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Graduate Robotics Engineer Jobs in Massachusetts

Set engineering standards and technical strategy across the robotics organization, driving high ... graduate robotics/controls research experience counts toward this * Expert-level, hands-on ...

Assistant Professor

Worcester, MA ยท On-site

$105K - $118K/yr

It isbuilt onan ABET-accredited Robotics Engineering program. RBE counts ~800 undergraduate and graduate students and offers robotics engineering BS, MS, and Ph.D. degrees. In 2016 the Robotics ...

$20 - $60/hr

Currently pursuing a bachelor's or graduate degree in an engineering, computer science, bioengineering, robotics, automation, life sciences, or related technical discipline. * Completion of relevant ...

New

$20 - $60/hr

Currently pursuing a bachelor's or graduate degree in an engineering, computer science, bioengineering, robotics, automation, life sciences, or related technical discipline. * Completion of relevant ...

New

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Showing results 1-20

Graduate Robotics Engineer information

See Massachusetts salary details

$31.7K

$115.3K

$184.6K

How much do graduate robotics engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for graduate robotics engineer in Massachusetts is $115,334.00, according to ZipRecruiter salary data. Most workers in this role earn between $91,200.00 and $138,700.00 per year, depending on experience, location, and employer.

What is a graduate robotics engineer?

A Graduate Robotics Engineer is an entry-level role for recent graduates specializing in robotics, automation, or related fields. They assist in designing, developing, and testing robotic systems for various applications, including manufacturing, healthcare, and autonomous systems. Responsibilities typically include programming, circuit design, simulation, and hardware integration. They work closely with senior engineers to improve robotic performance and implement innovative technologies. This role provides hands-on experience and professional development for a career in robotics engineering.

What kinds of projects and technologies do graduate robotics engineers typically work on?

Graduate Robotics Engineers are often involved in designing, building, and testing robotic systems, which may include tasks like programming motion controls, integrating sensors, and troubleshooting hardware or software issues. Projects can range from developing autonomous vehicles and industrial automation systems to experimenting with AI-driven robotics in research environments. The technologies used may include robotic arms, mobile robots, embedded microcontrollers, and advanced simulation tools. Team members usually collaborate closely with mechanical, electrical, and software engineers, offering opportunities to learn from diverse specialties. This hands-on experience with modern robotics technologies provides a strong foundation for professional growth within the industry.

What are the key skills and qualifications needed to thrive as a graduate robotics engineer?

To thrive as a Graduate Robotics Engineer, you need a solid understanding of robotics principles, programming (such as Python or C++), and engineering fundamentals, typically backed by a relevant engineering degree. Familiarity with industry tools like ROS (Robot Operating System), CAD software, and experience with embedded systems or hardware prototyping is highly valuable. Strong problem-solving abilities, a collaborative mindset, and effective communication skills make candidates stand out in multidisciplinary teams. These skills are crucial for efficiently developing, testing, and deploying robotic solutions in dynamic and innovative workplace settings.

Infographic showing various Graduate Robotics Engineer job openings in Massachusetts as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $115,334 per year, or $55.4 per hour.

Principal Motion Planning Engineer

Pickle Robot Company

Charlestown, MA โ€ข On-site

$150K - $170K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 28 days ago


Key responsibilities

  • Own the technical vision, architecture, interfaces, and system documentation for Pickle's motion planning and controls stack.

  • Take on the hardest algorithmic problems in planning and control and turn research prototypes into production systems.

  • Analyze field failure cases and collaborate across teams to design robust autonomous recovery solutions.


Job description

About Us

At Pickle Robot, we're on a mission to automate global supply chains with Physical AI. Our robots work alongside warehouse teams to unload trucks and containers — one of the toughest, most understaffed jobs in logistics — making the work safer, faster, and more efficient for the people doing it.  Loading trucks comes next, followed by the Dill Autonomy Engine: generalized autonomy that will eventually orchestrate robots across entire logistics processes.

We're looking for a dynamic, driven Principal Motion Planning Engineer to help revolutionize the future of warehouse automation. As the most senior individual contributor on the motion planning team, you'll own the hardest technical problems behind how Pickle's robots plan, move, and recover in the real world, multiplying the team's impact through deep technical leadership rather than direct people management. 
What You'll Do
  • Own the technical vision, architecture, interfaces, and system documentation for Pickle's motion planning and controls stack — manipulation, navigation, and safety-critical control of the unload robot — so the team can move faster and scale
  • Take on the hardest algorithmic problems in planning and control — sample-based planning (e.g., RRT), path and trajectory optimization, numerical/nonlinear optimization, and contact-aware control — and turn research prototypes into production systems
  • Set engineering standards and technical strategy across the robotics organization, driving high-stakes technical decisions that unblock major customers and multi-year roadmaps
  • Act as a force multiplier through deep technical mentorship — raising the bar for the whole team, reviewing designs, and guiding engineers on the toughest problems without direct people management
  • Analyze field failure cases and partner across engineering, test, and on-site deployment teams to design robust autonomous recovery that measurably improves reliability
  • Establish regression tests, benchmarks, and success metrics that keep regressions away from customers and focus the team on the highest-impact work.
  • Write production-grade Python and C++ for real-time, safety-critical robotics — personally shipping the highest-leverage and highest-risk components 
What You'll Bring
  • 8+ years building robotics software, with a sustained record of designing and shipping complex systems as a senior individual contributor; deep graduate robotics/controls research experience counts toward this
  • Expert-level mastery of motion planning and control for real-world robots — manipulation, navigation, or locomotion — including sample-based planning (e.g., RRT), path and trajectory optimization, numerical/nonlinear optimization, and optimal/contact-aware control, in safety-critical, real-time production systems; expert-level Python and C++
  • Exceptional technical communication; able to set org-wide technical strategy, write clear architecture and design docs, and influence engineering, product, and executive stakeholders without formal authority. Professional fluency in English
  • No specific degree required — a strong foundation in robotics, controls, computer science, mechanical engineering, or a related quantitative field is expected
  • Proficiency with ROS/ROS2, Git, Linux, and numerical optimization libraries; experience architecting testing/CI and benchmarking for robotics
  • Deep technical ownership, sound judgment on high-stakes tradeoffs, a force-multiplier mindset, strong failure-analysis instincts, and a collaborative, low-ego approach
  • Hybrid — Boston, MA area, with regular on-site work and occasional travel to customer deployment sites
  • Full-time, with occasional schedule flexibility to support on-site deployments, demos, and testing
Pay at Pickle At Pickle Robot Company, we believe transparency builds trust. The salary range listed here is provided in accordance with Massachusetts law and reflects what we reasonably and in good faith expect to offer for this role. We often consider candidates at different levels of seniority, and final compensation will reflect the level at which a candidate is hired, along with factors like experience and location.   Pickle Perks  Pickle provides best-in-class benefits, including health, dental, and vision insurance; unlimited vacation; paid federal and state holidays; 401(k) contributions of 5% of your salary; company-covered travel expenses; and other perks to make your working life more fun, comfortable, and productive. 
 
Pay at Pickle
At Pickle Robot Company, we believe transparency builds trust. The salary range listed here is provided in accordance with Massachusetts law and reflects what we reasonably and in good faith expect to offer for this role. We often consider candidates at different levels of seniority, and final compensation will reflect the level at which a candidate is hired, along with factors like experience and location.
 Pickle Perks 
Pickle provides best-in-class benefits, including health, dental, and vision insurance; unlimited vacation; paid federal and state holidays; 401(k) contributions of 5% of your salary; company-covered travel expenses; and other perks to make your working life more fun, comfortable, and productive. 

We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.