Boucherville, Canada

Danielle Methot



Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2008-2015

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Inventor Danielle Methot

Introduction

Danielle Methot is a notable inventor based in Boucherville, Canada, recognized for her significant contributions to the field of ignition systems. With two patents to her name, she has shown remarkable ingenuity in developing solutions that enhance operational efficiency and reliability in engine technology.

Latest Patents

Danielle Methot's most recent patents focus on the development of a variable rate ignition method and system. This innovative system leverages an understanding of environmental and operational conditions to optimize the ignition process in engines. By adjusting the ignition rate, her invention ensures optimal use of igniters, prolonging their lifespan and improving maintenance schedules. Additionally, it enhances operating costs and durability, providing flexibility through software updates to the engine controller, rather than requiring hardware changes.

Career Highlights

Throughout her career, Danielle has made substantial contributions to significant companies in the aerospace industry, particularly at Pratt & Whitney Canada Corp. Her expertise in ignition systems has positioned her as a key player in developing advanced engine technologies, contributing to both efficiency and performance improvements.

Collaborations

Danielle has collaborated with various professionals, including her coworker Richard Robert Kudrna, to further her research and innovations. This collaboration reflects a commitment to teamwork and knowledge sharing, which is essential in the evolving landscape of engineering and technology.

Conclusion

Danielle Methot's work exemplifies the spirit of innovation that drives progress in engine technology. Her patents not only contribute to the specialized field of ignition systems but also reflect a broader trend towards efficiency and adaptability in engineering solutions. As she continues her work, the impact of her innovations will likely resonate within the industry and beyond.

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