Systems Engineer
At Ford, you’ll work on ideas that matter, alongside passionate people who want to make a global impact.
Overview
At Ford, you’ll work on ideas that matter, alongside passionate people who want to make a global impact. Together, we’re shaping the next era of transportation—grounded in purpose, driven by progress. Make your move.
We made history and now we work to transform the future – for our customers, our communities and our families. You'll see your work on the road every day, helping people move freely and pursue their dreams. At Ford, you can build more than vehicles. Come build what matters.
Ford’s Electric Vehicles, Digital and Design (EVDD) team is charged with delivering the company’s vision of a fully electric transportation future. EVDD is customer-obsessed, entrepreneurial, and data-driven and is dedicated to delivering industry-leading customer experience for electric vehicle buyers and owners. You’ll join an agile team of doers pioneering our EV future by working collaboratively, staying focused on only what matters, and delivering excellence day in and day out. Join us to make positive change by helping build a better world where every person is free to move and pursue their dreams.
In this position... Join our dynamic and agile team pioneering Ford's EV future. As the Integrated Thermal Systems Engineer, you will be the hands-on technical integrator for the complete thermal management system - the person who takes the architecture and requirements and makes them real across the coolant, refrigeration, and climate/HVAC subsystems. You will work day-to-day with the three subsystem owners to resolve interfaces, integrate their models, run the system-level trade studies, and turn analysis into clear recommendations that drive decisions.
What you'll do...
You will execute and deliver the integrated thermal system under the technical direction of the Thermal Engineering Manager.
Execute and maintain the thermal system architecture, keeping the system block diagrams and interface definitions current as the design evolves.
Work with subsystem owners to decompose vehicle and system level requirements into consistent, traceable subsystem interface requirements, and maintain traceability from vehicle targets through to each subsystem owner's component specifications.
Integrate the individual subsystem plant models (coolant, refrigeration, climate) into a cohesive system-level model, and use it to analyze energy flows, dynamic behavior, and mode transitions across the full operating envelope.
Perform system-level trade-off studies and present decision-ready recommendations to Thermal Engineering manager for review.
Work day-to-day with the coolant, refrigeration, and climate subsystem owners to ensure their component specifications, selections, and models align at the interfaces and integrate cleanly into the system.
Posted August 5, 2026