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Electrical Reliability Engineer Jobs in Michigan

Electrical Engineer Build More Than Systems. Build a Life on Lake Michigan. There are engineering ... reliability, and directly impact production in a 24/7 manufacturing facility producing 100 ...

Working closely with plant managers to ensure energy reliability, system resilience, and customer satisfaction * Serving as the electrical technical resource for other company locations as needed ...

Working closely with plant managers to ensure energy reliability, system resilience, and customer satisfaction * Serving as the electrical technical resource for other company locations as needed ...

We have an urgent opening for a Electrical Engineer position based in Grand Rapids, Michigan with ... Perform circuit simulation and analysis to ensure performance and reliability * Capture and manage ...

Electrical Senior Quality Engineer

Troy, MI · On-site

$83K - $113K/yr

Bachelor's degree in Electrical, Electronics or Mechatronics Engineering * Minimum of 5 years of ... Certified Quality Engineer (CQE) or Certified Reliability Engineer (CRE) * Ability to read and ...

Develop product validation and testing plans to ensure design robustness and reliability * Partner ... Bachelor's degree in electrical engineering or related discipline. * A minimum of 1 year of ...

Develop product validation and testing plans to ensure design robustness and reliability * Partner ... Bachelor's degree in electrical engineering or related discipline. * A minimum of 1 year of ...

Develop product validation and testing plans to ensure design robustness and reliability * Partner ... Bachelor's degree in electrical engineering or related discipline. * A minimum of 1 year of ...

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Showing results 1-20

Electrical Reliability Engineer information

See Michigan salary details

$44K

$96.8K

$146.4K

How much do electrical reliability engineer jobs pay per year?

As of Jun 9, 2026, the average yearly pay for electrical reliability engineer in Michigan is $96,826.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,300.00 and $115,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the Electrical Reliability Engineer position, and why are they important?

To thrive as an Electrical Reliability Engineer, you need a strong background in electrical engineering principles, failure analysis, and reliability-centered maintenance, often supported by a bachelor's degree in electrical engineering or a related field. Familiarity with reliability analysis tools like FMEA, Root Cause Analysis (RCA), reliability modeling software, and certification such as Certified Reliability Engineer (CRE) is valuable. Excellent problem-solving skills, effective communication, and the ability to work collaboratively within multidisciplinary teams help you stand out. These skills ensure the effective identification and resolution of electrical system issues, maximizing equipment uptime and maintaining safety and operational efficiency.

What are some typical challenges faced by Electrical Reliability Engineers in their day-to-day work?

Electrical Reliability Engineers often face challenges such as diagnosing intermittent electrical failures, implementing proactive maintenance strategies to minimize unplanned downtime, and balancing immediate repair needs with long-term reliability improvements. They may also need to collaborate closely with operations, maintenance, and engineering teams to gather data, validate root cause findings, and ensure solutions are sustainable. Adapting to rapidly changing plant conditions and keeping up with new technologies are common aspects of the role. By approaching challenges methodically and communicating clearly with cross-functional teams, Electrical Reliability Engineers play a critical role in driving continuous improvement in equipment performance.

What does an Electrical Reliability Engineer do?

An Electrical Reliability Engineer ensures the reliability and performance of electrical systems in industrial or manufacturing settings. They analyze failure data, implement predictive maintenance strategies, and develop reliability improvement plans. Their role includes conducting root cause analysis, optimizing electrical assets, and ensuring compliance with industry standards. By proactively identifying risks and improving system efficiency, they help prevent unplanned downtime and maintain operational safety.

What job categories do people searching Electrical Reliability Engineer jobs in Michigan look for? The top searched job categories for Electrical Reliability Engineer jobs in Michigan are:

$70K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 21 days ago


Job description

Electrical Engineer

Responsibilities
The Electrical Engineer is a member of the Plant Engineering team responsible for supporting facility infrastructure, manufacturing equipment, and process systems across the full production lifecycle. This role focuses on maintaining and improving electrical and control systems, upgrading equipment, supporting plant modifications, and partnering with skilled trades and contractors to ensure safe, reliable, and efficient operations. The Electrical Engineer plays a key role in capital projects, process changes, and day-to-day technical support for manufacturing operations.

This role is based in Muskegon County, Michigan.

Compensation and Benefits
  • Starting pay: $70,000+ annually
  • Medical, dental, and vision insurance
  • 401(k) savings plan with employer match
  • Paid time off including vacation, holidays, and sick leave
  • Life insurance and employee assistance programs
  • Professional development, certifications, and technical training

Primary Responsibilities
  • Support maintenance and reliability of facility and manufacturing equipment across all production processes.
  • Lead or support projects to upgrade existing electrical equipment, controls, and systems.
  • Coordinate and support plant rearrangements and layout changes related to electrical and control systems.
  • Assist in selection, procurement, installation, and commissioning of new equipment to support manufacturing process changes.
  • Provide technical support to skilled trades and external contractors.
  • Troubleshoot electrical, control, hydraulic, and pneumatic systems to minimize downtime.
  • Support day-to-day operations by acting as an engineering resource for production and maintenance teams.
  • Ensure electrical systems comply with safety standards, codes, and internal requirements.
  • Support continuous improvement, reliability, and automation initiatives.

Job Roles
  • Systems thinker – Understands manufacturing and facility systems holistically; anticipates downstream impacts of electrical decisions.
  • Problem solver – Diagnoses complex electrical and control issues using structured troubleshooting methods.
  • Collaborator – Partners effectively with operations, maintenance, engineering, and contractors.
  • Reliability advocate – Focuses on equipment uptime, safety, and sustainable system performance.
  • Detail oriented – Ensures accuracy in documentation, schematics, and system modifications.
  • Adaptable – Responds effectively to changing priorities and unplanned issues.

Qualifications
Basic Qualifications
  • Bachelor’s degree in Electrical Engineering or Electrical Engineering Technology from an accredited institution
  • Internship, co-op, or prior experience in a manufacturing or industrial environment
  • Legally authorized to work in the United States (no visa sponsorship available)
Preferred Qualifications
  • PLC programming experience
  • HMI programming experience
  • Experience with Allen-Bradley PLCs, RSLogix, and Studio 5000
  • Experience with Wonderware, iFIX, and SCADA systems
  • Knowledge of electrical distribution systems below 600V
  • Proficiency with AutoCAD and AutoCAD Electrical
  • Experience with industrial robotics (Motoman or similar)
  • Knowledge of NEC, NFPA 70E, and NFPA 79 standards
  • Ability to troubleshoot hydraulic and pneumatic systems
  • Familiarity with thermocouples, RTDs, transmitters, and flowmeters
  • Knowledge of variable frequency drives (VFDs)