Ibaraki, Japan

Tung Anh Doan

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations of Tung Anh Doan in Non-Contact Material Identification

Introduction

Tung Anh Doan is a notable inventor based in Ibaraki, Japan. He has made significant contributions to the field of material identification through innovative methods that enhance the efficiency and accuracy of temperature measurements.

Latest Patents

Tung Anh Doan holds 1 patent for his invention titled "Method of non-contact material identification, method of non-contact temperature identification, and method for identifying progress of heat treatment processing." This invention provides a means to identify the temperature and/or material of a target object in a non-contact and straightforward manner. The method determines the relationship between the wavelength and emissivity of thermal radiation, such as infrared rays, emitted from an object based on its material. By comparing thermal radiation intensities at multiple wavelengths from the object with a pre-stored database, the identification process is streamlined. Notably, this method does not require an external light source, as the target itself serves as the thermal radiation light source during measurement.

Career Highlights

Tung Anh Doan is affiliated with the National Institute for Materials Science, where he continues to advance research in material identification technologies. His work has implications for various industries, including manufacturing and quality control.

Collaborations

Tung Anh Doan has collaborated with esteemed colleagues such as Tadaaki Nagao and Duc Thien Ngo, contributing to the development of innovative solutions in material science.

Conclusion

Tung Anh Doan's contributions to non-contact material identification represent a significant advancement in the field. His innovative methods not only simplify the identification process but also enhance the accuracy of temperature measurements.

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