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Power Distribution Designer Jobs in Ohio (NOW HIRING)

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Electrical Designer

Dayton, OH · On-site

$45 - $60/hr

We are seeking an Electrical Designer - Power for an onsite contract opportunity support our client ... Design industrial electrical systems, including power distribution, controls, and lighting

Be Seen First

Electrical Designer

Dayton, OH · On-site

$45 - $60/hr

We are seeking an Electrical Designer - Power for an onsite contract opportunity support our client ... Design industrial electrical systems, including power distribution, controls, and lighting

$65K - $109K/yr

... designer, or similar role ... Familiarity with industrial control panels, MCCs, and low-voltage power distribution (under 1000 V)

Showing results 21-40

Power Distribution Designer information

What does a power distribution designer do?

A Power Distribution Designer is responsible for planning and creating layouts for electrical power distribution systems, such as those used by utility companies and large facilities. They use specialized software to design wiring, pole placements, underground cabling, and other infrastructure to ensure reliable power delivery. Their work involves coordinating with engineers, utility companies, and sometimes regulatory agencies to meet safety standards and project requirements. Power Distribution Designers also prepare technical drawings, cost estimates, and may oversee the installation process to ensure compliance with their designs.

What are the key skills and qualifications needed to thrive as a power distribution designer?

To thrive as a Power Distribution Designer, you need a solid background in electrical engineering principles, power systems design, and relevant industry standards, usually supported by a degree in electrical engineering or a related field. Familiarity with CAD software, GIS systems, and utility design tools, as well as certifications like EIT or PE, are commonly required. Strong attention to detail, problem-solving abilities, and effective communication skills help you collaborate with engineers, clients, and utility companies. These skills ensure safe, efficient, and regulation-compliant power distribution solutions for diverse projects.

What are some common challenges faced by power distribution designers when coordinating with utility companies and project stakeholders?

Power Distribution Designers often encounter challenges related to coordinating project requirements and timelines with utility companies, contractors, and other stakeholders. These may include navigating differing standards, adjusting to last-minute changes in project scope, and ensuring all parties are aligned on safety protocols and regulatory compliance. Effective communication and strong organizational skills are essential to manage these complexities and keep projects on track. Being proactive in addressing potential conflicts and maintaining clear documentation can help minimize delays and ensure successful project delivery.

What is the difference between Power Distribution Designer vs Power Systems Engineer?

AspectPower Distribution DesignerPower Systems Engineer
CredentialsTypically requires a degree in electrical engineering or related field; certifications like PE or EIT are commonRequires a degree in electrical engineering; often holds PE license and advanced certifications
Work EnvironmentDesigning electrical distribution systems for utilities, commercial, or industrial projectsDeveloping and analyzing complex power systems, including generation, transmission, and distribution
Industry UsageUsed mainly in utility companies, construction, and consulting firmsFound in engineering firms, utilities, and research institutions

While both roles involve electrical power systems, Power Distribution Designers focus on creating and planning distribution layouts, whereas Power Systems Engineers analyze and optimize entire power systems. The roles often overlap in credentials and work environment but differ in scope and responsibilities.

Infographic showing various Power Distribution Designer job openings in Ohio as of August 2026, with employment types broken down into 90% Full Time, 5% Part Time, and 5% Contract. Highlights an 84% In-person, and 16% Hybrid job distribution.

Electrical Engineer - Power Distribution

Marietta, OH • On-site

Socket.dev
Network Security • 1 - 10 employees

$80K/yr

Other

Posted 16 days ago


Job description

Electrical Engineer - Power Distribution

Location: Marietta, OH
Job Type: Direct Hire
Starting Salary: $80,000/year, with higher compensation available based on experience


Position Overview

We are looking for an Electrical Engineer to support the design, testing, certification, and ongoing improvement of power distribution equipment. This role combines electrical design, hands-on troubleshooting, documentation, and product support.


Responsibilities

  • Design electrical systems at the product level, including component selection, thermal design, mechanical packaging support, and interconnection hardware.

  • Apply knowledge of analog and digital circuits, magnetics, and thermal systems.

  • Develop engineering specifications for power protection systems.

  • Design switchboard power and control circuits.

  • Create and maintain BOMs, schematics, and other engineering documentation.

  • Support integration and qualification of third-party devices in power distribution equipment.

  • Participate in hardware design reviews and product robustness evaluations.

  • Prepare customer and manufacturing documentation, test procedures, and technical reports.

  • Provide sustaining engineering support for new and existing power protection systems.

  • Perform hands-on troubleshooting of electrical systems and subsystems.

  • Support product safety certifications and work with NRTL organizations to meet UL, CSA, and IEC requirements.


Qualifications

  • Bachelor of Science in Electrical Engineering (BSEE).

  • Experience with AutoCAD or similar CAD drafting software.

  • Experience designing power distribution equipment such as PDUs, STSs, RPPs, and switchboards.

  • Familiarity with electrical engineering test equipment, including oscilloscopes, network analyzers, and signal generators.

  • Knowledge of three-phase electrical systems and power systems.

  • Strong technical writing, documentation, and communication skills.

  • Strong laboratory, troubleshooting, and problem-solving abilities.

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