We are seeking experienced Protection & Control (P&C) Field Testing and Commissioning Engineers to support high-voltage substation projects across transmission, distribution, and generation environments.
This is a travel-heavy, hands-on field role focused on testing, commissioning, troubleshooting, and documenting critical protection relay and control systems . Candidates must bring deep experience with relay testing on high-voltage substations and strong knowledge of industry standards and safety practices.
Key Responsibilities
- Perform testing and commissioning of Protection & Control systems on high-voltage substations
- Execute hands-on protective relay testing using Omicron CMC 256/356 or Doble F6150
- Test and commission relays including:
- GE L90, GE D60, and similar platforms
- Conduct control scheme testing , CT/PT circuit verification, relay calibration, and static/dynamic testing
- Support Project Leads and Field Supervisors on active job sites
- Complete Job Hazard Analysis (JHA) and strictly follow all safety requirements
- Read and interpret electrical drawings, schematics, and logic diagrams
- Accurately document test results and generate formal field reports
- Manage administrative tasks including timecards, expenses, and project documentation
Required Experience & Skills
- 5+ years of electrical field testing experience on substations
- Proven experience testing high-voltage P&C relay systems
- Hands-on proficiency with SEL, GE, Basler, and Beckwith relay families
- Strong experience using Omicron or Doble relay test equipment
- Familiarity with NETA, IEEE, NFPA , and other applicable standards
- Experience across voltage classes ranging from 15 kV to 500 kV
- Working knowledge of testing software: ( ProTesT , Protection Suite, ENOSERV RTS, Omicron, Test Universe, Acselerator)
Why Join Us?
- High-paying, in-demand role within power and utility infrastructure
- Opportunity to work on large-scale, mission-critical substation projects
- Remote-based with nationwide project exposure
- Career growth across transmission, distribution, and generation systems