Santa Clara, CA, United States of America

Nicklas Hsieh

This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Auris Health, Inc.. Active years: 2026.

USPTO Granted Patents = 1 

Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2026

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1 patent (USPTO):Explore Patents

Title: Nicklas Hsieh: Innovator in Surgical Tool Control

Introduction

Nicklas Hsieh is a prominent inventor based in Santa Clara, CA (US). He has made significant contributions to the field of medical technology, particularly in the development of input devices for surgical tools. His innovative work has the potential to enhance the precision and control of surgical procedures.

Latest Patents

Nicklas Hsieh holds a patent for 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. Additionally, it incorporates a Hall effect sensor that detects a magnetic field based on magnets associated with both input sets. This technology aims to improve the functionality and usability of surgical tools.

Career Highlights

Nicklas Hsieh is currently employed at Auris Health, Inc., where he continues to innovate in the medical technology sector. His work focuses on creating advanced solutions that facilitate better surgical outcomes. His dedication to improving surgical tools showcases his commitment to enhancing healthcare technology.

Collaborations

Nicklas has collaborated with notable colleagues, including Qingbin Zheng and Joseph L Diamond. These partnerships have contributed to the development of cutting-edge technologies in the medical field.

Conclusion

Nicklas Hsieh is a key figure in the advancement of surgical tool technology, with a focus on creating innovative input devices. His contributions are paving the way for improved surgical precision and effectiveness.

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