Minneapolis, MN, United States of America

Elizabeth Jackson


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Elizabeth Jackson: Innovator in Thermal Interface Materials

Introduction

Elizabeth Jackson is a prominent inventor based in Minneapolis, MN (US). She has made significant contributions to the field of thermal interface materials, showcasing her expertise and innovative spirit. With a focus on enhancing the performance of thermal management solutions, her work has garnered attention in the industry.

Latest Patents

Elizabeth holds a patent for "Thermal interface materials based on two-part polyurethanes." This invention discloses thermal interface materials that utilize two-part polyurethane resins. The materials comprise a polyurethane resin and a thermally conductive filler dispersed throughout the resin. The polyurethane resin is formed from two parts: a first part that includes a triol and a second part that consists of an isocyanate-functionalized component. Notably, at least one of these parts contains a thermally conductive filler material. This innovation is crucial for improving thermal conductivity in various applications.

Career Highlights

Elizabeth is currently employed at Henkel AG & Company, KGaA, where she continues to develop cutting-edge materials. Her work at Henkel has allowed her to collaborate with other talented professionals in the field, further enhancing her contributions to thermal management technologies.

Collaborations

Some of her notable coworkers include Stanley Shengqian Kong and Valerie Alexis. Their collaborative efforts have played a vital role in advancing the research and development of innovative materials.

Conclusion

Elizabeth Jackson is a trailblazer in the field of thermal interface materials, with a patent that reflects her innovative approach. Her work at Henkel AG & Company, KGaA, and collaborations with esteemed colleagues highlight her commitment to advancing technology in this critical area.

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