NPME II

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About the position

Who We Are Applied Materials is a global leader in materials engineering solutions used to produce virtually every new chip and advanced display in the world. We design, build and service cutting-edge equipment that helps our customers manufacture display and semiconductor chips – the brains of devices we use every day. As the foundation of the global electronics industry, Applied enables the exciting technologies that literally connect our world – like AI and IoT. If you want to push the boundaries of materials science and engineering to create next generation technology, join us to deliver material innovation that changes the world. What We Offer Salary: \$78,500.00 - \$108,000.00 Location: Gloucester,MA, Newburyport,MA You’ll benefit from a supportive work culture that encourages you to learn, develop, and grow your career as you take on challenges and drive innovative solutions for our customers. We empower our team to push the boundaries of what is possible—while learning every day in a supportive leading global company. Visit our Careers website to learn more. At Applied Materials, we care about the health and wellbeing of our employees. We’re committed to providing programs and support that encourage personal and professional growth and care for you at work, at home, or wherever you may go. Learn more about our benefits.

Responsibilities

  • Participates in cross-functional Integrated Design Team (IDT).
  • Performs Manufacturing Engineering-related tasks supporting the development and successful release of evolutionary and revolutionary new products and configurable product offerings into High Volume Manufacturing (HVM) within the semiconductor capital equipment industry.
  • Develops, implements, and releases new product Bills of Materials (BOMs) for complex modules and configurable product architectures.
  • Creates and maintains Family Tree for new products to aid in proper product structure releases.
  • Participates in ergonomics & human factors evaluations.
  • Recommends and implements improvements to work area designs.
  • Identifies opportunities for tooling, fixturing and rigging solutions to enable safe and efficient transport of modules, testing of systems, and build and installation of subassemblies.
  • Develops, procures, tests, deploys and releases factory and field installation tooling and fixturing as needed.
  • Develops high level operational sequences for the build of subassemblies, module integration and final system assembly.
  • Evaluates work methods, procedures and policies.
  • Develops and maintains new business processes; edits as necessary to ensure current practices are documented.
  • Provides guidance to Tech Writers in the development and maintenance of Operation Method Sheets (OMS).
  • Actively participates in concept and design reviews.
  • Provides Design for X (DFX) feedback to new product development teams to drive adherence to quality, cycle time, cost and safety goals.
  • Analyzes complex designs to ensure Manufacturability, Producibility, Transportability, and Installibility.
  • Solicits feedback from other DFX stakeholders.
  • Maintains DFX scorecards for new products.
  • Participates in cross functional teams to develop and update DFX Best Known Methods (BKMs).
  • Performs root cause analysis for issues that arise during manufacture of piece parts, subassembly build, module integration, final assembly and/or test of systems; drives short & long-term corrective actions; provides failure analysis report as required.
  • Initiates, releases, approves and implements Engineering Change Requests (ECRs) and Engineering Change Orders (ECOs) as required to support design engineering and production floor with new products.
  • Participates in Change Control Board (CCB) to review ECRs and ECOs from development engineering.
  • Issues supplier waivers as needed to support forward compliance of ECOs or in response to acceptable non-conforming parts.
  • Performs Virtual Analysis and Virtual Build of 3D solid models for early identification of static and dynamic interferences, technician and tooling access restrictions, and unforeseen build complications, in order to reduce risk of late-stage, high-impact design changes.
  • Participates in Managed Build & Control Build process.
  • Estimates, then validates, labor hours and cycle times of new products.
  • Identifies gaps, develops mitigation plans to hit targets during HVM.
  • Ensures design and documentation packages are complete and accurate prior to transition to HVM work centers.
  • Develops and implements Plan for Every Part (PFEP) for new product releases.
  • Determines build / buy strategy.
  • Identifies subassemblies to transition to various internal work centers.
  • Develops part kitting schemes.
  • Maintains kit coding of parts for proper factory routing.
  • May coordinate outsourcing, resourcing or insourcing activities.

Requirements

  • Experience using 3D CAD systems.
  • Familiar with MRP systems and function.
  • Bachelor’s degree in an engineering discipline (i.e. mechanical, electrical, manufacturing, industrial).
  • Other education backgrounds considered with relevant professional experience.

Nice-to-haves

  • Specific experience with PTC Creo a plus.
  • Experience with mechanical analysis software packages, specifically ANSYS, also a plus.
  • SAP knowledge a plus.
  • Practical experience with lean continuous improvement a plus.

Benefits

  • Comprehensive benefits package
  • Participation in a bonus and a stock award program, as applicable
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