Senior Mechanical Engineer - Electromechanical Platform Architecture
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About the role
Haemonetics designs and manufactures medical devices that separate blood components (e.g. apheresis devices) for therapeutic treatments, pharmaceutical industry, blood transfusions, and other diagnostic equipment to support the healthcare blood management industry. This is a key and critical role in the research and development team based at 125 Summer Street, Boston, MA. (5-minute walk from South Station) The qualified candidate will be a highly motivated Sr Mechanical Design Engineer for the overall concept, design, integration, reliability, and test of existing and next generation product enhancements. The candidate will be more than a Sr Mechanical Design Engineer, but also a Technical Leader who has demonstrated success in building technical foundational tools, infrastructure, and processes in the mechanical engineering discipline. Your responsibilities will include, but not limited to the following: Design, develop, and maintain medical device platforms that separate blood components (e.g. apheresis devices) for therapeutic treatments, blood transfusions, pharmaceutical industry, and diagnostic equipment to support the healthcare blood management industry. Technical Leader in a wide range of engineering disciplines including Material selections, thermal management, electromechanical, mechanisms, safety medical standards (IEC/ISO 60601 standard series, IVD 61010 standard series, etc.) compliance, design for reliability and planning, mechanical verification, and etc. Lead cross-functional technical team discussions following our design control process from product requirements, designs, verification, and product release while meeting our customers demanding requirements. Lead technical discussions with key component suppliers in the areas of materials selection, critical to quality specifications, trouble shooting, DOE capability, etc. Demonstrated technical development success in translating Customer/User requirements/needs into reliable low-cost product designs and launch products to market successfully. GD&T & assembly or component tolerance analysis is a MUST. Design & build mechanical prototypes and prove design feasibility, functionality, and performance. Document all phases of the design including requirements, specifications, plans, reviews, test procedures, test reports, and various DFX disciplines (e.g., design for manufacturing, design for reliability, design for serviceability.) Lead existing product failure investigations: Investigate and determine root cause of product issues and use DOE method to implement solutions.