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Remote Power Electronics Intern Jobs (NOW HIRING)

Senior Product Manager

$129K - $170K/yr

This role is remote within the following states: AZ, FL, GA, IL, KS, MA, MI, NC, NE, SD, TN, TX, WI ... Develop GTM strategies and roadmaps for existing and future products, including power electronics ...

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Remote Power Electronics Intern information

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$11

$19

$29

How much do remote power electronics intern jobs pay per hour?

As of Sep 12, 2026, the average hourly pay for remote power electronics intern in the United States is $19.31, according to ZipRecruiter salary data. Most workers in this role earn between $16.11 and $20.91 per hour, depending on experience, location, and employer.

What does a remote power electronics intern do?

A Remote Power Electronics Intern assists engineering teams in designing, testing, and analyzing power electronic systems and components, such as converters, inverters, and power supplies, while working remotely. Interns often use simulation software, create technical documentation, and help with data analysis or troubleshooting under supervision. This role allows students or recent graduates to gain practical experience in the field of power electronics, often while collaborating virtually with professionals and attending remote meetings or training sessions.

What types of projects and responsibilities can a remote power electronics intern expect during their internship?

As a Remote Power Electronics Intern, you can expect to work on projects such as designing, simulating, and testing power electronic circuits, as well as supporting the development of prototypes and conducting research on new technologies. Daily tasks often include analyzing circuit performance, creating technical documentation, and collaborating with senior engineers through virtual meetings and project management tools. Interns are typically encouraged to ask questions and contribute ideas, making this a valuable opportunity to build technical skills and gain insight into the industry’s workflow.

What are the key skills and qualifications needed to thrive as a remote power electronics intern, and why are they important?

To thrive as a Remote Power Electronics Intern, you need a solid understanding of circuit theory, power electronics fundamentals, and relevant coursework in electrical engineering. Familiarity with simulation tools like MATLAB/Simulink, SPICE, and proficiency in CAD software are typically required, along with experience using laboratory equipment. Strong problem-solving abilities, self-motivation, and effective remote communication skills help interns stand out in this position. These skills and qualities are essential for successfully contributing to projects, collaborating with teams remotely, and applying technical knowledge to real-world challenges.

What is the difference between Remote Power Electronics Intern vs Remote Electrical Engineering Intern?

AspectRemote Power Electronics InternRemote Electrical Engineering Intern
Required CredentialsEnrolled in Electrical Engineering or related field, basic knowledge of power electronicsEnrolled in Electrical Engineering or related field, foundational electrical knowledge
Work EnvironmentRemote, often in tech or manufacturing companies focusing on power systemsRemote, in various industries including energy, manufacturing, and tech
Industry UsageSpecific to power electronics, renewable energy, and power systemsBroader, covering general electrical systems and circuits

The Remote Power Electronics Intern focuses specifically on power electronic devices and systems, requiring knowledge in power conversion and control. The Remote Electrical Engineering Intern has a broader scope, covering general electrical systems. Both roles are remote, often in tech or energy sectors, but the Power Electronics Intern specializes in power systems, making it more niche within electrical engineering.

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Infographic showing various Remote Power Electronics Intern job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 86% Full Time, 9% Part Time, 2% Contract, and 1% Nights. Highlights an 90% Physical, 3% Hybrid, and 7% Remote job distribution, with an average salary of $40,174 per year, or $19.3 per hour.

​PhD Electrical Engineer, Power Electronics Intern

Murphy, NC • On-site, Remote

AEGIS POWER SYSTEMS, INC.
Guided Missile and Space Vehicle Manufacturing • 1 - 10 employees

$40/hr

Internship

Posted 2 days ago

New


Job description

PhD Electrical Engineer, Power Electronics Intern

Position Summary

Aegis Power Systems is seeking a highly motivated PhD Power Electronics Intern to support advanced research and development of next-generation power conversion technologies. This internship will provide the opportunity to contribute directly to the development of a new power converter solution, working alongside experienced electrical, firmware, and systems engineers.

The intern will participate in the design, development, modeling, implementation, and testing of power converter technologies, with a particular focus on control hardware, embedded firmware, control software, and power conversion performance.

This position is ideal for a PhD student conducting advanced research in power electronics, power conversion, controls, or a closely related field who is interested in applying academic research to real-world aerospace, defense, and high-reliability power systems.

This position is USA REMOTE

Key Responsibilities

  • Support the research and development of a new, advanced power converter solution.
  • Develop and evaluate power converter control architectures and algorithms.
  • Design, prototype, and test control hardware and associated electronic circuitry.
  • Develop embedded firmware and software used for converter control, monitoring, communication, and data acquisition.
  • Model and simulate power electronic converter topologies, control loops, and system performance.
  • Perform control-loop analysis, stability analysis, and system optimization.
  • Support selection and evaluation of power semiconductor devices, magnetic components, sensors, and other critical components.
  • Develop laboratory prototypes and support hardware bring-up and debugging.
  • Conduct experimental testing to validate converter efficiency, transient response, thermal performance, stability, and overall system performance.
  • Analyze test and simulation data and recommend design improvements.
  • Troubleshoot complex interactions between power hardware, control electronics, firmware, and software.
  • Document designs, simulations, test procedures, results, and technical findings.
  • Prepare and present technical results and design recommendations to engineering leadership.
  • Collaborate with electrical, mechanical, firmware, manufacturing, and systems engineering teams throughout the development process.

Qualifications

Required

  • Currently pursuing a PhD in Electrical Engineering, Power Electronics, Power Engineering, Controls, or a closely related discipline.
  • Graduate-level research or project experience in power electronics and power conversion.
  • Strong understanding of power converter topologies and switching power supplies.
  • Knowledge of feedback control systems, digital control, and control-loop design.
  • Experience with power electronics modeling and simulation tools such as MATLAB/Simulink, PLECS, LTspice, PSpice, or similar tools.
  • Experience developing or working with embedded control systems, microcontrollers, DSPs, or FPGAs.
  • Ability to work effectively in a laboratory environment with power electronics hardware and test equipment.
  • Strong analytical, troubleshooting, and technical documentation skills.

Preferred

  • Research experience involving DC-DC, AC-DC, DC-AC, or bidirectional power conversion.
  • Experience with high-frequency and/or high-power converter design.
  • Experience with SiC or GaN wide-bandgap semiconductor technologies.
  • Experience developing digital power-control algorithms.
  • Programming experience with C/C++, Python, MATLAB, or similar languages.
  • Experience with DSP, FPGA, or real-time control platforms.
  • Experience with software-in-the-loop (SIL) simulation.
  • Knowledge of magnetics design, EMI/EMC considerations, thermal management, and power-converter efficiency optimization.
  • Experience taking a power electronics design from simulation through prototype development and laboratory validation.
  • Previous research, internship, or project experience related to aerospace, defense, automotive, industrial, or other high-reliability power systems.

Internship Experience

The PhD Power Electronics Intern will have the opportunity to work on a technically challenging development program with direct exposure to the complete power electronics development lifecycle. From concept and modeling through controls development, hardware/firmware integration, prototype testing, and design validation.

The intern's research and technical contributions will support the development of new power conversion capabilities for demanding, high-reliability applications.

Work Location

USA ONLY – Remote - Candidates must reside in the contiguous United States (48 contiguous states). Applicants located in Alaska or Hawaii are not eligible.

Equal Employment Opportunity Statement 

Aegis Power Systems, Inc. is an Equal Opportunity Employer committed to diversity and inclusion. All qualified applicants will receive consideration without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, or veteran status.