Principal Product Design Engineer

E Solutions

  • Indianapolis, Indiana
  • 2 days ago

    Highlights

    Lead DFM/DFA, large-assembly, weldment, sheet-metal, machining, GD&T, tolerance, fastening, sealing, shielding, thermal/airflow, and serviceability reviews. Convert lessons from production, FAT, installation, service, suppliers, and customers into controlled designs and retained knowledge.

    Numbers & Facts

    LocationIndianapolis, Indiana

    Description

    Scope and Decision Rights

    • Own recommended product-design standards, methods, review criteria, and technical practices subject to approved governance.
    • Lead or delegate qualified technical reviews and make release-readiness recommendations.
    • Require unresolved safety, regulatory, interface, manufacturability, analysis, testability, or configuration concerns to be addressed before release.
    • Provide technical direction and mentoring without assuming people-management authority unless assigned.
    • Escalate significant technical deviations and risks to the Director and accountable functions.

    Essential Duties and Responsibilities

    • Define product architecture, modularity, reusable assemblies, design rules, interfaces, and technical standards.
    • Lead DFM/DFA, large-assembly, weldment, sheet-metal, machining, GD&T, tolerance, fastening, sealing, shielding, thermal/airflow, and serviceability reviews.
    • Lead the most complex product designs, first-of-kind systems, prototypes, design corrections, and technical investigations.
    • Ensure complete models, drawings, BOMs, specifications, analyses, design verification, and controlled changes.
    • Partner with Manufacturing Engineering on process capability and production readiness while retaining product-design authority.
    • Mentor Levels 1 through 3 through reviews, coaching, paired work, and standards development.
    • Convert lessons from production, FAT, installation, service, suppliers, and customers into controlled designs and retained knowledge.

    Working Interfaces

    • Product Management: product strategy, requirements, priorities, standard-versus-custom decisions, commercial targets, and product-performance feedback.
    • Manufacturing Engineering: DFM/DFA, process capability, factory-flow, tooling, standard-work, capacity, and production-readiness feedback.
    • Automation & Electrical Systems: controls/electrical architecture, panel requirements, equipment wiring interfaces, I/O, safety functions, and test readiness.
    • Advanced Manufacturing and Plant Operations: manufacturability, build sequence, material flow, fabrication, machining, assembly, installation, and production feedback.
    • GMP & Acceptance Testing: requirements traceability, document needs, FAT/SAT, deviations, acceptance criteria, and turnover.
    • Safety & Quality: design risk, code, safety, quality-system, inspection, nonconformance, and controlled-correction requirements.
    • Project Management and Procurement: schedules, estimates, approved changes, suppliers, material capability, lead times, and technical clarifications.

    Required Skills and Abilities

    • Expert mechanical/product design, large assemblies, sheet metal, weldments, machining, GD&T, tolerances, materials, and DFM/DFA.
    • Advanced CAD/PDM, drawing, BOM, configuration-control, analysis, prototype, test, and root-cause capability.
    • Ability to influence cross-functional decisions through evidence and technical judgment.
    • Strong mentoring, facilitation, technical writing, and customer communication.

    Education and Experience

    • Bachelor’s degree in Mechanical Engineering or related field; advanced degree preferred but not required.
    • Typically 10 or more years of progressive product-design experience with recent hands-on DFM responsibility.
    • Demonstrated success releasing products manufactured, assembled, tested, documented, and improved through multiple cycles.

    Success Measures

    • Product platforms are reusable, maintainable, manufacturable, documented, and scalable.
    • Technical risks and integration defects are identified before production and FAT.
    • Engineers demonstrate measurable growth in judgment, drawing quality, and design ownership.
    • Prototype and factory lessons become standards and controlled product improvements.

    Physical and Work Requirements

    • Prolonged CAD, analysis, and technical-review work.
    • Regular presence in fabrication, assembly, test, and production.
    • Supplier, customer, and field travel as required.
    • PPE and site-safety compliance.

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