Bunkyo-ku, Tokyo, Japan

Koichi Kitazawa


Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:

goldMedal1 out of 832,680 
Other
 patents

Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: The Innovations of Koichi Kitazawa

Koichi Kitazawa is a notable inventor based in Bunkyo-ku, Tokyo, Japan. He has made significant contributions to the field of superconductors, particularly with his innovative patent related to oxide superconductors. His work has implications for various applications in technology and materials science.

Latest Patents

Koichi Kitazawa holds a patent for an oxide superconductor. This invention consists of an oxide that includes bismuth, lead, strontium, calcium, and copper, with a specific molar ratio of lead to bismuth of at least 0.2:1. The internal structure of this oxide superconductor features domains with a high concentration of lead and no long-period structure, contained within domains of lower lead concentration and a long-period structure. This oxide superconductor exhibits a storing pinning function and maintains a high critical current density (Jc) even under high temperatures and magnetic fields. Furthermore, it can be produced using industrial methods and is easily processed into wire forms.

Career Highlights

Throughout his career, Koichi Kitazawa has focused on advancing the field of superconductivity. His innovative approaches have led to breakthroughs that enhance the performance and applicability of superconducting materials. His work is recognized for its potential to impact various industries, including electronics and energy.

Collaborations

Koichi Kitazawa has collaborated with notable colleagues such as Mikio Takano and Zenji Hiroi. These collaborations have contributed to the advancement of research in superconductivity and related fields.

Conclusion

Koichi Kitazawa's contributions to the field of oxide superconductors highlight his innovative spirit and dedication to advancing technology. His patent reflects a significant achievement in materials science, showcasing the potential for high-performance superconductors in various applications.

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