Sr Mechanical Manufacturing Engineer/Surgical Robotics-OTTAVA

Johnson & Johnson Santa Clara, California, United States of America Updated 24 September 2026
PharmaMedTechRegulatory AffairsQuality Assuranceemacroraveinform

Job description

At Johnson & Johnson, we believe health is everything. Our strength in healthcare innovation empowers us to build a world where complex diseases are prevented, treated, and cured, where treatments are smarter and less invasive, and solutions are personal. Through our expertise in Innovative Medicine and MedTech, we are uniquely positioned to innovate across the full spectrum of healthcare solutions today to deliver the breakthroughs of tomorrow, and profoundly impact health for humanity. Learn more at jnj.com As guided by Our Credo, Johnson & Johnson is responsible to our employees who work with us throughout the world. We provide an inclusive work environment where each person is considered as an individual. At Johnson & Johnson, we respect the diversity and dignity of our employees and recognize their merit. Job Function: Supply Chain Engineering Job Sub Function: Manufacturing Engineering Job Category: Scientific/Technology All Job Posting Locations: Santa Clara, California, United States of America Job Description: Johnson & Johnson Med Tech, a member of Johnson & Johnson's Family of Companies, is recruiting for a Senior Manufacturing Mechanical Engineer to join our team in Santa Clara, CA! At Johnson & Johnson, we believe health is everything. Our strength in healthcare innovation empowers us to build a world where complex diseases are prevented, treated, and cured, where treatments are smarter and less invasive, and solutions are personal. Through our expertise in Innovative Medicine and MedTech, we are uniquely positioned to innovate across the full spectrum of healthcare solutions today to deliver the breakthroughs of tomorrow and profoundly impact health for humanity. Learn more at https://www.jnj.com/ (https://www.jnj.com/ About Johnson & Johnson MedTech: J&J Robotics was established in 2020 with the integration of Auris Health, Verb Surgical, C-SATS, and Ethicon. It comprises three key med-tech platforms: Surgical Robotics (OTTAVA™), Flexible Robotics (MONARCH®), and Digital Solutions. Join our collaborative, rapidly growing team where you'll create breakthrough medical technologies that unite multiple subject areas to build a connected digital ecosystem that advances medical professionals' skills and improves patient outcomes. In this role, you will lead manufacturing engineering for the OTTAVA™ surgeon input device, the surgeon-facing control subsystem attached to the Physician Console that captures precise hand inputs used to remotely control surgical instruments and endoscopes. You will integrate mechanical, electrical, firmware, software, assembly, calibration, and test requirements to deliver robust and scalable production processes for this critical electromechanical subsystem. Fueled by innovation at the intersection of biology and technology, we’re developing the next generation of smarter, less invasive, more personalized treatments. Are you passionate about improving and expanding the possibilities of surgery? Ready to join a team that’s reimagining how we heal? Our Surgery team will give you the chance to deliver surgical technologies and solutions to surgeons and healthcare professionals around the world. Your contributions will help effectively treat some of the world’s most prevalent conditions such as obesity, cardiovascular disease and cancer. Patients are waiting. Your unique talents will help patients on their journey to wellness. Learn more at https://www.jnj.com/medtech Purpose: We are seeking a Senior Manufacturing Mechanical Engineer with drive and expertise in precision electromechanical devices and multi-axis controls to lead NPI, assembly, calibration, testing, validation, and industrialization for the OTTAVA™ surgeon input device. This role owns the complete manufacturing engineering lifecycle for surgeon input device assemblies, including precision mechanical subassemblies, multi-degree-of-freedom links and joints, motors, encoders, sensors, cable- and gear-driven elements, and integrated electronics. Assembly precision and calibration directly affect input fidelity, surgeon input accuracy, friction, force response, reliability, and the surgeon’s control of instruments and endoscopes. The ideal candidate combines deep mechanical intuition with rigorous process engineering discipline, working knowledge of regulated medical-device manufacturing requirements, and hands-on expertise in precision assembly, bonding, fastening, encoder integration, cable, belt, or gear-drive setup, motion testing, calibration, and verification of surgical-grade haptic mechanisms at scale. This role demands someone who thrives in fast-paced environments, takes proactive ownership of complex technical challenges, and can rapidly troubleshoot and resolve manufacturing issues that impact product launches. You’ll be instrumental in translating design intent into scalable manufacturing processes for next-generation surgical robotics platforms. Why This Role Matters: You’ll be instrumental in bringing the OTTAVA™ surgeon input device from design intent to reliable production. The device must capture and convey precise surgeon hand movements while maintaining controlled friction, repeatable performance, dependable sensing, and ergonomic performance across its full workspace. This role offers the opportunity to shape manufacturing strategy early, prevent costly launch delays, and establish robust processes that scale while meeting the highest quality standards. Key Responsibilities: Design and own assembly processes for the OTTAVA™ surgeon input device and its major precision mechanical subassemblies, links and joints, motors, encoders, sensors, and integrated electronics. Develop assembly sequence logic that controls system error, friction, preload, transmission tension or engagement, encoder alignment, and cumulative variation across the device workspace. Define and validate datum schemes, fixturing strategies, and measurement methods that maintain consistent reference frames from component-level assembly through full device integration. Author and release manufacturing processes for complex electromechanical assemblies, including MPIs, travelers, eDHR workflows, process maps, and inspection criteria. Define assembly and inspection processes for integrated electromechanical assemblies incorporating bearings, shafts, belts, cables, springs, seals, shims, adhesives, lubricants, fasteners, PCAs, harnesses, and precision-machined structures. Determine component-, subassembly-, and device-level metrology, instrumentation, and test requirements for assembly reliability and verification. Define and implement precision assembly equipment and fixtures designed for scalable industrialization, such as fastening systems, micro-torque tools, press-fit equipment, bonding and dispensing systems, and alignment fixtures. Develop and improve the mechanical processe

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