Kanagawa, Japan

Tomohiro Kawata


 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Tomohiro Kawata: Innovator in Internal Combustion Engine Control

Introduction

Tomohiro Kawata is a notable inventor based in Kanagawa, Japan. He has made significant contributions to the field of internal combustion engines, particularly in control methods and devices. His innovative approach has led to the development of a unique control method that enhances engine performance.

Latest Patents

Kawata holds a patent for a "Control method for internal combustion engine and control device for internal combustion engine." This invention provides a control method and device designed to vary the mechanical compression ratio of an internal combustion engine. The method involves adjusting the range of slide of a piston relative to the cylinder bore and controlling the flow of cooling water in a water jacket surrounding the cylinder bore. The process includes acquiring a temperature that correlates with the cylinder bore wall temperature and stopping the flow of cooling water when the acquired temperature is below a preset point. This innovative control process aims to improve engine efficiency and performance.

Career Highlights

Kawata is currently employed at Nissan Motor Company Limited, where he continues to work on advancements in engine technology. His expertise in internal combustion engines has positioned him as a valuable asset to the company.

Collaborations

Throughout his career, Kawata has collaborated with notable colleagues, including Hiroaki Hoshikawa and Kakuzou Kaneko. These collaborations have fostered an environment of innovation and creativity, leading to advancements in automotive technology.

Conclusion

Tomohiro Kawata's contributions to the field of internal combustion engines exemplify the spirit of innovation. His patent and work at Nissan Motor Company Limited highlight his commitment to enhancing engine performance through advanced control methods.

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