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Power Engineering Jobs in Houston, TX (NOW HIRING)

Power Studies Engineer

Houston, TX · On-site

$100 - $130/hr

Provide engineering related design, analysis and studies for domestic or international projects. * Conduct short-circuit, protective device coordination and arc-flash studies. * Perform power factor ...

Power Studies Engineer

Houston, TX · On-site

$100K - $130K/yr

Provide engineering related design, analysis and studies for domestic or international projects. * Conduct short-circuit, protective device coordination and arc-flash studies. * Perform power factor ...

About SGC Power: Our electrical, civil, structural and substation engineers assist organizations in planning, designing and implementing their power projects across North America. Whatever the scope ...

SGC Power is more than just a team-we're a close-knit community of engineers and designers driven by a shared passion for excellence. Operating within a fast-paced and dynamic environment, our firm ...

Showing results 41-60

Power Engineering information

See Houston, TX salary details

$21.1K

$91.3K

$160.4K

How much do power engineering jobs pay per year?

As of Sep 4, 2026, the average yearly pay for power engineering in Houston, TX is $91,296.00, according to ZipRecruiter salary data. Most workers in this role earn between $43,600.00 and $125,300.00 per year, depending on experience, location, and employer.

What is power engineering?

Power engineering is a branch of electrical engineering that focuses on the generation, transmission, distribution, and utilization of electric power. Power engineers work with systems and equipment that produce and deliver electricity, ensuring that it is reliable and efficient. This field involves designing power plants, managing renewable energy sources, maintaining electrical grids, and improving energy efficiency in various industries. Power engineers play a critical role in supporting modern infrastructure and the transition to sustainable energy solutions.

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 principles, power systems analysis, and a relevant engineering degree, often with a Professional Engineer (PE) license. Familiarity with industry-standard software like ETAP, MATLAB, and SCADA systems, as well as knowledge of grid codes and safety regulations, is essential. Strong problem-solving abilities, effective communication, and teamwork are critical soft skills in this field. These competencies ensure reliable power generation and distribution, compliance with safety standards, and successful collaboration on complex engineering projects.

What are some common challenges faced by power engineers when working on large-scale energy projects?

Power engineers often encounter challenges such as coordinating with multidisciplinary teams, managing tight project timelines, and ensuring compliance with stringent safety and regulatory standards. They must also address technical issues related to grid reliability, integration of renewable energy sources, and evolving technology requirements. Effective communication and problem-solving skills are essential to navigate these complexities and deliver successful project outcomes.

What is the difference between Power Engineering vs Electrical Engineering?

AspectPower EngineeringElectrical Engineering
CertificationsProfessional Engineer (PE), Power Engineering licensesPE, Electrical Engineering licenses
Work EnvironmentPower plants, energy generation, transmissionDesign, electronics, control systems, various industries
Industry UsagePrimarily in energy, utilities, and power sectorsBroadly across electronics, telecommunications, manufacturing

Power Engineering focuses on the generation, transmission, and distribution of electrical power, often working in energy plants and utility companies. Electrical Engineering has a broader scope, including electronics, control systems, and various industries. While both roles require similar certifications and work environments, Power Engineering specializes in power systems, making it ideal for careers in energy and utilities.

What do you do as a power engineer?

A power engineer designs, operates, and maintains electrical power systems, including generators, transformers, and distribution equipment. They ensure the reliable and efficient supply of electricity, often working with control systems and adhering to safety standards. Certification and technical knowledge of electrical codes are typically required in this role.

What cities near Houston, TX are hiring for Power Engineering jobs?

Cities near Houston, TX with the most Power Engineering job openings:

Infographic showing various Power Engineering job openings in Houston, TX as of August 2026, with employment types broken down into 90% Full Time, 6% Part Time, 3% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $91,296 per year, or $43.9 per hour.

Senior Power Engineer

Fervo Energy Company

Houston, TX • On-site

$99K - $137K/yr

Full-time

Re-posted 25 days ago


Job description

Job Type
Full-time
Description
Fervo is working to build the most cost-effective, repeatable geothermal power plants in the world. Joining Fervo's GRID engineering team means solving frontier technical problems with immediate, real-world impact, accelerating the clean energy transition and reinventing how infrastructure is built.
We are seeking senior engineers who are excited by Fervo's mission, the opportunity to drive meaningful, impactful innovation, and the prospect of maintaining extreme ownership of the cost and constructability implications of their designs, knowing that each decision they make impacts the speed and scale of Fervo's mission.
As a Senior Power Engineer, you will be a technical leader in the design and optimization of Fervo's innovative power plants. You will apply advanced engineering judgment and first-principles analysis to develop high-performance, cost-effective plant designs, while mentoring junior engineers and influencing cross-disciplinary decision-making. As Fervo transitions from first-of-a-kind projects to scaling deployment of its plants, you will play a key role in driving standardization and efficiency improvements across projects. You will report to the Power Engineering Manager (GRID Manager).
Requirements
Responsibilities
Technical and Execution Leadership
  • Serve as the electrical technical lead on major capital projects.
  • Own specifications, design, and analysis of electrical systems for power generation and surface facilities (power delivery, systems, transmission, distribution, substations, etc.)
  • Lead the electrical design of transmission and substation systems from 13.8 kV through 500 kV: Station service power distribution; One-line diagrams; Protection and control drawings; AC/DC schematics; Equipment layouts; Gen-tie transmission lines
  • Drive first-principles tradeoff analysis across power delivery systems to optimize plant performance
  • Identify opportunities to simplify and accelerate designs while maintaining technical excellence
  • Inform and support procurement efforts relating to electrical scopes of power plant designs: Generator Step-Up (GSU) Transformers; Unit Auxiliary Transformers (UAT); Station Service Transformers (SST); HV and MV Substations; Generator circuit breakers (GCB); High-voltage breakers (AIS & GIS); Disconnect switches; Buswork; Reactive power equipment; Metering equipment; Station batteries and DC systems
  • Familiar with relevant codes, standards, and industry best practices. Ability to think critically about when and how to apply or modify best practices to meet bottom line objectives.
  • Support Fervo's interconnection team as needed

Team and Culture
  • Recruit, coach, and develop a world-class team of electrical engineers
  • Instill a culture of extreme ownership - where engineers own cost, safety, and constructability, not just design Encourage rapid iteration, bias for speed, and resilience under pressure
  • Foster collaboration across disciplines (process, electrical, reservoir, drilling) and with external partners

Required Qualifications
  • B.S. or M.S. in Electrical Engineering or related discipline.
  • 8+ years of experience in electrical engineering in large capital projects.
  • Proven track record leading and developing high-performing engineering teams.
  • Deep expertise in power delivery and systems, transmission, distribution, and substations.
  • Strong communication and leadership skills; ability to translate technical complexity into clear decisions.
  • Strong knowledge of substations from 13.8 kV through 500 kV.
  • Experience specifying:
    • Large power transformers
    • High-voltage circuit breakers
    • Disconnect switches
    • Instrument transformers
    • Protective relays
    • Station service equipment
  • Experience working with utilities or transmission owners.
  • Strong understanding of IEEE, ANSI, NEC, NESC, NERC, and NFPA standards.
  • Ability to manage multiple projects in a fast-paced environment.

Preferred Qualifications
  • A systems thinker who understands both engineering detail and the broader project lifecycle.
  • Comfortable working with utilities, OEMs, EPC contractors, and internal stakeholders.
  • Able to make sound engineering decisions with limited oversight.
  • Passionate about improving engineering standards and developing best practices.
  • Excited to solve complex technical challenges in support of the energy transition.

Location
Fervo Energy is headquartered in Houston, TX with offices in Oakland, CA, Golden, CO, Reno, NV, and Salt Lake City, UT. This position is an in-person role in our Oakland, CA ; Golden, CO ; Houston, TX headquarters.
Success Profile
  • Builds clear, well-organized designs, specifications, and documentation that a reviewer, teammate, or backup owner can follow easily.
  • Owns work end-to-end - including cost, safety, and constructability - follows through to resolution, and escalates blockers early.
  • Communicates with clear action items, deadlines, and business context across engineering disciplines and external partners.
  • Uses technology, analysis tools, and automation thoughtfully while validating outputs and underlying assumptions.
  • Develops repeatable standards, best practices, and mentorship so the engineering organization can scale sustainably.