Louisville, CO, United States of America

Matthew David Brubaker


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2016-2024

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2 patents (USPTO):Explore Patents

Title: Innovations by Matthew David Brubaker

Introduction

Matthew David Brubaker is an accomplished inventor based in Louisville, Colorado. He holds two patents that showcase his expertise in advanced semiconductor technologies. His work has significant implications for high-voltage switching applications and nanowire fabrication.

Latest Patents

Brubaker's latest patents include the "Core-shell nanofin vertical switch" and "Nanowire article and processes for making and using same." The core-shell nanofin vertical switch is designed to perform high-voltage switching and features an n-type GaN nanofin core surrounded by a p-type nanofin shell. This innovative design allows for efficient electrical communication between various components, enhancing the performance of high-voltage applications. The nanowire article patent describes a substrate with a plurality of nanowires made from semiconductor nitride, specifically gallium nitride. The process for producing these nanowires involves several steps, including the formation of a superlattice layer and nitrogenating the substrate, which leads to the creation of high-quality nanowires without the use of a catalyst.

Career Highlights

Brubaker has worked with notable organizations, including the Government of the United States of America and the University of Colorado. His contributions to these institutions have helped advance research in semiconductor technologies and their applications.

Collaborations

Some of his coworkers include Kristine A Bertness and William Old. Their collaborative efforts have likely contributed to the innovative projects and patents that Brubaker has developed.

Conclusion

Matthew David Brubaker is a significant figure in the field of semiconductor innovation, with patents that reflect his expertise and contributions to technology. His work continues to influence advancements in high-voltage switching and nanowire applications.

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