and address manufacturing challenges

What they're looking for

  • Bachelor's in Mechanical Engineering or related field
  • 3+ years of mechanical engineering experience
  • Strong understanding of engineering principles
  • Experience with DFX and precision manufacturing
  • Proficient in CAD software (SolidWorks preferred)
  • Knowledge of compliance regulations
  • Experience with rapid prototyping technologies
  • Ability to work with data acquisition systems

Benefits

  • Opportunity to impact the world positively
  • Growth potential for high-performing team members
  • Comprehensive medical, dental, and vision insurance
  • Paid holidays
  • Commuter benefits
  • Equity compensation in the form of RSUs
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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 time you optimized a manufacturing process from design to full-volume production. What were the key rate limiters, and how did you address them?
  • Describe your experience with DFX (design for manufacturability, assembly, etc.). Can you give a specific example of how you applied it to reduce manufacturing complexity or cost?