Baldwin City, KS, United States of America

Matthew Scott Dunn


Average Co-Inventor Count = 3.3

ph-index = 1

Forward Citations = 20(Granted Patents)


Company Filing History:


Years Active: 2012-2015

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2 patents (USPTO):Explore Patents

Title: Innovations by Matthew Scott Dunn

Introduction

Matthew Scott Dunn is an accomplished inventor based in Baldwin City, Kansas. He holds two patents that showcase his innovative contributions to technology. His work primarily focuses on enhancing mechanical systems, particularly in the areas of wheel balancing and air management.

Latest Patents

One of his notable patents is the Wheel Balancer. This invention includes a cable and a base, where the cable has a support end designed to be fastened to a support. The base is configured to fit inside a wheel and features proximal and distal ends with a hollow interior area for the cable to pass through. The cable is operatively coupled to the base, ensuring that the distance between the cable support end and the base distal end remains generally constant when the cable is extended. Additionally, a pivot point for the cable can move relative to the base between the base distal end and the cable support end. Another significant patent is the Blower Cabinet, which further demonstrates his expertise in mechanical design.

Career Highlights

Throughout his career, Matthew has worked with various companies, including Accessible Technologies, Inc. and Horizon Inc. His experience in these organizations has contributed to his development as an inventor and has allowed him to refine his skills in creating practical solutions.

Collaborations

Matthew has collaborated with notable individuals such as Glennon J. Roderique and Michael A. Carlson. These partnerships have likely enriched his work and expanded his innovative capabilities.

Conclusion

Matthew Scott Dunn is a talented inventor whose work in wheel balancing and air management has made a significant impact. His patents reflect his commitment to innovation and problem-solving in mechanical systems.

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