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.
The Role
Neuralink’s next generation surgical robot will perform brain surgery at scale, installing hundreds of tiny threads into the brain to enable brain computer communication.
You will own the robot’s Hardware In the Loop (HIL) test system. Exercise the production surgical robot, controllers and firmware against controlled inputs, reproduce faults, and automate verification. Your HIL will enable unattended test & verification to run day and night. Your work will help deliver reliable surgical robots at scale, bringing Neuralink to more people.
What you’ll do
- Build and maintain robot HIL — real hardware running production software and firmware.
- Write automated HIL tests for integration, timing, faults, and bring-up.
- Define pass/fail, coverage, and acceptance criteria.
- Wire software-in-the-loop tests, HIL tests, and hardware acceptance into one CI pipeline with logs, traces, and reproducible results.
- Own release-gating tests. When a failure escapes sim or HIL, you reproduce it and close the coverage gap.
Note: The team is hiring engineers at all levels, both junior and senior. What matters most is evidence of exceptional abilities and a drive to succeed.
What we’re looking for
- Strong Rust skills; Python for test tooling and analysis. Comfortable close to drivers, firmware, and buses.
- Experience with HIL, test rigs, or system-level verification on robots, vehicles, or similar hardware.
- Experience debugging async and concurrent systems, RPC, telemetry, and timing failures across software and firmware.
- Experience building automated test pipelines. Bazel experience is a plus.
- Effective at using AI agents to accelerate work while maintaining quality.
- Obsession with repeatability, edge cases, and traceability.
Expected Compensation:
The anticipated base salary for this position is expected to be within the following range. Your actual base pay will be determined by your job-related skills, experience, and relevant education or training. We also believe in aligning our employees’ success with the company's long-term growth. As such, in addition to base salary, Neuralink offers equity compensation (in the form of Restricted Stock Units (RSU)) for all full-time employees.
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
Skills Required
- Strong Rust programming skills
- Python experience for test tooling and analysis
- Experience with Hardware-in-the-Loop systems, test rigs, or system-level verification on robots, vehicles, or similar hardware
- Comfort working close to drivers, firmware, and hardware buses
- Experience debugging asynchronous and concurrent systems
- Experience with RPC, telemetry, and timing failure debugging across software and firmware
- Experience building automated test pipelines
- Bazel experience
- Ability to use AI agents to accelerate work while maintaining quality
- Strong focus on repeatability, edge cases, and traceability
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.








