Mechanical Engineering Intern, Brain Interfaces

Reposted 4 Days Ago
Be an Early Applicant
Austin, TX
In-Office
32-32 Hourly
Internship
Biotech
The Role
As a Mechanical Engineering Intern, you will design, build, and test hardware for brain-computer interface devices, collaborating across various engineering disciplines and adhering to project schedules.
Summary Generated by Built In

About Neuralink:

We are creating devices that enable a bi-directional interface with the brain. These devices allow us to restore movement to the paralyzed, restore sight to the blind, and revolutionize how humans interact with their digital world.

Team Description:

The Brain Interfaces Mechanical Engineering Team is responsible for the design, build, and testing of all mechanical systems in our implant and charger. Our team also develops test infrastructure to accelerate hardware development and manufacturing, designs electronics packaging for our charger and implant electronics, and creates tooling to interface the implant with the surgical robot.

Job Description and Responsibilities:

As a Mechanical Engineering Intern, you will support the design and production of hardware solutions for our brain-computer interface devices, including components for surgical robotics, automation, microfabrication, and more. You will have the opportunity to contribute to projects at various stages from concept through production, applying your mechanical engineering knowledge in the challenging field of brain-computer interfaces. Additionally, you will be expected to:

  • Design, build, test, and validate systems for the implant and related hardware components
  • Develop and improve manufacturing processes and equipment to support in-house production
  • Scope, design and iterate custom tooling and fixturing required for the implant assembly line
  • Work with Quality, Electrical Engineering, BCI Software, Microfabrication, and Surgery Engineering to define system requirements, verification and validation tests, and more
  • Adhere to aggressive project schedules and ensure timely completion from inception to implementation

Required Qualifications:

  • Currently pursuing a Bachelor’s or Master’s degree in Mechanical Engineering or a related field
  • 6+ months of relevant academic coursework or project experience
  • 9+ months of experience applying technical skills outside the classroom (e.g., personal projects, prior internships, or work experience)
  • 1+ years of Mechanical Design experience
  • Strong understanding of engineering first principles
  • Effective written and verbal communication skills

Preferred Qualifications: 

  • 1+ years of mechanical engineering industry experience, including owning products from concept to production
  • Familiarity with machining and rapid prototyping technologies
  • Experience with precision design and manufacturing
  • Exposure to medical device design and manufacturing

Pay Transparency:

The following details are for Texas individuals only.

Texas Hourly Rate: 
$31.50/Hr USD

What We Offer:

Full-time employees are eligible for the following benefits listed below.

  • An opportunity to change the world and work with some of the smartest and most talented experts from different fields
  • Growth potential; we rapidly advance team members who have an outsized impact
  • Excellent medical, dental, and vision insurance through a PPO plan
  • Paid holidays
  • Commuter benefits
  • Meals provided
  • Equity (RSUs) *Temporary Employees & Interns excluded
  • 401(k) plan *Interns initially excluded until they work 1,000 hours
  • Parental leave *Temporary Employees & Interns excluded
  • Flexible time off *Temporary Employees & Interns excluded

Top Skills

Machining
Mechanical Design
Rapid Prototyping
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The Company
HQ: Fremont, CA
367 Employees
Year Founded: 2016

What We Do

Neuralink is a team of exceptionally talented people. We are creating the future of brain-machine interfaces: building devices now that will help people with paralysis and inventing new technologies that will expand our abilities, our community, and our world.

Our goal is to build a system with at least two orders of magnitude more communication channels (electrodes) than current clinically-approved devices. This system needs to be safe, it must have fully wireless communication through the skin, and it has to be ready for patients to take home and use on their own. Our device, called the Link, will be able to record from 1024 electrodes and is designed to meet these criteria.

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