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Active Power Jobs (NOW HIRING)

The High Voltage and Power Systems Engineer is the technical authority for all HV and MV electrical ... assets including active monitoring of rectifier transformers with known condition concerns.

... band, active droop mitigation etc.","responsibilities":"Conduct end-to-end simulation studies ... D. with academic background in Power/Signal Integrity, Power Electronics or Analog Circuit Design.

... band, active droop mitigation etc.","responsibilities":"Conduct end-to-end simulation studies ... D. with academic background in Power/Signal Integrity, Power Electronics or Analog Circuit Design.

... band, active droop mitigation etc.","responsibilities":"Conduct end-to-end simulation studies ... D. with academic background in Power/Signal Integrity, Power Electronics or Analog Circuit Design.

... band, active droop mitigation etc.","responsibilities":"Conduct end-to-end simulation studies ... S and or Ph.D. with academic background in Power/Signal Integrity, Analog Circuit Design or ...

... band, active droop mitigation etc.","responsibilities":"Conduct end-to-end simulation studies ... S and or Ph.D. with academic background in Power/Signal Integrity, Analog Circuit Design or ...

Power Integrity Engineer

Austin, TX · On-site

$120K - $210K/yr

... band, active droop mitigation etc.","responsibilities":"Conduct end-to-end simulation studies ... S and or Ph.D. with academic background in Power/Signal Integrity, Analog Circuit Design or ...

Expert installation and cabling of secondary DC power equipment, including terminations and connections into active power bays * Produce completed redline drawings , cable test validation, and all ...

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Active Power information

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$13

$24

$46

How much do active power jobs pay per hour?

As of Jun 20, 2026, the average hourly pay for active power in the United States is $24.51, according to ZipRecruiter salary data. Most workers in this role earn between $18.03 and $28.37 per hour, depending on experience, location, and employer.

What are Active Power engineers?

Active Power engineers are professionals who specialize in designing, implementing, and maintaining systems that provide reliable power solutions, often focusing on backup power, power quality, and energy storage technologies. They work for companies like Active Power, which is known for manufacturing flywheel-based uninterruptible power supply (UPS) systems. Their role involves ensuring critical infrastructure has continuous power during outages or fluctuations, optimizing system efficiency, and supporting sustainable energy initiatives. These engineers may work in industries such as data centers, healthcare, telecommunications, and industrial facilities.

What is the difference between Active Power vs Power Engineer?

AspectActive PowerPower Engineer
Required CredentialsTypically none; technical knowledge preferredProfessional engineering license or certification often required
Work EnvironmentPower plants, electrical systems, renewable energy sitesPower plants, electrical infrastructure, consulting firms
Industry UsageUsed in electrical engineering, energy sectorsCommonly employed in power generation and distribution

Active Power refers to the actual electrical power used to perform work, often in the context of electrical systems or energy management. Power Engineers design, operate, and maintain power generation and distribution systems. While Active Power is a concept describing energy flow, Power Engineers are professionals working within the industry to ensure these systems operate efficiently and safely.

What are some common challenges faced by professionals working with Active Power systems, and how can they be addressed?

Professionals working with Active Power systems, such as uninterruptible power supplies (UPS) and flywheel energy storage solutions, often encounter challenges related to system integration, maintenance, and uptime reliability. Integrating Active Power technology into existing infrastructure requires close collaboration with engineering and facilities teams to ensure compatibility and optimal performance. Regular maintenance and monitoring are essential to prevent unexpected downtime, so familiarity with diagnostic tools and proactive maintenance schedules is key. Staying updated on technological advancements and participating in ongoing training can help professionals effectively address these challenges.

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

To thrive as an Active Power Engineer, you need a solid background in electrical engineering, power systems, and energy management, usually supported by a relevant engineering degree. Experience with power management systems, SCADA, simulation software, and certifications like Professional Engineer (PE) are commonly required. Analytical thinking, problem-solving, and effective communication are vital soft skills for addressing complex system challenges and collaborating with cross-functional teams. These competencies are crucial for ensuring efficient power delivery, system reliability, and the successful management of energy resources.
More about Active Power jobs
What cities are hiring for Active Power jobs? Cities with the most Active Power job openings:
What states have the most Active Power jobs? States with the most job openings for Active Power jobs include:
Infographic showing various Active Power job openings in the United States as of June 2026, with employment types broken down into 93% Full Time, and 7% Temporary. Highlights an 79% In-person, and 21% Remote job distribution, with an average salary of $50,977 per year, or $24.5 per hour.
Power Engineer

Power Engineer

CENTURY ALUMINUM

Robards, KY • On-site

Other

Posted 22 days ago


Century Aluminum rating

7.4

Company rating: 7.4 out of 10

Based on 5 frontline employees who took The Breakroom Quiz


Job description

The High Voltage and Power Systems Engineer is the technical authority for all HV and MV electrical infrastructure at Century Aluminum – Sebree Operations. This includes the main 161kV switchyard, rectifier and regulating transformers, MV and HV switchgear, protection and relay systems, and the power distribution network feeding the aluminum production lines. The engineer is accountable for the safe, reliable, and compliant operation of this infrastructure and provides technical engineering authority to maintenance crews, contractors, and plant management. This is a critical position – the facility’s production capacity depends directly on the reliability of the high voltage infrastructure this engineer owns.

Key Activities:

  • Own and manage the main HV switchyard including all 161kV incoming disconnects, main power transformers, rectifier and regulating transformers, oil circuit breakers, and SF6 switchgear across all production lines.
  • Develop and maintain HV protection and relay settings, functional injection testing schedules, and arc flash analysis for the full facility. Provide direction for establishing electrical safe work zones for all personnel working near HV hazards.
  • Monitor transformer condition through dissolved gas analysis, oil sampling, and thermal assessment. Lead condition-based maintenance decisions and capital lifecycle planning for all major HV assets including active monitoring of rectifier transformers with known condition concerns.
  • Develop and implement multi-year HV maintenance plans. Lead capital budget initiatives for the HV power system, prepare funding requests, and track execution in coordination with the Project Management Office.
  • Lead the design, commissioning, and technical oversight of HV equipment installations and replacements, including rectifier transformers, main power transformers, and HV switchgear (system voltages: 161kV, 34.5kV, 13.8kV, and 480V).
  • Provide 24/7 failure response capability for HV system incidents. Lead root cause analysis for all HV-related failures and implement corrective actions to prevent recurrence.
  • Lead the HV competency development program for designated Electrical Engineers on site.
  • Serve as the site’s HV electrical safety authority. Responsible for arc flash compliance, electrical safe work procedures, and HV safety protocol across the facility

Basic Qualifications:

  • Bachelor’s degree in Electrical Engineering with emphasis on power systems, high voltage, or power distribution.
  • Minimum 5 years of hands-on HV and MV engineering experience in an industrial manufacturing or utility environment.
  • Demonstrated ability to communicate effectively and provide technical direction across all levels of the organisation including maintenance crews, contractors, and plant management.
  • Strong organisational skills and ability to manage multiple priorities including maintenance programs, capital projects, and day-to-day operational support simultaneously.

Preferred Qualifications:

  • In-depth knowledge of high current rectifier transformer systems including condition monitoring, OLTC maintenance, and dissolved gas analysis interpretation to IEEE C57.104 standards.
  • Experience with SEL protection relay platforms including settings verification, relay coordination, and functional injection testing.
  • Experience in a primary metals, smelting, or continuous process industrial environment.
  • Understanding of short circuit, arc flash, load flow, and relay coordination studies. Familiarity with NFPA 70E electrical safety requirements.
  • Demonstrated experience leading, managing, and commissioning electrical capital projects including design, contractor oversight, and installation.
  • Can evaluate equipment condition, interpret electrical testing results, and perform reliability assessments. Familiarity with SAP Plant Maintenance for work order and asset management.
  • Registered Professional Engineer (PE) or equivalent credential preferred.