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Responsible for the end‑to‑end development of vehicle components and systems, from concept through production release.
Job Responsibility:
Create and develop components using 3DX CAD
Apply GD&T principles and perform dimensional variation analysis
Conduct system and component-level design
Design to meet Voice of Customer, regulatory, functional, quality, DFA, DFS, packaging, and clearance requirements
Utilize validation methods including CAE, physical testing, and analytical techniques
Assess tooling, manufacturing, supplier sub‑assembly, and vehicle assembly feasibility
Evaluate surface feasibility, fit & finish, and craftsmanship
Perform interface and assembly feasibility studies
Maintain comprehensive design documentation and quality history
Support technical reviews using DFMEA, DVPR, SCCAF, PFMEA, Control Plans, Robustness Checklists, Demonstration Matrices, Boundary Diagrams, Interface Matrices, and P‑Diagrams
Develop and manage engineering transmittals, feature definitions, and related documentation for electrical and software interfaces
Utilize PLM systems to control design data and release processes
Manage engineering timing to support prototype builds, validation phases, and program milestones
Prepare RFQ packages and support sourcing activities
Evaluate and track landed cost, vendor tooling, ED&T, and other financial impacts
Oversee development expenses including prototype parts, tooling, and engineering-related costs
Requirements:
Strong 3D design capability
Deep understanding of engineering requirements
Ability to collaborate across cross‑functional teams
Ability to design parts independently using 3DX CAD
Knowledge of GD&T principles and dimensional variation analysis
Ability to conduct system and component-level design
Ability to design to meet Voice of Customer, regulatory, functional, quality, DFA, DFS, packaging, and clearance requirements
Knowledge of validation methods including CAE, physical testing, and analytical techniques
Ability to assess tooling, manufacturing, supplier sub‑assembly, and vehicle assembly feasibility
Ability to evaluate surface feasibility, fit & finish, and craftsmanship
Ability to perform interface and assembly feasibility studies
Ability to maintain comprehensive design documentation and quality history
Ability to support technical reviews using DFMEA, DVPR, SCCAF, PFMEA, Control Plans, Robustness Checklists, Demonstration Matrices, Boundary Diagrams, Interface Matrices, and P‑Diagrams
Ability to develop and manage engineering transmittals, feature definitions, and related documentation for electrical and software interfaces
Ability to utilize PLM systems for BOM management and design data release
Ability to manage engineering timing to support prototype builds, validation phases, and program milestones
Ability to prepare RFQ packages and support sourcing activities
Ability to evaluate and track landed cost, vendor tooling, ED&T, and other financial impacts
Ability to oversee development expenses including prototype parts and tooling