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Electrical Engineering Technology Jobs in Connecticut

Sr. Engineer, Electrical Engineering

South Windsor, CT · On-site

$104K - $136K/yr

Also on site integrated electrical equipment that incorporate fuel cell technology as a primary or ... Bachelor's or Master's degree in Electrical Engineering or Power Systems Engineering Experience ...

Sr. Engineer, Electrical Engineering

South Windsor, CT · On-site

$104K - $136K/yr

Also on site integrated electrical equipment that incorporate fuel cell technology as a primary or ... Bachelor's or Master's degree in Electrical Engineering or Power Systems Engineering Experience ...

What We Look For In a Electrical Engineering Tutor * Advanced Subject Mastery: Deep knowledge of ... advanced technology, AI, and the latest in learning science to create personalized learning ...

What We Look For In a Electrical Engineering Tutor * Advanced Subject Mastery: Deep knowledge of ... advanced technology, AI, and the latest in learning science to create personalized learning ...

What We Look For In a Electrical Engineering Tutor * Advanced Subject Mastery: Deep knowledge of ... advanced technology, AI, and the latest in learning science to create personalized learning ...

As a Mechatronics Engineering Tech , based in Middlefield (CT) , you'll be responsible for ... Troubleshoot electrical, mechanical, pneumatic, and controls-related issues on manufacturing ...

Bachelor of Science Electrical Engineering/Bachelor of Science Electrical Engineering Technology (or equivalent experience); advanced degree or relevant certifications are a plus. * 5+ years in ...

Showing results 21-40

Electrical Engineering Technology information

See Connecticut salary details

$48K

$105.7K

$159.8K

How much do electrical engineering technology jobs pay per year?

As of Aug 9, 2026, the average yearly pay for electrical engineering technology in Connecticut is $105,679.00, according to ZipRecruiter salary data. Most workers in this role earn between $79,000.00 and $125,600.00 per year, depending on experience, location, and employer.

What is electrical engineering technology?

Electrical Engineering Technology is a field that focuses on the practical application of electrical engineering principles. It involves designing, developing, testing, and maintaining electrical and electronic systems, such as circuits, devices, and equipment. Professionals in this field often work on implementing and troubleshooting technology in industries like manufacturing, telecommunications, and energy. Unlike electrical engineers, technologists typically concentrate more on applied aspects and hands-on work rather than theoretical design. This makes Electrical Engineering Technology a key link between engineering concepts and real-world solutions.

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

AspectElectrical Engineering TechnologyElectrical Engineering
EducationAssociate's or Bachelor's degree in Electrical Engineering TechnologyBachelor's or Master's degree in Electrical Engineering
CertificationsOptional certifications like Certified Engineering Technician (CET)Professional Engineer (PE) license often required
Work EnvironmentPractical, hands-on roles in manufacturing, maintenance, and testingTheoretical, design-focused roles in research, development, and system design
Job ResponsibilitiesImplementing designs, troubleshooting, testing, and maintaining electrical systemsDesigning systems, analyzing complex problems, developing new technologies

Electrical Engineering Technology professionals focus on applying electrical principles in practical settings, while Electrical Engineers are more involved in designing and developing new electrical systems and technologies. Both roles are essential in the industry, but they differ in education, responsibilities, and career paths.

What does an electrical engineering technologist do?

Electrical Engineering Technologists often collaborate on projects such as designing and testing electrical systems, troubleshooting equipment, and assisting in the development of prototypes. They work closely with engineers, technicians, and other team members to ensure systems meet safety and performance standards. Daily responsibilities can include drafting layouts, assembling and testing components, and documenting results, often requiring clear communication and problem-solving within a multidisciplinary team. This collaborative environment not only enhances technical skills but also provides valuable experience for career advancement.

What are the key skills and qualifications needed to thrive as an electrical engineering technologist?

To thrive as an Electrical Engineering Technologist, a solid understanding of electrical theory, circuit design, troubleshooting, and typically an associate’s or bachelor’s degree in electrical engineering technology are essential. Familiarity with industry-standard tools like oscilloscopes, multimeters, AutoCAD, and PLC programming, as well as certifications such as CET (Certified Engineering Technologist), is often required. Strong problem-solving abilities, attention to detail, and effective communication skills help technologists excel in team environments and client interactions. These competencies are crucial for ensuring the safe, efficient, and innovative development, testing, and maintenance of electrical systems.
What job categories do people searching Electrical Engineering Technology jobs in Connecticut look for? The top searched job categories for Electrical Engineering Technology jobs in Connecticut are:
Infographic showing various Electrical Engineering Technology job openings in Connecticut as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $105,679 per year, or $50.8 per hour.

Sr. Engineer, Electrical Engineering

DOOSAN

South Windsor, CT • On-site

$104K - $136K/yr

Full-time

Re-posted 15 days ago


Job description

Company Background

HyAxiom is a leading provider of distributed generation fuel cell and electrolyzer solutions, committed to delivering innovative and sustainable energy solutions to meet the growing demands of the data center market. We are dedicated to helping our clients achieve energy efficiency, reliability, and sustainability through our innovative solutions. HyAxiom is looking for team members to represent the organization with our core values of people, sustainability, innovation, and integrity.

Come join our Team today!

Job Information

We are looking for an experienced Senior Electrical Engineer with a specialized focus on integrating fuel cells into microgrid solutions / data centers. In this role, you will be responsible for designing, optimizing, and deploying Fuel Cell electrical systems. Also on site integrated electrical equipment that incorporate fuel cell technology as a primary or backup power source for data centers. You will work to create reliable, scalable, and sustainable power solutions that support the critical needs of data center operations.

Role & Responsibility

Fuel Cell Integration into Microgrids:

Design and integrate fuel cell systems into microgrid architectures, ensuring seamless operation as a primary or backup power source within data center environments. Optimize fuel cell performance, efficiency, and scalability for high-demand applications Including integration of fuel cell-based microgrids with the existing electrical grid. Ensure proper synchronization, seamless transfer between grid-connected and islanded modes, and effective load management for data center operations.

Fuel Cell/Electrolyzer Requirements Definition:

Propose and support changes to the Fuel Cell /Electrolyzer Electrical systems and onsite equipment integration. Make sure the Fuel Cell /Electrolyzer electrical system maintains required certifications as well as understanding of grid protection functions.

  • Proficient in writing, maintaining and mitigating risk to product requirements.
  • Perform DFMEA/PFMEA
  • Perform System level trade studies
  • Create 1 line and 3-line electrical schematics
  • Create sequence of operation / product operation manuals
  • Perform design verification testing
  • Create presentations for management
  • Electrical harness design and updates
  • Safety System design and certification

Microgrid System Design & Optimization:

Work with Customers and Suppliers to develop and implement site specific microgrid systems that combine fuel cells, energy storage (e.g., batteries/super caps), renewable energy sources (e.g., solar), and conventional generators for data centers. Focus on reliability, redundancy, and optimal energy management. Proven experience with providing technical support and delivering complex energy solutions while identifying opportunities to bring additional value to the customer.

Role & Responsibility - continued

Power Electronics & Control Systems:

Work with power electronics, DC-DC, inverters, rectifiers and controllers to convert, condition, and distribute power generated by fuel cells. Develop control strategies to ensure the efficient and coordinated operation of fuel cells with other energy sources in grid-connected or islanded modes.

Reliability & Redundancy Design:

Ensure Fuel Cell and  microgrid systems are fault-tolerant, resilient, and meet the high-availability needs of data centers. Implement redundancy strategies (e.g., N+1 configurations) for critical components such as fuel cells, energy storage, and inverters.

Collaboration with Cross-Functional Teams:

Work closely with mechanical engineers, software engineers, System and MBOP engineers and data center operations teams to ensure that the microgrid system is fully aligned with facility power requirements. Communicate effectively to ensure timely integration and deployment.

Compliance & Safety Standards:

Ensure that all fuel cell and microgrid systems meet regulatory requirements, industry standards (e.g., IEEE, IEC), and safety protocols for energy systems and data centers. Keep updated on environmental regulations and sustainability goals for energy systems.

Troubleshooting & System Support:

Provide ongoing technical support and troubleshooting for fuel cell-based microgrid systems. Perform regular performance optimization and address any system failures or efficiency issues that may arise.

Job Requirements - Education, Experience & Certifications

Education:

Bachelor's or Master's degree in Electrical Engineering or Power Systems Engineering

Experience:

  • 5+ years of experience in designing microgrid or data center power systems. Knowledge of power systems, energy management, and renewable energy integration is required.
  • Understanding of internal data center needs is a plus.

Preferred Qualifications:

  • Experience with integrating renewable energy sources (e.g., solar, wind) and energy storage systems into microgrid solutions.
  • Hands-on experience with self-generation technology (generators) integration and real-time optimization in mission-critical environments like data centers.
  • Knowledge of cybersecurity for energy systems and best practices for securing fuel cell microgrid architectures.
  • LV, MV and AC/  DC voltage system design
  • Fuel Cell / Electrolyzer background a plus

Certifications (Preferred):

  • Professional certifications related to renewable energy, microgrid systems, or energy management (e.g. IEEE) are a plus.
Job Requirements - Skills

Technical Skills:

  • Able to apply first principles logic and methods.
  • Strong background in power electronics, including inverters, converters, and controllers for fuel cell systems.
  • Understanding of microgrid operation and energy distribution in data center environments.
  • Will need to write, maintain and mitigate risk to product requirements.  Perform DFMEA/PFMEA
  • Create 1 line and 3-line electrical schematics
  • Create sequence of operation / product operation manuals
  • Perform design verification testing
  • Create presentations for management
  • Electrical harness updates
  • Support design issues and root cause analysis
  • Create Design Review Presentation throughout process

Problem-Solving & Analytical Skills:


Excellent ability to analyze system performance, identify issues, and propose effective solutions to ensure high reliability, efficiency, and resilience of fuel cell-based microgrid systems.

Communication & Collaboration:


Strong verbal and written communication skills. Ability to work effectively with multidisciplinary teams, including data center operations, project managers, and other technical specialists.

Other

Work Environment:

  • Occasional travel to data center sites for system commissioning, integration, and troubleshooting. 
  • On-site

All personal information will be kept confidential according to EEO guidelines. 

Questions can be addressed through the HR department at (860) 727-2200 or HR@Hyaxiom.com