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Electrical Research Engineer Jobs in Toronto, ON

Electrical Controls Engineer, R&D Team: R&D / New Product Development Work Type: Full Time Location: Oakville, ON Who We Are Thermon is a global industrial technology leader and the world's foremost ...

Electrical Controls Engineer, R&DTeam: R&D / New Product DevelopmentWork Type: Full TimeLocation: Oakville, ON Who We AreThermon is a global industrial technology leader and the world's foremost ...

... engineering functions to make significant contributions to the electrical design of our capital ... Participates in the research and development of electronic components, printed circuit boards (PCBA ...

Senior Electrical Engineer

Toronto, ON · Hybrid

CA$100K - CA$140K/yr

Test Tooling: Design test jigs for R&D and automated production test systems. * Regulatory V&V ... Bachelor's or Master's degree in Electrical Engineering or equivalent. * 10+ years of experience in ...

Research failure modes as needed, prepare recommendations for repair and/or remediation as ... Bachelor of Science in Electrical Engineering or a related discipline is required. * Active PE is ...

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Electrical Research Engineer information

What does an electrical research engineer do?

An Electrical Research Engineer is responsible for designing, developing, and testing new electrical systems, components, or devices. They often work in laboratories or research facilities, conducting experiments and analyzing data to solve complex engineering problems. Their work supports advancements in fields like telecommunications, power systems, electronics, and renewable energy. Electrical Research Engineers collaborate with multidisciplinary teams to innovate and improve electrical technologies, ensuring safety, efficiency, and reliability.

What are the key skills and qualifications needed to thrive as an electrical research engineer?

To thrive as an Electrical Research Engineer, you need a solid background in electrical engineering principles, circuit design, and data analysis, typically supported by at least a bachelor's or master's degree in electrical engineering or a related field. Familiarity with simulation tools (such as MATLAB, SPICE), laboratory instrumentation, and industry standards or certifications (like IEEE membership) is often required. Strong problem-solving abilities, creativity, and effective communication are crucial soft skills for innovating and collaborating within research teams. These skills and qualifications are essential for advancing new technologies, ensuring project success, and driving innovation in the field.

What types of projects do electrical research engineers typically work on, and how do they collaborate with other teams?

Electrical Research Engineers often work on projects involving the development and testing of new electrical devices, systems, or technologies, such as advanced circuit designs, renewable energy integration, or automation solutions. Collaboration is a key part of the role; engineers frequently work with multidisciplinary teams—including software developers, mechanical engineers, and project managers—to ensure successful project outcomes. Regular team meetings, joint problem-solving sessions, and cross-functional documentation are typical, making strong communication and teamwork skills essential.

What is the difference between Electrical Research Engineer vs Electrical Design Engineer?

AspectElectrical Research EngineerElectrical Design Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering; often involved in research projectsBachelor's or Master's in Electrical Engineering; focuses on designing electrical systems
Work EnvironmentResearch labs, R&D departments, academic institutionsDesign offices, manufacturing facilities, construction sites
Employer & Industry UsageResearch institutions, tech companies, universitiesElectrical engineering firms, manufacturing companies, construction firms
Common Search & Comparison IntentUnderstanding research roles in electrical engineeringUnderstanding design roles in electrical engineering

Electrical Research Engineers primarily focus on developing new electrical technologies and conducting experiments in research settings. In contrast, Electrical Design Engineers concentrate on creating practical electrical systems and components for real-world applications. Both roles require similar educational backgrounds but differ in their work environment and objectives.

Infographic showing various Electrical Research Engineer job openings in Toronto, ON as of August 2026, with employment types broken down into 1% Internship, 1% As Needed, 85% Full Time, 11% Part Time, and 2% Contract. Highlights an 83% Physical, 6% Hybrid, and 11% Remote job distribution.

Lead Staff Electrical Engineer

Armstrong Fluid Technology

Toronto, ON • On-site

Other

Re-posted 7 days ago


Job description

Imagine working at the forefront of innovation in fluid-flow technology, with over 1,400 colleagues across the globe and eight manufacturing facilities on four continents. Armstrong Fluid Technology is a community of the brightest and most creative minds, driven by a shared mission to engineer the future and safeguard our planet.

In this role, you will research, design, and develop the electrical systems at the heart of a next-generation critical infrastructure product — serving one of the fastest-growing and most demanding applications in our industry. The electrical scope spans the full power chain: automatic transfer switches, VFDs and motor controllers, pumps, disconnect switches, redundant power supplies, motor protection breakers, and overall electrical safety of the product.


This is a standardized product development role. The product will be manufactured on scale, so every electrical design must be repeatable and reliable, released with standard Bills of Materials (BOMs), controlled drawings, and clearly documented functionality. You will mature the product from proof-of-concept prototypes through pre-production and into production, working alongside mechanical, hydraulic, controls, and embedded software engineers.


Key Accountabilities

Electrical Research, Design & Development

  • Design the complete electrical architecture of the product: dual-feed 3-phase power input, automatic transfer switch, disconnect switches, branch circuit protection, and motor breakers — with protective devices selected and coordinated for high-fault-current environments.
  • Research, select, integrate, and validate electrical systems — designed for production and serviceability.
  • Design redundant control power supplies, precision power metering, and a spill-protected electrical panel with service-accessible breakers and connectors.

Electrical Safety & Regulatory Compliance

  • Own the electrical safety design of the product: protective device selection and coordination, grounding and bonding
  • Drive global product safety and EMC compliance
  • Ensure designs conform to applicable electrical codes and standards (NEC/CEC, UL/CSA/IEC, IEC 61439 and 60204-1, IEEE 519, NFPA 70E), and drive the required product certifications
  • Support electrical DFMEA/risk assessments and design reviews

Standardized Product Development & Release

  • Develop electrical designs as standard, repeatable products
  • Mature the design through structured prototype phases
  • Collaborate with different disciplines and represent electrical design in technical reviews.

What We’re Looking For

Education and Experience

  • Bachelor’s or master’s degree in electrical engineering
  • Eng designation is required
  • Minimum 10 years of experience designing industrial or mission-critical electrical systems
  • Proven experience in designing industrial automation electrical systems
  • Hands-on experience taking a product through regulatory requirements for global markets.
  • Demonstrated experience with engineering change management, BOM and drawing release, and configuration control within a formal product development lifecycle
  • Proven experience in designing and developing electrical panels including load analysis

Technical Skills

  • Electrical Power Systems & Rotating Machines system knowledge
  • Industrial panel design including all the electrical components
  • Safety, EMC & Integration
  • Instrumentation integration
  • Critical infrastructure, mission-critical power, or HVAC product experience is a strong asset
  • HVAC equipment and its electrical characteristics — chillers, air-handling units, cooling towers, fans, pumps, compressors, and heat pumps — including how such equipment is powered, started, controlled, and protected
  • Power distribution — 3-phase distribution, switchgear and disconnects, transformers, automatic transfer switches, branch-circuit protection, load balancing, and short-circuit and protective-device coordination studies
  • Power supplies and power metering — redundant and UPS control power, DC power supplies, and precision power and energy metering for power-quality monitoring
  • Motors and drives — AC induction and permanent-magnet motors, VFDs and soft starters, motor starting and protection, drive parameterization, and harmonics mitigation

Standards & Codes

  • Electrical codes — National Electrical Code (NFPA 70) and Canadian Electrical Code (CSA C22.1)
  • Product and machinery safety — UL/CSA/IEC 60335 and 60730, UL 508A (industrial control panels), and IEC 60204-1 (electrical safety of machinery)
  • Assemblies and switchgear — UL 891 and IEC 61439 low-voltage assemblies, including SCCR determination
  • Electromagnetic compatibility — FCC Part 15, CISPR 11 / EN 55011, and the IEC 61000 series
  • Power quality and rotating machines — IEEE 519 (harmonics), NEMA MG 1 and IEC 60034
  • Workplace and arc-flash safety — NFPA 70E and CSA Z462
  • HVAC and energy efficiency — ASHRAE 90.1, AHRI ratings, and applicable refrigeration-safety standards

Soft Skills

  • Ability to simplify complex problems, conduct root cause analysis, and provide clear recommendations.
  • A product mindset — designing for repeatability, reliability, and scale, with the discipline to follow standard documentation and release processes.
  • An ability to communicate openly and authentically in all situations.


Why Armstrong Fluid Technology?

By joining us, you’ll become part of a global community pushing the boundaries of fluid-flow technology while upholding Armstrong’s commitment to sustainability. Together, we’ll build tomorrow’s solutions today.