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Internship Robotics Engineer Jobs in Utah (NOW HIRING)

Mechanical Engineering Intern

Draper, UT

$17.50 - $23.50/hr

... or robotics Basic machining or fabrication experience What Makes This Internship Different Unlike many internships where students spend most of their time observing, you'll be trusted with projects ...

New

Internship Robotics Engineer information

See Utah salary details

$10

$17

$26

How much do internship robotics engineer jobs pay per hour?

As of Jun 28, 2026, the average hourly pay for internship robotics engineer in Utah is $17.58, according to ZipRecruiter salary data. Most workers in this role earn between $14.66 and $19.04 per hour, depending on experience, location, and employer.

What is an Internship Robotics Engineer job?

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 are the key skills and qualifications needed to thrive in the Internship Robotics Engineer position, and why are they important?

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.

What kinds of projects or tasks do Internship Robotics Engineers typically work on?

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 are the most commonly searched types of Robotics Engineer jobs in Utah? The most popular types of Robotics Engineer jobs in Utah are:
What are popular job titles related to Internship Robotics Engineer jobs in Utah? For Internship Robotics Engineer jobs in Utah, the most frequently searched job titles are:
What cities in Utah are hiring for Internship Robotics Engineer jobs? Cities in Utah with the most Internship Robotics Engineer job openings:
Mechanical Engineer

Contractor

Posted 24 days ago


Job description

Need locals or someone who can relocate to Utah from day one
Position: Mechanical Engineer
Location: Mendon, Utah
Duration: 6 Months
JOB SUMMARY
We are seeking a skilled Mechanical Engineer to join our team developing automated mobile heavy equipment that removes humans from dull, dirty, and dangerous jobs. In this role, you will design, draft and support innovative systems that advance safety and efficiency in demanding industrial environments.
Key Responsibilities
  • Create and manage CAD models and drawings, including importing, simplifying, and documenting designs.
  • Develop CAD models of existing hardware to support integration and improvement.
  • Collaborate with product owners to define requirements and ensure designs meet performance, safety, and usability goals.
  • On shape Modeling: Organize 3D sheet metal parts and complex, multi-part assemblies using on-shape.
  • Drawings & GD&T: Create detailed 2D fabrication drawings (PDF) including proper GD&T (ASME Y14.5), annotations, welding symbols, and bend information.
  • Sheet Metal Optimization: Design sheet metal parts, create flat patterns for fabrication.
  • Assemblies & BOMs: Manage large assembly files, including hardware, sub-assemblies, and generate accurate Bills of Materials (BOMs) including electrical drawing revisions and buyout part information.
  • Documentation Control: Maintain, update, and revise drawings and assemblies based on engineering change requests. (ECRs)
  • Attention to Detail: This person will be able to catch mistakes while reviewing drawings, assemblies and ask questions related to each BOM that will enhance the product and correct any issues before drawings and BOMs are finalized.
  • Provide technical input to support the creation of assembly documentation, operator manuals, and maintenance guides.

Qualifications
  • Bachelor's degree in Mechanical Engineering or related field (Master's a plus).
  • 1 to 4 years of experience working in Robotics/Automotive or similar domain.
  • Good experience in mechanical design, automation, robotics, or related areas (internships count).
  • Proficiency in CAD software (On-shape - preferred, SolidWorks, Creo, or similar) for modeling and drawing creation.
  • Basic understanding of mechanical systems, materials, and manufacturing methods.
  • Good understanding of GD&T and Welding process.
  • Hands-on experience with prototyping, testing, or hardware builds preferred.
  • Basic understanding of pneumatic and hydraulic systems
  • Strong communication skills and ability to work effectively in cross-functional teams.
  • Demonstrated interest in automation, robotics, or safety-critical systems is a plus.