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Dc Power Engineer Jobs in Georgia (NOW HIRING)

P&C Lead Test Engineer

Atlanta, GA · On-site

$98K - $129K/yr

Apply advanced understanding of AC/DC power system fundamentals, complex power and power factor ... Review engineered drawings, relay settings, logic diagrams, one-lines, three-lines, schematics ...

Avionics Electrical Engineer

Atlanta, GA · On-site

$91K - $140K/yr

Experience with DC power systems, batteries, motors, generators, power distribution, grounding ... Engineer II $114,750-$140,250 The salary range listed for this role is intended as a general ...

Avionics Electrical Engineer

Atlanta, GA · On-site

$114K - $140K/yr

Experience with DC power systems, batteries, motors, generators, power distribution, grounding ... Avionics Electrical Engineer I $91,800-$112,200 Avionics Electrical Engineer II $114,750-$140,250 ...

Avionics Electrical Engineer

Atlanta, GA · On-site

$91K - $140K/yr

Experience with DC power systems, batteries, motors, generators, power distribution, grounding ... Engineer II $114,750-$140,250 The salary range listed for this role is intended as a general ...

Quality Engineer III

Suwanee, GA · On-site

$95 - $125/hr

With sales and service locations throughout the world, and over 100 years of battery experience, EnerSys is the power/full solution for stored DC power products. Quality Engineer III is responsible ...

Experience with DC power systems, batteries, motors, generators, power distribution, grounding ... Avionics Electrical Engineer I $91,800-$112,200 Avionics Electrical Engineer II $114,750-$140,250 ...

Quality Engineer III

Suwanee, GA · On-site

$67K - $86K/yr

... stored DC power products. Learn More About Energy Systems Job Purpose Quality Engineer III is ... responsible for driving quality excellence across manufacturing operations by leading quality ...

Quality Engineer III

Suwanee, GA · On-site

$67K - $86K/yr

... stored DC power products. Learn More About Energy Systems Job Purpose Quality Engineer III is ... responsible for driving quality excellence across manufacturing operations by leading quality ...

Quality Engineer III

Suwanee, GA

$67K - $86K/yr

... stored DC power products. Learn More About Energy Systems Job Purpose Quality Engineer III is ... responsible for driving quality excellence across manufacturing operations by leading quality ...

Showing results 21-40

Dc Power Engineer information

See Georgia salary details

$88.7K

$105.7K

$122K

How much do dc power engineer jobs pay per year?

As of Sep 6, 2026, the average yearly pay for dc power engineer in Georgia is $105,697.00, according to ZipRecruiter salary data. Most workers in this role earn between $98,400.00 and $114,000.00 per year, depending on experience, location, and employer.

What is a DC power engineer?

DC Power Engineers are specialized electrical engineers who design, implement, and maintain direct current (DC) power systems. These systems are commonly used in telecommunications, data centers, renewable energy installations, and industrial applications. DC Power Engineers ensure reliable and efficient power distribution, manage backup power solutions like batteries, and oversee the safety and compliance of power infrastructure. Their work is essential for supporting critical systems that require uninterrupted, high-quality power.

What are the key skills and qualifications needed to thrive as a DC power engineer?

To thrive as a DC Power Engineer, a strong foundation in electrical engineering principles, power systems, and relevant academic credentials such as a bachelor’s degree in electrical engineering is essential. Familiarity with industry-standard tools like AutoCAD, power analysis software, and certifications such as IEEE or NETA are commonly required. Excellent problem-solving abilities, attention to detail, and effective communication help DC Power Engineers excel in troubleshooting and collaborating with cross-functional teams. These skills ensure the safe, efficient, and reliable design and maintenance of DC power systems vital for critical infrastructure.

How does a DC power engineer typically collaborate with other teams during large infrastructure projects?

DC Power Engineers often work closely with electrical engineers, project managers, and installation technicians throughout the project lifecycle. They are responsible for designing and specifying DC power systems, reviewing plans with cross-functional teams, and ensuring that installation meets both technical and safety standards. Regular meetings and site visits are common to coordinate activities, troubleshoot issues, and integrate feedback from stakeholders, making strong communication and teamwork skills essential for success in this role.

What is the difference between Dc Power Engineer vs Battery Systems Engineer?

AspectDc Power EngineerBattery Systems Engineer
CertificationsElectrical certifications, PE license often preferredBattery technology certifications, electrical certifications
Work EnvironmentPower plants, data centers, renewable energy sitesBattery manufacturing, energy storage systems, R&D labs
Industry UsagePower distribution, renewable energy, telecomEnergy storage, electric vehicles, portable power

Dc Power Engineers focus on designing, maintaining, and troubleshooting direct current power systems, often in power distribution or renewable energy projects. Battery Systems Engineers specialize in developing and optimizing battery technologies and energy storage solutions. While both roles require electrical expertise and certifications, their work environments and industry applications differ, with Dc Power Engineers more involved in power infrastructure and Battery Systems Engineers in energy storage innovations.

What cities in Georgia are hiring for Dc Power Engineer jobs?

Cities in Georgia with the most Dc Power Engineer job openings:

Infographic showing various Dc Power Engineer job openings in Georgia as of August 2026, with employment types broken down into 1% As Needed, 87% Full Time, 9% Part Time, 2% Contract, and 1% Nights. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $105,697 per year, or $50.8 per hour.

P&C Lead Test Engineer

POWERX

Atlanta, GA • On-site

$98K - $129K/yr

Part-time

Posted 25 days ago


Job description

Job Summary:

The P&C Lead Test Engineer is responsible for leading the testing, commissioning, validation, and operational integration of protection and control systems across transmission, distribution, and generation substations. This role serves as both a technical leader and field mentor ensuring electrical systems operate safely, reliably, and in accordance with utility standards, engineered design intent, and POWERX commissioning philosophy. The P&C Lead Test Engineer is expected to understand not only how to perform testing, but also why the system behaves the way it does. This includes understanding system topology, protection philosophy, sequence components, relay logic, AC/DC fundamentals, communications architecture, human performance principles, and the operational impact of testing decisions inside energized substations. This role confidently leads in high-pressure environments, mentors developing Test Engineers, communicates effectively with clients and operations personnel, and takes ownership of project execution from planning through energization and turnover. This position supports greenfield and brownfield commissioning projects involving relay protection systems, SCADA integration, IEC 61850 communications, RTUs, breaker controls, transformer protection, bus protection, line protection, and system restoration activities.

Supervisory Responsibilities:

  •  None.

Duties/Responsibilities:

Technical Knowledge:

  • Lead advanced testing, commissioning, troubleshooting, and operational validation activities across transmission, distribution, and generation substations.
  • Perform and oversee relay protection testing using Doble, Omicron, RTS, SEL AcSELerator, GE Enervista, and equivalent testing platforms.
  • Validate complete protection and control systems including line, transformer, bus, feeder, breaker failure, reclosing, transfer trip, and communication-assisted protection schemes.
  • Execute end-to-end testing and operational verification of relay protection systems, SCADA, RTUs, IEC 61850 networks, GOOSE messaging, telecom systems, breaker controls, and station communications.
  • Perform and validate CT/PT testing including ratio, polarity, phasing, CT saturation characteristics, and single-point grounding verification.
  • Interpret and troubleshoot relay logic, phasors, event reports, oscillography, sequence components, and fault behavior to identify abnormal system conditions and operational risks.
  • Apply advanced understanding of AC/DC power system fundamentals, complex power and power factor, symmetrical components, protection zones and coordination philosophy, transmission line/transformer/bus and breaker failure protection, instrument transformer behavior and application, and system topology impacts on protection operation.
  • Read, interpret, and validate one-lines, three-lines, schematics, wiring diagrams, logic diagrams, relay settings files, and panel layouts.
  • Support switching activities, outage coordination, energization, restoration efforts, and operational turnover within energized substations up to 500kV.
  • Treat every testing scope as a system validation exercise, not an isolated component check.

Technical Leadership:

  • Lead complex utility commissioning projects while coordinating field execution with project management, engineering, construction, and client operations.
  • Review engineered drawings, relay settings, logic diagrams, one-lines, three-lines, schematics, wiring diagrams, and panel layouts for technical accuracy and constructability.
  • Identify design gaps, relay logic concerns, drawing inconsistencies, and operational risks before energization.
  • Develop test plans, isolation plans, energization plans, commissioning procedures, Human Performance mitigation plans, and Job Hazard Analysis (JHAs)
  • Ensure all testing aligns with utility standards, NETA practices, IEEE guidance, and client-specific commissioning requirements.
  • Support development and continuous improvement of Protection & Control procedures and operational standards (SOP's).
  • Review testing results for accuracy, completeness, and operational correctness prior to client turnover.

Leadership & Mentorship Expectations:

  • Lead crews with professionalism, accountability, and technical confidence.
  • Mentor developing Test Engineers in both field execution and system understanding.
  • Build an environment focused on learning, questioning attitude, and continuous improvement.
  • Reinforce the understanding that protection systems must be tested as complete systems not isolated components.
  • Promote operational discipline, verification culture, and strong communication practices.
  • Support workforce development through mentorship and training progression.
  • Assist in evaluating technical competency, testing quality, and operational readiness, and in building future technical leaders within the organization.

Safety & Human Performance: Maintain and promote a safety-first culture in all environments.

  • Strictly adhere to Lock Out / Tag Out (LOTO) procedures and switching boundaries.
  • Utilize Human Performance Improvement (HPI) tools to minimize operational risk.
  • Verify live-dead-live conditions and establish safe isolation boundaries.
  • Lead daily safety discussions, JHA reviews, and pre-job briefs.
  • Maintain compliance with OSHA, NERC CIP, utility requirements, and internal standards.
  • Support investigation and mitigation of operational or safety events when required.

Client & Operational Engagement:

  • Serve as the primary field technical interface between POWERX and the client.
  • Communicate project status, technical concerns, schedule impacts, and operational risks clearly and professionally.
  • Maintain strong client relationships through technical execution, responsiveness, and professionalism.
  • Monitor project scope changes and communicate impacts to leadership.
  • Support project forecasting, scheduling coordination, manpower planning, and execution strategy.
  • Maintain accurate records of commissioning activities and test results; submit daily and final reports documenting on-site activities.

Additional responsibilities and tasks as required to support the organization's goals and adapt to evolving business needs.

Attributes/Abilities: 

  • Must have a satisfactory background/MVR check.
  • Must pass a pre-employment, post-accident, reasonable suspicion, and/or random drug test.
  • Questioning attitude - drives a culture of verification across the crew, challenges assumptions in drawings, settings, and field conditions, and identifies design gaps, relay logic concerns, and operational risks before energization.
  • System-level attention to detail - validates protection schemes as complete systems (CT/VT, relay logic, SCADA, IEC 61850 / GOOSE, RTUs, breaker controls, telecom) rather than isolated component checks.
  • Calm and decisive under high-pressure conditions - outage windows, energization events, restoration efforts, and live troubleshooting in energized substations up to 500kV.
  • Strong written and verbal communication skills - serves as the primary field technical interface between POWERX and the client, communicating project status, technical concerns, schedule impacts, and operational risks clearly to engineering, operations, project management, and construction.
  • Mentorship mindset - actively develops Test Engineers, Test Engineer IIs, and Senior Test Engineers in both field execution and system understanding, and contributes to evaluating technical competency, testing quality, and operational readiness.
  • Customer-focused mentality - builds and maintains strong client relationships through technical execution, responsiveness, and professionalism in every interaction.
  • Organizational discipline - owns commissioning documentation, test records, redlines, turnover packages, and daily and final reports, and holds the crew to the same standard.
  • Strong planning and forecasting capability - develops test plans, isolation plans, energization plans, commissioning procedures, HP mitigation plans, and JHAs, and supports project forecasting, scheduling coordination, manpower planning, and execution strategy.
  • Adaptability across greenfield and brownfield scopes, transmission, distribution, and generation substations, night and weekend outages, restoration events, and travel as required.
  • Commitment to continuous learning and professional development - stays current with advanced relay platforms, IEC 61850 / GOOSE communications, NETA practices, IEEE guidance, and evolving utility and NERC CIP standards.
  • Proficiency in Microsoft Word and Excel sufficient to produce client-ready commissioning documentation, test records, redlines, daily and final reports, and planning artifacts.
  • Capable of effectively presenting technical information and responding to questions from diverse audiences - utility clients, operations personnel, project management, engineering, construction crews, and developing engineers - with varying levels of technical expertise.

Experience and Education:

  • Minimum 3+ years of experience in high-voltage Protection & Control testing and commissioning, required.
  • Experience with SEL, GE, ABB, Siemens, Westinghouse, or equivalent relay platforms, required.
  • Bachelor's degree in Electrical Engineering or Electrical Technology, or an Associate degree in Electrical Technology or related field experience preferred.
  • Experience commissioning substations from 12.5kV through 765kV preferred.
  • OSHA 30 certification preferred.
  • Knowledge of the National Electrical Code (NEC) and OSHA Electrical Safe Work Practices is preferred.
  • First Aid / CPR certification preferred.
  • Familiarity with NERC CIP requirements preferred.

Physical Requirements:

  • Ability to work safely around energized electrical equipment and mechanical hazards.
  • Ability to work in operational substations and construction environments.
  • Ability to lift up to 50 pounds.
  • Ability to travel as required.
  • Ability to work overtime and outage schedules as necessary.
  • Exposure to outdoor weather conditions, noise, vibration, heat, dust, oil, grease, and energized equipment environments.

POWERX isan equal opportunity employer, and all qualified applicants will receive consideration for employmentwithout regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state or local laws.