Ibaraki, Japan

Kouichiro Inomata



Average Co-Inventor Count = 7.5

ph-index = 1

Forward Citations = 3(Granted Patents)


Location History:

  • Ibaraki-ken, JP (2014)
  • Ibaraki, JP (2021)

Company Filing History:


Years Active: 2014-2021

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2 patents (USPTO):Explore Patents

Title: Kouichiro Inomata: Innovator in Spintronics Technology

Introduction

Kouichiro Inomata is a prominent inventor based in Ibaraki, Japan. He has made significant contributions to the field of spintronics, particularly through his innovative patents. With a total of 2 patents, Inomata's work focuses on enhancing the performance of magnetic tunnel junctions and related devices.

Latest Patents

Inomata's latest patents include advancements in magnetic tunnel junctions and magnetoresistive elements. One of his notable inventions aims to achieve an exceptionally high tunnel magnetoresistance (TMR) ratio by utilizing a barrier layer made of an MgAlO-type insulator material with a spinel structure. This invention addresses the challenge of creating a magnetic tunnel junction with a barrier layer composed of a cubic nonmagnetic material, specifically a CoFeAl Heusler alloy. His work demonstrates the potential for achieving tunnel magnetoresistance of 250% or more at room temperature.

Career Highlights

Kouichiro Inomata is affiliated with the National Institute for Materials Science, where he conducts research and development in advanced materials. His expertise in spintronics has positioned him as a key figure in the field, contributing to the understanding and application of magnetic materials in technology.

Collaborations

Inomata has collaborated with notable researchers such as Hiroaki Sukegawa and Seiji Mitani. These partnerships have furthered the exploration of innovative solutions in the realm of spintronics and magnetic materials.

Conclusion

Kouichiro Inomata's contributions to the field of spintronics through his patents and research at the National Institute for Materials Science highlight his role as a leading inventor. His work continues to influence advancements in magnetic technologies and their applications.

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