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Electrical Power Engineering Technology Jobs in Texas

Showing results 21-40

Electrical Power Engineering Technology information

What is the difference between Electrical Power Engineering Technology vs Electrical Engineering?

AspectElectrical Power Engineering TechnologyElectrical Engineering
CredentialsAssociate's or Bachelor's in Electrical Power Engineering TechnologyBachelor's or higher in Electrical Engineering
Work EnvironmentPower plants, substations, fieldwork, industrial settingsDesign offices, research labs, project planning
Job FocusPractical application, installation, maintenance of power systemsTheoretical analysis, system design, innovation

Electrical Power Engineering Technology professionals focus on practical skills related to power systems, including installation and maintenance, often working directly in the field. Electrical Engineers typically engage in designing and analyzing electrical systems, emphasizing theoretical knowledge and innovation. Both roles are essential in the power industry but differ in scope and focus.

What are the typical daily responsibilities of an electrical power engineering technologist?

Professionals in Electrical Power Engineering Technology typically spend their days designing, testing, and maintaining electrical systems such as power distribution networks, control systems, and renewable energy installations. They often conduct site inspections, troubleshoot electrical issues, and ensure compliance with safety and industry standards. Collaboration with engineers, project managers, and technicians is common, as is preparing technical documentation and reports. This role requires strong problem-solving skills and the ability to adapt to rapidly changing technologies in the power sector.

What are the key skills and qualifications needed to thrive as an electrical power engineering technologist, and why are they important?

To thrive as an Electrical Power Engineering Technologist, you need a solid background in electrical theory, power systems, circuit analysis, and typically an associate or bachelor's degree in electrical engineering technology. Familiarity with CAD software, SCADA systems, and electrical testing equipment, as well as certifications like CET (Certified Engineering Technologist), are commonly required. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities help you excel in this role. These competencies are crucial for ensuring the safe, reliable, and efficient operation and maintenance of electrical power systems.
What job categories do people searching Electrical Power Engineering Technology jobs in Texas look for? The top searched job categories for Electrical Power Engineering Technology jobs in Texas are:
What cities in Texas are hiring for Electrical Power Engineering Technology jobs? Cities in Texas with the most Electrical Power Engineering Technology job openings:
Infographic showing various Electrical Power Engineering Technology job openings in Texas as of August 2026, with employment types broken down into 1% As Needed, 77% Full Time, 18% Part Time, and 4% Contract. Highlights an 84% Physical, 3% Hybrid, and 13% Remote job distribution.

Director, Electrical & Power Systems

AMOGY, Inc.

Houston, TX โ€ข On-site

Full-time

Re-posted 13 days ago


Job description

Description
Amogy is a clean tech energy company redefining how power is delivered. Through our innovative technology, we are unlocking ammonia as a practical, carbon-free energy carrier for reliable power. Our technology converts ammonia into hydrogen on demand, enabling dispatchable power for mobility applications and for sites where the grid is constrained, unreliable, or insufficient. As demand for power accelerates, Amogy is building the energy systems to deliver it, cleanly, reliably, and at scale.
Job Summary:
We are hiring a Director, Electrical & Power Systems to define and own the electrical architecture for Amogy's next-generation ammonia-to-power systems. This role is responsible for translating a chemically driven power source into a grid-ready, dispatchable power product. You will define how generation, storage, and controls come together into a cohesive system that behaves at the customer interface like a highly responsive, reliable power asset.
This is Amogy's primary electrical SME role, with end-to-end ownership spanning product architecture, integration strategy, and project execution. You will often operate as a chief engineer- setting system direction, making critical design decisions, and staying closely engaged in implementation and integration. Over time, you will build up Amogy's electrical engineering function, but the immediate focus is owning the architecture and driving execution toward Amogy's early commercial product deployments.
Key Responsibilities:
  • Define and own the electrical architecture for integrated ammonia-to-power systems, including generation, BESS, power conversion, and grid interface
  • Architect a system that presents as a single, dispatchable power asset to the customer (e.g., genset-like behavior, single point of interconnection)
  • Develop power management and control strategies that decouple reformer/engine dynamics from customer load requirements
  • Lead electrical integration across mechanical, process, and controls systems, establishing clear system boundaries and interfaces
  • Own design of power distribution, protection schemes, grounding, and interconnection strategy
  • Drive key tradeoffs across performance, responsiveness, efficiency, cost, and reliability at the system level
  • Establish electrical standards, safety philosophy, and compliance strategy (UL, IEC, NFPA, etc.)
  • Provide technical leadership across product development and project execution, including design reviews and issue resolution
  • Define scalable, modular architectures that reduce dependency on custom EPC-driven engineering
  • Act as the company's primary electrical SME and help build internal capabilities over time

Requirements
Required Qualifications:
  • BS in Electrical Engineering
  • 10-15+ years designing and deploying complex power or energy systems
  • Deep expertise in power distribution (LV/MV/HV), power electronics & conversion systems, grid interconnection and protection schemes
  • Experience integrating multi-disciplinary systems (mechanical, controls, process)
  • Proven experience owning system-level electrical architecture, not just subsystems
  • Strongly Preferred
  • Experience with distributed energy systems (gensets, microgrids, BESS, fuel cells, hybrid systems)
  • Experience with power management systems and energy management systems (EMS)
  • Experience delivering containerized or modular power systems
  • Exposure to industrial, marine, or off-grid applications
  • Experience working with certification bodies (UL, IEC, DNV, ABS):
  • Balance of hands-on and architectural work