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Electrical Design Engineer Power Transformers Jobs

$100 - $125/hr

Home > Electrical Design Engineer, Power Generation Containerization Electrical Design Engineer, Power Generation Containerization BH Job ID: 4873 Ingersoll Rand is an equal opportunity employer. All ...

Electrical Power Design Engineer

Fremont, CA ยท On-site

$100 - $125/hr

Electrical Power Design Engineer Location: Fremont, CA | 100% Onsite Compensation: $85,000-$150,000 base + annual bonus Employment Type: Full-time, Direct Hire We're a well-established Northern ...

Electrical Power Design Engineer

Fremont, CA ยท On-site

$85K - $150K/yr

Electrical Power Design Engineer Location: Fremont, CA | 100% Onsite Compensation: $85,000$150,000 base + annual bonus Employment Type: Full-time, Direct Hire We're a well-established Northern ...

Electrical Power Design Engineer

Fremont, CA ยท On-site

$85K - $150K/yr

Electrical Power Design Engineer Location: Fremont, CA | 100% Onsite Compensation: $85,000-$150,000 base + annual bonus Employment Type: Full-time, Direct Hire We're a well-established Northern ...

Electrical Power Design Engineer

Fremont, CA ยท On-site

$85K - $150K/yr

Electrical Power Design Engineer Location: Fremont, CA | 100% Onsite Compensation: $85,000-$150,000 base + annual bonus Employment Type: Full-time, Direct Hire We're a well-established Northern ...

Project Design Engineer Memphis, TN Overview Ross Recruiting Services is partnering with a ... Experience with power transformers, electrical equipment, substations, utilities, or power ...

Utility, power distribution, generator, or industrial electrical experience * .Experience ... Electrical Design Engineer | Electrical Project Engineer | Power Systems Engineer | Industrial ...

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Electrical Design Engineer Power Transformers information

See salary details

$51.5K

$101.1K

$148K

How much do electrical design engineer power transformers jobs pay per year?

As of Sep 8, 2026, the average yearly pay for electrical design engineer power transformers in the United States is $101,072.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,500.00 and $115,500.00 per year, depending on experience, location, and employer.

What does an electrical design engineer for power transformers do?

An Electrical Design Engineer for Power Transformers is responsible for designing and developing the electrical aspects of power transformers, which are essential for voltage regulation and power distribution in electrical grids. Their work involves creating detailed electrical schematics, selecting appropriate materials, ensuring compliance with industry standards, and collaborating with other engineering teams. They also analyze transformer performance, address technical issues, and may assist in testing and commissioning. Their expertise ensures that transformers are safe, reliable, and efficient for their intended applications.

What are the key skills and qualifications needed to thrive as an electrical design engineer for power transformers, and why are they important?

To thrive as an Electrical Design Engineer for Power Transformers, you need a strong background in electrical engineering principles, transformer design, and industry standards, usually supported by a relevant engineering degree. Familiarity with CAD software, simulation tools like ANSYS or Maxwell, and standards such as IEC or IEEE, as well as certifications like Professional Engineer (PE), are commonly required. Strong problem-solving, attention to detail, and effective communication skills help you collaborate with cross-functional teams and address complex design challenges. These skills are critical for delivering safe, efficient, and reliable transformer solutions that meet client and regulatory expectations.

What are some common challenges faced by electrical design engineers working with power transformers, and how can they be addressed?

Electrical Design Engineers specializing in power transformers often encounter challenges such as managing complex thermal and electrical design constraints, ensuring compliance with international standards, and addressing customer-specific requirements. Balancing cost efficiency with high performance and reliability is also a frequent concern. These challenges can be addressed by staying updated on the latest industry standards, collaborating closely with multidisciplinary teams (such as mechanical engineers and project managers), and leveraging advanced simulation tools to validate designs before production.

What is the difference between Electrical Design Engineer Power Transformers vs Electrical Design Engineer Substations?

AspectElectrical Design Engineer Power TransformersElectrical Design Engineer Substations
CredentialsBachelor's in Electrical Engineering, possibly PE licenseBachelor's in Electrical Engineering, possibly PE license
Work EnvironmentPower plants, manufacturing facilities, transformer manufacturingSubstation sites, utility companies, transmission networks
Industry UsageDesign and testing of power transformers for electrical gridsDesign and layout of electrical substations and switchgear

Electrical Design Engineers Power Transformers focus on designing and testing transformers used in power transmission, while Electrical Design Engineers Substations work on designing electrical substations that distribute power. Both roles require similar credentials and often overlap in the power industry, but they specialize in different components of the electrical infrastructure.

More about Electrical Design Engineer Power Transformers jobs

What states have the most Electrical Design Engineer Power Transformers jobs?

States with the most job openings for Electrical Design Engineer Power Transformers jobs include:

What job categories do people searching Electrical Design Engineer Power Transformers jobs look for?

The top searched job categories for Electrical Design Engineer Power Transformers jobs are:

Infographic showing various Electrical Design Engineer Power Transformers job openings in the United States as of August 2026, with employment types broken down into 90% Full Time, 7% Part Time, and 3% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $101,072 per year, or $48.6 per hour.

Senior Electrical Engineer - Power Transformers

Brightpath Associates LLC

Montgomery, AL โ€ข On-site

$106K - $138K/yr

Other

Re-posted 16 days ago


Job description

Job Title: Senior Electrical Engineer โ€“ Power Transformers

Location: Montgomery, AL

Job Type: Full-Time | Permanent | Onsite

Position Overview

We are seeking a highly experienced Senior Electrical Engineer to lead the electrical design and development of large power transformers. This role is responsible for creating reliable, standards-compliant transformer designs, performing advanced engineering analyses, and serving as the technical expert for customers throughout the project lifecycle. The ideal candidate has extensive experience in transformer engineering, strong analytical capabilities, and the ability to collaborate with utilities, EPC contractors, consultants, and cross-functional manufacturing teams.

Key Responsibilities

  • Develop and oversee the electrical design of large power transformers from concept through production.
  • Perform detailed engineering analyses including impedance calculations, load losses, no-load losses, thermal performance, dielectric strength, insulation coordination, short-circuit withstand capability, and cooling system evaluation.
  • Optimize transformer performance using engineering simulation and transformer design software.
  • Review customer specifications, technical requirements, and project documentation to ensure designs meet applicable industry standards and client expectations.
  • Serve as the technical lead during customer meetings, design reviews, and engineering discussions with utilities, consulting engineers, and EPC organizations.
  • Provide engineering support during manufacturing, factory acceptance testing (FAT), commissioning activities, and post-delivery technical inquiries.
  • Investigate design issues, analyze field failures, determine root causes, and implement effective corrective actions.
  • Collaborate closely with manufacturing, quality, testing, and project management teams to ensure successful project execution.
  • Evaluate design improvements that enhance product performance, manufacturability, reliability, and cost efficiency.
  • Mentor junior engineers by providing technical guidance, reviewing engineering work, and promoting best engineering practices.

Required Qualifications

  • Bachelor's degree in Electrical Engineering; Master's degree is advantageous.
  • 10+ years of hands-on experience designing large power transformers.
  • Strong understanding of transformer electrical design, electromagnetic principles, insulation systems, thermal performance, and short-circuit analysis.
  • Experience working directly with U.S. electric utilities, engineering consultants, and EPC firms on technical design discussions.
  • In-depth knowledge of IEEE C57, ANSI, IEC, and related transformer design standards.
  • Ability to interpret complex technical specifications and convert them into practical engineering solutions.
  • Excellent analytical, problem-solving, communication, and presentation skills.

Preferred Qualifications

  • Experience using transformer design and simulation tools such as ACADEM, TRES, ANSYS Maxwell, COMSOL, MATLAB, or equivalent engineering software.
  • Familiarity with transformer manufacturing processes, production methods, testing procedures, diagnostics, and reliability engineering.
  • Experience supporting Factory Acceptance Testing (FAT), troubleshooting, and field technical support.
  • Professional Engineer (PE) license is considered a plus.

Ideal Candidate

The ideal candidate combines deep technical expertise in large power transformer design with strong customer interaction skills. They are comfortable leading engineering reviews, solving complex design challenges, ensuring compliance with international standards, and supporting products throughout manufacturing and field operation. This individual thrives in a collaborative engineering environment and enjoys mentoring others while driving high-quality engineering solutions.