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McMaster Innovation Park
Canada, ON L8P 0A1

+1 (905) 9797 626

info@rozor.ai

Job Description:

We are looking for a Robotics Hardware Engineer / Mechatronics Engineer to design, prototype, and validate the hardware systems that power ROZOR robots.
This role involves end-to-end development of mechanical assemblies, electronics integration, actuator systems, and sensor mounting to ensure performance and safety under real-world operating conditions.

Your work will directly influence how ROZOR robots behave, navigate, and withstand daily use in dynamic indoor environments.

Responsibilities:

  • Design mechanical components, chassis structures, mounts, and sensor housings
  • Develop and integrate electronic systems: PCBs, wiring harnesses, power distribution, motor controllers
  • Select and configure actuators, motors, gearboxes, and drivetrain components
  • Integrate cameras, LiDAR, IMUs, ultrasonic sensors, depth sensors, and compute units
  • Perform prototyping, 3D printing, machining, and iterative hardware testing
  • Collaborate with embedded and autonomy teams to ensure compatibility between hardware and software
  • Conduct mechanical and environmental stress tests to validate durability
  • Optimize hardware for manufacturability, assembly, and field serviceability
  • Troubleshoot hardware issues on ROZOR robots during development and deployment
  • Support field testing, reliability improvements, and design revisions

Preferred Qualifications:

  • Bachelor’s/Master’s in Mechanical Engineering, Mechatronics, Robotics, Electrical Engineering, or related field
  • 2+ years experience in robotics, mechatronics, or hardware development
  • Proficiency in CAD (SolidWorks, Fusion 360, Onshape, etc.)
  • Experience designing mechanical assemblies for motion systems
  • Strong understanding of sensors, motors, and electronics integration
  • Ability to read schematics and collaborate with electrical and embedded teams
  • Experience with rapid prototyping and hands-on fabrication
  • Knowledge of material selection, tolerancing, and DFM principles
  • Strong problem-solving and debugging skills in hardware environments
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