Yokohama, Japan

Kazuya Notsu



Average Co-Inventor Count = 3.6

ph-index = 3

Forward Citations = 84(Granted Patents)


Location History:

  • Chigasaki, JP (2007 - 2010)
  • Yokohama, JP (2016 - 2020)
  • Kanagawa, JP (2004 - 2023)

Company Filing History:


Years Active: 2004-2023

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13 patents (USPTO):

Title: Kazuya Notsu: Innovator in Semiconductor Technology

Introduction

Kazuya Notsu is a prominent inventor based in Yokohama, Japan. He has made significant contributions to the field of semiconductor technology, holding a total of 13 patents. His work focuses on innovative packaging solutions and electronic devices that enhance performance and reliability.

Latest Patents

Among his latest patents, Notsu has developed a package and semiconductor device that features a unique arrangement of electrodes and concave portions. This design optimizes the spatial configuration of the package, ensuring efficient functionality. Additionally, he has created an electronic module and imaging system that effectively suppresses internal pressure while preventing the entry of foreign materials. This invention includes a well-designed electronic device, substrate, frame, and cover, which work together to maintain the integrity of the internal space.

Career Highlights

Kazuya Notsu is currently employed at Canon Kabushiki Kaisha, where he continues to push the boundaries of technology. His innovative spirit and dedication to research have positioned him as a key player in the semiconductor industry. His patents reflect a deep understanding of electronic systems and their applications in modern technology.

Collaborations

Throughout his career, Notsu has collaborated with notable colleagues, including Nobuhiko Sato and Tadashi Kosaka. These partnerships have fostered a creative environment that encourages the exchange of ideas and the development of groundbreaking technologies.

Conclusion

Kazuya Notsu's contributions to semiconductor technology are noteworthy and impactful. His innovative patents and collaborative efforts continue to shape the future of electronic devices.

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