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We are looking for a Principal Process Development Engineer to lead the supplier-facing process development and manufacturing-transfer strategy for Magnendo’s proprietary magnetically deflectable guidewires and manufacturing supply chain.Â
You Will:Â
Lead the supplier-facing process development and manufacturing-transfer strategy for Magnendo’s proprietary polymer and guidewire manufacturing supply chain.Â
Translate prototype-process learning into supplier-ready material specifications, process specifications, inspection methods, test methods, and manufacturing-transfer packagesÂ
Translate R&D formulations, prototype builds, and early process knowledge into a robust, scalable, supplier-enabled manufacturing path for Magnendo’s proprietary magnetic polymers and steerable guidewiresÂ
Lead the process-development and manufacturing-transfer strategy , from prototype-scale development through pilot production, design transfer, and commercial manufacturing readinessÂ
Identify, evaluate, select, qualify, and develop the external suppliers, including compounders, additive-processing specialists, extrusion houses, catheter and guidewire contract manufacturers, coating suppliers, sterilization vendors, analytical laboratories, and specialty wire and component suppliersÂ
Work with the QA team to define supplier requirements, process controls, validation strategies, and transfer plans, including TMV, IQ/OQ/PQ, control plans, incoming and in-process inspection, lot-release testing, and process-capability targetsÂ
Anticipate technical, quality, supplier, and scale-up risks; develop practical alternatives and mitigation plans; and drive issues to resolution before they become program risksÂ
You Are:Â
An experienced engineer with 10+ years of experience in medical-device process development, supplier development, manufacturing engineering, polymer processing, catheter or guidewire manufacturing, or related interventional-device manufacturingÂ
Experienced in the development, outsourcing, manufacturing, and regulated transfer of interventional medical devices, preferably neurovascular devicesÂ
Experienced translating novel polymer-based technologies from R&D prototypes into supplier-controlled manufacturing processesÂ
Successful in transferring interventional medical devices, novel materials, polymer-based components, catheter or guidewire components, or other complex medical-device technologies into manufacturing and through FDA-cleared or FDA-approved product developmentÂ
Proactive, creative, and practical, with the ability to anticipate problems, challenge assumptions, develop alternatives, and drive solutions across internal teams and external partnersÂ
Knowledgeable in medical-device manufacturing and design controls, including ISO 13485, 21 CFR Part 820, ISO 14971, verification and validation, sterilization, biocompatibility, and regulated manufacturing documentationÂ
Experienced with medical-grade thermoplastic polymers and knowledgeable in polymer compounding, additive treatment and dispersion, drying and material handling, extrusion, molding, bonding, and coating compatibilityÂ
Experienced selecting, qualifying, developing, and managing external suppliers or contract manufacturers for medical-device development and manufacturing programsÂ
Completely familiar with, and able to deploy, Operational Excellence, Lean product and process development, design of experiments (DOE), root-cause analysis, or equivalent structured process-improvement methodologiesÂ
Experienced applying process-development and validation tools, including process characterization, pFMEA, control plans, TMV, IQ/OQ/PQ, process capability, incoming inspection, in-process inspection, and lot-release testingÂ
Adaptable and comfortable contributing as the primary process-development and manufacturing-transfer expert within a small, fast-moving team, while recognizing when specialized external support is neededÂ
An effective collaborator and communicator who thrives in an environment built on teamwork, transparency, accountability, and shared problem-solvingÂ
Bachelor’s degree in Polymer Science, Materials Science, Chemical Engineering, Mechanical Engineering, Biomedical Engineering, or a related technical fieldÂ
Bonus Points:Â
Advanced degree in Polymer Science, Materials Science, Chemical Engineering, Mechanical Engineering, Biomedical Engineering, or a related fieldÂ
Experience with additive-loaded, radiopaque, lubricious, magnetic, or otherwise functionalized polymer compoundsÂ
Experience developing polyurethane compounds containing micron-scale powders or functional additivesÂ
Experience with neurovascular guidewires, catheters, or other highly specialized interventional devicesÂ
Experience establishing or scaling a supplier network for an early-stage medical-device companyÂ
