Yokkaichi, Japan

Akinobu Hattori


Average Co-Inventor Count = 3.0

ph-index = 3

Forward Citations = 36(Granted Patents)


Company Filing History:


Years Active: 1988-1990

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3 patents (USPTO):Explore Patents

Title: Akinobu Hattori: Innovator in Gas Sensing Technology

Introduction

Akinobu Hattori is a notable inventor based in Yokkaichi, Japan. He has made significant contributions to the field of gas sensing technology, holding a total of 3 patents. His work focuses on developing advanced sensing elements that enhance the accuracy and efficiency of gas analysis.

Latest Patents

Hattori's latest patents include a gas sensing element that features a co-fired laminar structure. This innovative design incorporates an electrochemical cell with a planar solid electrolyte body and multiple electrodes. Additionally, the sensing element is equipped with planar heaters and a thermosensitive portion that detects temperature variations, allowing for precise gas measurement. Another significant patent is an oxygen analyzing method and device. This method determines the oxygen concentration of a measurement gas in varying atmospheres. It utilizes an oxygen sensing cell to induce an electromotive force, which is controlled to maintain a specific level, ensuring accurate readings of both oxidizing and reducing environments.

Career Highlights

Akinobu Hattori is currently employed at NGK Insulators, Inc., where he continues to innovate in the field of gas sensing technology. His expertise and dedication have positioned him as a key figure in the development of advanced sensing solutions.

Collaborations

Hattori has collaborated with notable coworkers, including Jun Usami and Takeshi Kajita. Their combined efforts have contributed to the advancement of gas sensing technologies and the successful development of innovative solutions.

Conclusion

Akinobu Hattori's contributions to gas sensing technology through his patents and work at NGK Insulators, Inc. highlight his role as a leading inventor in this field. His innovative approaches continue to influence advancements in gas analysis and sensing applications.

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