Musashino, Japan

Yui Ogawa


Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):

Title: Inventor Spotlight: Yui Ogawa

Introduction

Yui Ogawa, located in Musashino, Japan, is an innovative inventor recognized for his contributions to the field of microelectrode technology. With a unique patent to his name, he has made significant strides in the integration of polymer compounds and conductive materials, paving the way for advancements in various electronic applications.

Latest Patents

Yui Ogawa holds one patent, titled "Microelectrode, method of manufacturing same, and integrated device." This patent details a microelectrode characterized by its layered structure, which includes a polymer compound layer containing an aromatic ring and a conductive layer. The design stipulates that the polymer compound layer must have a thickness between 10 to 900 nm, while the conductive layer is between 0.3 to 10 nm thick. Notably, the microelectrode is designed with a three-dimensional curved shape, showcasing innovative engineering that enhances its functionality in practical applications.

Career Highlights

Currently, Yui Ogawa is affiliated with Nippon Telegraph and Telephone Corporation, where he actively contributes to research and development in communication technologies. His work is instrumental in pushing the boundaries of how microelectrodes can be utilized in modern electronics, emphasizing both efficiency and performance.

Collaborations

Throughout his career, Yui has collaborated with notable colleagues, including Tetsuhiko Teshima and Yuko Ueno. Yuko, a skilled woman in the field, has played a vital role in fostering an inclusive and dynamic work environment, which is crucial for innovative breakthroughs in technology.

Conclusion

Yui Ogawa's inventive spirit and his groundbreaking patent position him as a noteworthy figure in the realm of microelectrode technology. As he continues to work at Nippon Telegraph and Telephone Corporation, his contributions are expected to have a lasting impact on the development of advanced electronic devices and systems.

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