This inventor holds 4 USPTO granted patents and 2 published patent applications. Top assignee: Auris Health, Inc.. Active years: 2021-2026.
Company Filing History:

Years Active: 2021-2026
Title: Innovations by Qingbin Zheng in Robotic Surgical Tools
Introduction
Qingbin Zheng is a notable inventor based in Santa Clara, CA (US), recognized for his contributions to the field of robotic surgical tools. With a total of 4 patents to his name, Zheng has made significant advancements in the design and functionality of input devices used in surgical systems.
Latest Patents
Zheng's latest patents include a "Hand-manipulated input device with hall effect sensor for robotic system." This invention relates to systems and techniques for an input device that controls the operation of a surgical tool. The device features a first set of input objects for receiving a first type of input and a second set for a second type of input, both associated with the surgical tool's operation. Additionally, it incorporates a Hall effect sensor that detects a magnetic field based on magnets in both sets. Another notable patent is the "Hand-manipulated input device for robotic system," which focuses on controlling a robotic surgical tool. This device is designed with a first pair of opposing links and a second pair, arranged radially symmetrically, to enhance the control of robotic surgical tools.
Career Highlights
Qingbin Zheng is currently employed at Auris Health, Inc., where he continues to innovate in the field of medical technology. His work has been instrumental in developing advanced input devices that improve the precision and effectiveness of surgical procedures.
Collaborations
Zheng has collaborated with notable colleagues such as Joseph L Diamond and Adam Richard Heard, contributing to the advancement of robotic surgical technologies.
Conclusion
Qingbin Zheng's innovative work in robotic surgical tools exemplifies the intersection of technology and medicine. His patents reflect a commitment to enhancing surgical precision and patient outcomes through advanced input devices.