Build a career powered by innovations that matter! At Novanta, our innovations power technology products that are transforming healthcare and advanced manufacturing—improving productivity, enhancing people’s lives and redefining what’s possible. We create for our global customers engineered components and sub-systems that deliver extreme precision and performance for a range of mission-critical applications—from minimally invasive surgery to robotics to 3D metal printing.
Novanta is one global team with over 26 offices located in The Americas, Europe and Asia-Pacific. Looking for a great place to work? You have found it with a culture that embraces teamwork, collaboration and empowerment.
Novanta Robotics and Automation (R&A) delivers advanced motion control solutions that enable precision, efficiency, and reliability in demanding industrial and medical applications. With decades of expertise in motion and control, Novanta R&A partners closely with customers to solve complex system-level challenges and bring differentiated products to market.
The Hardware Engineer role within Novanta R&A focuses on the development of robust, high-performance electronics for the different motion control products within the group. The position involves system-level design of motion control solutions and detailed design of control electronics, power management, and communication interfaces for industrial and medical motion applications. Working closely with cross-functional teams and customers, the role supports both standard platforms and customized solutions from concept through production, with a strong emphasis on reliability, manufacturability, and long-term product performance.
The selected engineer will be focused on the hardware design of the Servo Drives division, potentially collaborating in any of the R&A products design. The position requires good hardware skills but also a deep understanding of design for manufacturing and reliability.
Come join a team of deeply knowledgeable engineers that strive to build the most reliable, efficient motion control systems using the newest development tools and practices as well as state of the art power electronics.