Ibaraki, Japan

Kouta Nakai


Average Co-Inventor Count = 3.4

ph-index = 2

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2012-2013

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2 patents (USPTO):Explore Patents

Title: Kouta Nakai: Innovator in Optical Film Cutting Technology

Introduction

Kouta Nakai is a notable inventor based in Ibaraki, Japan. He has made significant contributions to the field of optical film cutting technology, holding a total of 2 patents. His innovative approaches have advanced the methods used in the production and processing of optical films.

Latest Patents

Kouta Nakai's latest patents include an optical film cutting method and apparatus that utilizes nip rollers. This invention features a unique design where a pair of upper and lower rollers are positioned on both the upstream and downstream sides of the optical film. The upper roller's center axis is intentionally displaced from the drive roller's center axis, allowing for precise cutting of the polarizing film. The method involves applying tension to the film while cutting it with a laser device, ensuring accuracy and efficiency. Another patent involves a suction table designed to hold the polarizing film in an inclined position, facilitating a laser scan that cuts the film in the width direction.

Career Highlights

Throughout his career, Kouta Nakai has worked with prominent companies such as Nitto Denko Corporation and Akebono Machine Industries Co., Ltd. His experience in these organizations has contributed to his expertise in optical film technologies and innovations.

Collaborations

Kouta Nakai has collaborated with talented individuals in his field, including Junpei Kozasa and Masahiro Hosoi. These partnerships have fostered a creative environment that has led to the development of groundbreaking technologies.

Conclusion

Kouta Nakai's contributions to optical film cutting technology exemplify his innovative spirit and dedication to advancing the industry. His patents reflect a commitment to improving processes and enhancing the quality of optical films.

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