Amagasaki, Japan

Naoya Tanaka


Average Co-Inventor Count = 5.2

ph-index = 5

Forward Citations = 120(Granted Patents)


Location History:

  • Hyogo, JP (1997)
  • Amagasaki, JP (1996 - 2001)

Company Filing History:


Years Active: 1996-2001

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5 patents (USPTO):Explore Patents

Title: Naoya Tanaka: Innovator in Magnetic Structures

Introduction

Naoya Tanaka is a prominent inventor based in Amagasaki, Japan. He has made significant contributions to the field of magnetic structures, holding a total of 5 patents. His work focuses on enhancing the integration and miniaturization of magnetic components.

Latest Patents

One of Naoya Tanaka's latest patents is a magnetic structure and magnetic head designed to reduce size while increasing the degree of integration. This innovative design features a substrate with multiple ridge-like projections, each having slant side-surfaces. The structure includes a first conductive passage made up of parallel conductive passages formed on the opposing slant surfaces of adjacent projections. Additionally, it has a first insulating layer, a magnetic core made of magnetic material, a second insulating layer, and a second conductive passage that connects the ends of the first conductive passage to form a helical coil. This design allows for multiple coils to be integrally formed on the same substrate, showcasing Tanaka's ingenuity in magnetic technology.

Career Highlights

Naoya Tanaka is associated with Mitsubishi Electric Corporation, where he continues to innovate in the field of magnetic structures. His work has been instrumental in advancing technologies that rely on magnetic components.

Collaborations

Tanaka has collaborated with notable coworkers, including Hiroshi Fukumoto and Naoshi Yamada, contributing to various projects that enhance the capabilities of magnetic technologies.

Conclusion

Naoya Tanaka's contributions to the field of magnetic structures exemplify his commitment to innovation and technological advancement. His patents reflect a deep understanding of magnetic integration and miniaturization, making him a key figure in this area of research.

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