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Automation Simulation Engineer Jobs in Boston, MA

Position Overview Lydian is hiring for a Staff Controls & Automation Engineer that will design ... Develop simulation or digital-twin models to safely prototype new control strategies * Collaborate ...

AI Enablement Engineer

Chelmsford, MA · On-site

$105K - $142K/yr

Brooks is a leading provider of automation solutions with over 40 years of experience in the ... FEA/Simulation and PLM systems is a plus. * Experience supporting engineering productivity or ...

Showing results 21-40

Automation Simulation Engineer information

See Boston, MA salary details

$42.4K

$134.1K

$207K

How much do automation simulation engineer jobs pay per year?

As of Sep 3, 2026, the average yearly pay for automation simulation engineer in Boston, MA is $134,061.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,900.00 and $159,200.00 per year, depending on experience, location, and employer.

What is an automation simulation engineer?

Automation Simulation Engineers are professionals who design, develop, and test virtual models of automated systems, such as robotics, manufacturing lines, or industrial processes. They use simulation software to replicate real-world operations, helping companies optimize performance, identify issues, and reduce costs before actual implementation. Their work is crucial in industries like automotive, aerospace, and manufacturing, where efficiency and precision are vital. By simulating automation systems, they enable organizations to make informed decisions and improve overall productivity.

How does an automation simulation engineer typically collaborate with cross-functional teams during project development?

Automation Simulation Engineers frequently work alongside controls engineers, mechanical designers, and project managers to ensure simulation models accurately reflect real-world system behaviors. Collaboration often involves participating in design reviews, sharing simulation results, and iterating on model parameters based on feedback from different departments. Effective communication and teamwork are crucial, as simulation insights guide design choices, troubleshoot potential issues, and optimize automation processes before physical implementation. This cross-disciplinary approach ensures smoother project execution and greater system reliability.

What are the key skills and qualifications needed to thrive as an automation simulation engineer, and why are they important?

To thrive as an Automation Simulation Engineer, you need a solid background in engineering principles, control systems, and process automation, usually supported by a degree in electrical, mechanical, or automation engineering. Proficiency with simulation software (such as Siemens Tecnomatix, Rockwell Arena, or MATLAB/Simulink), programming languages, and PLC systems is crucial, and certifications in automation or simulation tools are often valued. Strong analytical thinking, attention to detail, and effective communication skills enable you to interpret complex data and collaborate with multidisciplinary teams. These skills are essential to ensure accurate modeling, efficient automation solutions, and successful project outcomes in industrial environments.

What is the difference between Automation Simulation Engineer vs Automation Test Engineer?

AspectAutomation Simulation EngineerAutomation Test Engineer
Primary FocusDeveloping and validating simulation models for automation systemsDesigning and executing automated tests for software and hardware
Required SkillsSimulation software, control systems, programming (e.g., Python, MATLAB)Testing frameworks, scripting, defect tracking
Work EnvironmentEngineering labs, R&D departments, manufacturing settingsSoftware development teams, QA departments, manufacturing
Industry UsageManufacturing, robotics, industrial automationSoftware development, electronics, automation industries

While both roles involve automation, the Automation Simulation Engineer focuses on creating virtual models to test automation systems, whereas the Automation Test Engineer concentrates on executing automated tests to ensure software and hardware quality. Both roles require technical skills and are vital in automation industries, but their core responsibilities differ significantly.

What are popular job titles related to Automation Simulation Engineer jobs in Boston, MA?

For Automation Simulation Engineer jobs in Boston, MA, the most frequently searched job titles are:

What cities near Boston, MA are hiring for Automation Simulation Engineer jobs?

Cities near Boston, MA with the most Automation Simulation Engineer job openings:

Electro Magnetic Engineer

Brooks Automation

Chelmsford, MA • On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 17 days ago


Job description

Brooks is a leading provider of automation solutions with over 40 years of experience in the semiconductor industry, offering precision robotics, integrated automation systems, and contamination control solutions that empower chip manufacturers worldwide. Our product portfolio includes a range of automation solutions, including robots, vacuum systems, and atmospheric robots for semiconductor manufacturing (www.brooks.com).
Are you looking for a place where you can be part of a transformation? Join us at Brooks Automation and be a part of a dynamic organization that is shaping the future of technology.
Electro Magnetic Engineer
Job Description
Brooks Automation is developing next-generation precision motion technologies for semiconductor automation. We are seeking a highly capable Senior Electromagnetic Systems Engineer to design and validate advanced electromagnetic actuation systems used in magnetic levitation, propulsion, and precision motion control applications.
This role is ideal for an engineer who enjoys solving challenging multidisciplinary problems and can bridge electromagnetic theory, simulation, hardware design, and experimental validation. The successful candidate will be responsible for developing electromagnetic solutions that achieve high force density, precise six-degree-of-freedom (6DOF) motion control, low force ripple, and high efficiency while meeting demanding performance, reliability, and manufacturability requirements.
The position combines analytical work, finite element modeling, laboratory experimentation, and close collaboration with controls, mechanical, electrical, and manufacturing engineers.
Key Responsibilities
Electromagnetic System Design
  • Design and optimize electromagnetic actuators, magnetic circuits, coils, and permanent magnet assemblies for precision motion systems.
  • Develop magnetic architectures including Halbach arrays, linear motors, synchronous electromagnetic actuators, and other advanced motion technologies.
  • Analyze and optimize force generation, levitation performance, propulsion efficiency, and actuator stiffness.
  • Evaluate magnet material options, including rare-earth and non-rare-earth technologies.
  • Design electromagnetic systems that support precision multi-axis motion and closed-loop control.

Modeling & Simulation
  • Develop and validate electromagnetic finite element models using industry-standard tools such as Ansys Maxwell, JMAG, COMSOL, Altair Flux, or equivalent.
  • Perform magnetic, thermal, and multiphysics simulations.
  • Predict and minimize force ripple, cogging effects, power losses, magnetic saturation, eddy currents, and thermal constraints.
  • Correlate simulation results with laboratory data and continuously improve model accuracy.

Thermal & Electrical Analysis
  • Design and evaluate coil architectures, current requirements, voltage requirements, and overall electrical performance.
  • Conduct thermal analyses to establish operating limits, duty cycles, cooling requirements, and long-term reliability.
  • Collaborate with power electronics engineers to define current drivers, sensing requirements, and system architectures.

Motion Control Support
  • Develop force models and commutation strategies for electromagnetic actuators.
  • Support controls engineers through creation of actuator models, force maps, and system characterization data.
  • Analyze force and torque generation mechanisms and their impact on precision motion performance.

Experimental Validation
  • Design and build laboratory test fixtures and prototypes.
  • Plan and execute engineering experiments to validate electromagnetic, thermal, and dynamic performance.
  • Collect, analyze, and interpret test data.
  • Generate formal test reports, design verification documentation, and technical recommendations.
  • Drive design improvements using a data-driven engineering approach.

Cross-Functional Collaboration
  • Work closely with electrical, mechanical, controls, manufacturing, and reliability engineering teams.
  • Participate in design reviews and technical problem-solving activities.
  • Contribute to innovation initiatives, invention disclosures, and intellectual property development.

Required Qualifications
Education
  • Master's degree or Ph.D. in Electrical Engineering, Electromagnetics, Applied Physics, Mechatronics, or a related technical discipline.

Experience
  • 5+ years of industry experience in electromagnetic system design, electric machines, motion systems, or related technologies.

Technical Skills
Demonstrated experience in several of the following areas:
  • Electromagnetic actuator design
  • Electric motors and generators
  • Magnetic levitation systems
  • Linear motors and direct-drive systems
  • Permanent magnet design
  • Magnetic circuit design
  • Coil and winding design
  • Electromagnetic finite element analysis
  • Thermal analysis of electromechanical systems
  • Multiphysics simulation
  • Experimental design and validation
  • Data acquisition and engineering analysis

Software Experience
Experience with some of the following tools:
  • Ansys Maxwell
  • JMAG
  • COMSOL
  • Altair Flux
  • MATLAB / Simulink
  • Python
  • LabVIEW

Preferred Qualifications
  • Experience with precision motion systems or robotics.
  • Experience with semiconductor automation equipment.
  • Experience with magnetic levitation or planar motor technologies.
  • Experience correlating simulation models with laboratory results.
  • Experience developing patents, invention disclosures, or technical publications.
  • Familiarity with electromechanical product development from concept through production.

What Makes Someone Successful in This Role
The ideal candidate combines strong theoretical understanding with a practical, hands-on engineering mindset. They are comfortable moving between simulation tools, design reviews, laboratory testing, and cross-functional collaboration.
We are looking for someone who:
  • Balances theory, simulation, and experimental validation.
  • Takes ownership of technical challenges and follows them through to resolution.
  • Communicates effectively with multidisciplinary teams.
  • Works collaboratively and respectfully with colleagues.
  • Is receptive to constructive feedback and continuous learning.
  • Demonstrates curiosity, humility, and a passion for innovation.

Compensation
Base Salary Range: $105,593.46 USD to $142,861.74 USD
Factors which may affect starting pay within this range may include geography/market, skills, education, experience and other qualifications of the successful candidate.
This position is also eligible for an annual discretionary bonus.
Benefits
At Brooks, we offer the following benefits for this position, subject to applicable eligibility requirements:
  • Medical, Dental, Vision and Disability Insurance
  • 401(k) Plan
  • Exempt employees are provided company paid holidays and Flexible Vacation to enjoy personal time off and incidental sickness.

Have a question about our benefits and compensation package? Your recruiter can share more with you during the hiring process.
Work Location & Flexibility
At Brooks, we aim to foster a collaborative and engaging environment while offering flexibility where possible. Work arrangements may include a mix of in-office and remote work, depending on the nature of the role and business needs. Specific expectations will be shared during the interview process.
Brooks is committed to fostering a diverse and inclusive workplace and proudly serves as an equal-opportunity employer. We welcome all qualified applicants regardless of race, color, religion, gender identity or expression, sexual orientation, national origin, genetics, disability, age, veteran status, or any other legally protected characteristics.
Diversity enhances our innovative capabilities and strengthens our ability to serve our customers and communities effectively. At Brooks Automation, we celebrate the unique experiences and perspectives each individual brings, believing they are essential to our collective success. Join us in building a workplace where every team member is valued and can thrive.
For applicants with disabilities requiring accommodations, don't hesitate to get in touch with talentattraction@brooks.com or call +1 (978) 262-2400 to discuss your needs.
Review EEO Law & EEO Statement.
Brooks Automation participates in E-Verify® to confirm eligibility for employment in the United States. For more details, visit www.dhs.gov/E-Verify. E-Verify® is a registered trademark of the U.S. Department of Homeland Security.