Join Mind Robotics as a Hardware Engineering Intern to work hands-on with senior engineers on wiring harness design for robotics.
Posted by employer 1 month ago
First seen on Joblaze 1 week ago
Last verified on the company career page 5 days ago
Skills & Technologies
Requirements
Not disclosed in this posting: compensation, years of experience, work arrangement, visa sponsorship.
Joblaze summary
In this role, the intern will engage directly with senior hardware engineers to design and implement wiring harnesses for robotic systems, ensuring that their work integrates seamlessly into the overall assembly. Proficiency in 3D CAD software, particularly 3DEXPERIENCE/CATIA, along with hands-on skills in soldering and crimping, are essential for success. This position is ideal for students in mechanical or electrical engineering programs who are eager to apply their technical knowledge in a practical setting. Mind Robotics fosters a collaborative environment where interns can contribute to innovative solutions in physical AI.
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Quick facts
From the original posting
Mind Robotics is building Physical AI for real-world industrial deployment, starting with the factory floor. We believe the hardest problems in AI are solved when researchers and engineers are hands-on with the physical world every day - and we're looking for people who are passionate about robotics, value ownership, and are excited to tackle difficult problems. Join us if you want to move beyond digital intelligence and put intelligence into motion.
As a Hardware Engineering Intern at Mind Robotics, you’re an active contributor, not an observer. Embedded directly alongside our senior hardware engineers, you will drive critical components of our roadmap with clear, high-visibility milestones. You'll get your hands dirty, solve complex physical systems problems, and see your work built directly into the robot.
Model and maintain 3D wire harness routing in 3DEXPERIENCE/CATIA within system-level robot assemblies — clearances, service loops, tie-down and clamp locations
Create 2D harness drawings and flattened formboard layouts, including wire run lists, connector tables, detail views, and general notes
Select connectors, contacts, backshells, strain reliefs, grommets, and sleeving; build and maintain the associated BOMs
Work with electrical engineering to translate schematics and pinout tables into physical harness architecture
Apply routing rules: minimum bend radius, shield termination, power/signal separation, abrasion protection, and strain relief at every breakout
Build prototype harnesses on the board — cut, strip, crimp, terminate shields, apply sleeving and heat shrink — then continuity- and pinout-test everything before it goes on a robot
Install harnesses into robot assemblies and drive what you learn back into the model and drawing: interference, insufficient slack, connectors you can’t reach with a hand tool
Package DFM/RFQ documentation for harness suppliers and contract manufacturers, and help resolve their feedback
Maintain revision control and release documentation in our PLM system
Currently enrolled in a Mechanical Engineering, Electrical Engineering, Mechatronics, or related program
Working proficiency in 3D CAD at the assembly level, not just part modeling. We run 3DEXPERIENCE/CATIA — solid SolidWorks, Creo, or NX experience transfers fine
Ability to read and produce clear engineering drawings; working knowledge of GD&T and dimensioning conventions
Comfort reading electrical schematics, block diagrams, and pinout tables
Hands-on build skills: soldering, crimping, and assembling something electromechanical that had to work. Project team wiring counts — FSAE, Baja, robotics competition, rocketry, UAV, or serious personal builds
Detail orientation. A transposed pin number in a run list becomes a failed build
You are comfortable with ambiguity, move fast, and have an “engineering curiosity” that drives you to understand how the entire system works, not just your part