Nagoya, Japan

Tooru Hayase


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Tooru Hayase: Innovator in Superconducting Technology

Introduction

Tooru Hayase is a prominent inventor based in Nagoya, Japan. He is known for his significant contributions to the field of superconducting materials. His innovative work has led to advancements in superconducting films and devices, which have important applications in various technologies.

Latest Patents

Tooru Hayase holds a patent for a rare earth superconducting composition and the process for its production. This patent describes a superconducting film that includes 0.1-5% by weight of magnesium oxide, with a thickness ranging from 300 to 1000 micrometers. The superconducting device for magnetic shielding comprises a substrate and a superconducting layer supported by the substrate. The superconducting layer includes grains of a Bi-type superconducting oxide, ensuring a critical temperature higher than -196 degrees Celsius. The process for producing this superconducting film involves firing a mixture of calcined powders of a superconducting oxide and magnesium oxide powders at a specific temperature.

Career Highlights

Tooru Hayase is currently employed at NGK Insulators, Inc., where he continues to develop innovative superconducting technologies. His work has been instrumental in enhancing the performance and efficiency of superconducting devices. With a focus on practical applications, he has made significant strides in the field.

Collaborations

Throughout his career, Tooru has collaborated with notable colleagues, including Makoto Tani and Hideki Shimizu. These collaborations have fostered a productive environment for innovation and research in superconducting materials.

Conclusion

Tooru Hayase's contributions to superconducting technology exemplify the impact of innovative thinking in advancing scientific knowledge and practical applications. His work continues to influence the field and inspire future developments in superconducting materials.

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