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Summer Intern Robotics Jobs in Silver Spring, MD

Summer Intern Robotics information

See Silver Spring, MD salary details

$9

$17

$24

How much do summer intern robotics jobs pay per hour?

As of Aug 19, 2026, the average hourly pay for summer intern robotics in Silver Spring, MD is $17.03, according to ZipRecruiter salary data. Most workers in this role earn between $14.90 and $17.88 per hour, depending on experience, location, and employer.

What does a summer intern in robotics do?

A Summer Intern in Robotics typically assists with researching, designing, testing, and developing robotic systems or components under the supervision of experienced engineers. Responsibilities often include programming robots, assembling hardware, running experiments, and analyzing data. Interns may also help document their work and present findings to the team. The role is designed to provide hands-on experience and exposure to real-world robotics projects, helping students develop technical and professional skills relevant to the field.

What types of projects and tasks can a summer intern in robotics expect to work on during their internship?

As a Summer Intern in Robotics, you can expect to work on a range of hands-on and collaborative projects, such as assisting with robot assembly, testing new algorithms, data collection, and troubleshooting hardware or software issues. Interns often collaborate with engineers and researchers, gaining exposure to the entire development lifecycle—from brainstorming initial concepts to deploying prototypes. You'll likely participate in team meetings, contribute to documentation, and may even present your findings to stakeholders. This role offers practical experience and networking opportunities that can be valuable for future career growth in robotics or related fields.

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

To thrive as a Summer Intern in Robotics, you generally need a background in engineering or computer science, with foundational knowledge in robotics, programming, and basic electronics. Familiarity with tools such as Arduino, Raspberry Pi, CAD software, and common programming languages like Python or C++ is often expected. Strong problem-solving abilities, eagerness to learn, and effective teamwork skills help interns stand out in collaborative and fast-paced environments. These skills and qualities are crucial for contributing to hands-on projects, adapting to new challenges, and maximizing the internship experience.

What is the difference between Summer Intern Robotics vs Summer Intern Mechanical Engineering?

AspectSummer Intern RoboticsSummer Intern Mechanical Engineering
Required CredentialsEnrolled in Robotics, Electrical, or Mechanical Engineering programsEnrolled in Mechanical Engineering or related programs
Work EnvironmentRobotics labs, automation projects, software developmentMechanical labs, design projects, manufacturing processes
Industry UsageRobotics companies, automation firms, tech startupsManufacturing, automotive, aerospace industries
Common Search/ComparisonYesYes

Summer Intern Robotics typically focuses on automation, robotics hardware, and software development, often within tech or automation companies. In contrast, Summer Intern Mechanical Engineering emphasizes mechanical design, manufacturing, and systems, usually in manufacturing or aerospace sectors. Both roles require engineering coursework but differ in their technical focus and work environment.

What are popular job titles related to Summer Intern Robotics jobs in Silver Spring, MD?

For Summer Intern Robotics jobs in Silver Spring, MD, the most frequently searched job titles are:

What job categories do people searching Summer Intern Robotics jobs in Silver Spring, MD look for?

The top searched job categories for Summer Intern Robotics jobs in Silver Spring, MD are:

What cities near Silver Spring, MD are hiring for Summer Intern Robotics jobs?

Cities near Silver Spring, MD with the most Summer Intern Robotics job openings:

Measurement Science & Systems Research Intern

The Generation

Gaithersburg, MD • On-site

Other

Posted yesterday

New


Job description

Develop standards of measurement for tech-intensive manufacturing, and cyber-physical systems.

The EL develops standards (such as performance metrics, testing methods, reference materials, etc.) and meets the measurement science needs for technology-intensive manufacturing, construction, and cyber-physical systems, including the Smart Grid Program. The laboratory also promotes the development of new advanced manufacturing and construction technologies for U.S. industries.

Examples of Research Activities:Innovative fire protection, sustainable manufacturing, intelligent manufacturing (such as automation, robotics, and equipment), net-zero-energy buildings, integrated and automated construction processes, new building materials and systems, economic impacts, and disaster-resilient structures.

Relevant Academic Interests and Coursework:Physics, chemistry, computer science, statistics, economics, and engineering physics (Students interested in electrical engineering should apply to PML).

The Summer High School Intern Program (SHIP) is a NIST-wide summer intern program for students who will have finished their junior or senior year of high school by the start of the program and are interested in scientific research only. All other high school applicants who do not want a summer research position should go to NISTStudent Employment Programs for information on other NIST Programs. Students selected for this competitive volunteer program will participate in cutting-edge research at NIST, and will work closely with NIST staff scientists and engineers on a specific research problem.

Previous EL SHIP Projects
  • Video Analysis of Fire in Differing Scenarios
  • Evaluation of Different Monitoring Strategies to Identify Process Errors in Additive Manufacturing
  • School Damage in Tornadoes: Data Collection and Analysis
  • Automating Approaches for Mining Remote Sensing Data, with Applications to Damage Caused by the Joplin Tornado

During their tenure at NIST in Gaithersburg, MD, the students will not be paid, and are expected to provide their own housing and transportation. The program requires a commitment for a contiguous 8-week period (nominal hours of 8:30 AM to 5:00 PM). This program is open only to United States citizens.

The 8-week program is tentatively scheduled to start on Tuesday, June 21, 2023. The SHIP poster sessions (which all students are required to attend and participate in) will be heldAugust 9-11, 2023 for Gaithersburg, MD/ August 10-11, 2023 for Boulder, CO.

About EL Mission

The Engineering Laboratory promotes U.S. innovation and industrial competitiveness by advancing measurement science, standards, and technology for engineered systems in ways that enhance economic security and improve quality of life.

Vision

To be the world’s leader in measurement science, standards, and technology vital to innovation in engineered systems that benefit society

Core Purpose

To benefit society by enabling better engineering.

Core Values

i) _Safety:_We are committed to the safety and health of all those involved in or affected by our work.

ii) People:We value and support an engaged, diverse, and collaborative workforce positioned for success.

iii) Integrity:We are objective, ethical, and honest and hold ourselves accountable.

iv) _Excellence:_We deliver world-class performance and continuous improvement in all we do.

v) _Impact:_We strive to create the largest benefit for our stakeholders with all of our resources.

Carry out mission-related activities in:
  • fire prevention and control;
  • national earthquake hazards reduction;
  • national windstorm impact reduction;
  • national construction safety teams;
  • building materials and structures;
  • engineering and manufacturing materials, products, processes, equipment, technical data, and standards;
  • manufacturing enterprise integration;
  • collaborative manufacturing research pilot grants; and
  • manufacturing fellowships.
Carry out other mission-related engineering research as may be necessary, including:
  • systems integration and engineering,
  • intelligent systems and control,
  • robotics and automation,
  • cyber-physical systems,
  • sustainability and energy efficiency,
  • economic analysis and life cycle assessment,
  • productivity measurement, and
  • safety and environmental performance.
Measurement science research includes:
  • development of performance metrics, measurement and testing methods, predictive tools, protocols, technical data, and reference materials and artifacts;
  • conduct intercomparison studies and calibrations;
  • evaluation of technologies, systems, and practices; and
  • development of the technical basis for standards, codes, and practices—in many instances via testbeds, consortia, standards, and codes development organizations, and/or other partnerships with industry and academia.
EL focuses on high-leverage, high-impact infrastructural measurements and standards efforts to:
  • Foster U.S. manufacturing and construction industry innovation, productivity, and competitiveness,
  • Improve building and fire safety, and
  • Reduce the environmental impact of buildings and manufacturing activities.
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