Webster, MA, United States of America

John L Yuscinsky


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2001

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1 patent (USPTO):Explore Patents

Title: John L. Yuscinsky: Innovator in Diamond Doping Technology

Introduction

John L. Yuscinsky is a notable inventor based in Webster, MA (US). He has made significant contributions to the field of materials science, particularly in the development of methods for enhancing the conductivity of diamonds. His innovative approach has implications for various applications in electronics and materials engineering.

Latest Patents

Yuscinsky holds a patent for a "Method and apparatus for in-situ solid state doping of CVD diamonds and diamonds so made." This patent describes a method that involves placing a solid dopant in or near the nozzle of a DC arc jet. The invention includes several embodiments, such as coating the interior surface of the nozzle with copper or placing a copper cylinder inside the nozzle. The resulting conductive diamonds are formed through a plasma jet process, where the conductivity can be controlled by varying the surface area of the solid dopant. This innovation allows for the production of high conductivity diamonds that can be precisely cut using electrical discharge milling or machining.

Career Highlights

Yuscinsky is associated with Saint-Gobain Industrial Ceramics, Inc., where he applies his expertise in materials science to advance the company's technological capabilities. His work has contributed to the development of advanced materials that meet the demands of modern industries.

Collaborations

Yuscinsky has collaborated with Henry Windischmann, leveraging their combined expertise to further enhance the research and development of diamond doping technologies.

Conclusion

John L. Yuscinsky's innovative work in the field of diamond doping represents a significant advancement in materials science. His contributions have the potential to impact various industries, paving the way for new applications of conductive diamonds.

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