Role OverviewAs a Mechanical Engineer, you will be responsible for researching, planning, designing, developing, and testing mechanical and electromechanical products and systems for advanced robotic and autonomous vehicle platforms. This role focuses on creating innovative mechanical solutions, supporting product development from concept through deployment, and ensuring designs meet performance, quality, reliability, and customer requirements.
What You Will Do
You will apply engineering principles to develop mechanical systems, components, equipment, machinery, controls, and robotic technologies. The role includes product testing, prototype development, design validation, fabrication support, and collaboration with cross-functional teams to deliver reliable and high-performing products.
Why It Might Be a Fit
You will contribute to moderately complex engineering projects while working both independently and collaboratively within a multidisciplinary environment. You will have the opportunity to work on a variety of projects, develop your skills, and advance your career in a dynamic and innovative company.
Requirements
- Bachelor's degree in Mechanical Engineering or a related engineering discipline; Master's degree preferred
- 5-7 years of professional Mechanical Engineering experience
- 5-7 years of experience in product design and machine design utilizing SolidWorks, Pro/ENGINEER (Creo), CATIA, or equivalent CAD platforms
- Strong proficiency in CAD modeling and SolidWorks design tools
- Experience developing and maintaining design documentation, engineering requirements, and design review records
- Hands-on experience performing and interpreting Finite Element Analysis (FEA)
- Ability to perform manual engineering calculations, including stress analysis and mechanical load calculations
- Strong understanding and practical application of Geometric Dimensioning and Tolerancing (GD&T)
- Proficiency with engineering and analytical tools such as MATLAB, Mathcad, or similar computational software
- Familiarity with Failure Modes and Effects Analysis (FMEA) methodologies
- Understanding of manufacturing processes, production methods, and design-for-manufacturing principles
- Knowledge of intellectual property concepts and familiarity with patent-related considerations
- Basic understanding of software development principles and software-integrated mechanical systems
- Experience working with systems involving heavy equipment, hydraulic systems, gearing mechanisms, motors, actuators, and electromechanical assemblies
- Strong problem-solving, analytical, and troubleshooting skills with the ability to identify root causes and implement effective engineering solutions
- Excellent communication and collaboration skills with the ability to work effectively in multidisciplinary engineering environments
Benefits
- Paid time off based on employee grade (A-F)
- Company paid holidays
- Personal Days
- Sick Leave
- Medical, dental, and vision coverage (or provincial healthcare coordination in Canada)
- Retirement savings plans (e.g., 401(k) in the U.S., RRSP in Canada)
- Life and disability insurance
- Employee assistance programs
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