Kobe, Japan

Keiji Tada

USPTO Granted Patents = 3 

 

Average Co-Inventor Count = 1.2

ph-index = 1

Forward Citations = 2(Granted Patents)


Location History:

  • Kobe, JP (2020)
  • Nishinomiya, JP (2023)

Company Filing History:


Years Active: 2020-2024

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3 patents (USPTO):Explore Patents

Title: Keiji Tada: Innovator in Measurement Technology

Introduction

Keiji Tada is a prominent inventor based in Kobe, Japan. He has made significant contributions to the field of measurement technology, particularly through his innovative patents. With a total of 3 patents, Tada has focused on developing devices and methods that enhance the accuracy of analyte concentration estimation.

Latest Patents

Tada's latest patents include a measurement chip, a measuring device, and a measuring method. These inventions aim to provide a simple configuration that can accurately estimate analyte concentrations. The measurement chip consists of a propagation layer, an introductory part, a drawn-out part, and a reaction part. Light propagates through the propagation layer, with the introductory part introducing light into it and the drawn-out part drawing light from it. The reaction part features a surface where a reactant that interacts with the substance to be detected is formed. This area allows for a monotonous change in the content of the reactant in a direction perpendicular to the light's propagation, over a specified length.

Career Highlights

Keiji Tada is associated with Furuno Electric Company Limited, where he continues to innovate in measurement technologies. His work has been instrumental in advancing the capabilities of measurement devices, making them more efficient and reliable.

Collaborations

Tada collaborates with Jun Yamabayashi, contributing to the development of cutting-edge measurement solutions. Their partnership has fostered innovation and creativity in their projects.

Conclusion

Keiji Tada's contributions to measurement technology through his patents reflect his dedication to innovation. His work continues to influence the field, paving the way for more accurate and efficient measurement devices.

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