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Power Engineer Jobs in Illinois (NOW HIRING)

Power Electronics Engineer

Rockton, IL · On-site

$109K - $129K/yr

Power control Systems Engineer Rockton, Illinois (Fully Onsite) "Knowledge of thermal management and fault protection strategies. Hands-on experience with compliance testing and certification ...

Power Electronics Engineer

Batavia, IL · On-site

$99K - $130K/yr

Fermilab is seeking a Power Electronics Engineer within our Power Electronics Systems Department . This person under general directions this position plans and performs engineering tasks which ...

Our Material Handling Division , which spans across Mi-Jack RTG cranes, Broderson industrial cranes, LiftKing forklifts, and Greenfield equipment, is hiring a Power Systems Engineer. This is a hands ...

Our Material Handling Division , which spans across Mi-Jack RTG cranes, Broderson industrial cranes, LiftKing forklifts, and Greenfield equipment, is hiring a Power Systems Engineer. This is a hands ...

$95K - $125K/yr

Technical lead and programmer for the integration of power grid automation solutions; managing technical deliverables and customer support. ESSENTIAL DAY TO DAY FUNCTIONS: * Assist with G&W ...

Showing results 21-40

Power Engineer information

See Illinois salary details

$21.8K

$94.3K

$165.7K

How much do power engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for power engineer in Illinois is $94,291.00, according to ZipRecruiter salary data. Most workers in this role earn between $45,100.00 and $129,400.00 per year, depending on experience, location, and employer.

What is a power engineer?

Power Engineers are professionals who design, operate, maintain, and manage systems that generate, transmit, and distribute electrical power. They work with equipment like generators, transformers, circuit breakers, and power grids to ensure reliable and efficient delivery of electricity. Power Engineers are employed in various industries, including utilities, manufacturing, and large facilities, and play a key role in troubleshooting and optimizing energy systems. Their responsibilities also include ensuring compliance with safety standards and environmental regulations.

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

To thrive as a Power Engineer, you need a solid background in electrical engineering or a related field, typically supported by a bachelor’s degree and Professional Engineer (PE) licensure. Familiarity with power system analysis software (such as ETAP or PSCAD), SCADA systems, and grid management tools is often required. Strong problem-solving abilities, effective communication, and teamwork skills help you collaborate on complex projects and convey technical information clearly. These competencies are essential for ensuring the reliable design, operation, and maintenance of power systems critical to modern infrastructure.

What is the difference between Power Engineer vs Mechanical Technician?

AspectPower EngineerMechanical Technician
CredentialsCertification (e.g., 4th or 3rd Class Power Engineer)Trade certification or diploma in mechanical technology
Work EnvironmentPower plants, industrial facilities, HVAC systemsManufacturing, maintenance, equipment repair
Industry UsageEnergy, utilities, industrial operationsManufacturing, maintenance services

Power Engineers and Mechanical Technicians often work in similar industrial environments, but Power Engineers focus on operating and maintaining energy systems and boilers, requiring specific certifications. Mechanical Technicians handle equipment repairs and maintenance, often with different certifications. Both roles are essential in industrial settings, but Power Engineers typically have more responsibility for system operation and safety.

What are some typical challenges power engineers face when working on large-scale energy projects?

Power Engineers working on large-scale energy projects often encounter challenges such as coordinating with multidisciplinary teams, ensuring compliance with evolving safety and environmental regulations, and managing complex project timelines. Additionally, they must troubleshoot unexpected technical issues in power generation, transmission, or distribution systems while maintaining system reliability. Effective communication and problem-solving skills are essential to navigate these challenges and deliver successful project outcomes.

What do power engineers do?

Power engineers monitor power and utility systems in an industrial or commercial facility. As a power engineer, your duties include following all processes, performing equipment repairs and maintenance, and adhering to safe operating procedures. You are in charge of the facility’s entire electrical grid, including the lighting, air conditioning, water treatment, and all other power generation systems. To ensure the smooth operation of your facility’s boiler systems, electrical systems, and other systems of power transmission, you communicate and work closely with the other engineers in your company.

What are the most commonly searched types of Power Engineer jobs in Illinois? The most popular types of Power Engineer jobs in Illinois are:
What cities in Illinois are hiring for Power Engineer jobs? Cities in Illinois with the most Power Engineer job openings:
Infographic showing various Power Engineer job openings in Illinois as of August 2026, with employment types broken down into 100% Full Time. Highlights an 93% In-person, 2% Hybrid, and 5% Remote job distribution, with an average salary of $94,291 per year, or $45.3 per hour.

Power Electronics Engineer

Diversified Services Network, Inc.

Mossville, IL • On-site

$81K - $96K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

This job post has expired 1 day ago. Applications are no longer accepted.


Job description

Diversified Services Network, Inc. (DSN) is seeking a full-time Power Electronics Engineer to join our fully onsite team in Mossville, IL. We offer full benefits, PTO, 401k, and more! If you're looking to grow your career within an extremely reputable, stable Fortune 100 company - let's talk!

Position Overview

The Power Electronics Engineer will be a key contributor to the MPCS (Modular Power Conversion System) product development team, supporting the design, validation, and continuous improvement of power electronics hardware used in utility-scale energy storage and power conversion applications. This role provides hands-on technical expertise in Gate Driver Board (GDB), Power Board, and power module development, helping accelerate design maturity, prototype validation, and issue resolution throughout the product development cycle. The engineer will work closely with electrical design, controls, validation, manufacturing, and supplier teams to improve product performance, reliability, and manufacturability.

This position plays a critical role in helping the team deliver safe, reliable, and high-performance power conversion products while supporting schedule commitments and long-term product quality objectives.

Key Responsibilities

• Design and validate power electronics hardware for next-generation MPCS products, including Gate Driver Boards (GDB), Power Boards, and protection circuits.

• Design and debug gate drive circuits for IGBT and SiC power modules, including gate drive optimization, protection circuits, desaturation protection, and active clamping.

• Review schematics, simulations, and PCB layouts for performance, reliability, and manufacturability.

• Execute laboratory testing including switching characterization, Double Pulse Testing (DPT), thermal validation, and fault-condition testing using oscilloscopes, current probes, differential probes, thermal cameras, and power analyzers.

• Analyze switching waveforms, gate signals, current sharing, voltage overshoot, and protection responses.

• Investigate and perform root-cause analysis of inverter, gate drive, and power module failures.

• Develop and execute validation plans, test procedures, and engineering reports.

• Support product releases by identifying risks, validating corrective actions, and improving design quality.

• Support prototype builds and production issue resolution through technical collaboration with suppliers and contract manufacturers.

• Participate in technical reviews and provide recommendations to improve product reliability and performance.

• Collaborate with system, controls, validation, and manufacturing engineers to resolve technical issues and meet project milestones.

Team Structure & Work Environment

• Interactions with the Controls team, Validation team, and Cooling team

• Office and lab environment; occasional travel to the Tucson Proving Ground or field locations for support.

• Appropriate PPE gear required in lab settings.

• Split between office and lab work fluctuates, with office work ranging from approximately 25%-75% and the remainder spent in the lab.

Requirements

Education & Experience Required

• BS with 5+ years of relevant experience, or MS with 3+ years of relevant experience.

• Associates degree considered with 10+ years of relevant experience.

Technical Skills

Required:

• Gate Driver Board (GDB) design and validation, including gate drive optimization, protection circuits, desaturation protection, active clamping, soft shutdown, and false turn-on mitigation.

• Power electronics hardware design, including power boards, sensing circuits, protection circuits, and high-power inverter hardware; schematic development, PCB review, and component selection.

• Experience with IGBT and SiC power module applications, including switching behavior, safe operating area (SOA), thermal performance, and protection design.

• Hands-on experience with Double Pulse Testing (DPT), switching characterization, thermal testing, fault testing, and inverter troubleshooting.

• Proficiency with power electronics laboratory equipment, including oscilloscopes, differential probes, high-current probes, power analyzers, thermal imaging cameras, and data acquisition systems.

• Experience designing and debugging high-voltage and high-current PCBs.

• Schematic capture and PCB design review experience using Altium Designer or equivalent ECAD tools.

• Familiarity with MATLAB/Simulink, PLECS, LTspice, or similar simulation tools.

• Knowledge of EMI/EMC design practices, creepage and clearance requirements, electrical safety and insulation coordination, and thermal management and cooling systems.

• Experience with root cause analysis and failure investigation of power electronic systems, and familiarity with reliability engineering tools such as DFMEA and fault tree analysis.

• Experience supporting prototype builds, manufacturing, and supplier technical reviews.

• Familiarity with utility-scale energy storage systems (BESS), grid-tied inverters, motor drives, UPS, or renewable energy conversion systems.

• Knowledge of industry standards such as UL 1741, IEEE 1547, IEC 61800, IEC 62477, or related power conversion standards.

Desired / Nice to Have:

• Experience with multi-level inverter topologies (NPC/T-Type).

• Experience with medium-voltage power conversion systems.

• Experience with power module failure analysis, IGBT reliability testing, and thermal characterization.

• Familiarity with grid-forming and grid-following inverter applications.

• Experience developing and validating power electronics products from prototype through production release.

Soft Skills

Required:

• Strong communication skills, with the ability to clearly convey technical concepts to cross-functional teams and stakeholders.

• Problem-solving and analytical thinking, with skill in diagnosing complex system issues and proposing effective solutions.

• Collaboration and teamwork, with comfort working in multidisciplinary teams alongside mechanical, electrical, and software engineers.

• Attention to detail, ensuring accuracy in design reviews, documentation, and compliance with standards.

• Adaptability, with the ability to manage changing priorities and work effectively in a fast-paced development environment.

Desired / Nice to Have:

• Leadership and mentoring experience guiding junior engineers or leading small technical teams.

• Conflict resolution skills, with the ability to navigate differing viewpoints and drive consensus.

• Project management awareness, including understanding of timelines, resource allocation, and risk mitigation.

• Customer-focused mindset, with the ability to translate customer requirements into technical solutions.

• Continuous learning mindset, staying proactive about emerging technologies and industry trends.

Benefits

  • 401(k)
  • Dental insurance
  • Vision Insurance
  • Disability insurance
  • Employee assistance program
  • Health insurance
  • Health savings account
  • Life insurance
  • Paid time off
  • Paid Holidays

Please follow the link to our website for a list of job openings in Engineering, IT, Project Management, and more! https://www.dsnworldwide.com

Expected Annual Compensation: $85,000-90,000