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Power System Engineering Jobs in Boston, MA (NOW HIRING)

Power Solutions Manager

Boston, MA · On-site +1

$131K - $196K/yr

... Power System solution. * Directs the sales tools to strategically develop their respective geographical region and Dealer (e.g., PDSS, fly-ins, customer visits, Engineering Symposium, and Power ...

Showing results 41-60

Power System Engineering information

See Boston, MA salary details

$65.7K

$154.3K

$212.9K

How much do power system engineering jobs pay per year?

As of Aug 7, 2026, the average yearly pay for power system engineering in Boston, MA is $154,345.00, according to ZipRecruiter salary data. Most workers in this role earn between $123,800.00 and $187,900.00 per year, depending on experience, location, and employer.

What is the difference between Power System Engineering vs Power Distribution Engineering?

AspectPower System EngineeringPower Distribution Engineering
FocusDesign, analysis, and operation of large-scale electrical power systems including generation, transmission, and distribution networksDesign and implementation of local electrical distribution systems, including substations and feeders for end-users
CertificationsPE license, IEEE certificationsPE license, specialized distribution certifications
Work EnvironmentUtilities, power plants, grid operatorsUtilities, electrical contractors, distribution companies

Power System Engineering focuses on the overall electrical grid, ensuring reliable power transmission and generation. Power Distribution Engineering concentrates on local distribution networks that deliver electricity to consumers. Both roles require similar credentials and often work within the utility industry, but their scope and focus differ significantly.

What are the common challenges faced by power system engineers when integrating renewable energy sources into existing grids?

Power System Engineers often encounter challenges such as grid stability, variability of renewable sources, and the need for advanced grid management technologies when integrating renewables. Balancing supply and demand becomes more complex due to the intermittent nature of solar and wind power. Engineers must also address issues related to grid protection, voltage regulation, and ensuring reliable power quality, often working closely with cross-functional teams to implement solutions. Staying updated on evolving grid codes and standards is essential for success in this dynamic environment.

What is power system engineering?

Power system engineering is a field of electrical engineering focused on the generation, transmission, distribution, and utilization of electric power. It involves designing and maintaining systems that deliver electricity safely and reliably to homes, businesses, and industries. Power system engineers work on projects such as power plants, substations, and grid integration of renewable energy sources. Their work ensures the stability and efficiency of electrical networks, addressing challenges like load management and fault analysis.

What are the key skills and qualifications needed to thrive as a power system engineer, and why are they important?

To thrive as a Power System Engineer, you need a strong background in electrical engineering, power systems analysis, and typically a bachelor's or master's degree in electrical engineering. Familiarity with industry-standard tools like ETAP, PSCAD, MATLAB, and relevant certifications such as Professional Engineer (PE) licensure are common requirements. Excellent problem-solving, teamwork, and communication skills set outstanding engineers apart in this field. These competencies ensure reliable power system design, effective project execution, and safe, efficient operation of electrical grids.

What does a power system engineer do?

A power system engineer designs, analyzes, and maintains electrical power systems to ensure reliable and efficient delivery of electricity. They work with grid infrastructure, perform system modeling, and use tools like power flow analysis software, often requiring knowledge of standards and safety protocols. Their role is essential in optimizing power generation, transmission, and distribution networks.

Is power system engineering still in demand?

Power system engineering remains in demand due to the ongoing need for reliable electricity infrastructure, renewable energy integration, and modernization of electrical grids. Professionals with skills in system analysis, protection, and control, as well as relevant certifications, are sought after in the energy sector.
Infographic showing various Power System Engineering job openings in Boston, MA as of August 2026, with employment types broken down into 100% Full Time. Highlights an 67% In-person, and 33% Hybrid job distribution, with an average salary of $154,345 per year, or $74.2 per hour.

System Mechanical & Integration Engineer

Analog Devices

Wilmington, MA • On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 15 days ago


Analog Devices rating

8.5

Company rating: 8.5 out of 10

Based on 17 frontline employees who took The Breakroom Quiz

33rd of 156 rated electronics manufacturers


Job description

About Analog Devices
Analog Devices, Inc. (NASDAQ: ADI) is a global semiconductor leader that bridges the physical and digital worlds to enable breakthroughs at the Intelligent Edge. ADI combines analog, digital, AI, and software technologies into solutions that combat climate change, reliably connect humans and the world, and help drive advancements in automation and robotics, mobility, healthcare, energy and data centers. With revenue of more than $11 billion in FY25, ADI ensures today's innovators stay Ahead of What's Possible. Learn more at www.analog.com and on LinkedIn and X.
System Mechanical & Integration Engineer
Wilmington, MA
Position Overview
Analog Devices' High Voltage & Protection team is seeking a Systems Integration Engineer to support the development of next-generation data center power delivery solutions.
In this role, you will work alongside experienced power electronics, thermal, mechanical, systems, and reliability engineers to design, integrate, and validate high-density power supply systems for AI and cloud computing infrastructure. The focus will be on mechanical architecture development, thermal management, enclosure design, busbar integration, manufacturability, and system-level validation of high-power server and rack-level power solutions.
Key Responsibilities
In this role, your focus will be on hands-on mechanical and thermal development of power systems, with ownership commensurate with level and increasing responsibility over time.
  • Design and integrate mechanical subsystems for high voltage power conversion platforms, including HV DC/DC module, intelligent power system, and Power Distribution Box (PDB).
  • Own enclosure and structural design activities, including sheet metal design, die-cast components, machined parts, fastening strategies, tolerance stack-up analysis, manufacturability, and assembly considerations.
  • Develop thermal solutions for high-power electronic systems utilizing air cooling, liquid cooling, cold plates, heat sinks, vapor chambers, heat spreaders, and advanced thermal interface materials.
  • Perform thermal simulations and airflow analysis using industry-standard tools (Icepak, Fluent, 6SigmaET, FloTHERM, Star-CCM+, or equivalent) to optimize cooling performance and maintain component reliability.
  • Design and validate power interconnect solutions including busbars, copper current-carrying structures, high-current connectors, grounding systems, and electrical isolation features.
  • Collaborate closely with electrical and power electronics teams to optimize mechanical packaging of transformers, inductors, capacitors, semiconductors, and magnetic components.
  • Create and execute thermal, mechanical, vibration, shock, and environmental validation plans to ensure compliance with product and customer requirements.
  • Support prototype builds, design verification testing (DVT), and root-cause analysis of thermal, structural, or assembly-related issues.
  • Work with manufacturing partners, suppliers, and contract manufacturers to develop cost-effective, scalable, and production-ready mechanical solutions.
  • Document system architecture, design analyses, simulations, test results, and lessons learned to support product development and continuous improvement.

Required Qualifications
  • MS or PhD in Mechanical Engineering, Thermal Engineering, Aerospace Engineering, Electrical Engineering, or a related field.
  • 3+ experience with Strong foundation in multiple areas spanning:
    • Mechanical design and product development
    • Thermal management of electronic systems
    • System integration of power electronics platforms
    • Candidates with additional experience may be considered at the Senior Engineer level
  • Demonstrated experience (research, projects, internships, or industry) developing mechanical and thermal solutions for electronic products, power systems, or high-performance computing infrastructure.
  • Experience with CAD tools such as Creo, SolidWorks, NX, or CATIA.
  • Experience performing thermal simulations, CFD analysis, or airflow optimization for electronics cooling applications.
  • Understanding of structural mechanics, tolerance analysis, material selection, and manufacturing processes.
  • Knowledge of high-current power distribution methods including busbars, connectors, grounding, creepage, and clearance requirements.
  • Strong analytical and problem-solving skills with a hands-on approach to design validation and troubleshooting.

Preferred Qualifications
  • Industry experience with data center power supplies, server platforms, rack-level power systems, renewable energy, or energy storage systems.
  • Experience designing high-power systems (>3 kW), power shelves, >400V power conversion platforms, or AI infrastructure hardware.
  • Proficiency with thermal simulation tools such as ANSYS Icepak, Fluent, FloTHERM, 6SigmaET, or Star-CCM+.
  • Experience with liquid-cooling technologies including cold plates, CDU integration, direct-to-chip cooling, and rack-level thermal management.
  • Knowledge of power electronics packaging including magnetic components, power semiconductors, busbar design, and EMC/EMI considerations.
  • Familiarity with mechanical reliability testing including vibration, shock, HALT/HASS, and environmental qualification.
  • Experience with DFM, DFA, FMEA, GD&T, tolerance stack-up, and production release processes.
  • Python or MATLAB experience for thermal data analysis, automation, and model correlation.
  • Strong communication skills and ability to work effectively in multidisciplinary engineering teams.

For positions requiring access to technical data, Analog Devices, Inc. may have to obtain export licensing approval from the U.S. Department of Commerce - Bureau of Industry and Security and/or the U.S. Department of State - Directorate of Defense Trade Controls. As such, applicants for this position - except US Citizens, US Permanent Residents, and protected individuals as defined by 8 U.S.C. 1324b(a)(3) - may have to go through an export licensing review process.
Analog Devices is an equal opportunity employer. We foster a culture where everyone has an opportunity to succeed regardless of their race, color, religion, age, ancestry, national origin, social or ethnic origin, sex, sexual orientation, gender, gender identity, gender expression, marital status, pregnancy, parental status, disability, medical condition, genetic information, military or veteran status, union membership, and political affiliation, or any other legally protected group.
EEO is the Law: Notice of Applicant Rights Under the Law.
Job Req Type: Experienced
Required Travel: Yes, 10% of the time
Shift Type: 1st Shift/Days
The expected wage range for a new hire into this position is $110,385 to $151,808.
  • Actual wage offered may vary depending on work location, experience, education, training, external market data, internal pay equity, or other bona fide factors.
  • This position qualifies for a discretionary performance-based bonus which is based on personal and company factors.
  • This position includes medical, vision and dental coverage, 401k, paid vacation, holidays, and sick time, and other benefits.

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About Analog Devices

Sourced by ZipRecruiter

Analog Devices (NASDAQ: ADI) designs and manufactures semiconductor products and solutions. We enable our customers to interpret the world around us by intelligently bridging the physical and digital worlds with unmatched technologies that sense, measure and connect.

Industry

Electrical equipment, appliance, and component manufacturing

Company size

5,001 - 10,000 Employees

Headquarters location

Norwood, MA, US

Year founded

1965