Kokubu, Japan

Hiroshi Kikuyama


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 1994

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1 patent (USPTO):Explore Patents

Title: Hiroshi Kikuyama: Innovator in Dielectric Ceramic Composition

Introduction

Hiroshi Kikuyama is a notable inventor based in Kokubu, Japan. He has made significant contributions to the field of dielectric materials, particularly through his innovative patent related to dielectric ceramic compositions. His work has implications for various electronic applications, including multilayer ceramic capacitors (MLCCs).

Latest Patents

Hiroshi Kikuyama holds a patent for a dielectric ceramic composition. The patent describes a specific ratio of components expressed as xPb(Mg.sub.1/3 Nb.sub.2/3)O.sub.3 --yPb(Zn.sub.1/3 Nb.sub.2/3)O.sub.3 --zPb(Sm.sub.1/2 Nb.sub.1/2) O.sub.3. The values of x, y, and z are strategically set within defined coordinates in a triangular diagram, ensuring optimal performance. The composition also includes BaTiO.sub.3 and MnO.sub.2, resulting in a dielectric ceramic with a high dielectric constant, low dissipation factor, and enhanced stability.

Career Highlights

Hiroshi Kikuyama is associated with Kyocera Corporation, a leading company in the electronics sector. His work has contributed to advancements in ceramic materials that are essential for modern electronic devices. His innovative approach has led to the development of ceramics that can be baked at lower temperatures while maintaining high strength and density.

Collaborations

Hiroshi has collaborated with notable colleagues such as Nobuo Yokoe and Hitoshi Ohkoda. Their combined expertise has furthered the research and development of dielectric materials, enhancing the capabilities of electronic components.

Conclusion

Hiroshi Kikuyama's contributions to dielectric ceramic compositions exemplify the importance of innovation in the electronics industry. His patent reflects a commitment to advancing material science, which is crucial for the development of efficient electronic devices.

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