Kanagawa, Japan

Koji Takaoka

USPTO Granted Patents = 4 

Average Co-Inventor Count = 6.0

ph-index = 2

Forward Citations = 11(Granted Patents)


Location History:

  • Yokohama, JP (2019)
  • Kanagawa, JP (2020)

Company Filing History:


Years Active: 2019-2020

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4 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Koji Takaoka

Introduction

Koji Takaoka is a prominent inventor based in Kanagawa, Japan. He has made significant contributions to the field of gas turbine technology, holding a total of 4 patents. His work focuses on control devices and methods that enhance the efficiency and performance of gas turbines.

Latest Patents

Takaoka's latest patents include a control device, system, and control method for gas turbines. One of his notable inventions is a control device that executes load control, allowing the operation control point of a gas turbine to vary in response to its load. This innovation ensures that the gas turbine operates at optimal performance by adjusting the flue gas temperature based on a rated temperature adjustment line. Another significant patent involves a gas turbine inlet guide vane control device, which regulates the degree of opening of the inlet guide vane to maintain the flue gas temperature within defined limits.

Career Highlights

Koji Takaoka is currently employed at Mitsubishi Hitachi Power Systems, Ltd., where he continues to develop advanced technologies for gas turbines. His expertise in control systems has positioned him as a key figure in the industry, contributing to the advancement of energy efficiency in power generation.

Collaborations

Throughout his career, Takaoka has collaborated with notable colleagues, including Yoshifumi Iwasaki and Noriyoshi Uyama. These partnerships have fostered innovation and have led to the successful development of various technologies in the field.

Conclusion

Koji Takaoka's contributions to gas turbine technology through his innovative patents and collaborations highlight his importance in the field. His work continues to influence advancements in energy efficiency and performance in power generation systems.

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