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Power Electronics Jobs in Alberta (NOW HIRING)

$23 - $38/hr

Perform warranty work on power generation equipment * Process required paperwork and electronic submissions within deadlines * Maintain parts inventory of service truck * Participate in the rotating ...

Technical Sales Representative

Calgary, AB · On-site

CA$77K - CA$96K/yr

The Company leverages proprietary technologies and expertise in materials science, power electronics, automation, and intelligent software to help customers build better and achieve resilience in ...

To support resume screening, interviews and other candidate evaluations, we may use artificial intelligence-powered tools, including internal or third-party developed automated decision-making tools.

As a Power HVAC Mechanic (Service Tech IV) within the Power/HVAC division at United Rentals, you'll ... Maintain paperwork/electronic documentation of work performed (work orders) in a complete and ...

... electronic documentation of work performed (work orders) in a complete and timely manner on a daily basis Assist with pick-up and delivery of equipment & parts Other duties assigned as needed ...

Showing results 21-40

Power Electronics information

See Alberta salary details

$23.5K

$99.8K

$166.5K

How much do power electronics jobs pay per year?

As of Sep 3, 2026, the average yearly pay for power electronics in Alberta is $99,839.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,500.00 and $127,000.00 per year, depending on experience, location, and employer.

What is power electronics?

Power electronics is a branch of electrical engineering that deals with the conversion, control, and management of electrical power using electronic devices. It involves the use of components such as diodes, transistors, and thyristors to efficiently convert and control electric power in applications like motor drives, renewable energy systems, electric vehicles, and power supplies. Professionals in this field design circuits and systems that enable the efficient transfer and transformation of electrical energy for various industrial and consumer applications.

What skills and qualifications are needed to thrive as a power electronics engineer?

To thrive as a Power Electronics Engineer, you need a solid background in electrical engineering, circuit design, and power conversion principles, generally supported by a relevant degree. Familiarity with simulation tools like MATLAB/Simulink, PCB design software, and relevant industry certifications (such as PE or IEEE membership) is often required. Strong problem-solving skills, attention to detail, and effective teamwork make candidates stand out in this role. These competencies are crucial for developing safe, efficient, and reliable power systems in various high-impact industries.

What are common challenges faced by power electronics engineers in project development?

Power electronics engineers often encounter challenges such as managing thermal issues, ensuring electromagnetic compatibility, and optimizing circuit efficiency while meeting strict size and weight requirements. Collaborating with cross-functional teams like mechanical design, firmware, and quality assurance is essential to address these challenges. Staying updated with the latest semiconductor technologies and safety standards also plays a critical role in successful project delivery.

What is the difference between Power Electronics vs Electrical Engineer?

AspectPower ElectronicsElectrical Engineer
CredentialsTypically requires a degree in electrical engineering or related field; certifications like IEEE are commonRequires a degree in electrical engineering; professional licensure may be preferred
Work EnvironmentDesigning and testing electronic circuits, working in labs or manufacturing settingsDesigning electrical systems, working in offices, labs, or construction sites
Industry UsageFocused on power conversion, control systems, renewable energy, and electronicsBroader role covering power, control, communication, and instrumentation systems

Power Electronics specialists focus on designing and developing electronic devices that control and convert electrical power, often working with circuits and systems specific to power management. Electrical Engineers have a broader scope, working on various electrical systems and infrastructure. While both roles require similar educational backgrounds, Power Electronics professionals typically specialize further in electronic power conversion technologies.

Is power electronics a good career?

Power electronics is a specialized field involving the design and application of electronic devices that control and convert electrical power. It offers opportunities in industries such as renewable energy, electric vehicles, and industrial automation, often requiring knowledge of circuit design, control systems, and certifications like IEEE standards. The field is expected to grow with technological advancements and increasing demand for energy-efficient solutions.

What are popular job titles related to Power Electronics jobs in Alberta?

For Power Electronics jobs in Alberta, the most frequently searched job titles are:

What job categories do people searching Power Electronics jobs in Alberta look for?

The top searched job categories for Power Electronics jobs in Alberta are:

Infographic showing various Power Electronics job openings in Alberta as of August 2026, with employment types broken down into 1% As Needed, 83% Full Time, 13% Part Time, 2% Contract, and 1% Nights. Highlights an 89% Physical, 4% Hybrid, and 7% Remote job distribution, with an average salary of $99,839 per year, or $48 per hour.

Research Associate, Semiconductors & AI Infrastructure - 26229

Enverus

Calgary, AB

Full-time

Re-posted 26 days ago


Job description

Research Associate, Semiconductors & AI Infrastructure

Why YOU want this position

At Enverus, we're committed to empowering the global quality of life by helping our customers make energy affordable and accessible to the world.

We are the most trustedenergy-dedicated SaaS company, with a platform built to maximize value from generative AI, and our innovative solutions are reshaping the way energy is consumed and managed. By offering anytime, anywhere access to analytics and insights, we're helping our customers make better decisions that help provide communities around the world with clean, affordable energy.

The energy industry is changing fast. But we've continued to lead the way in energy technology, creating intelligent connections across the entire energy ecosystem, from renewables, power and utilities, to oil and gas and financial institutions. Our solutions create more efficient production and distribution, capital allocation, renewable energy development, investment and sourcing, and help reduce costs by automating crucial business operations. Of course, this wouldn't be possible without our people, which is why we have built a team of individuals from a diverse range of backgrounds.

Are you ready to help power the global quality of life? Join Enverus, and be a part of creating a brighter, more sustainable tomorrow.

The Utilities & AI Infrastructure team covers the full stack, from grid interconnection and utility rate cases down to chip architecture, accelerator supply chains, and data-center power delivery. Most competitors do one or the other. We do both, which takes people who can read a PCB block diagram and a utility integrated resource plan in the same afternoon. This is a research role, not a design or engineering role.

We're looking for an electrical engineer who wants to apply their technical background to competitive intelligence and market analysis. Someone who understands what's actually hard about designing a 1,000-watt GPU, why TSMC CoWoS yield matters to power-demand forecasts, and what it means when a hyperscaler switches from air to liquid cooling at scale. You'll translate that depth into research that executives, investors, and operators can act on.

Most research shops hand the hardest problems to the most senior person on the team and have everyone below execute. We do the opposite. Every analyst, including those at entry level, owns their projects end to end and pulls in senior teammates for guidance. That hands-on, problem-by-problem ownership is how you build the judgment to add real value for clients, and it's the single biggest reason people stay on this team.

Performance Objectives

  • Analyze AI accelerator architectures (GPUs, ASICs, networking silicon) and their downstream implications for power consumption, thermal design, and infrastructure build-out.
  • Track semiconductorsupply-chain developments such as advanced-packaging capacity, HBM supply, and leading-edge fab utilization, and translate them into demand signals for power and cooling infrastructure.
  • Monitorhyperscaler and co-location data-center build-out: rack-density trends, power-delivery design, cooling-technology transitions, and site selection.
  • Synthesize technical findings into written research briefs, supply-chain maps, and competitive-intelligence products for internal and client audiences.
  • Work with Enverus proprietary energy datasets to ground technical analysis in real grid and interconnection data.
  • Cover earnings calls, investor days, conference presentations, and technical whitepapers from chipmakers, ODMs, OEMs, and utilities.

Competitive Candidate Profile

  • A clear, precise writer who can make technical knowledge land for a non-engineer audience. In this role,that's the difference-maker: your analysis is only as valuable as your ability to communicate it.
  • Bachelor's degree or higher in electrical engineering, computer engineering, or a closely related field.
  • A strong grasp of digital systems, power electronics, or semiconductor fundamentals. Youdon't need to have taped out a chip, but you need to understand what a tapeout is and why it costs $50M.
  • Ability to read and critically evaluate technical documentation: data sheets, white papers, patent filings, regulatory submissions.
  • 0 to 4 years of experience. New graduates with strong research instincts are welcome.
  • Hands-on experience with power systems, signal integrity, thermal management, or chip packaging, from coursework, internships, or personal projects.
  • Prior exposure to the semiconductor industry through an internship, research, or closely following the space (TSMC, NVIDIA, AMD, Broadcom, Marvell, etc.).
  • Familiarity with AI training and inference hardware: GPU clusters, networking topologies, memory-bandwidth constraints.
  • Interest in energy markets, grid infrastructure, or the power economics of large-scalecompute.
  • Experience turning technical research into written deliverables.
Employment Type: Full-Time