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Power Engineer Jobs in Warren, MI (NOW HIRING)

Substation Power Equipment Engineer

Novi, MI · On-site

$92K - $117K/yr

Prepares power equipment specifications for the purposes of procuring major power system components. * Provides technical support and engineering solutions in the development of planned maintenance ...

Substation Power Equipment Engineer

Novi, MI · On-site

$92K - $118K/yr

Prepares power equipment specifications for the purposes of procuring major power system components. * Provides technical support and engineering solutions in the development of planned maintenance ...

Prepares power equipment specifications for the purposes of procuring major power system components. * Provides technical support and engineering solutions in the development of planned maintenance ...

Proficient in reading and accurately interpreting power system schematic and wiring diagrams. * Must be able to work safely and adhere to all electrical safety procedures. * Solid theoretical ...

Proficient in reading and accurately interpreting power system schematic and wiring diagrams. * Must be able to work safely and adhere to all electrical safety procedures. * Solid theoretical ...

48V Power Controls Engineer

Dearborn, MI · On-site

$77K - $99K/yr

The ideal candidate will bring experience in automotive system, hardware, or software engineering, with a strong understanding of ICE and xEV low-voltage power supply architectures. This position ...

48V Power Controls Engineer

Dearborn, MI · On-site

$76K - $99K/yr

Master's degree in Electrical Engineering, Control Systems, Automotive Systems, or a related discipline Experience in vehicle body, low-voltage power supply, electrified powertrain, powertrain system ...

Showing results 41-60

Power Engineer information

See Warren, MI salary details

$21.1K

$91.2K

$160.2K

How much do power engineer jobs pay per year?

As of Sep 3, 2026, the average yearly pay for power engineer in Warren, MI is $91,168.00, according to ZipRecruiter salary data. Most workers in this role earn between $43,600.00 and $125,100.00 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 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 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 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 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.

Is there a demand for power engineers?

Power engineers are in demand due to the ongoing need for reliable energy infrastructure, maintenance of power generation and distribution systems, and the integration of renewable energy sources. Employment opportunities are typically available in utilities, manufacturing, and industrial sectors, often requiring knowledge of control systems, electrical codes, and relevant certifications.

What can a power engineer do?

A power engineer designs, operates, and maintains electrical power systems, including power generation, transmission, and distribution equipment. They troubleshoot electrical issues, ensure system safety and efficiency, and often work with control systems and automation tools. Certification and knowledge of industry standards are typically required for this role.

What are popular job titles related to Power Engineer jobs in Warren, MI?

For Power Engineer jobs in Warren, MI, the most frequently searched job titles are:

What job categories do people searching Power Engineer jobs in Warren, MI look for?

The top searched job categories for Power Engineer jobs in Warren, MI are:

What cities near Warren, MI are hiring for Power Engineer jobs?

Cities near Warren, MI with the most Power Engineer job openings:

Infographic showing various Power Engineer job openings in Warren, MI as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $91,168 per year, or $43.8 per hour.

Power Electronics Research Engineer

Ford Motor Company

Dearborn, MI

$113K - $190K/yr

Full-time

Medical, Dental, Vision, Life, PTO

Re-posted 20 days ago


Key responsibilities

  • Lead the analysis, simulation, and measurement of high-frequency signals in Low Voltage (LV) and High Voltage (HV) systems.

  • Define the future silicon strategy for automotive inverters and provide guidance on the integration of PMIC, ASIC, and SoC technologies.

  • Drive the roadmap for custom silicon and System-in-Package (SiP) solutions to optimize power density, efficiency, and EMI performance in electrified vehicles.


Ford Motor Company rating

7.6

Company rating: 7.6 out of 10

Based on 527 frontline employees who took The Breakroom Quiz

11th of 45 rated automakers


Job description

We are the movers of the world and the makers of the future. We get up every day, roll up our sleeves and build a better world -- together. At Ford, we're all a part of something bigger than ourselves. Are you ready to change the way the world moves?

In this position... 

We are seeking an innovative Power Electronics Research Engineer to lead the analysis, simulation, and measurement of high-frequency signals in Low Voltage (LV) and High Voltage (HV) systems. Beyond traditional filter design, this role is pivotal in defining the future silicon strategy for our automotive inverters. You will provide executive guidance on the integration of PMIC, ASIC, and SoC technologies, driving the roadmap for custom silicon and System-in-Package (SiP) solutions to optimize power density, efficiency, and EMI performance in next-generation electrified vehicles.

You'll have...

Master's degree in Electrical Engineering with a focus on power electronics, mixed-signal IC design, or semiconductor packaging.

3+ years of research or industry experience in:

  • Architectural design of power electronic systems or PMIC/ASIC design.
  • Developing specifications for analog/mixed-signal ICs in automotive or high-power applications.

Power Electronics Technical Expertise:

  • Expertise in circuit parameter extraction and transfer functions from CAD models.
  • Proficiency in Double Pulse Test (DPT) procedures to quantify semiconductor switching noise and map propagation paths.
  • Experience designing filters, chokes, and snubbers to attenuate noise in electric drive systems.

Lab & Analysis Skills:

  • Expertise in high-speed time-domain and frequency-domain signal acquisition (oscilloscopes, network/spectrum analyzers).
  • Knowledge of PCB design and layout for prototyping high-power filter designs.

Even better, you may have...

Ph.D. in Electrical Engineering.

Semiconductor & IC Expertise:

  • Strong understanding of SoC and SiP trends, including 2.5D/3D packaging and their impact on thermal and electrical performance.
  • Knowledge of BCD process technologies and how they apply to high-voltage gate driver and transceiver design.
  • Familiarity with the semiconductor manufacturing flow (fab, assembly, test) and IC design cycles (RTL to GDSII flow awareness).

Functional Safety: Familiarity with ISO 26262 functional safety requirements as they pertain to PMIC and ASIC architecture (ASIL ratings).

Software Proficiency: MATLAB, PLECS, Simplorer, SPICE, Fusion 360, Altium, KiCAD.

Design Flows: Experience with EDA tools (Cadence, Mentor Graphics, Synopsys), FPGA prototyping, and the Siemens IC portfolio.

Domain Knowledge:

  • Deep understanding of automotive requirements, including AEC-Q100 qualification standards.
  • Knowledge of high-voltage systems and high-temperature circuit design for integration with power semiconductor packaging.

Project Management: Experience in material/capital purchasing and utilizing project management tools to track silicon development lifecycles.

You may not check every box, or your experience may look a little different from what we've outlined, but if you think you can bring value to Ford Motor Company, we encourage you to apply!

As an established global company, we offer the benefit of choice. You can choose what your Ford future will look like: will your story span the globe, or keep you close to home? Will your career be a deep dive into what you love, or a series of new teams and new skills? Will you be a leader, a changemaker, a technical expert, a culture builder...or all of the above? No matter what you choose, we offer a work life that works for you, including:

Immediate medical, dental, vision and prescription drug coverage

Flexible family care days, paid parental leave, new parent ramp-up programs, subsidized back-up child care and more

Family building benefits including adoption and surrogacy expense reimbursement, fertility treatments, and more

Vehicle discount program for employees and family members and management leases

Tuition assistance

Established and active employee resource groups

Paid time off for individual and team community service 

A generous schedule of paid holidays, including the week between Christmas and New Year's Day 

Paid time off and the option to purchase additional vacation time. 

This position is a salary grade 8 and ranges from $113,580-190,500.

For more information on salary and benefits, click here: https://fordcareers.co/GSR

Visa sponsorship is not available for this position.

Candidates for positions with Ford Motor Company must be legally authorized to work in the United States. Verification of employment eligibility will be required at the time of hire.

We are an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, religion, color, age, sex, national origin, sexual orientation, gender identity, disability status or protected veteran status. In the United States, if you need a reasonable accommodation for the online application process due to a disability, please call 1-888-336-0660.

This position is hybrid. Candidates who are in commuting distance to a Ford hub location may be required to be onsite four or more days per week. #LI-Hybrid

  #LI-RR1

What you'll do...

Advanced IC Strategy & Architecture (PMIC, ASIC, SoC)

  • Strategic Roadmap Development: Lead the definition of long-term technology roadmaps for Power Management ICs (PMIC) and Application Specific Integrated Circuits (ASIC), specifically tailored for traction inverters and gate drive applications.
  • Custom Silicon Definition: Define technical specifications and architectural requirements for custom SoC and ASIC solutions, focusing on the integration of sensing, protection, and control functions into mixed-signal silicon.
  • System-in-Package (SiP) Integration: Drive the transition from discrete components to SiP solutions to minimize parasitic inductance and optimize the commutation loop for Wide Bandgap (SiC/GaN) devices.
  • BCD Process Evaluation: Evaluate and select appropriate Bipolar-CMOS-DMOS (BCD) process technologies for high-voltage gate drivers and mixed-signal control circuits.
  • Supply Chain & Foundry Interaction: Lead technical engagement with semiconductor foundries and Tier-1 suppliers; conduct "Make vs. Buy" analyses for analog and mixed-signal designs to ensure supply chain resilience and cost optimization.

Design, Simulation & Electromagnetics

  • Next-Gen Converter Design: Design power electronic converters for electrified vehicles, integrating advanced filtering solutions with power modules, busbars, and PCBs.
  • EMI & Filter Optimization: Identify topology and design Common Mode (CM) and Differential Mode (DM) inductive chokes and decoupling capacitors. Build circuit models to estimate frequency generation and propagation in LV/HV circuits.
  • Noise Modeling: Perform modeling and laboratory verification of noise coupling mechanisms between HV power stages and LV gate drive/control PCBs.
  • Interconnect Design: Design HV busbars and DC-link layouts to integrate seamlessly with passive filters and power modules, mitigating EMI cross-talk.

Cross-Functional Collaboration

  • System Integration: Interact with system design, semiconductor, and gate drive experts to meet requirements for high voltage, high , and large  gate drive operations.
  • Technical Leadership: Support interaction with inverter control experts, low-voltage circuit designers, and electric machine specialists to ensure cohesive system architecture.
  • Communication: Effectively communicate strategic directions and technical results by writing technical reports, invention disclosures, and presenting executive summaries to management.

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