Saitama, Japan

Tomoya Noda

This inventor holds 7 USPTO granted patents and 2 EPO patents. Top assignee: Nikon Corporation. Active years: 1997-2021.


% Patents Active = 85.7


Average Co-Inventor Count = 1.7

ph-index = 2

Forward Citations = 31(Granted Patents)


Location History:

  • Yokohama, JP (1997)
  • Tokyo, JP (2004)
  • Kumagaya, JP (2008)
  • Saitama, JP (2019 - 2021)

Company Filing History:


Years Active: 1997-2021

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7 patents (USPTO):Explore Patents

Title: Innovations of Tomoya Noda

Introduction

Tomoya Noda is a prominent inventor based in Saitama, Japan. He has made significant contributions to the field of microscopy and imaging technology. With a total of 7 patents to his name, Noda's work has advanced the capabilities of optical devices.

Latest Patents

One of his latest inventions is a structured illuminating microscopy apparatus. This apparatus features an acquiring unit that captures at least two modulated images with the same wave number vector but different phases. Additionally, it includes a calculating unit that separates the 0th-order modulating component and ±first-order modulating components of observational light fluxes based on multiple observation values. Another notable patent is a fundus image forming device. This system comprises a first reflection mirror, a two-dimensional scanning unit, and a second reflection mirror, all designed to effectively scan the retina in two-dimensional directions.

Career Highlights

Tomoya Noda is currently employed at Nikon Corporation, a leading company in imaging and optical products. His work at Nikon has allowed him to develop innovative technologies that enhance imaging systems.

Collaborations

Noda has collaborated with several talented individuals, including Yosuke Okudaira and Hiroshi Ohki. These collaborations have contributed to the successful development of his patented technologies.

Conclusion

Tomoya Noda's contributions to microscopy and imaging technology are noteworthy. His innovative patents reflect his expertise and commitment to advancing optical devices.

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