Lead Handles Development Engineer
Location
United States
Start and end date
26 Oct 2026 – 03 Oct 2027
Indicative hourly rate
$42 – 45/hr
Respond by
20 Oct 2026
Skills
Design for Manufacturability, Working Model, Injection molding, Engineering, Failure Mode & Effects Analysis, Catia, Manufacturing processes, Six Sigma, Enovia, Microsoft Excel, Geometric Dimensioning & Tolerancing, Electronics, TeamcenterDesign for Manufacturability, Working Model, Injection molding, Engineering, Failure Mode & Effects Analysis, Catia, Manufacturing processes, Six Sigma, Enovia, Microsoft Excel, Geometric Dimensioning & Tolerancing, Electronics, Teamcenter View all
Overview
Our client is seeking high‑caliber Lead Engineers to drive the end‑to‑end development of exterior and interior door handle systems across multiple current production vehicle programs. This role partners closely with the client's supplier base to re‑engineer handle mechanisms using existing architectures with new suppliers, delivering production‑ready solutions on an accelerated timeline.
Each Lead Engineer will own a specific handle architecture and its variants, serving as the primary technical point of contact from concept through production launch.
Key Responsibilities
Lead supplier partners through an accelerated ("go‑fast") design‑to‑production development process for door handle opening systems
Own overall technical delivery for assigned handle architectures, including exterior and interior handle mechanisms
Manage suppliers through all development phases, ensuring parts are released for production tooling
Ensure all tooled parts are validated and approved per PPAP requirements
Drive program timing, milestone compliance, and deliverable readiness; proactively identify and resolve risks
Communicate program status, issues, and recovery plans to the client's management and cross‑functional stakeholders
Essential Duties
Collaborate closely with suppliers to develop robust, production‑ready designs
Track development plans and delivery milestones to achieve scheduled PPAP timing
Perform and lead design, CAD, and drawing reviews
Coordinate and review analytical verification activities (simulation, calculations, tolerance stack‑ups, T&E)
Ensure designs comply with engineering best practices, the client's standards, and system requirements (Health Charts / Checklists)
Coordinate technical development activities, schedules, and resolution of engineering issues
Integrate product, process, and lessons‑learned issues into DFMEA documentation
Coordinate supplier validation testing and review test plans and reports
Coordinate the client's internal vehicle‑level and subsystem validation testing
Maintain regular communication with internal the client's teams and external suppliers
Prepare interim and final project reports and technical presentations
Release components for production (WERS) and support production issues (SREA, Alerts)
Manage supplier design data within the client's systems (CAD models, drawings, CAE data)
Required Qualifications
10+ years of experience in mechanical mechanism development, preferably in latching systems, door handles, or exterior mechanisms
Strong knowledge of engineering plastics and steels, including manufacturing processes such as injection molding, stamping, and casting
Experience performing and/or leading tolerance analysis studies
Proficiency with DFMEA and related quality tools, including:
Boundary/Parameter Diagrams
Requirements Decomposition Matrix (RDM)
Interface Matrices
DVP&R, DOE, SPC, statistical analysis
Problem‑solving methodologies (5D, 8D, 6‑Panel, Six Sigma)
Solid understanding of DFM/DFA and GD&T principles
Experience reviewing and working in CATIA V5/V6
Familiarity with Teamcenter / ENOVIA for CAD data management
Strong written and verbal communication skills
Proficiency with Microsoft Office (Excel, Word, PowerPoint)
Preferred Qualifications
Experience with water management and sealing design
Knowledge of greases and painted plastics
Familiarity with embedded electronics such as microswitches and small wiring harnesses
Experience with tolerance analysis tools such as C‑Tol, 3DCS, Enventive, or VSA
Experience with CAE tools such as ADAMS, Working Model, CATIA FEA, HyperMesh, or similar
Requirements
Skills
Design for Manufacturability — Intermediate
Working Model — Intermediate
Injection molding — Intermediate
Engineering — Intermediate
Failure Mode & Effects Analysis — Intermediate
Catia — Intermediate
Manufacturing processes — Intermediate
Six Sigma — Intermediate
Enovia — Intermediate
Microsoft Excel — Intermediate
Geometric Dimensioning & Tolerancing — Intermediate
Electronics — Intermediate
Teamcenter — Intermediate
Languages
English — Professional working proficiency