San Francisco, CA, United States of America

Arnaud Dyen

This inventor holds 2 USPTO granted patents and 2 published patent applications. Top assignee: Arris Composites Inc.. Active years: 2022-2025.

USPTO Granted Patents = 2 

% Patents Active = 100.0

Average Co-Inventor Count = 3.4

ph-index = 1


Company Filing History:


Years Active: 2022-2025

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2 patents (USPTO):Explore Patents

Title: Arnaud Dyen: Innovator in Footwear and Molding Technologies

Introduction

Arnaud Dyen is a notable inventor based in San Francisco, CA. He has made significant contributions to the fields of footwear design and molding technologies. With a total of 2 patents, Dyen continues to push the boundaries of innovation in his industry.

Latest Patents

Dyen's latest patents include a "Composite shoe plate having a progressive longitudinal bending stiffness characteristic." This invention features a shoe plate integrated into footwear that exhibits varying stiffness levels. The shoe plate is designed to be less stiff up to a certain degree of bending, after which it becomes stiffer, particularly near the forefoot area. Another notable patent is for "Rapid heat cycle molding," which outlines a method for efficient compression molding. This process involves placing feed constituents in a mold, heating it between hot platens, cooling it with cold platens, and finally ejecting the molded part.

Career Highlights

Arnaud Dyen is currently employed at Arris Composites Inc., where he applies his expertise in composite materials and innovative design. His work has garnered attention for its practical applications in both footwear and manufacturing processes.

Collaborations

Dyen collaborates with talented individuals such as Erick Matthew Davidson and Ethan Escowitz, contributing to a dynamic work environment that fosters creativity and innovation.

Conclusion

Arnaud Dyen stands out as a forward-thinking inventor whose work in footwear and molding technologies continues to influence the industry. His patents reflect a commitment to enhancing product performance and manufacturing efficiency.

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