Design and develop braking, steering, wheel, tire, and suspension concepts that improve cost, mass, efficiency, manufacturability, and serviceability for an autonomous security robot Challenge existing requirements and define new ones for system sizing, functions, and features based on regulations, first principles, and product attributes Appropriately scale automotive architectures for a smaller, lower-volume security robot Assess and validate the manufacturing, assembly, and service feasibility of design proposals Design, analyze, build, and test prototypes at the subsystem, system, and full-vehicle levels Evaluate braking, steering, ride, and handling attributes-both subjectively and objectively-in production vehicles, prototype vehicles, and simulation Collaborate closely with the autonomy team to ensure vehicle controllability Work with cross-functional teams to ensure product requirements are met Define and develop chassis control strategies and electrical architecture, and drive chassis software, electrical, and vehicle integration. Day to day, you will work closely with autonomy, electrical, and systems teams to ensure motion control performance meets the needs of the full stack, lead design reviews and failure analysis, mentor junior engineers, and establish best practices for testing and validation.