Systems Integration Engineer
Johnson & JohnsonAbout the role
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
Job Function:
R&D Product DevelopmentJob Sub Function:
R&D Software/Systems EngineeringJob Category:
Scientific/TechnologyAll Job Posting Locations:
Santa Clara, California, United States of AmericaJob Description:
Robotics & Digital Solutions is a part of the Johnson & Johnson family of companies, is recruiting for a Systems Integration Engineer with a focus on mechatronics systems, located in Santa Clara, CA.
At J&J Robotics we're changing the trajectory of health for humanity, using robotics to enhance healthcare providers' abilities and improve patients' diagnoses, treatments, and recovery times. 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: Flexible Robotics (MONARCH®), Surgical Robotics (OTTAVA™), and Digital Solutions. Join our collaborative, rapidly growing teams in the San Francisco Bay Area, Cincinnati, and Seattle. You'll collaborate on breakthrough medical technologies that unite multiple subject areas to build a connected digital ecosystem that advances medical professionals' skills and improves patient outcomes.
The Systems Integration Engineer will support sustaining and development of OTTAVA's robotic surgical subsystems. The primary focus of this position is planning and implementation of subsystem integration activities, including bring-up of proof-of-concepts and initial builds. The candidate will collaborate with mechanical, electrical, robotics controls and software engineers in root-cause analysis and documentation of design, manufacturing and algorithmic flaws in order to increase subsystem reliability. The candidate will also assist in development of new hardware functional test methods, and conducting engineering studies to characterize feasibility and stability. This is an outstanding opportunity to craft OTTAVA™'s capabilities and shape the future of surgical robotics!
Core Job Responsibilities:
Plan and implement subsystem-level integration activities for proof-of-concepts
Analyze, root cause, resolve and document novel integrative issues that arise from subsystems of focus by collaborating with various teams
Support development and feasibility demonstration of new test methods and fixtures for subsystem-level integration uses and/or functional test processes
Conduct engineering studies to de-risk the design ranging from proof-of-concepts to product candidates, analyze results and provide meaningful feedback to design teams
Qualifications :
One of the following combinations of education and years of experience are required:
A.) a BS Engineering (Mechatronics, Electrical, Mechanical, Robotics) or equivalent areas in combination with 2+ years of related experience,
B.) An advanced degree (e.g.MS, PhD) Engineering (Mechatronics, Electrical, Mechanical, Robotics) or equivalent in combination with 1+ year experience is required.
Qualifications continued:
Hands-on experience with electromechanical systems design, implementation and integration is required.
Experience working with electrical sensors and mechanical actuators is required.
Basic skills in Python and/or C++ programming is required.
Previous experience planning and implementing subsystem-level integration activities for proof-of-concepts is preferred
A proven ability to analyze, root cause, resolve and document novel integrative issues that arise from subsystems of focus by collaborating with various teams is highly beneficial.
Previous experience supporting the development and feasibility demonstration of new test methods and fixtures for subsystem-level integration uses and/or functional test processes is an asset.
Previous experience conducting engineering studies to de-risk the design ranging from proof-of-concepts to product candidates, analyzing results and providing meaningful feedback to design teams is very beneficial.
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