Ibaraki, Japan

Kanako Wasai


Average Co-Inventor Count = 5.9

ph-index = 3

Forward Citations = 28(Granted Patents)


Company Filing History:


Years Active: 2006-2007

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4 patents (USPTO):Explore Patents

Title: Kanako Wasai: Innovator in Optical Technologies

Introduction

Kanako Wasai is a prominent inventor based in Ibaraki, Japan. She has made significant contributions to the field of optical technologies, holding a total of 4 patents. Her work focuses on developing advanced optical components that enhance the performance and durability of imaging systems.

Latest Patents

Among her latest patents are the optical compensation plate, a polarizing plate utilizing the same, and an image display apparatus. The optical compensation plate features an innovative design that suppresses the occurrence of cracks due to applied pressure and thermal deformation. By applying a moisture-curing isocyanate compound adhesive with a glass transition temperature of 100°C or less, an anti-cracking layer is formed directly on the optical compensation layer. This layer effectively prevents cracks and deformation, ensuring the reliability of the optical compensation layer, which is ideally structured as a cholesteric layer. Additionally, her method for preparing optical films involves a unique process that results in films exhibiting selective reflection wavelengths of 100 to 320 nm, significantly reducing unwanted coloring.

Career Highlights

Kanako Wasai is currently employed at Nitto Denko Corporation, where she continues to push the boundaries of optical technology. Her innovative approaches have garnered attention in the industry, contributing to advancements in various applications.

Collaborations

She collaborates with notable colleagues, including Takashi Yamaoka and Junichi Adachi, to further enhance her research and development efforts.

Conclusion

Kanako Wasai's contributions to optical technologies exemplify her dedication to innovation and excellence. Her patents reflect her commitment to improving the functionality and durability of optical components, making her a key figure in her field.

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