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Internship Google Robotics Engineer Jobs in Florida

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Internship Google Robotics Engineer information

What does an Internship Google Robotics Engineer do?

An Internship Google Robotics Engineer works as part of Google's robotics teams, assisting in the research, design, and development of robotic systems and technologies. Interns may collaborate on projects involving hardware, software, machine learning, or artificial intelligence to help solve real-world problems. Their responsibilities often include programming, testing prototypes, data analysis, and working closely with experienced engineers. This role provides hands-on experience and mentorship, giving interns a chance to contribute to innovative projects while building valuable technical skills.

Does Google hire robotics engineers?

Google hires robotics engineers for roles involving robotics research, development, and integration within its various projects, including those related to artificial intelligence and automation. Candidates typically need strong skills in programming, robotics systems, and related tools like ROS or TensorFlow. The company offers opportunities for engineers to work on innovative robotics solutions across different teams.

What types of projects can I expect to work on as an Internship Google Robotics Engineer, and how much autonomy will I have?

As an Internship Google Robotics Engineer, you will typically be involved in hands-on projects that contribute to ongoing research or the development of new robotic systems. Projects may include tasks such as improving perception algorithms, testing hardware prototypes, or developing software for robot navigation and manipulation. Interns generally work closely with experienced engineers and researchers, receiving mentorship while also being encouraged to take ownership of specific project components. This collaborative environment allows you to develop technical skills and gain insight into how cross-functional teams operate within Google's robotics division.

What are the key skills and qualifications needed to thrive as an Internship Google Robotics Engineer, and why are they important?

To excel as an Internship Google Robotics Engineer, a solid understanding of robotics fundamentals, programming (especially in Python or C++), and coursework in computer science, engineering, or a related field is typically required. Familiarity with ROS (Robot Operating System), simulation tools like Gazebo, and version control systems such as Git are commonly expected; relevant project experience or academic research is a plus. Problem-solving ability, teamwork, and effective communication are vital soft skills that distinguish top candidates in collaborative and fast-paced environments. These competencies are crucial for contributing to innovative projects, adapting to complex challenges, and ensuring effective collaboration within multidisciplinary teams.
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Infographic showing various Internship Google Robotics Engineer job openings in Florida as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Software Engineer Intern | Fall and Spring | Autonomous Intelligent Sensing for Space Applications

MRSL Real-Time Systems Laboratory Inc

Sarasota, FL

Full-time, Internship

Posted 11 days ago


Job description

Mission and Opportunity:

MRSL is a world-class developer of advanced signal processing, intelligent sensing, and autonomous systems for the U.S. Government. We build software and algorithms that help complex systems perceive, understand, and respond intelligently to their environment. Our technologies are deployed across a broad range of defense applications—including this project focusing on the emerging domain of autonomous space systems—where reliable, mission-critical autonomy can make the difference between success and failure.

This internship is an opportunity to join a mature, high-impact effort already built through approximately 18 months of work by MRSL staff and previous interns. The system has been nominated for a launch program, and the next phase is to continue that work through launch preparation, on-orbit testing, operational support, performance assessment, and iterative improvement. You will not be starting with a toy problem or a disconnected intern project. You will take ownership of meaningful technical work within an existing flight-bound system and help see it through the most important stages of its lifecycle.

What We Are Looking For:

We are looking for an engineering intern who is driven, and excited by difficult technical problems. The strongest candidates will be comfortable learning quickly, working independently when needed, and contributing as part of a multidisciplinary engineering team.

Required Qualifications:

  • Working toward or already holding a B.S. or graduate degree in Electrical Engineering, Computer Engineering, Computer Science, Aerospace Engineering, Physics, Imaging Science, or a related engineering or science discipline.
  • Experience with programming in some combination of Python, C/C++, Java, scripting, and Linux.
  • Ability to reason through algorithmic and system-level problems and implement practical solutions in code.
  • Strong communication skills, attention to detail, and a willingness to take ownership of assigned work.
  • Candidates must be U.S. Citizens and able to meet TS/SCI clearance eligibility requirements.

Bonus - Experience in any of the following:

  • ROS 2, robotics middleware, or distributed systems
  • ML, RL, agentic AI, PyTorch, TensorFlow, Keras, scikit-learn, or Edge ML
  • Autonomous or real-time sensing systems, embedded processing, or sensor fusion
  • Signal or image processing, detection and estimation, classification, or spectral analysis
  • Docker, Git workflows, CI/CD, automated testing, and software validation
  • Space systems, flight software, or operations involving embedded or real-time constraints

Eligibility and Internship Details:

This is a paid internship available during the Fall and Spring terms and offered only at MRSL's Sarasota, Florida office. A housing allowance is provided. The position is suitable for a traditional intern, co-op student, recent graduate seeking hands-on experience, or currently enrolled student able to work daytime hours around a class schedule.

Why This Internship is Different:

  • Mission impact: contribute to technology supporting U.S. Government space and defense missions.
  • Real ownership: take responsibility for work that becomes part of a functioning operational system.
  • Flight opportunity: help improve software that is expected to launch and operate in a real mission environment.
  • Full lifecycle exposure: experience development, validation, launch preparation, testing, operations, and issue resolution.
  • Career path: MRSL's internship program is one of the primary ways we identify and hire future full-time engineers.

What You Will Do:

  • Support pre-launch integration, readiness, and validation of autonomous sensing software.
  • Support post-launch testing and operations, including monitoring, metrics, and dashboards.
  • Tune, evaluate, and optimize machine learning and reinforcement learning models.
  • Perform model validation, system verification, and end-to-end mission testing.
  • Analyze customer feedback, anomalies, and system issues to identify root causes and develop resolutions.
  • Extend intelligent sensing, autonomy, and decision-making capabilities using modern software and AI techniques.
  • Collaborate with experienced engineers on system design and production-quality software development.
  • Document findings, communicate results, and translate lessons learned into improved operational capability.

Technologies and Technical Areas:

  • ROS 2 and distributed autonomy architectures
  • Machine Learning (ML), Reinforcement Learning (RL), and agentic systems
  • Python, C/C++, Linux, and embedded systems
  • Signal processing, image processing, computer vision, and sensor fusion
  • Git, Docker, CI/CD, automated testing, and collaborative software development
  • Operational dashboards, metrics pipelines, model monitoring, and data analysis
  • Flight software, real-time systems, and edge processing