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Control Engineer Jobs in Massachusetts (NOW HIRING)

Vision and Control Engineer

Attleboro, MA · On-site

$85K - $110K/yr

Job Summary We are seeking a Vision & Controls Engineer to join our team at our Attleboro, MA site. This role will be responsible for maintaining, troubleshooting, improving, and supporting vision ...

Vision and Control Engineer

Attleboro, MA · On-site

$85K - $110K/yr

Job Summary We are seeking a Vision & Controls Engineer to join our team at our Attleboro, MA site. This role will be responsible for maintaining, troubleshooting, improving, and supporting vision ...

Showing results 21-40

Control Engineer information

See Massachusetts salary details

$60.1K

$105.5K

$143.1K

How much do control engineer jobs pay per year?

As of Sep 11, 2026, the average yearly pay for control engineer in Massachusetts is $105,471.00, according to ZipRecruiter salary data. Most workers in this role earn between $91,200.00 and $117,900.00 per year, depending on experience, location, and employer.

What is a control engineer?

Control Engineers are professionals who design, develop, and maintain systems that manage and regulate the behavior of other devices or systems. They use principles from engineering, mathematics, and computer science to create automated processes in industries such as manufacturing, automotive, aerospace, and energy. Their work often involves designing control systems for machinery, ensuring safety, efficiency, and reliability of operations. Control Engineers may also program and troubleshoot controllers like PLCs (Programmable Logic Controllers) and work closely with other engineering disciplines to optimize system performance.

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

To thrive as a Control Engineer, you need a strong background in electrical or mechanical engineering, control theory, and process automation, typically backed by a relevant engineering degree. Familiarity with programmable logic controllers (PLCs), SCADA systems, and industry-standard software such as MATLAB or Simulink is essential, with certifications like Certified Automation Professional (CAP) being advantageous. Analytical thinking, problem-solving, and effective communication are vital soft skills for designing solutions and collaborating with multidisciplinary teams. These competencies ensure the safe, efficient, and reliable operation of automated systems in industrial environments.

What are the common challenges a control engineer faces when integrating new automation systems with existing infrastructure?

Control Engineers often encounter challenges when integrating new automation systems with legacy equipment or outdated infrastructure. These challenges include compatibility issues, communication protocol mismatches, and limited documentation for older systems. To overcome these obstacles, engineers must collaborate closely with cross-functional teams—such as IT, process engineers, and equipment vendors—to ensure seamless integration and minimal disruption to operations. Proactive troubleshooting, robust testing, and clear documentation are also crucial for successful implementation.

What is the difference between Control Engineer vs Automation Engineer?

AspectControl EngineerAutomation Engineer
Required CredentialsBachelor's in Electrical, Mechanical, or Control Engineering; certifications like Certified Control Systems Technician (CCST)Bachelor's in Electrical, Mechanical, or Automation Engineering; similar certifications often applicable
Work EnvironmentIndustrial plants, manufacturing facilities, process industriesManufacturing, robotics, process automation, software development
Employer & Industry UsageFactories, power plants, automation service providersManufacturers, tech companies, system integrators

Control Engineers focus on designing, developing, and maintaining control systems for machinery and processes, while Automation Engineers often work on integrating automation solutions, including software and robotics, to improve efficiency. Both roles require similar credentials and often overlap in industrial settings, but Control Engineers tend to concentrate more on control hardware and systems, whereas Automation Engineers emphasize automation software and systems integration.

Are control engineers in high demand?

Control engineers are in high demand due to their expertise in automation, robotics, and process control across industries such as manufacturing, energy, and aerospace. The growing adoption of Industry 4.0 technologies and the need for skilled professionals with knowledge of PLCs, SCADA systems, and control algorithms contribute to strong job prospects for control engineers.

How much do control engineers get paid?

Control engineers typically earn a median annual salary ranging from $70,000 to $110,000, depending on experience, location, and industry. Entry-level positions may start lower, while experienced engineers with specialized skills or certifications can earn higher salaries, especially in manufacturing, automation, or process control environments.

What are the most commonly searched types of Control Engineer jobs in Massachusetts?

The most popular types of Control Engineer jobs in Massachusetts are:

What job categories do people searching Control Engineer jobs in Massachusetts look for?

The top searched job categories for Control Engineer jobs in Massachusetts are:

What cities in Massachusetts are hiring for Control Engineer jobs?

Cities in Massachusetts with the most Control Engineer job openings:

Infographic showing various Control Engineer job openings in Massachusetts as of September 2026, with employment types broken down into 1% As Needed, 73% Full Time, 21% Part Time, 4% Contract, and 1% Nights. Highlights an 93% Physical, 1% Hybrid, and 6% Remote job distribution, with an average salary of $105,471 per year, or $50.7 per hour.

Senior Mechatronics and Control Engineer

Bedford, MA • On-site

Berkshire Grey
51 - 200 employees

Other

Re-posted 15 days ago


Job description

The Senior Mechatronics and Control Engineer will work directly as a member of the RAD research and development team to rapidly prototype automation systems that combine mechanisms, sensors, perception, motion planning, controls, and software integration. This role is for a robotics generalist with broad experience across the layers of a robotic system  The candidate should be comfortable moving from CAD and hands-on prototype fabrication to Python/C++ software, ROS-based integration, system bring-up, testing, and debugging. They will integrate existing technologies into new prototype systems, make practical engineering tradeoffs quickly, and turn partially defined automation needs into working robotic demonstrations and early production concepts.


Functions

  • Own rapid prototyping efforts for robotic automation systems, from concept and CAD through prototype build, perception integration, motion planning, test, and iteration.
  • Translate operational and customer needs defined by product teams into system requirements, prototype architectures, and practical engineering plans.
  • Design, modify, and fabricate mechanisms, end effectors, fixtures, and automation subsystems using CAD and hands-on prototyping methods.
  • Integrate robot arms, end effectors, sensors, perception components, motion planning software, and control interfaces into working systems.
  • Develop and debug Python, C++, and ROS/ROS2 software for prototype behavior, integration, data collection, and system validation.
  • Bring up, test, and troubleshoot incomplete systems across mechanical, electrical, controls, and software boundaries.
  • Use experiments and metrics to compare candidate solutions and drive design decisions.
  • Work with suppliers, machinists, contract manufacturers, and internal engineering partners to turn rough concepts into robust prototypes.
  • Communicate results through clear technical writing, design reviews, test plans, reports, and documentation.
  • Travel to customers as needed to understand automation needs, observe system constraints, and support prototype trials.


Required Experience, Knowledge, Skills, and Abilities

  • Bachelor's or master's degree in mechanical engineering, robotics, Computer Science, mechatronics, computer engineering, or equivalent practical experience.
  • Demonstrated generalist ability across the robotics stack, including mechanical design, prototyping, software integration, robot bring-up, and system-level debugging.
  • Proficiency with 3D CAD, preferably SolidWorks, including mechanical design for prototypes and 2D drawings as needed.
  • Strong hands-on prototyping skills with shop tools, 3D printing, basic fabrication, and rapid iteration methods.
  • Working knowledge of Python and C++ for robotics or automation systems.
  • Experience with ROS or ROS2-based robot integration.
  • Experience integrating robot arms, end effectors, sensors, actuators, and automation equipment.
  • Ability to learn new technical areas quickly and make progress with incomplete requirements and limited guidance.
  • Ability to set aggressive but feasible milestones, identify technical risk, and communicate tradeoffs.
  • Experience with perception systems for robotics, such as camera-based sensing, calibration, object detection, or pose estimation.
  • Experience with motion planning, robot trajectories, and practical robot application development.

Preferred Experience, Knowledge, Skills, and Abilities

  • Six or more years of relevant engineering experience in robotics, automation, mechatronics, or closely related systems.
  • Experience with PLCs or industrial automation controls.
  • Familiarity with controls theory, motion control, or servo tuning.
  • Familiarity with PCB design or electrical design enough to collaborate with electrical engineering partners and handle simple harnesses, wiring diagrams, grounding, and integration details.
  • Experience designing systems for industrial, warehouse, food-handling, or customer-facing automation environments.
  • Experience developing and running experiments to validate prototype performance.


Travel: Occasional; up to 10%.


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