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Electrical Distribution Design Jobs in Wisconsin

WI · On-site

This role is responsible for the design, development, optimization, testing, and continuous improvement of medium and low voltage electrical distribution transformers and related electrical systems.

Position Summary The Electrical Engineer III is a senior-level engineering professional responsible for leading the design, development, and technical execution of electrical distribution products ...

Essential Responsibilities · Design electrical distribution equipment including switchboards, panelboards, modular power systems, and related products. · Develop electrical schematics, one-line ...

WI · On-site

$98K - $128K/yr

Take ownership of the electrical design and engineering deliverables for high-capacity data center campuses, including utility service, HV substations, MV distribution, transformers, backup ...

WI · On-site

$98K - $128K/yr

Deliver detailed design across substations, transformers, switchgear, protection and power distribution * Develop design packages from concept through detailed design: single-line diagrams, equipment ...

Electrical Engineer - Power

Appleton, WI · On-site

$102K - $133K/yr

Key Responsibilities Power Distribution Design: Lead the design of site-wide systems ranging from ... Bachelor's degree in Electrical Engineering with a focus on power systems. Technical Proficiency:

Showing results 21-40

Electrical Distribution Design information

See Wisconsin salary details

$52K

$102K

$149.4K

How much do electrical distribution design jobs pay per year?

As of Sep 10, 2026, the average yearly pay for electrical distribution design in Wisconsin is $102,017.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,300.00 and $116,600.00 per year, depending on experience, location, and employer.

What is electrical distribution design?

Electrical distribution design involves planning and creating systems that safely and efficiently deliver electricity from substations to homes, businesses, and other end users. This includes designing the layout of power lines, transformers, switchgear, and other components to ensure reliable distribution. Electrical distribution designers must consider factors such as load requirements, safety codes, cost, and future expansion. They often use specialized software and must coordinate with utility companies, engineers, and local authorities throughout the project.

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

To thrive in Electrical Distribution Design, you need a solid understanding of electrical engineering principles, power distribution systems, and industry standards, usually supported by a bachelor's degree in electrical engineering or a related field. Proficiency with design software such as AutoCAD, GIS systems, and knowledge of National Electrical Safety Code (NESC) or similar regulations is typically required. Strong analytical thinking, attention to detail, and effective communication skills help ensure precise designs and smooth collaboration with clients and project teams. These skills and qualities are crucial for delivering safe, reliable, and cost-effective electrical distribution solutions.

What are some common challenges faced in electrical distribution design roles, and how can new hires effectively address them?

Professionals in Electrical Distribution Design often encounter challenges such as coordinating with multiple stakeholders, managing project timelines, and ensuring compliance with evolving safety and regulatory standards. New hires can address these challenges by developing strong communication skills, staying updated on industry codes like the NEC, and leveraging design software to streamline workflows. Proactively seeking feedback from senior engineers and participating in cross-disciplinary meetings also helps in overcoming technical and logistical hurdles, contributing to successful project outcomes.

What is the difference between Electrical Distribution Design vs Electrical Power Systems Engineering?

AspectElectrical Distribution DesignElectrical Power Systems Engineering
CredentialsPE license, engineering degreePE license, advanced degrees often preferred
Work EnvironmentField and office, focusing on distribution networksOffice and field, broader power system analysis
Industry UsageUtilities, renewable energy, commercial projectsUtilities, transmission, large-scale power generation
Common Search/ComparisonYesNo

Electrical Distribution Design focuses on planning and designing local power distribution networks, while Electrical Power Systems Engineering covers broader power system analysis, transmission, and generation. Both roles require similar credentials but differ in scope and work environment.

What are the most commonly searched types of Electrical Distribution Design jobs in Wisconsin?

The most popular types of Electrical Distribution Design jobs in Wisconsin are:

Infographic showing various Electrical Distribution Design job openings in Wisconsin as of September 2026, with employment types broken down into 1% Internship, 86% Full Time, 9% Part Time, 1% Temporary, and 3% Contract. Highlights an 80% Physical, 5% Hybrid, and 15% Remote job distribution, with an average salary of $102,017 per year, or $49 per hour.

Electrical Engineer - Dry Type Transformers

WI • On-site

Other

Posted 22 days ago


Key responsibilities

  • Design and develop electrical distribution dry type transformers.

  • Support new product introduction, evaluate design alternatives, and review engineering documentation.

  • Provide technical support during transformer assembly, testing, troubleshooting, and participate in continuous improvement initiatives.


Job description

Electrical Engineer - Dry Type Transformers
  • Bristol, WI
Job Summary

The Electrical Engineer will have 5+ years of progressive experience within the dry type electrical distribution transformer industry. This role is responsible for the design, development, optimization, testing, and continuous improvement of medium and low voltage electrical distribution transformers and related electrical systems. The Electrical Engineer will collaborate cross-functionally with Manufacturing, Operations, Quality, Supply Chain, Sales, and Research & Development teams to ensure products meet customer specifications, regulatory requirements, operational efficiency targets, and company quality standards. The ideal candidate possesses deep technical expertise in transformer design principles, electrical systems, manufacturing processes, cost optimization, and product performance analysis. This position requires strong analytical capabilities, project leadership, problem-solving skills, and the ability to support both new product development and sustaining engineering initiatives in a fast-paced manufacturing environment.

This role will be onsite in Bristol, WI. Relocation Assistance is available.

Responsibilities

Design and develop electrical distribution dry type transformers.

Perform electrical calculations and analysis related to:

Core and coil design

Thermal performance

Short-circuit withstand capability

Voltage regulation

Efficiency optimization

Develop and review transformer drawings, schematics, bills of materials (BOMs), and engineering documentation.

Interpret and apply customer specifications, technical standards, and regulatory requirements.

Support new product introduction (NPI) initiatives from concept through production launch.

Evaluate design alternatives for manufacturability, reliability, performance, and cost efficiency.

Conduct root cause analysis and corrective actions for product failures and field issues.

Partner closely with Manufacturing Engineering and Operations teams to improve product quality, throughput, and operational efficiency.

Provide technical support to production teams during transformer assembly, testing, and troubleshooting activities.

Support continuous improvement initiatives focused on safety, quality, delivery, and cost reduction.

Review and resolve production non-conformances and engineering deviations.

Participate in Lean Manufacturing and Six Sigma initiatives.

Assist in implementing engineering changes and maintaining configuration control processes.

Support electrical testing activities including:

Routine testing

Design validation testing

Impulse testing

Ensure compliance with applicable industry standards including:

IEEE

ANSI

NEMA

UL

CSA

Analyze test data and prepare technical reports and recommendations.

Collaborate with Quality teams to investigate warranty claims and customer concerns.

Interface with customers, suppliers, and cross-functional internal teams regarding technical requirements and product solutions.

Provide engineering support to Sales and Commercial teams during quotation and bid review processes.

Participate in customer meetings and technical reviews as required.

Mentor junior engineers and engineering technicians.

Support strategic initiatives involving product standardization, cost optimization, and innovation.

Travel to Reynosa, MX or Celina, TN once a month.

Qualifications

Bachelor’s Degree in Electrical Engineering required.

Master’s Degree in Electrical Engineering preferred.

5+ years of progressive engineering experience within the dry type electrical distribution transformer industry required.

Experience with medium voltage and low voltage transformer design strongly preferred.

Experience with Dry-Type Transformers required.

Experience supporting manufacturing operations in a high-volume industrial environment preferred.

Prior experience in sustaining engineering, product development, or R&D engineering environments preferred.

Strong understanding of:

Electromagnetic theory

Electrical power systems

Thermal dynamics

Insulation systems

Short-circuit analysis

Knowledge of transformer materials including:

Copper and aluminum windings

Insulation systems

Proficiency in electrical calculations and engineering analysis tools.

Experience interpreting and applying:

IEEE standards

ANSI standards

NEMA standards

DOE efficiency regulations

Familiarity with ERP and engineering systems.

AutoCAD

SolidWorks or Creo

MATLAB

ETAP

ANSYS Maxwell

SAP / Oracle / ERP systems

Microsoft Office Suite

Strong analytical and problem-solving capabilities.

Excellent verbal and written communication skills.

Ability to manage multiple projects and priorities simultaneously.

Strong cross‑functional collaboration and teamwork orientation.

Ability to influence and drive continuous improvement initiatives.

Customer-focused mindset with strong attention to detail.

Demonstrated ability to mentor and develop junior engineering talent.

High level of accountability and ownership.

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