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Power Distribution Engineering Jobs in Michigan (NOW HIRING)

Power Distribution Project Manager Wyandotte, MI (On Site) We are looking for a Power Distribution ... A Bachelor of Science in Engineering degree required, Electrical Engineering degree preferred. * 10 ...

Develop engineering designs for overhead and underground distribution systems (4kV-35kV). * Perform power system studies including load flow analysis, short circuit studies, and protection ...

Develop engineering designs for overhead and underground distribution systems (4kV-35kV). * Perform power system studies, including load flow analysis, short circuit studies, and protection ...

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Responsibilities include utilizing engineering tools and processes to successfully develop power ... distribution networks (PDNs). * Ensure power supply designs meet performance, thermal, and cost ...

Responsibilities include utilizing engineering tools and processes to successfully develop power ... distribution networks (PDNs). * Ensure power supply designs meet performance, thermal, and cost ...

Responsibilities include utilizing engineering tools and processes to successfully develop power ... distribution networks (PDNs). * Ensure power supply designs meet performance, thermal, and cost ...

At Verdantas, we're redefining environmental consulting and sustainable engineering through our use ... Join us to power the shift toward cleaner, smarter energy solutions. Apply today and make a lasting ...

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Power Distribution Engineering information

What are the key skills and qualifications needed to thrive as a Power Distribution Engineer, and why are they important?

To thrive as a Power Distribution Engineer, you need a solid understanding of electrical engineering principles, experience with power systems, and typically a bachelor's degree in electrical engineering or a related field. Familiarity with technical tools such as AutoCAD, GIS software, distribution management systems (DMS), and relevant certifications like a Professional Engineer (PE) license are highly valued. Strong problem-solving abilities, attention to detail, and effective communication are crucial soft skills for excelling in this role. These skills ensure safe, reliable, and efficient design and operation of power distribution networks, supporting critical infrastructure and customer needs.

What are some common challenges faced by power distribution engineers, and how can they be addressed on the job?

Power distribution engineers often encounter challenges such as aging infrastructure, integrating renewable energy sources, and ensuring system reliability during peak demand. To address these, engineers must stay updated on the latest grid technologies, collaborate closely with field technicians and planners, and proactively participate in system upgrades and preventive maintenance. Effective communication with other departments and continuous professional development are key to navigating these challenges successfully.

What is power distribution engineering?

Power distribution engineering is a specialized field of electrical engineering focused on the design, operation, and maintenance of systems that deliver electricity from substations to end users, such as homes and businesses. Power distribution engineers work on creating efficient and reliable networks, ensuring the safe delivery of electricity, and integrating new technologies like smart grids and renewable energy sources. Their responsibilities may include system planning, equipment specification, outage management, and compliance with safety standards. This role is crucial for ensuring that electrical power is delivered safely, efficiently, and reliably to meet societal needs.

What does a power distribution engineer do?

A power distribution engineer designs, analyzes, and maintains electrical systems that deliver electricity from substations to consumers. They work with power grids, ensure system reliability, and often use tools like CAD software and testing equipment. Certification and knowledge of safety standards are important in this role.

What is the difference between Power Distribution Engineering vs Power System Engineering?

AspectPower Distribution EngineeringPower System Engineering
FocusDesign and maintenance of electrical distribution systems from substations to end-usersOverall planning, analysis, and operation of entire electrical power systems including generation, transmission, and distribution
CertificationsPE license, relevant electrical engineering credentialsPE license, power system analysis certifications
Work EnvironmentFieldwork, substation design, utility companiesSystem modeling, simulations, grid planning
Industry UsageUtilities, renewable energy projects, infrastructureUtilities, grid operators, consulting firms

Power Distribution Engineering primarily focuses on designing and maintaining electrical distribution systems, ensuring reliable delivery of electricity to consumers. Power System Engineering encompasses a broader scope, including the entire electrical grid's planning and operation. Both roles require similar credentials and often work within utility companies, but their specific responsibilities differ significantly.

What cities in Michigan are hiring for Power Distribution Engineering jobs? Cities in Michigan with the most Power Distribution Engineering job openings:
Infographic showing various Power Distribution Engineering job openings in Michigan as of May 2026, with employment types broken down into 69% Full Time, 26% Part Time, 1% Temporary, and 4% Contract. Highlights an 94% Physical, 3% Hybrid, and 3% Remote job distribution.
Electrical and Electronics Architecture Power Distribution Engineer

Electrical and Electronics Architecture Power Distribution Engineer

Stellantis

Auburn Hills, MI • On-site

Full-time

Posted 12 days ago


Stellantis rating

7.4

Company rating: 7.4 out of 10

Based on 122 frontline employees who took The Breakroom Quiz

17th of 44 rated automakers


Job description

The EE Architecture Power Distribution Engineer will be responsible for providing the electrical and electronics architecture optimized power distribution solutions to specific vehicle platforms/top hats. They need to have a holistic understanding of vehicle electrical architecture to provide the architecture solutions/releases that satisfy the vehicle program needs, working with stakeholders inside and outside the EE Architecture team. He will also be responsible for creating topologies, power distribution fuse trees, reference schematics and requirements for power distribution for Stellantis archetype and architecture applications to the different programs to meet optimized energy and functional safety targets.
Responsibilities include:
  • Understand Platform/Programs application requirements and provide an optimized architecture and power distribution solution built from the existing archetype portfolio of solutions
  • Identify Platform/Program needs not covered by the Archetype and propose solutions
  • Interact with the Vehicle Architecture, Power Distribution and wiring harness teams to understand vehicle integration constraints and optimize architecture deployment
  • Create Power distribution topologies and define the best power bus configuration to meet Functional Safety requirements concerning power and voltage delivery.
  • Define loads grouping under relays and eFuses to optimize current draw with vehicle Off, observing electrical loads types, domains and safety requirements.
  • Collaborate with Wiring Systems to optimize fuse trees and electrical Power Distribution Centers (PDCs)
  • Obtain Platform/Program deliverables timing from the architecture project chief and ensure deliverables on time with quality guaranteeing a robust change management
  • Create specific topologies for the Platform/Program Application
  • Develop with System Electrical Diagrams (SEDs) and work with the Schematics Design team to develop mechanizations (SDPs) for the Application
  • Support Platform/Program meetings/discussions involving architecture or Power Distribution
  • Provide SDPs and generate the list of applicable core architecture / infrastructure requirements for components sourcing when specific for the platform
  • Create specific topologies / schematics for mules
  • Support the Energy Management Team in the collection of current consumption of components for the ignition off draw (IOD) / Energy consumption calculations/simulations
  • Identify uniqueness of vehicle power distribution configuration (e.g. different lengths) and work with the Power Distribution to calculate and modify the fuse sizes accordingly
  • Provide EE Architecture/power distribution impact and technical feasibility analysis to Platform/Program Investigate Bulletins

Minimum Qualifications:
  • Bachelor's degree in Electrical Engineering, Computer Scienced, Computer Engineering or related field
  • Minimum of 5 years of automotive industry experience in EE Architecture design, Power distribution or Electrical Engineering architecture roles.
  • Experience in defining and designing embedded networked computer systems including definition of system networking/power distribution topologies, components, and interfaces.
  • Experience in power distribution, network Communication Design: CAN, CAN-FD, LIN and Ethernet protocols.
  • Understanding of typical vehicle EE architectures and automotive development processes.
  • Strong systems thinker.

Preferred Qualifications:
  • Master of Science Degree in Electrical Engineering or related field of knowledge.
  • Experience with printed circuit board hardware and/or power distribution center (PDC) design
  • Experience with wire harness systems design (circuit analysis, fuse sizing, voltage/impedance)
  • Networking (TSN); Service Oriented approach (SOME/IP); TCP/UDP; MQTT.
  • Knowledge on off-board communication protocols (WiFi, 4G/5G, V2X connectivity).
  • Designed EE platforms or components for Service Oriented Architectures (SOA).
  • Experience using networking tools such as CANalyzer, CANoe, PREEvision.
  • AUTOSAR process/tools know-how and application experience.
  • Exhibits excellent, clear, and detail-oriented written and verbal communications on highly complex topics.

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