Hadano, Japan

Kunihiro Nakata


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Kunihiro Nakata: Innovator in Electronic Devices

Introduction

Kunihiro Nakata is a notable inventor based in Hadano, Japan, recognized for his contributions to the field of electronic devices. His innovative work has resulted in one patent that enhances the functionality and efficiency of electronic circuits.

Latest Patents

Nakata holds a patent for an electronic device that comprises two substrates with electronic circuit elements. This invention features a substrate connector for electrical connection between circuits and an electrically grounded chassis. The uniqueness of his invention lies in the first substrate, which includes an electromagnetic shielding plate made from an electrically conductive material. The incorporation of a wire length limitation between specific electronic circuit elements ensures high-speed responsive operations, setting a new benchmark in electronic device design.

Career Highlights

Throughout his career, Nakata has worked with leading technology companies such as Hitachi, Ltd. and Hitachi Microcomputer System, Ltd. His expertise has significantly contributed to advancements in electronic systems and has placed him at the forefront of innovation in the industry.

Collaborations

Nakata has collaborated with notable colleagues, including Seiichi Kawashima and Fumio Kishida. Their combined efforts have fostered an environment of innovation and problem-solving in the field of electronics, leading to valuable advancements that benefit both the industry and consumers alike.

Conclusion

In conclusion, Kunihiro Nakata's contributions to electronic devices have been significant, showcasing his innovative spirit and dedication to improving technology. His patented invention represents a crucial step in the evolution of electronic circuits, ensuring that they meet the demands of modern speed and efficiency. Nakata’s work continues to inspire future innovations in the field.

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