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Robotics Jobs in Worcester, MA (NOW HIRING)

Robotics Tutor

Waltham, MA · Remote

$18 - $40/hr

About the Job The Varsity Tutors Live Learning Platform has thousands of students looking for online Robotics tutors nationally. As a tutor on the Varsity Tutors Platform, you'll have the flexibility ...

Robotics Tutor

Newton, MA · Remote

$18 - $40/hr

About the Job The Varsity Tutors Live Learning Platform has thousands of students looking for online Robotics tutors nationally. As a tutor on the Varsity Tutors Platform, you'll have the flexibility ...

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Robotics information

See Worcester, MA salary details

$83.8K

$95.8K

$116.2K

How much do robotics jobs pay per year?

As of Aug 16, 2026, the average yearly pay for robotics in Worcester, MA is $95,764.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,800.00 and $101,800.00 per year, depending on experience, location, and employer.

How do robotics professionals typically collaborate with other engineering disciplines during a project?

Robotics professionals frequently work in cross-functional teams alongside electrical, mechanical, and software engineers. This collaboration ensures that robotic systems are seamlessly integrated, from hardware design to control algorithms and user interfaces. Effective communication and iterative problem-solving are key, as team members must align on technical requirements, system architecture, and testing protocols. Such teamwork not only enhances project outcomes but also provides valuable opportunities to broaden technical skills and learn from other engineering domains.

What is the difference between Robotics vs Mechanical Engineering?

AspectRoboticsMechanical Engineering
Required CredentialsTypically requires a degree in Robotics, Electrical, or Mechanical Engineering; certifications in automation or control systemsRequires a degree in Mechanical Engineering; professional licensure may be preferred
Work EnvironmentOften involves working with automation systems, programming robots, and integrating hardware/softwareFocuses on designing, analyzing, and manufacturing mechanical systems
Industry UsageUsed in automation, manufacturing, aerospace, and researchApplied across automotive, aerospace, energy, and manufacturing sectors

Robotics and Mechanical Engineering share overlapping skills, especially in design and systems analysis. However, Robotics emphasizes automation, programming, and system integration, while Mechanical Engineering focuses on mechanical design and analysis. Both fields are vital in manufacturing and technology sectors, but Robotics professionals often work more with software and control systems, whereas Mechanical Engineers concentrate on physical components.

What are the qualifications to get a job in robotics?

The qualifications you need to get a job in robotics depend on the position you are interested in. Engineers and designers typically need a bachelor’s or master’s degree in robotics, mechanical or electrical engineering, or computer science, as well as strong programming skills. Some technicians and operators also need to have a bachelor’s degree or extensive training. Good technical and analytical skills are required for work in robotics. The duties of these positions vary significantly, although in many cases job responsibilities overlap. For example, engineers often gather advice and technical knowledge from technicians and operators about how robots function when they design new systems.

What are robotics jobs?

Robotics jobs involve designing, building, programming, testing, and maintaining robots or robotic systems. Professionals in this field may work in industries such as manufacturing, healthcare, automotive, aerospace, and research, focusing on automation and innovative technology solutions. Roles can include robotics engineers, technicians, programmers, and researchers, all working together to improve efficiency, safety, and productivity through robotics. These positions typically require knowledge in areas like mechanical engineering, electronics, computer programming, and artificial intelligence.

What are the most commonly searched types of Robotics jobs in Worcester, MA?

The most popular types of Robotics jobs in Worcester, MA are:

What are popular job titles related to Robotics jobs in Worcester, MA?

For Robotics jobs in Worcester, MA, the most frequently searched job titles are:

What job categories do people searching Robotics jobs in Worcester, MA look for?

The top searched job categories for Robotics jobs in Worcester, MA are:

What cities near Worcester, MA are hiring for Robotics jobs?

Cities near Worcester, MA with the most Robotics job openings:

Infographic showing various Robotics job openings in Worcester, MA as of August 2026, with employment types broken down into 1% Internship, 87% Full Time, 8% Part Time, 3% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $95,764 per year, or $46 per hour.

Robotics Software Engineer

Zydro Marine Technologies, Inc

Newton, MA • On-site

$130K - $190K/yr

Full-time

Re-posted 24 days ago


Job description

About Us
Zydro Marine Technologies is a venture-backed startup creating "The Geospatial Toolkit for Maritime". We're building the end-to-end ecosystem to collect, process & distribute nautical charts and other geospatial products for mission-critical usage across maritime autonomy, fleet management, and navigation applications.
We're a growing team of experts in geospatial data, marine robotics, and command & control software, and we're looking for talented, driven candidates to join us! If you love building beautiful maps, wrangling data sources, developing & testing unmanned systems, or hanging out on boats... this is the job for you.
The Role
We're hiring a Robotics Software Engineer to help develop a new platform for automated maritime survey and ISR data collection. In this role, you will design, build, integrate, and test software and hardware systems on unmanned maritime platforms.
We're looking for a generalist robotics engineer with strong software fundamentals, hands-on hardware integration experience, and solid systems engineering skillset. This role is ideal for someone who enjoys building real-world robotic systems that operate in challenging, unstructured environments outside the lab.
What You'll Do
  • Design, develop and test software for unmanned maritime robotic systems
  • Develop and maintain autonomy software using frameworks such as ROS or MOOS-IvP
  • Interface with lower-level flight controllers such as ArduPilot or PX4
  • Develop and tune vehicle guidance, navigation & control algorithms
  • Integrate sensors, payloads, compute, networking, and actuators
  • Develop software interfaces to devices using CAN-bus, NMEA 2000, J1939, MAVLink, etc.
  • Develop algorithms for simultaneous localization & mapping (SLAM) and multi-target tracking
  • Build tools for system diagnostics, logging, monitoring, replay, and post-mission analysis
  • Debug complex software and system integration issues in both lab and field environments
  • Deploy to the field to support field testing and iterative product development
  • Collaborate with a larger team to design a unified hardware and software architecture

Required Qualifications
  • 3-5+ years of professional software development or robotics engineering experience
  • Bachelor's degree in Computer Science, Electrical Engineering, Mechanical Engineering, or similar software or engineering background.
  • Programming experience in C++, Python, Rust, or similar systems-oriented languages
  • Strong familiarity with Linux-based systems and command-line tools
  • Experience integrating hardware, sensors, and embedded devices into production systems
  • Experience with vehicle and embedded communications protocols such as CAN, NMEA 2000, J1939, MAVLink, serial, or Ethernet
  • Familiarity with robotics frameworks such as ROS, ROS 2, MOOS-IvP, ArduPilot, or similar
  • Comfortable working across software, electrical, mechanical, and operational disciplines
  • Experience using Git and modern software development workflows

Preferred Qualifications
  • Experience with maritime robotics or autonomous vehicle systems
  • Experience deploying robotic systems in field environments
  • Experience with embedded Linux, RTOS-based systems, or firmware development
  • Experience integrating navigation, perception, or mission sensors
  • Experience with simulation, automated testing, or hardware-in-the-loop testing
  • Familiarity with Docker, CI/CD, and deployment workflows
  • Ability to read electrical schematics and troubleshoot hardware systems
  • Basic CAD or mechanical design experience
  • Comfortable supporting field operations and testing on a boat; able and willing to travel