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Power Engineer Jobs in Utah (NOW HIRING)

UT · On-site

N/A Build the Future of Power Infrastructure We are seeking a skilled Electrical Commissioning Engineer to support the commissioning, startup, testing, and turnover of electrical power systems for ...

UT · On-site

Mid-Level Build the Future of Power Infrastructure We are seeking a skilled Electrical Commissioning Engineer to support the commissioning, startup, testing, and turnover of electrical power systems ...

UT · On-site

N/A Build the Future of Power Infrastructure We are seeking a skilled Electrical Commissioning Engineer to support the commissioning, startup, testing, and turnover of electrical power systems for ...

Showing results 21-40

Power Engineer information

See Utah salary details

$20.5K

$88.6K

$155.7K

How much do power engineer jobs pay per year?

As of Sep 13, 2026, the average yearly pay for power engineer in Utah is $88,583.00, according to ZipRecruiter salary data. Most workers in this role earn between $42,300.00 and $121,500.00 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 the most commonly searched types of Power Engineer jobs in Utah?

The most popular types of Power Engineer jobs in Utah are:

What job categories do people searching Power Engineer jobs in Utah look for?

The top searched job categories for Power Engineer jobs in Utah are:

What cities in Utah are hiring for Power Engineer jobs?

Cities in Utah with the most Power Engineer job openings:

Infographic showing various Power Engineer job openings in Utah as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $88,583 per year, or $42.6 per hour.

Senior Power Systems Engineer

Salt Lake City, UT • On-site

Frey Consulting Group
Recruiting and Staffing Services • 1 - 10 employees

$101K - $138K/yr

Other

Posted 12 days ago


Job description

Location: Salt Lake City, Utah (Remote available for the right candidate)

Position Summary

The Senior Power Systems Engineer is responsible for the planning, analysis, design, and implementation of complex electrical power systems supporting mission-critical facilities, utility-scale infrastructure, industrial facilities, and large commercial developments. This position specializes in medium- and high-voltage power distribution, power generation, protection and controls, substations, and power system studies.

The ideal candidate is a hands-on (\"doer\") engineer with extensive experience designing and coordinating electrical infrastructure for data centers, utility interconnections, power plants, Battery Energy Storage Systems (BESS), substations, and other mission-critical facilities. The engineer collaborates closely with multidisciplinary teams while providing technical leadership throughout all phases of project delivery.

Power Generation & Mission Critical Infrastructure
  • Design electrical infrastructure supporting mission-critical facilities, including hyperscale data centers, industrial facilities, and utility-scale projects.
  • Design medium- and high-voltage power generation systems utilizing reciprocating engines, gas turbines, fuel cells, renewable energy sources, and hybrid generation systems.
  • Design and coordinate large-scale Battery Energy Storage Systems (BESS), including utility-scale installations exceeding 10 MW.
  • Design generator paralleling switchgear, synchronization systems, and associated control systems.
  • Design and specify medium-voltage UPS systems and DC power distribution systems supporting critical facilities.
  • Develop reliable power architectures for continuous-operation facilities requiring high system availability.
Medium-Voltage Power System Design
  • Design low-, medium-, and high-voltage electrical distribution systems.
  • Develop one-line diagrams, three-line diagrams, grounding plans, equipment layouts, cable routing, and power distribution drawings.
  • Specify and coordinate:
    • Medium-voltage switchgear
    • Switchboards
    • DC power equipment
  • Perform service load calculations and equipment sizing in accordance with NEC, IEEE, NESC, utility requirements, and project specifications.
Protection & Controls
  • Develop protection schemes for medium- and high-voltage systems.
  • Design relay protection, relay coordination, and protective device settings.
  • Develop AC/DC control schematics and wiring diagrams.
  • Develop PLC and automation control philosophies.
  • Coordinate SCADA integration and utility interconnection requirements.
  • Support commissioning and startup activities.
  • Protective Device Coordination
  • Arc Flash
  • Load Flow
  • Voltage Drop
  • Motor Starting
  • Harmonic Analysis
  • Dynamic System Modeling
  • Power Quality Studies
Utilize software such as:
  • SKM
  • ETAP
  • EasyPower
  • CYME
Provide engineering recommendations to improve:
  • Reliability
  • Resiliency
  • Safety
  • Operational Performance
Substation & Utility Coordination
  • Design medium- and high-voltage substations.
  • Coordinate utility interconnections.
  • Support projects involving substations exceeding 100 MW.
  • Coordinate protection philosophies with utility providers.
  • Develop utility coordination packages and technical studies.
  • Lead and engineer complex electrical power projects from planning through construction.
  • Prepare engineering reports, calculations, technical specifications, and construction documents.
  • Perform site investigations and existing system evaluations.
  • Shop drawing reviews
  • Mentor junior engineers and designers.
Quality Compliance Ensure compliance with:
  • NEC
  • IEEE
  • NFPA
  • NESC
  • Utility standards
  • Client requirements
  • Applicable codes and regulations

Maintain high standards for engineering quality, documentation, and QA/QC.

Preferred Project Experience Experience with one or more of the following:
  • Battery Energy Storage Systems (BESS)
  • Generator Paralleling Systems
  • Gas Turbine Facilities
  • Reciprocating Engine Generation
  • Fuel Cell Systems
  • Microgrids
  • Substations
  • Industrial Manufacturing Facilities
  • Hospitals
  • Wastewater Treatment Facilities
Qualifications
  • Bachelor's degree in Electrical Engineering.
  • Professional Engineer (PE) license.
  • 10+ years of experience designing electrical power systems.
  • Extensive experience with:
  • Medium-voltage power distribution
  • Protection & Controls
  • Power system modeling and studies
  • Utility coordination
  • Switchgear
  • Generation systems
Preferred Experience

Experience with one or more of the following is preferred:

  • Battery Energy Storage Systems (10 MW+)
  • Utility-scale substations (100 MW+)
  • Generator paralleling controls
  • SCADA
  • PLC programming and integration
Desired Characteristics
  • Hands-on, execution-oriented engineer with a practical approach to problem-solving.
  • Extensive experience designing electrical infrastructure for mission-critical facilities.
  • Strong background in data centers, utility interconnections, power plants, BESS, and substations.
  • Proven ability to collaborate effectively with multidisciplinary teams.
  • Demonstrated technical leadership throughout all phases of project delivery.
  • Strong analytical, communication, and organizational skills.
  • Self-motivated, detail-oriented, and committed to delivering high-quality
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