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Module Lead - Body in White Upper body

BMW TechWorks · Pune, Maharashtra, India

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What awaits you/ Job Profile

  • You will lead the development of Body Side & Fixed Roof BIW structures, translating styling intent (CAS/Class-A surfaces) into robust, manufacturable engineering solutions aligned with premium vehicle standards.
  • You will collaborate closely with global stakeholders, including Munich COC teams and cross-functional engineering groups, driving alignment across design, CAE, manufacturing, and suppliers.
  • You will be part of a high-performance culture that values engineering excellence, innovation, and continuous improvement, while guiding your module team
  • This role offers strong leadership visibility and career progression, enabling you to influence full vehicle programs and contribute to cutting-edge automotive product engineering.
  • Lead BIW module delivery within the Digital Product Engineering cluster (Unit CAD – Body Structures), ensuring quality, timing, cost, and weight targets are consistently achieved.
  • Drive collaboration with design studios to ensure seamless integration of styling intent into engineering feasibility while maintaining structural integrity and manufacturability.
  • Mentor and guide a team of engineers, fostering technical capability, design best practices, and program ownership mindset.
  • Operate in a fast-paced global environment, actively contributing to cross-functional decision-making, risk mitigation, and continuous knowledge sharing across projects. What should you bring along
  • Strong expertise in BIW design and development, with deep understanding of body structures, vehicle architecture, and integration of styling intent into engineering solutions.
  • Proven leadership and collaboration skills, with the ability to effectively work with global design, CAE, manufacturing, and program teams, including close coordination with Munich stakeholders.
  • Excellent communication skills in English; knowledge of German is an added advantage.
  • Bachelor’s or Master’s degree in Mechanical / Automotive Engineering or a related field.
  • Minimum 15+ years of experience in automotive BIW design & development, with successful delivery of at least 2 full vehicle programs from concept to production.
  • Strong proficiency in CAD tools (CATIA V5/V6, 3DX) and PLM systems, along with good knowledge of GD&T, manufacturing processes, and product validation.
  • Demonstrated ability to lead teams, manage complex projects, and drive decision-making in a matrix organization.
  • Proactive, result-oriented mindset with strong ownership, problem-solving capabilities, and focus on quality, cost, and timeline adherence. Must have technical skill
  • Proficiency in CAD tools such as CATIA V5/V6 / 3DX, with strong experience in 3D modeling, detailing, and drawing release.
  • Solid knowledge of GD&T, tolerance stack-up analysis, and dimensional management principles.
  • Good understanding of vehicle architecture, crash requirements, and structural performance considerations.
  • Experience working with PLM tools (Teamcenter, ENOVIA, or equivalent) for data management and engineering release processes.
  • Strong ability to translate Class-A (CAS) surfaces into feasible BIW design while maintaining styling intent and manufacturability.
  • Familiarity with design validation processes, including interaction with CAE for structural, durability, and safety requirements.
  • Experience in cost optimization, weight reduction, and value engineering methodologies.
  • Good understanding of supplier tooling, manufacturing feasibility, and production readiness (Tooling & SOP phases).
  • Exposure to digital engineering tools, automation, and emerging technologies (e.g., parametric design, AI-assisted engineering) is an added advantage. Good to have skills
  • Exposure to Design for Manufacturing (DfM) and Design for Assembly (DfA) principles, ensuring optimized and production-ready BIW designs.
  • Experience in early concept feasibility assessment, supporting rapid design iterations while maintaining engineering robustness and program constraints.
  • Familiarity with dimensional validation, tolerance management, and integration of styling inputs into BIW feasibility studies.
  • Exposure to digital engineering practices, including automation, parametric modelling approaches, and emerging technologies in product development.
  • Ability to support innovation, lightweighting, and cost optimization initiatives during concept and development phases.