Webster, NY, United States of America

Richard C Schenk


Average Co-Inventor Count = 1.7

ph-index = 7

Forward Citations = 134(Granted Patents)


Company Filing History:


Years Active: 1987-2006

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11 patents (USPTO):Explore Patents

Title: The Innovations of Richard C. Schenk

Introduction

Richard C. Schenk is a notable inventor based in Webster, NY, with a remarkable portfolio of 11 patents. His contributions to the field of reprographic technology have significantly advanced the efficiency and effectiveness of printing processes. Schenk's work primarily focuses on systems and methods that enhance the functionality of marking devices.

Latest Patents

Among his latest patents is a system for continuous motion registration distribution with anti-backlash and edge smoothing. This innovative reprographic marking device utilizes two rolls, such as a pressure roll and a fuser roll, to create a nip. A drive motor facilitates a continuous back-and-forth lateral motion, allowing for precise positioning of the rolls relative to a paper sheet passing through the nip. Another significant patent is for an automatic fuser control method. This method includes providing processing attributes for specific print stock, establishing print jobs, and automatically fusing image substances to pages based on predetermined dwell times.

Career Highlights

Richard C. Schenk has made substantial contributions to Xerox Corporation, where he has applied his expertise in developing advanced printing technologies. His innovative approaches have not only improved the quality of printed materials but have also streamlined the overall printing process.

Collaborations

Schenk has collaborated with esteemed colleagues such as Kenneth F. Blanchard and Barbara A. Sampath, further enhancing the innovative environment at Xerox Corporation.

Conclusion

Richard C. Schenk's inventive spirit and dedication to advancing printing technology have made a lasting impact in the field. His patents reflect a commitment to innovation that continues to shape the future of reprographic devices.

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