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Electrical Power Engineer Internship Jobs in Colchester, VT

Electrical Engineer

Burlington, VT · On-site

$118.80 - $178.20/hr

This role is responsible for system-level electrical design, control circuit development, power and ... As a hands-on contributor, you will work closely with cross-functional engineering teams to develop ...

The Electrical & Control Engineer's primary responsibility is ownership of the mill's electrical power distribution and control systems. This role supports production, maintenance and a multi ...

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Electrical Power Engineer Internship information

See Colchester, VT salary details

$11

$21

$29

How much do electrical power engineer internship jobs pay per hour?

As of Aug 28, 2026, the average hourly pay for electrical power engineer internship in Colchester, VT is $21.59, according to ZipRecruiter salary data. Most workers in this role earn between $18.22 and $23.94 per hour, depending on experience, location, and employer.

What does an electrical power engineer intern do?

An Electrical Power Engineer Intern assists in designing, analyzing, and improving electrical power systems under the supervision of experienced engineers. Typical tasks include drafting electrical schematics, conducting system simulations, supporting the testing of equipment, and helping with project documentation. Interns may also participate in site visits, collaborate with cross-functional teams, and learn about industry standards and safety practices. The internship provides valuable hands-on experience and exposure to real-world challenges in the power engineering field.

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

To thrive as an Electrical Power Engineer Intern, you need a solid grounding in electrical engineering principles, circuit analysis, and power systems, typically supported by enrollment in an accredited engineering program. Familiarity with software tools like MATLAB, ETAP, or AutoCAD, and exposure to industry standards such as IEEE, are highly valued. Strong analytical thinking, attention to detail, and effective teamwork skills help interns excel in collaborative and technical environments. These competencies are crucial for contributing to real-world projects, ensuring safety, and developing solutions in the dynamic field of power engineering.

What is the difference between Electrical Power Engineer Internship vs Electrical Power Engineer?

AspectElectrical Power Engineer InternshipElectrical Power Engineer
Required CredentialsEnrolled in or recent graduate of electrical engineering or related programBachelor's or higher in electrical engineering, possibly professional licensure
Work EnvironmentInternship programs, entry-level tasks, supervisedFull-time professional roles, independent project work
Employer & Industry UsageUtilities, energy companies, engineering firmsUtilities, power generation, transmission, and distribution companies

The Electrical Power Engineer Internship provides students or recent graduates with hands-on experience in the electrical power industry, focusing on learning and skill development. In contrast, an Electrical Power Engineer is a full-time professional responsible for designing, analyzing, and maintaining electrical power systems. Internships serve as a stepping stone toward becoming a licensed electrical power engineer, who takes on more complex projects and responsibilities.

Systems Engineer - High Voltage Power / Low Voltage Power

BETA Technologies

South Burlington, VT

Full-time

Re-posted 2 days ago


Job description

The ideal Systems Engineer candidate has 5+ years of experience with high voltage and/or low voltage electrical power storage, generation, and distribution systems. The ideal candidate has a BS in electrical engineering or another relevant engineering discipline and is a systems engineering guru that understands the critical importance of a clear and unambiguous requirement set. The individual needs to have an in-depth understanding of SAE ARP4754 system development processes and ARP4761 safety assessment processes (or automotive industry equivalents) and needs to have a passion for those activities.

The candidate should be comfortable working with a cross-functional team of Certification Engineers, Designated Engineering Representatives (DERs), Design Engineers, Software Engineers, Electronic Hardware Engineers, Safety Engineers, and other Systems Engineers. The candidate should expect to contribute as a team member to establish, manage, and ensure compliance with the customer, regulatory, aircraft, system, and component-level requirements. The candidate should be able to provide critical design feedback as it relates to safety and requirements.

How you will contribute to revolutionizing electric aviation: 

  • Architecting safe, new, and novel electrical power systems while applying ARP4754 system development processes
  • Generation, management, validation, and verification of aircraft, system, and component requirements
  • Performing hands-on aircraft and system integration in support of development and certification testing
  • Generating certification and qualification documentation (plans, procedures, test reports)
  • Supporting ARP4761 safety analyses
  • Supporting certification processes, generating technical positions, and presenting to both internal and external stakeholders, including DERs and regulatory authorities

Minimum qualifications:

  • 3+ years of experience performing SAE ARP4754A, ARP4761, and other aerospace certification processes
  • 3+ years of experience applying RTCA DO-160G environmental test procedures
  • 3+ years of experience interfacing with DO-178C software development processes

Above and Beyond Qualifications:

  • Experience with battery systems, high voltage, or power systems either in professional or personal projects
  • Familiarity with industry safety standards for batteries (RTCA DO-311A, SAE J1772)
  • High-level electrical circuit design and analysis
  • Experience performing electrical load analyses
  • Experience performing circuit protection analyses
  • Knowledge of Part 23, 25, or 27 aircraft and/or rotorcraft regulations
  • Experience working collaboratively with regulators
  • Experience with scripting or other test automation approaches
  • Experience with Polarion or other Application Lifecycle Management software

Physical demands and work environment:

  • The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this position
  • Reasonable accommodations may be made to enable individuals with disabilities to perform the functions. While performing the duties of this position, the employee is regularly required to talk or hear
  • The employee frequently is required to use hands or fingers, handle or feel objects, tools, or controls
  • The employee is occasionally required to stand; walk; sit; and reach with hands and arms.
  • The employee must occasionally lift and/or move up to 25 pounds
  • Specific vision abilities required by this position include close vision, distance vision, and the ability to adjust focus. The noise level in the work environment is usually moderate to loud