Kyoto, Japan

Koki Kato


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2017

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Koki Kato

Introduction

Koki Kato is a notable inventor based in Kyoto, Japan, known for his innovative work on composite modules. With two patents to his name, Kato's inventions focus on enhancing the design and functionality of electronic components, particularly in wireless communication technologies.

Latest Patents

Kato holds two significant patents that reflect his commitment to innovation. The first patent describes a composite module featuring multiple substrates housed in a structure designed to prevent deformation. This design enhances the mounting precision of the substrates, ultimately leading to improved performance. The second patent further develops this concept by incorporating a wireless LAN module. This invention includes an external connector for electronic apparatuses and a unique layout allowing for effective heat dissipation, thereby optimizing the overall efficiency of the device.

Career Highlights

As an inventor at Murata Manufacturing Co., Ltd., Kati has made pivotal contributions to the field of electronics. His work has impacted various technological innovations, especially in the realm of wireless communication. Kato’s emphasis on precision and performance showcases his dedication to advancing electronic component design.

Collaborations

Koki Kato collaborates with talented colleagues Koji Kawano and Naofumi Enkyo, who contribute to creating innovative solutions in the electronics industry. Their teamwork fosters a dynamic environment that encourages the exploration of new ideas and concepts.

Conclusion

In summary, Koki Kato exemplifies the spirit of innovation through his patents and contributions to Murata Manufacturing Co., Ltd. His work on composite modules and wireless communication technologies underscores the importance of precision and efficiency in modern electronics, setting a benchmark for future innovations in the field.

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