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Power Systems Engineer Jobs in Fort Wayne, IN (NOW HIRING)

Create, modify, and maintain electrical documentation for UPS and backup power systems. * Develop ... Collaborate with engineering teams to verify electrical system configurations and documentation ...

Lead Protection and Control Technician

Fort Wayne, IN ยท On-site

$43K - $56K/yr

Our team of expert engineers and field technician partners with utilities, independent power producers, and energy innovators to deliver reliable, resilient, and future-ready power systems. The ...

... systems, VFD startup services, and expert technical and field support. www.tec-hackett.com We are ... Bachelor's degree preferred in technical, engineering, business, or marketing OR a 2-year technical ...

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Power Systems Engineer information

See Fort Wayne, IN salary details

$50.5K

$106.1K

$161.7K

How much do power systems engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for power systems engineer in Fort Wayne, IN is $106,052.00, according to ZipRecruiter salary data. Most workers in this role earn between $88,300.00 and $120,700.00 per year, depending on experience, location, and employer.

What is a power systems engineer?

A power systems engineer works in the energy industry. In this career, your job is to design, evaluate, and oversee the electrical power distribution system for a utility company or substations, perform electric metering, or work for a wind power company to evaluate transmission viability. You generally work on all parts of a power system to increase its efficiency and help the company for which you work to achieve their goals as assigned. You also have duties and responsibilities in project development, as you help the project manager determine the best locations for new utility projects like wind turbines or substations. As a power systems engineer, you also determine the best places within these locations for controls.

What are the key skills and qualifications needed to thrive as a power systems engineer, and why are they important?

To thrive as a Power Systems Engineer, you need a solid background in electrical engineering, power systems analysis, and typically a bachelor's or master's degree in electrical engineering. Familiarity with power system simulation tools (such as ETAP, PSS/E, or MATLAB) and relevant industry standards or certifications like Professional Engineer (PE) licensure is important. Strong problem-solving skills, attention to detail, and effective communication are soft skills that distinguish top performers in this role. These abilities are crucial for designing reliable power systems, ensuring safety, and collaborating with multidisciplinary teams to support infrastructure and energy needs.

What are some common challenges power systems engineers face when working on grid modernization projects?

Power Systems Engineers involved in grid modernization often grapple with integrating renewable energy sources, ensuring grid reliability, and managing rapidly evolving technologies. Balancing traditional infrastructure with new smart grid components can be complex, requiring close collaboration with utility operators, IT specialists, and regulatory bodies. Additionally, adapting to changing industry standards and ensuring compliance with safety and efficiency regulations are ongoing challenges that demand strong problem-solving and communication skills.

What is the difference between Power Systems Engineer vs Electrical Engineer?

AspectPower Systems EngineerElectrical Engineer
CredentialsBachelor's or Master's in Electrical Engineering, PE license often preferredBachelor's or Master's in Electrical Engineering, PE license optional
Work EnvironmentFocus on power generation, transmission, and distribution systemsBroader scope including electronics, control systems, and general electrical design
Industry UsagePrimarily in utilities, power generation, and transmission companiesWider range including manufacturing, electronics, and construction
Common Search/ComparisonYesNo

Power Systems Engineers specialize in designing, analyzing, and maintaining electrical power systems, often working within utilities and energy sectors. Electrical Engineers have a broader scope, covering various electrical systems and electronics across multiple industries. While both roles require similar credentials, Power Systems Engineers focus specifically on power infrastructure, making them the ideal comparison for those interested in the energy sector.

How much do power systems engineers make?

Power systems engineers typically earn a median annual salary of around $100,000, with salaries ranging from approximately $70,000 to over $130,000 depending on experience, location, and certifications. Senior engineers or those with specialized skills in grid management or renewable energy may earn higher salaries.

What are popular job titles related to Power Systems Engineer jobs in Fort Wayne, IN?

For Power Systems Engineer jobs in Fort Wayne, IN, the most frequently searched job titles are:

What job categories do people searching Power Systems Engineer jobs in Fort Wayne, IN look for?

The top searched job categories for Power Systems Engineer jobs in Fort Wayne, IN are:

What cities near Fort Wayne, IN are hiring for Power Systems Engineer jobs?

Cities near Fort Wayne, IN with the most Power Systems Engineer job openings:

Infographic showing various Power Systems Engineer job openings in Fort Wayne, IN as of August 2026, with employment types broken down into 85% Full Time, 11% Part Time, 3% Contract, and 1% Nights. Highlights an 85% Physical, 2% Hybrid, and 13% Remote job distribution, with an average salary of $106,052 per year, or $51 per hour.

Sr. Principal Systems Engineer - Weapons Fuzing (Remote)

Metric Systems LLC

Fort Wayne, IN โ€ข On-site

$180 - $200/hr

Full-time

Posted 6 days ago


Job description


Metric Systems LLC is a directhire employer partner dedicated to helping companies connect with the right talent for their open roles. We are not a staffing agencyinstead, we work alongside employers to identify strong candidates, streamline the hiring process, and support both sides through each step. Once hired, you become an employee of the client organization directly, ensuring a seamless transition into your new role and longterm career alignment.

My client is building a Fuze product line within its Weapons & Networked Solutions (WNS) business unit to support next-generation programs including the Terrain Shaping Obstacle (TSO), autonomous ground munitions, and precision guided weapon fuzing. The organization seeks a Principal Systems Engineer with deep, hands-on expertise in Electronic Safe Arm Fuze and Device (ESAD/ESAF) design, verification, and manufacturing to anchor this team and mentor the next generation of fuze engineers.

Responsibilities:

  • Lead the endtoend development of fielded fuze systems from initial concept through full safety certification.
  • Prepare, present, and guide fuze designs through WSESRB, NNMSB, and AFSRB review processes.
  • Work directly with Army, Navy, Air Force, and DoD laboratory teams to advance fuze engineering efforts.
  • Leverage established relationships across military branches to accelerate approvals, resolve technical issues, and support program success.
  • Architect and develop ESAD/ESAF components, including ESD, S&A, and firing chain elements, ensuring compliance with MILSTD1316 and MILSTD1911.
  • Build sensing mechanisms that detect critical environmental conditions such as release, setback, spin, and allupround dynamics.
  • Create qualification test plans aligned with JOTP, MILSTD331, and MILSTD810; conduct environmental testing and perform failure analysis and rootcause investigations.
  • Design electrical or electromechanical S&A devices that meet safety, reliability, and operational requirements.
  • Build and validate electronics for safetycritical and missioncritical fuze applications.
  • Create and qualify capacitor discharge units (CDU) and EFI selections; perform or oversee HERO margin analysis to ensure safe operation in electromagnetic environments.

Qualifications: 

  • Bachelor's degree in Systems Engineering, or a related Science, Engineering or Mathematics field
  • 10 years of relevant experience; or Master's degree, plus a minimum of 8 years of relevant experience.
  • ESAD/ESAF Architecture & Design (Expert): Led design of fielded ESAD/ESAF; can independently architect ESD, S&A, and firing chain; Experience designing systems compliant to MIL-STD-1316 or MIL-STD-1911
  • Environmental Sensing design (Expert): Designed sensing systems that sense environment conditions such as release, setback, spin, and all-up-round environments
  • Environmental testing of fuze systems (Expert): Designed qualification tests for fuzing systems iaw JOTP, MIL-STD-331, and MIL-STD-810; performed environmental qualification; performed failure and root cause analysis on failures
  • Safe and Arm (S&A) mechanism design (Expert): Designed electrical or electromechanical S&A devices
  • High reliability electronics (Advanced): Experience designing high reliability electronics systems for safety critical or mission critical systems
  • Firing chain design (CDU / EFI) (Advanced): Designed capacitor discharge units; selected/qualified EFI. Experience performing or overseeing HERO margin analysis
  • Self-destruct / self-neutralize design (Advanced): Designed self-destruct/neutralization mechanisms to reduce UxO
  • Fuze system-level requirements decomposition (Advanced): Traces system requirements to ESD, S&A, firing circuit, and software; manages RVTM
  • Target detection & classification (Intermediate): Working knowledge of magnetic influence, seismic, acoustic, or pressure-based target sensing systems
  • Built-in test (BIT) design for fuze systems (Advanced): Designed continuous and power-on BIT for S&A, battery, and sensor health; fault lockout logic; experience with BIT coverage analysis
  • Active Secret clearance

Highly Desired:

  • AFSRB board presenter: Has personally presented to the AFSRB extremely rare; commands immediate credibility within the Air Force fuze community
  • Multi-service fuze programs: Delivered fuzes for two or more military services (Army + Navy, or AF + Army), demonstrating breadth across service-specific requirements
  • Proximity fuze / active sensing: Designed active proximity fuze systems (RF, laser, acoustic) in addition to passive influence fuzing
  • Autonomous system integration (UAS/UGV payloads): Integrated fuze with autonomous delivery platforms
  • MOSA / open architecture fuzing: Designed fuzes to modular open systems architecture (MOSA) principles; plug-and-play payload integration
  • Digital twin / simulation: Built quantitative physics-based fuze simulations for firing chain timing, magnetic signature modeling, or safety FTA
  • Picatinny / NSWC / AFRL lab background: Government lab background in fuze engineering brings inside understanding of Government test and qualification processes
  • University relationships: Maintains academic connections (Colorado School of Mines, Penn State ICT, Auburn, Purdue, Texas A&M ballistic programs) for talent pipeline support

This position is fully onsite or hybrid/flex with opportunity to be fully remote/telework for candidates with strong experience and background.  If remote, 25% travel to Ft. Wayne, Indiana site with possibility of surge support based on scheduled events.  

Metric Systems LLC is committed to maintaining an environment where every individual has a fair and equal opportunity to succeed. We welcome and consider all qualified applicants regardless of race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability, genetic information, or any other characteristic protected under federal, state, or local law. We strive to foster an environment built on respect, inclusion, and equal access to opportunitieswhere diverse perspectives strengthen our team and drive our mission forward