In this position...
Ford is seeking a Feature Systems Engineer to architect and develop vehicle features at the systems level, from early concept through production, fusing systems and software engineering to create innovative in-vehicle digital experiences. This role owns the full engineering lifecycle for complex vehicle features-defining network, wiring, and power distribution topologies, authoring specifications and DFMEA/Failure Mode Avoidance documentation, and using Model Based Systems Engineering tools like MATLAB/Simulink and Python to validate control strategies through SiL testing. The ideal candidate will also build and maintain BDD/Gherkin test automation frameworks to ensure requirement-to-test traceability, while championing quality workshops and applying Six Sigma principles to drive continuous design improvement.
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.
What you'll do...
- Architect and develop features at the systems level-from early concept through production-including new features/feature upgrades/migrations, network/wiring/power distribution topologies, schematics, and block diagrams; allocate features to meet cost, quality, and performance targets.
- Develop feature/functional/implementation specifications, DFMEA/Failure Mode Avoidance documentation, verification plans, functional safety assessments, and cybersecurity assessments & mitigations.
- Use Model Based Systems Engineering tools (Python, C++, Matlab, Simulink, Stateflow, Magic Draw) to define logical architectures, develop/execute control strategies, and validate logic via SiL testing before implementation.
- Develop and maintain Behavior Driven Development scripts (Gherkin syntax), create/manage Step Definitions using the Behave package in Python, and ensure requirement-to-test traceability using tools like JAMA and Jira.
- Champion Failure Mode Avoidance/DFMEA workshops; apply 6 Sigma (DMAIC/DFSS) principles; analyze warranty/quality metrics (GQRS, AWS) to drive design improvements.
- Interact with product, program, and core engineering teams; lead trade-off discussions; develop relationships with multi-functional teams and suppliers to identify new technologies and cost/quality opportunities.
- Communicate complex systems, issues, and resolutions clearly and concisely; apply connected data & analytics to build deep customer understanding.
- Serve as a key specialist in next-generation vehicle development, fusing systems and software engineering to create innovative in-vehicle digital experiences; lead design, validation, and optimization of complex vehicle features.
What you'll do...
- Architect and develop features at the systems level-from early concept through production-including new features/feature upgrades/migrations, network/wiring/power distribution topologies, schematics, and block diagrams; allocate features to meet cost, quality, and performance targets.
- Develop feature/functional/implementation specifications, DFMEA/Failure Mode Avoidance documentation, verification plans, functional safety assessments, and cybersecurity assessments & mitigations.
- Use Model Based Systems Engineering tools (Python, C++, Matlab, Simulink, Stateflow, Magic Draw) to define logical architectures, develop/execute control strategies, and validate logic via SiL testing before implementation.
- Develop and maintain Behavior Driven Development scripts (Gherkin syntax), create/manage Step Definitions using the Behave package in Python, and ensure requirement-to-test traceability using tools like JAMA and Jira.
- Champion Failure Mode Avoidance/DFMEA workshops; apply 6 Sigma (DMAIC/DFSS) principles; analyze warranty/quality metrics (GQRS, AWS) to drive design improvements.
- Interact with product, program, and core engineering teams; lead trade-off discussions; develop relationships with multi-functional teams and suppliers to identify new technologies and cost/quality opportunities.
- Communicate complex systems, issues, and resolutions clearly and concisely; apply connected data & analytics to build deep customer understanding.
- Serve as a key specialist in next-generation vehicle development, fusing systems and software engineering to create innovative in-vehicle digital experiences; lead design, validation, and optimization of complex vehicle features.