Nagoya, Japan

Hayami Aota

USPTO Granted Patents = 10 

Average Co-Inventor Count = 4.1

ph-index = 1


Company Filing History:


Years Active: 2023-2025

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10 patents (USPTO):Explore Patents

Title: Hayami Aota: Innovator in Gas Sensor Technology

Introduction

Hayami Aota is a prominent inventor based in Nagoya, Japan. He has made significant contributions to the field of gas sensor technology, holding a total of nine patents. His innovative designs and solutions have advanced the capabilities of gas sensing devices, making them more efficient and reliable.

Latest Patents

One of Hayami Aota's latest patents involves a gas sensor that includes a laminate with at least one layer made of a solid electrolyte. This design features a measured gas flow path formed in the laminate and a pump electrode exposed within this path. Notably, the pump electrode is strategically sandwiched between layers or covered with a protective layer, enhancing its functionality. The exposed area of the pump electrode in the measured gas flow path is 4 mm or more, with the front end side region having a larger exposed area than the rear end side region. Another patent describes a gas sensor that comprises a sensor element, first and second element pads, and contact-point members. The configuration allows for improved connectivity and performance, with the second element pads being more numerous than the first.

Career Highlights

Hayami Aota is currently employed at NGK Insulators, Inc., where he continues to develop cutting-edge gas sensor technologies. His work has been instrumental in enhancing the performance and reliability of gas sensors used in various applications.

Collaborations

Hayami collaborates with talented coworkers, including Yusuke Watanabe and Shotaro Niizuma. Their combined expertise fosters an innovative environment that drives the development of advanced technologies.

Conclusion

Hayami Aota's contributions to gas sensor technology exemplify his dedication to innovation and excellence. His patents reflect a commitment to improving the functionality and efficiency of gas sensing devices.

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