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Who’ll You Be Joining:
Our Hardware team is made up of engineers with a wide variety of specialties, skill sets, backgrounds, and experiences ranging from HVAC control to RF design, digital logic, avionics, test fixtures, embedded software development, PCB layout and power electronics. They aim to bring their wide experience to the cross-functional squads that they are a part of, with a focus on collaboration, learning, development.
As a Staff Verification Engineer, you will be at the forefront of validating and delivering high-reliability products and test systems for next-generation hardware. This role is ideal for a hands-on engineer who thrives in a fast-paced environment and enjoys working across electrical, mechanical, RF, and software domains. You’ll own the full lifecycle in executing complex test systems—from concept and design to automation and compliance ensuring our products meet the highest standards of performance, reliability, and regulatory readiness.
You will be working up to 4 days a week onsite from our Downtown Toronto or Waterloo office. How You’ll Make an Impact: Test Planning & Verification
- Create and execute engineering design verification (DV) test plans using circuit design knowledge and best practices for DUT bench testing.
- Translate ambiguous test requests into clear, peer-reviewable specifications including schedules, risk registers, and success metrics.
- Perform engineering assessments of test and verification activities against real-world product applications.
- Prepare and execute reliability test plans to support warranty and service life targets.
- Conduct HALT/ALT testing to expose vulnerabilities and improve design robustness.
- Analyze experiment results and peer test reports to issue formal approval or rejection.
- Create thorough documentation and reports for all tests performed.
- Root-cause factory issues by isolating failures at the system and component levels using design and manufacturing knowledge.
- Perform PFMEAs and define test coverage for high-volume production builds.
- Execute cost-benefit and risk analyses to optimize test and verification decisions.
- Identify and validate alternate components to reduce BOM cost or mitigate supply chain risks.
- Provide recommendations on design integrity and readiness for mass production.
- Identify and escalate design risk factors, proposing alternatives with cross-functional considerations.
- Monitor schedules and escalate risks related to verification, compliance, and fixture delivery deadlines.
- Collaborate with cross-functional teams (firmware, regulatory, manufacturing, design) to align test activities and results.
- Recommend and drive improvements to test methods, reports, procedures, and fixtures.
- Contribute to the continuous improvement of design verification and automation processes across programs.
- Provide mentorship to team members to follow best practices for test execution
- Design, simulate, and match antennas for Wi-Fi, BLE, and Sub-GHz bands; validate performance using VNAs, spectrum analyzers, and OTA chambers.
- Coordinate pre-validation and regulatory test activities with firmware and compliance teams, including timing, margin analysis, and documentation.
- Research and execute applicable UL, CSA, IEC, and other international standards.
- Perform environmental, ESD, surge, EFT, and compliance testing of products.
- Adapt fixture and RF designs mid-cycle in response to evolving product requirements without impacting delivery timelines.
- Design and build test instrumentation systems to standardize and automate data capture across multiple DUTs.
- Build and iterate custom verification fixtures to enhance repeatability, scope, and throughput.
- Create production test plans, scripts, and fixtures for manufacturing validation.
- Develop Python-based scripts to interface with SCPI instruments, analyze datasets, and visualize results.
- Propose and implement automation and verification improvements from concept through deployment.
- Conduct and review Gage R&R analyses, yield reports, and test issue resolutions.
- Develop block diagrams, controlled-impedance schematics, and multi-board PCB layouts; lead design reviews and incorporate feedback.
- Design PCBs for prototypes, fixtures, and development tools.
- Prototype and validate new circuits before inclusion in production designs.
- Perform precision hand-soldering of micro-coax, 0201 passives, and BGA rework when needed.
- Build mechanical and electrical test fixtures supporting repeatable, high-throughput testing.
- Bachelor’s or Master’s degree in Electrical Engineering, Computer Engineering, or a related field.
- 7+ years of experience in hardware development, test automation, and regulatory compliance.- Proficiency in PCB design tools, SolidWorks, and Python-based data analysis.
- Strong understanding of RF principles and hands-on experience with lab instrumentation.
- Excellent communication and project management skills.
Just so you know: The hired candidate will be required to complete a background check.
What Happens After You Apply Application review. It will happen. By an actual person in Talent Acquisition. As we sometimes get upwards of 100+ applications for some roles, it can take a few days, but every applicant can expect a note regarding their application status.
Interview Process
- Round 1: Talent Acquisition Interview (30 minutes)
You’ll start with a phone conversation with a member of our Talent Acquisition team. This is an opportunity to learn more about ecobee, the role, and share your background and interests.
- Round 2: Hiring Team Interview (1 hour virtual)
Next, you’ll meet with the Senior Manager, Hardware Engineering, a Director of Hardware Engineering, and our VP of Hardware Engineering. This discussion will focus on getting to know one another, exploring your professional journey, and diving into some technical topics related to the role.
- Round 3: Technical Case Study + Final Interview (1 hour virtual)
Candidates who move forward will be invited to complete a technical case study, which you’ll have one week to work on. You’ll then present your approach and findings in a final virtual interview with members of the Hardware team.