Wilmington, MA, United States of America

Deanna J Wright

This inventor holds 1 USPTO granted patent. Top assignee: Parker-Hannifin Corporation. Active years: 2004.


% Patents Active = 100.0

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 68(Granted Patents)


Company Filing History:


Years Active: 2004

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1 patent (USPTO):Explore Patents

Title: Deanna J Wright: Innovator in Thermal Interface Technology

Introduction

Deanna J Wright is a notable inventor based in Wilmington, MA (US). She has made significant contributions to the field of thermal interface materials, showcasing her expertise and innovative spirit. With a focus on enhancing heat transfer efficiency, her work has implications for various industries.

Latest Patents

Deanna holds a patent for a "Clean release, phase change thermal interface." This invention features a laminar, thermally-conductive interface that is interposable between a first heat transfer surface and an opposing second heat transfer surface. The design provides a thermally-conductive pathway between these surfaces. The interface consists of a first layer made from flexible, lamellar graphite or tin foil material, and a second layer composed of a thermally-conductive phase-change material. This innovative approach addresses the challenges of heat transfer in various applications.

Career Highlights

Deanna is currently employed at Parker-Hannifin Corporation, a leader in motion and control technologies. Her role at the company allows her to apply her inventive skills to real-world challenges, contributing to advancements in thermal management solutions.

Collaborations

Throughout her career, Deanna has collaborated with talented individuals such as Alfred W Greenwood and Kent M Young. These partnerships have fostered a creative environment that encourages innovation and the development of cutting-edge technologies.

Conclusion

Deanna J Wright is a pioneering inventor whose work in thermal interface technology exemplifies her commitment to innovation. Her contributions not only enhance the efficiency of heat transfer but also pave the way for future advancements in the field.

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