Ehime, Japan

Ryoko Kawamata

USPTO Granted Patents = 2 

 

Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2012-2013

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2 patents (USPTO):Explore Patents

Title: Ryoko Kawamata: Innovator in Biosensor Technology

Introduction

Ryoko Kawamata is a notable inventor based in Ehime, Japan. He has made significant contributions to the field of biosensor technology, holding 2 patents that showcase his innovative approach to electrochemical analysis.

Latest Patents

Kawamata's latest patents include an inexpensive biosensor designed to perform high-accuracy measurements conveniently. This biosensor functions as an immunological sensor, allowing measurements to be taken anywhere and at any time by anyone. The device consists of an electrode sensor unit with an electric conductive layer on an insulating substrate, which detects electrochemical signals. Additionally, it features a chromatographic sensor unit that includes a porous film for extending a specimen solution, ensuring that the two units work together effectively.

Another patent focuses on a biosensor that enhances measurement accuracy while requiring only a small amount of specimen. This design includes a specimen application portion enclosed by a liquid impermeable material, allowing a reaction reagent to dissolve into the liquid specimen. This innovation enables high accuracy and sensitivity in measurements, making it a valuable tool in various applications.

Career Highlights

Kawamata is currently employed at Panasonic Corporation, where he continues to develop cutting-edge technologies in biosensing. His work has garnered attention for its potential to revolutionize how biosensors are utilized in everyday settings.

Collaborations

One of his notable collaborators is Mie Takahashi, who contributes to the innovative projects at Panasonic Corporation.

Conclusion

Ryoko Kawamata's contributions to biosensor technology reflect his commitment to innovation and precision. His patents demonstrate a forward-thinking approach that could significantly impact the field of electrochemical analysis.

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