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Internship Robotics Engineer Jobs (NOW HIRING)

As a Field Robotics Engineer , you will support users of a dual-arm robotics research platform used ... Exposure to ROS or ROS2 through coursework, capstone projects, internships, or research * Basic ...

ISEE is seeking a full-time Robotics Engineer to join our team. The ideal candidate has several ... or through internships. Role responsibilities include: -Develop, test, deploy and a maintain ...

ISEE is seeking a full-time Robotics Engineer to join our team. The ideal candidate has several ... or through internships. Role responsibilities include: -Develop, test, deploy and a maintain ...

ISEE is seeking a full-time Robotics Engineer to join our team. The ideal candidate has several ... or through internships. Role responsibilities include: -Develop, test, deploy and a maintain ...

Robotics Build Engineer

San Francisco, CA · On-site

$115K/yr

  • Medical

  • Dental

  • Vision

  • Retirement

Our mission is to create advanced robots that can operate in complex environments, reducing human ... Open to Engineering candidates with strong internships, co-ops, or 1-2 years of total professional ...

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Internship Robotics Engineer information

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How much do internship robotics engineer jobs pay per hour?

As of Aug 19, 2026, the average hourly pay for internship robotics engineer in the United States is $19.31, according to ZipRecruiter salary data. Most workers in this role earn between $16.11 and $20.91 per hour, depending on experience, location, and employer.

What is an internship robotics engineer?

An Internship Robotics Engineer job involves assisting in the design, testing, and development of robotic systems. Interns work with engineers to build prototypes, troubleshoot mechanical and software issues, and contribute to research and innovation. They may use programming languages like Python or C++, work with robotics frameworks such as ROS, and collaborate on automation projects. The role provides hands-on experience in engineering principles, problem-solving, and teamwork in a real-world setting.

What do internship robotics engineers do?

As an Internship Robotics Engineer, you may work on a range of hands-on and software-based tasks such as assembling robot prototypes, developing code for robot control, testing sensor integration, or troubleshooting system errors. Interns are often involved in supporting ongoing research or product development under the guidance of senior engineers, giving them exposure to the entire robotics development cycle. Typical responsibilities may include running simulations, analyzing data, assisting in hardware testing, and documenting results. This role provides an excellent opportunity to apply theoretical knowledge to real-world challenges while collaborating closely with engineers from mechanical, electrical, and software backgrounds.

What skills and qualifications are needed to thrive as an internship robotics engineer?

To thrive as an Internship Robotics Engineer, you need a solid background in robotics, mechanical or electrical engineering, and proficiency in relevant programming languages such as Python, C++, or MATLAB, often supported by ongoing or completed coursework in these areas. Familiarity with industry-standard robotics platforms (e.g., ROS), simulation tools, and CAD software is typically expected, while certifications in robotics or programming can be advantageous. Strong problem-solving abilities, teamwork, and effective communication are key soft skills that help you contribute to and learn from multidisciplinary engineering teams. These qualifications and attributes are essential for navigating technical tasks, collaborating efficiently, and adapting quickly to the fast-paced nature of robotics projects.

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Infographic showing various Internship Robotics Engineer job openings in the United States as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $40,174 per year, or $19.3 per hour.

Other

Posted 12 days ago


Job description

SUMMARY

The Robotics Engineer is a recognized robotics expert and thought leader, setting technical direction for robot integration across multiple programs. This role pioneers advanced applications, defines best practices, and represents the company in customer and industry forums.

ESSENTIAL DUTIES AND RESPONSIBILITIES

 This list of duties and responsibilities is not all inclusive and may be expanded to include other duties and responsibilities, as management may deem necessary from time to time.

•       Defines robotics standards, strategies, and best practices across the company.

•       Tackles unprecedented robotics challenges with innovative solutions.

•       Mentors technicians and engineers at all levels.

•       Represents company expertise in customer meetings and industry forums.

•       Aligns robotics solutions with business growth and strategic direction.

•       Acts as the highest-level technical escalation point for the service department, resolving critical field failures and leading the development of remote support strategies, diagnostic procedures, and knowledge base content; collaborates with service leadership to identify recurring issues and drive engineering improvements across the installed base.

•       Deep expertise in three or more specialized robot application areas, including vision-guided robotics, palletizing, dispensing/adhesive application, painting/coating, and arc/spot welding.

•       Serves as the company''s internal subject matter expert for at least one specialized application domain; defines programming standards, tooling guidelines, and best practices for that domain.

•       Leads vision system architecture decisions, camera selection, calibration strategies, lighting design, and resolves complex vision integration challenges across programs.

•       Advanced proficiency in robot reach studies, timing studies, and full cell simulation using ABB RobotStudio and Fanuc ROBOGUIDE; capable of training others in simulation best practices.

•       Uses offline simulation proactively during the quoting and design phases to validate feasibility, optimize cycle times, and reduce project risk before hardware is built.

•       Evaluates emerging application technologies (collaborative robots, force-torque sensing, AI-assisted vision) and provides recommendations for adoption into the company''s capability portfolio.

QUALIFICATIONS

To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed below are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

Education and/or Experience

•       Bachelor''s degree in welding engineering, mechanical engineering, materials science, or a related engineering discipline; or equivalent combination of education, training, and experience.

•       0-2 years of experience in welding engineering, welding process development, or a related field; relevant internship, co-op, or capstone project experience is a plus.

•       Foundational knowledge of welding processes (GMAW/MIG, GTAW/TIG, Laser) and welding metallurgy, gained through coursework, internships, or hands-on project work.

•       Exposure to developing or qualifying welding procedures, or troubleshooting weld process issues, through academic, internship, or project-based experience.

•       Coursework or exposure to robotic welding systems and offline programming software is a plus.

•       AWS certifications (e.g., CWEng, CWI) are not required but a plus; willingness to pursue certification over time is expected.

•       Strong desire to learn from and collaborate with senior welding engineering staff and robotic welding technicians.

•       Willingness to learn and apply welding codes and standards such as AWS D1.1 and ASME Section IX.

WORK ENVIRONMENT & PHYSICAL DEMANDS

 The work environment and physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

•       Regularly works in a manufacturing/shop environment with exposure to moving mechanical parts, electrical equipment, and moderate noise levels.

•       May be required to travel to customer sites for installation, commissioning, or service support, including occasional overnight travel.

•       Frequently required to stand, walk, bend, reach, and use hands to handle tools, controls, and equipment; occasionally lifts and/or moves up to 50 pounds.

•       Required to follow all safety protocols, including lockout/tagout and use of personal protective equipment (PPE).

ESSENTIAL DUTIES AND RESPONSIBILITIES