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Robotics Hardware Intern Jobs (NOW HIRING)

This role tightly integrates with the robot hardware team, surgery engineering team, as well as the ... As a Software Engineer Intern on the Robot Software Team, you will be responsible for writing ...

Robotics Test & Validation Intern

Austin, TX · On-site

$18.75 - $24.75/hr

As a Test & Validation Intern, you'll be the person who runs our robots through structured test ... Track regression by re-running previously passing tests after code or hardware changes * Assist ...

$40/hr

Experience working with robotics hardware platforms, simulation environments, or automation systems ... Access to the Intern Vehicle Lease Program. Relocation assistance is not available for this ...

Its robots are engineered to perform a variety of tasks in the home and commercial markets. Figure is headquartered in San Jose, CA. Figure AI's Reliability team is looking for a motivated and ...

Its robots are engineered to perform a variety of tasks in the home and commercial markets. Figure is headquartered in San Jose, CA. Figure AI's Reliability team is looking for a motivated and ...

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Robotics Hardware Intern information

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$9

$17

$25

How much do robotics hardware intern jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for robotics hardware intern in the United States is $17.44, according to ZipRecruiter salary data. Most workers in this role earn between $14.42 and $19.23 per hour, depending on experience, location, and employer.

What does a robotics hardware intern do?

A Robotics Hardware Intern assists engineering teams in designing, building, and testing the physical components of robots. Their tasks may include assembling prototypes, working with sensors and actuators, troubleshooting hardware issues, and supporting the integration of electronics and mechanical systems. Interns often learn to use tools such as CAD software and test equipment, and gain practical experience in a fast-paced, innovative environment. This role is ideal for students interested in hands-on robotics development and hardware engineering.

What types of projects or tasks can a robotics hardware intern expect to work on during their internship?

As a Robotics Hardware Intern, you can expect to be involved in hands-on tasks such as assembling prototypes, testing hardware components, troubleshooting electrical or mechanical issues, and assisting with design modifications. Interns often work closely with engineers and other interns, gaining exposure to the entire hardware development cycle. You'll likely participate in team meetings, contribute to documentation, and may have the opportunity to present your findings or improvements. This role offers a great environment to apply classroom concepts to real-world challenges while building collaboration and technical skills.

What are the key skills and qualifications needed to thrive as a robotics hardware intern, and why are they important?

To thrive as a Robotics Hardware Intern, you need a solid background in electronics, mechanical engineering principles, and hands-on prototyping, usually supported by coursework or a degree in engineering or a related field. Familiarity with CAD software, microcontrollers (such as Arduino or Raspberry Pi), and basic circuit design tools is often required. Problem-solving ability, teamwork, and effective communication are valuable soft skills for collaborating on complex projects and learning quickly. These skills and qualities are vital because they enable interns to contribute meaningfully to hardware development, adapt to new technologies, and integrate seamlessly into interdisciplinary robotics teams.

What is the difference between Robotics Hardware Intern vs Robotics Software Intern?

AspectRobotics Hardware InternRobotics Software Intern
Required SkillsElectronics, circuit design, hardware prototypingProgramming, algorithms, software development
Work EnvironmentLaboratories, hardware testing facilitiesComputing environments, simulation platforms
Common Employer UsageRobotics companies, research labsTech firms, research institutions

Robotics Hardware Interns focus on designing, building, and testing physical robotic components, while Robotics Software Interns work on developing the software that controls robots. Both roles often collaborate but differ mainly in their technical focus and skill sets.

What cities are hiring for Robotics Hardware Intern jobs?

Cities with the most Robotics Hardware Intern job openings:

What states have the most Robotics Hardware Intern jobs?

States with the most job openings for Robotics Hardware Intern jobs include:

What are popular job titles related to Robotics Hardware Intern jobs?

For Robotics Hardware Intern jobs, the most frequently searched job titles are:

Infographic showing various Robotics Hardware Intern job openings in the United States as of August 2026, with employment types broken down into 91% Full Time, 5% Part Time, and 4% Contract. Highlights an 92% Physical, 3% Hybrid, and 5% Remote job distribution, with an average salary of $36,265 per year, or $17.4 per hour.

Mechanical Engineer Intern

San Francisco, CA • On-site

$22 - $29.75/hr

Full-time, Part-time, Internship

This job post has expired today. Applications are no longer accepted.


Job description

Thought process

Thought process

About the Team

Droyd builds autonomous robotic systems that automate repetitive manual work in real environments. We design and manufacture our hardware in-house, which means iteration, fabrication, and execution all happen under one roof.

Our robots operate in production settings, which means mechanical design must be practical, manufacturable, and tightly integrated with electronics and actuation. Our mechanical team designs and builds the physical systems that make our robots work - this team spends as much time prototyping and testing as it does designing.

About the Role

As a Mechanical Engineering Intern at Droyd, you will work hands-on on real robotic hardware. You will help design, build, and iterate on mechanical subsystems that ship to production robots.

This is not a CAD-only role. You will be expected to prototype, test, and refine designs alongside full-time engineers.

This role is based on-site in San Francisco, CA.

In This Role, You'll

Design & Analysis

  • Support mechanical subsystem design from concept through prototype and iteration
  • Create and modify CAD models for parts and assemblies
  • Help perform basic load calculations, testing, and analysis
  • Design parts for rapid prototyping methods such as 3D printing and CNC machining

Prototyping & Build

  • Build and assemble prototypes using 3D printers, hand tools, and shop equipment
  • Help integrate mechanical designs with motors, sensors, and basic mechatronic components
  • Iterate quickly based on test results and engineering feedback

Documentation & Collaboration

  • Document designs, tests, and learnings
  • Work alongside full-time engineers across mechanical, electrical, and software
  • Communicate progress, blockers, and findings clearly

Work Environment & Schedule

  • On-site in San Francisco, CA
  • Part-time or full-time internship, balanced with school commitments

We're Looking For Candidates Who

  • Are current juniors or seniors (or equivalent) studying mechanical engineering or a related field
  • Have hands-on experience from clubs, personal projects, or coursework involving physical hardware
  • Can show examples of projects taken from concept to a physical build
  • Are comfortable using modern CAD tools (Onshape preferred, but not required)
  • Are willing to balance school and work in a fast-paced, build-heavy environment
  • Take ownership, learn quickly, and enjoy working with real hardware

Nice to have:

  • Experience with FEA, topology optimization, or generative design
  • Exposure to machining, tolerancing, or manufacturing workflows
  • Familiarity with electronics, motors, or control systems
  • Interest in industrial or visual design

About Droyd

Droyd builds autonomous robotic systems that operate in real production environments. We design the hardware, develop the control stack, and generate the data that enables generalist robotics.

If we do this right, robots stop being demos and start being infrastructure.

Join us and help build the systems that make it real.