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Full Time Power System Operator Jobs in Michigan

12v System Design Engineer

Auburn Hills, MI · On-site

$94K - $129K/yr

Provide system-level synthesis of system behavior, operating strategies, and vehicle interactions Electrical Power System Design & Sizing * Perform battery sizing calculations based on vehicle load ...

These systems are varied and include critical accelerator subsystems like the cathode heater, the ... Work Environment... * Full-time position. * The company's standard operating hours are Monday thru ...

The City of Warren is accepting applications for the position of Water Systems Monitor. Oversees ... • Full-time Release Info. Agreement form • EEO form • Drug Testing Policy and Procedure ...

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Full Time Power System Operator information

What is the difference between Full Time Power System Operator vs Power Plant Operator?

AspectFull Time Power System OperatorPower Plant Operator
CredentialsTypically requires a high school diploma, technical training, and industry certificationsRequires a high school diploma, technical training, and often certifications in plant operations
Work EnvironmentWorks in control centers, monitoring electrical grids and systemsWorks on-site at power plants, operating and maintaining equipment
Industry UsagePrimarily in utility companies managing electrical transmissionIn power generation facilities operating plant machinery

Full Time Power System Operators focus on managing and monitoring electrical grids and transmission systems, often working in control centers. Power Plant Operators work directly at power generation sites, operating plant equipment. Both roles require technical certifications and involve safety-critical tasks, but their work environments and daily responsibilities differ significantly.

What are Full Time Power System Operators?

Full Time Power System Operators are professionals responsible for monitoring and controlling the generation and distribution of electricity across power grids. They ensure the reliable delivery of electricity by managing power flows, coordinating with utility companies, and responding to emergencies or outages. These operators work in control centers, often using sophisticated software and equipment to balance supply and demand, maintain system stability, and comply with regulatory and safety standards. Their role is critical in preventing blackouts and ensuring that electricity is delivered safely and efficiently to homes and businesses.

What are the key skills and qualifications needed to thrive as a Full Time Power System Operator, and why are they important?

To excel as a Full Time Power System Operator, you need a strong background in electrical engineering principles, grid operations, and typically at least an associate's degree in a related field. Familiarity with SCADA systems, energy management software, and relevant certifications like NERC are important technical requirements. Attention to detail, rapid decision-making, and clear communication are crucial soft skills for this role. These competencies ensure reliable power delivery, quick response to emergencies, and safe, efficient grid management.

What are some common challenges faced by full-time Power System Operators, and how can they effectively manage them?

Full-time Power System Operators often face the challenge of responding quickly to unexpected events such as equipment failures, fluctuating energy demands, or extreme weather conditions. Managing these situations requires strong problem-solving skills, effective communication with team members and other departments, and the ability to remain calm under pressure. Operators typically rely on real-time monitoring tools and established protocols to ensure the reliability and stability of the power grid. Regular training and drills also help operators stay prepared for emergencies and maintain compliance with industry regulations.
What are the most commonly searched types of Power System Operator jobs in Michigan? The most popular types of Power System Operator jobs in Michigan are:
What job categories do people searching Full Time Power System Operator jobs in Michigan look for? The top searched job categories for Full Time Power System Operator jobs in Michigan are:
Infographic showing various Full Time Power System Operator job openings in Michigan as of June 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.
12v System Design Engineer

12v System Design Engineer

Stellantis

Auburn Hills, MI • On-site

$94K - $129K/yr

Full-time

Posted yesterday


Stellantis rating

7.4

Company rating: 7.4 out of 10

Based on 124 frontline employees who took The Breakroom Quiz

17th of 44 rated automakers


Job description

The 12V Systems Design Engineer is a key contributor within the Product Development & Technology (PDT) organization, operating in the Electrified Hardware Engineering (EHE) and Hardware Engineering (HWE) perimeter. The role supports the design, integration, validation, and vehicle-level performance of the 12V Energy Provider subsystem.
This position is responsible for defining robust, cost-effective, and innovative 12V electrical system solutions by ensuring alignment between vehicle needs, system and subsystem strategies, and architectural constraints. The engineer works cross-functionally on system architecture, requirements definition, component sizing, vehicle testing, diagnostics, and validation to ensure correct vehicle behavior and customer satisfaction.
Hands-on experience with vehicle electrical systems, communication networks, testing tools, and data analysis is essential.
Key Responsibilities:
System Engineering & Architecture
  • Gather, analyze, and consolidate stakeholder inputs from vehicle systems and 12V sub-domains
  • Identify and manage environmental, operational, and architectural constraints
  • Define and manage upper-level 12V system requirements, constraints, and use cases
  • Define functional system architectures aligned with Quality, Cost, Timing, and Performance (QCTP) objectives
  • Perform functional decomposition and allocation across hardware, software, and processes
  • Provide system-level synthesis of system behavior, operating strategies, and vehicle interactions

Electrical Power System Design & Sizing
  • Perform battery sizing calculations based on vehicle load profiles, duty cycles, and customer usage scenarios
  • Perform alternator sizing and capability analysis to ensure adequate power generation under all operating conditions
  • Conduct Ignition Off Draw (IOD) and parasitic load analysis, including network and module sleep behavior
  • Support definition and optimization of charging and power management strategies

Requirements & Functional Specification
  • Define high-level functional and technical requirements for hardware, software, and validation teams
  • Ensure full requirements traceability throughout the development lifecycle
  • Ensure clear understanding, alignment, and acceptance of system requirements across stakeholders
  • Support diagnostics and functional behavior definition related to the 12V system

Vehicle-Level Testing & Validation
  • Define and execute system-level and vehicle-level validation plans for the 12V electrical system
  • Plan, set up, and conduct vehicle tests covering:
  • 12V lead-acid and future lithium battery systems
  • Alternators and charging systems
  • 120V / 230V DC/AC inverters
  • Battery sensors and intelligent power components
  • LIN- and CAN-based loads and control modules
  • Execute testing under various environmental and operating conditions (hot, cold, key on/off, high load, charging, sleep modes)
  • Review, approve, and document system validation and test results
  • Ensure system strategies are correctly implemented and validated to achieve expected vehicle behavior

Diagnostics, Communication & Issue Management
  • Use CANoe and CANalyzer to analyze CAN and LIN communication, signal behavior, and diagnostics
  • Validate network behavior during key-on, key-off, and sleep transitions
  • Diagnose LIN communication issues including wake-up behavior, timeouts, and configuration issues
  • Use PICO Scope and oscilloscopes to analyze voltage, current, ripple, transients, and communication signals
  • Perform root cause analysis of electrical, communication, and sleep current issues
  • Track, manage, and resolve issues and deviations across the development lifecycle

Cross-Functional & Supplier Collaboration
  • Work closely with systems, software, hardware, and validation teams to align architecture and requirements
  • Support supplier coordination for batteries, alternators, inverters, sensors, and LIN/CAN-controlled components
  • Participate in design reviews, technical reviews, issue resolution meetings, and program milestones

Documentation & Process Compliance
  • Create and maintain technical documentation including system analyses, requirements, test plans, and reports
  • Support compliance with internal development processes, system engineering methodologies, and automotive standards
  • Contribute to continuous improvement of system engineering and validation processes

Basic Requirements:
  • Bachelor's degree in Electrical Engineering or a related discipline
  • A minimum of 5 years of relevant experience.
  • Experience in system engineering, electrical architecture, or vehicle integration
  • Hands-on experience with vehicle-level electrical testing and troubleshooting
  • 12V electrical power systems and energy storage experience
  • Root cause analysis and risk assessment experience

Preferred Requirements:
Skills & Competencies
  • Battery and alternator sizing
  • Ignition Off Draw (IOD) and vehicle sleep behavior
  • DC/DC converters, DC/AC inverters, and other power electronics
  • CAN & LIN communication and diagnostics
  • Functional analysis, requirements management, and validation strategy

Tools & Languages
  • CANoe, CANalyzer
  • PICO Scope and electrical measurement equipment
  • Vehicle data logging and test instrumentation
  • Microsoft Office (Teams, Outlook, Excel, Visio)

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