Santa Clara, CA, United States of America

Curtis A Knight


Average Co-Inventor Count = 3.5

ph-index = 1

Forward Citations = 73(Granted Patents)


Location History:

  • Sunnyvale, CA (US) (2001)
  • Santa Clara, CA (US) (2010 - 2015)

Company Filing History:


Years Active: 2001-2015

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3 patents (USPTO):Explore Patents

Title: Innovations by Curtis A Knight

Introduction

Curtis A Knight is an accomplished inventor based in Santa Clara, CA. He has made significant contributions to the field of medical technology, particularly in the development of communication systems for implantable medical devices. With a total of 3 patents to his name, Knight's work exemplifies the intersection of engineering and healthcare.

Latest Patents

One of Knight's latest patents focuses on RF transceiver hopping for communication with implantable medical devices. This innovation allows for dynamically switching between different external RF transceivers to maintain high communication quality, even in challenging wireless conditions. The system monitors the quality of communications and selects the best RF transceiver for optimal performance. Another notable patent involves an implantable cardiac stimulation device equipped with a hardware elastic buffer. This device utilizes SRAM and a controller to enhance its functionality, incorporating features such as averaging and concatenating.

Career Highlights

Curtis A Knight has built a successful career at Pacesetter, Inc., where he has been instrumental in advancing medical device technology. His expertise in RF communication and implantable devices has positioned him as a key player in the industry.

Collaborations

Knight has collaborated with notable colleagues, including Gabriel A Mouchawar and James D Causey, III. These partnerships have contributed to the innovative solutions developed at Pacesetter, Inc.

Conclusion

Curtis A Knight's contributions to the field of medical technology through his patents and collaborations highlight his role as a leading inventor. His work continues to impact the way implantable medical devices communicate, ultimately improving patient care.

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