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Power Electronics Intern Jobs (NOW HIRING)

Intern, Hardware Test Engineering

Scotts Valley, CA · On-site

$18.25 - $23.75/hr

What to Expect Heron Power is a startup company building cutting-edge power electronics for the 21st-century grid. We aim to de-bottleneck the growth of electricity generation and consumption with ...

Summary The Lab Technician Intern will support our engineering team in the development, testing ... Hands-on testing methodologies for hardware and power electronics products. * How lab work supports ...

Join Generac's Residential Power Electronics team as a Firmware Engineering Intern in Reno, NV, and help power the future of clean energy. In this hands-on role, you'll contribute to embedded ...

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Power Electronics Intern information

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$11

$19

$29

How much do power electronics intern jobs pay per hour?

As of Sep 10, 2026, the average hourly pay for 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 power electronics intern do?

A Power Electronics Intern assists engineering teams in designing, testing, and troubleshooting electronic circuits used in power conversion, such as inverters, converters, and power supplies. They may help with PCB layout, build prototypes, run simulations, and perform laboratory measurements under supervision. This role provides hands-on experience with modern power electronic components and systems, and often involves learning about safety standards and industry best practices. The internship is a great opportunity to apply theoretical knowledge from coursework to real-world engineering challenges.

What types of projects and tasks can a power electronics intern expect to work on during their internship?

As a Power Electronics Intern, you can expect to be involved in hands-on tasks such as building and testing circuit prototypes, assisting with schematic design, conducting simulations, and performing basic troubleshooting. Interns often support senior engineers on ongoing projects like inverter development, power supply testing, or efficiency analysis. You’ll also likely participate in team meetings, collaborate with cross-functional teams (such as mechanical or software engineers), and document your findings. This role provides valuable exposure to industry-standard tools and best practices, helping you build a strong foundation for a future career in power electronics.

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

To thrive as a Power Electronics Intern, you need a solid background in electrical engineering principles, circuit analysis, and familiarity with power conversion technologies, often supported by progress toward a relevant degree. Experience with simulation tools like MATLAB/Simulink, PCB design software, and basic laboratory equipment is typically required. Strong analytical thinking, attention to detail, and effective teamwork are standout soft skills in this role. These skills are crucial for safely developing, testing, and improving power electronic systems in a collaborative engineering environment.

What is the difference between Power Electronics Intern vs Power Electronics Engineer?

AspectPower Electronics InternPower Electronics Engineer
Required CredentialsTypically pursuing or recently completed a relevant degree (e.g., Electrical Engineering)Bachelor's or Master's degree in Electrical Engineering or related field, professional experience preferred
Work EnvironmentInternship programs, entry-level projects, supervised tasksFull-time professional roles, independent project management
Employer & Industry UsageInternship positions in electronics, power systems, or manufacturing companiesDesign, development, testing, and implementation of power electronic systems in various industries

The main difference between a Power Electronics Intern and a Power Electronics Engineer lies in experience, responsibilities, and career stage. Interns are typically students gaining initial industry exposure, while engineers are full-time professionals responsible for designing and managing power electronic systems.

More about Power Electronics Intern jobs

What cities are hiring for Power Electronics Intern jobs?

Cities with the most Power Electronics Intern job openings:

What are the most commonly searched types of Power Electronics jobs?

The most popular types of Power Electronics jobs are:

What states have the most Power Electronics Intern jobs?

States with the most job openings for Power Electronics Intern jobs include:

Infographic showing various Power Electronics Intern job openings in the United States as of September 2026, with employment types broken down into 32% Internship, 52% Full Time, 12% Part Time, 2% Temporary, and 2% Contract. Highlights an 96% In-person, 2% Hybrid, and 2% Remote job distribution, with an average salary of $40,174 per year, or $19.3 per hour.

Intern, Hardware Test Engineering

Scotts Valley, CA • On-site

$18.25 - $23.75/hr

Other

Re-posted 29 days ago


Job description

What to Expect

Heron Power is a startup company building cutting-edge power electronics for the 21st-century grid. We aim to de-bottleneck the growth of electricity generation and consumption with scalable, innovative, and less costly hardware solutions, accelerating the electrification of everything.

Our first goal is to build better converters (inverters & rectifiers) to connect large-scale renewables, storage, and loads to the grid. Heron’s leadership team is made up of seasoned veterans who have designed and shipped gigawatts of power conversion products over the past decade.

We understand that no one individual knows everything. We will all learn a lot together and from each other. We strive to build a collaborative, enriching environment conducive to personal, technical, and career growth. You can expect to work in a dynamic environment, driven by first principles engineering, solving difficult problems—with a strong bias toward hands‑on execution and learning by doing.

Job Overview

You will build and operate the test infrastructure we use to validate grid-tied converters. This role owns a meaningful slice of the development loop: test bench design and build, test execution, data analysis, failure isolation, and verified fixes. You will uncover real design and process failures by running physical tests and building automated equipment and data workflows. We prioritize a strong foundation in first principles, practical skill, and a bias toward getting things done. We care as much about how you work as what you already know.

How You Will Contribute

Test Bench Architecture & Build

  • Design and build electrical reliability test benches for power electronics hardware—inverters, DC/DC converters, bi-directional power stages.

  • Specify, procure, and integrate lab equipment: programmable power supplies, electronic loads, DAQ systems, sensors, protection hardware, interlocks, and cabling.

  • Own the bench system design: grounding, measurement integrity, EMI-aware instrumentation, protection strategy, safe operating procedures, and maintainability.

  • Build Python-based automation for instrument control and data logging; define calibration practices that keep measurements trustworthy over time.

Test Execution & Reliability Campaigns

  • Translate test goals and suspected failure mechanisms into test plans, stress profiles, instrumentation plans, and pass/fail criteria.

  • Execute reliability campaigns—burn‑in, power cycling, thermal stress, and abuse tests—and evolve them as we learn where the real failure cliffs are.

  • Drive fast debug loops during excursions: isolate, instrument deeper, reproduce, and verify that corrective actions eliminate the failure.

Data, Automation & Closing the Loop

  • Build data workflows that make results actionable: structured logs, automated plots and summaries, clear pass/fail reporting.

  • Partner with design, controls/firmware, and mechanical/thermal engineering to drive improvements and prevent regressions.

  • Create and maintain test stand documentation: schematics, wiring diagrams, BOMs, calibration records, and procedures.

What You Will Bring

We prioritize a strong foundation in first principles, practical skill, an inquisitive mindset, and a proactive attitude. We care as much—or more—about how you work as what you already know.

Must-Have Requirements
  • Pursuing a BS or MS in Electrical Engineering, Mechatronics, or a related field.

  • Hands‑on experience designing, building, or operating electrical test setups for complex hardware—power electronics strongly preferred.

  • Comfort with bench power equipment and measurement methods: scopes, DMMs, power analyzers, electronic loads, DAQ, and sensors.

  • Ability to design safe test systems for high‑power hardware: interlocks, protection, grounding, and safe operating procedures.

  • Strong debugging instincts and ability to drive root‑cause closure with engineering partners.

  • Programming experience in Python—including instrument control or data automation.

Nice-to-Haves
  • Experience with accelerated or environmental stress testing (HALT/HASS, thermal/humidity cycling, power cycling).

  • Familiarity with failure mechanisms in power electronics and structured root cause/corrective action loops.

  • Experience designing repeatable test cells with drawings and instructions to turn scrappy setups into production‑quality ones.

If you are passionate about technology and enjoy working in a fast‑paced environment, we would love to hear from you. Join us in accelerating the electrification of everything at Heron Power.

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