St-Rémi, Canada

Mathieu Léonard

This inventor holds 1 USPTO granted patent and 2 published patent applications. Top assignee: Socpra Sciences Et Genie S.e.c.. Active years: 2026.

USPTO Granted Patents = 1 

% Patents Active = 100.0

Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:


Years Active: 2026

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1 patent (USPTO):Explore Patents

Title: The Innovations of Mathieu Léonard

Introduction

Mathieu Léonard is an accomplished inventor based in St-Rémi, Canada. He has made significant contributions to the field of sports science through his innovative patent. His work focuses on enhancing the understanding of running performance, which can benefit athletes and coaches alike.

Latest Patents

Mathieu Léonard holds a patent for a "System and method for determining the maximum running speed of a runner and uses thereof." This invention includes a memory unit that stores running determinants of the runner and venue. A processor unit runs a predictive algorithm using these determinants to determine the maximum running speed by zeroing a linear momentum balance and an angular momentum balance of the runner. The output unit receives the determined maximum running speed, allowing for a comprehensive analysis of the runner's performance.

Career Highlights

Léonard is associated with Socpra Sciences Et Genie S.e.c., where he applies his expertise in developing innovative solutions for sports performance. His work has the potential to revolutionize how athletes train and compete, providing them with valuable insights into their capabilities.

Collaborations

Mathieu has collaborated with notable colleagues such as Charles Khazoom and Charles-Étienne Tremblay. These partnerships have fostered a creative environment that encourages the development of groundbreaking ideas in the field of sports science.

Conclusion

Mathieu Léonard's contributions to the field of sports science through his innovative patent demonstrate his commitment to enhancing athletic performance. His work is paving the way for future advancements in understanding running dynamics.

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