The Project Engineering team is a multidisciplinary engineering group within Automation Engineering Group, bringing mechanical, electrical, and controls engineering together under a single organization. The team serves as the engineering escalation path for the deployed fleet, taking on problems that exceed field-level troubleshooting and converting them into scoped, engineered, and standardized solutions.
The team’s work spans three connected areas. The first is the troubleshooting of complex problems: diagnosing multi-discipline failures across deployed robotic systems and engineering permanent, root-cause fixes rather than repeat repairs. The second is continuous improvement: converting recurring issues and field data into reliability upgrades and fleet-wide standardization. The third is support for existing and new product development and enhancements, in partnership with teams across the organization, to improve equipment currently in the field and to bring new capability online.
Positioned at the intersection of design, commissioning, and field support, the team operates as a cross-functional unit, with engineers at the Bolingbrook hub working alongside field implementation resources across North America. The work is a deliberate blend of reactive support and proactive engineering, and each role on the team contributes to uptime, performance consistency, and long-term customer outcomes across the fleet.
As a Robotics & Automation Project Engineer, you will apply advanced engineering principles to the design, analysis, optimization, reliability, and continuous improvement of deployed robotic systems. You will independently evaluate complex, multidisciplinary technical problems, develop engineered solutions, and exercise technical judgment in determining how those solutions are designed, validated, and implemented across Formic’s fleet in demanding production environments.
This role blends reactive support with proactive engineering. You will diagnose complex issues, implement structured improvements, and partner cross-functionally to strengthen system stability across the fleet. Your work directly impacts uptime, performance consistency, and long-term customer outcomes.