Ota, Japan

Kazushi Yamaoka


Average Co-Inventor Count = 3.5

ph-index = 4

Forward Citations = 111(Granted Patents)


Location History:

  • Ota, JP (1998 - 1999)
  • Gunma-ken, JP (2001)

Company Filing History:


Years Active: 1998-2001

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4 patents (USPTO):Explore Patents

Title: Kazushi Yamaoka: Innovator in Drug Filling and Heat Insulation Technologies

Introduction

Kazushi Yamaoka is a prominent inventor based in Ota, Japan. He has made significant contributions to the fields of drug filling apparatus and heat insulation technologies. With a total of 4 patents to his name, Yamaoka continues to push the boundaries of innovation in his industry.

Latest Patents

Yamaoka's latest patents include a solid drug filling apparatus designed to enhance the efficiency of filling solid drugs, such as tablets, into vials. This apparatus features a rotary plate with multiple receiving sections that align with tablet cases to facilitate the precise discharge of solid drugs into predetermined vials. The system incorporates a chute and a shutter mechanism to ensure accurate filling.

Another notable patent is a heat insulating structure that improves the workability of fixing vacuum insulators to surfaces. This innovation includes a thermally adherable layer that, when heated, allows for the secure attachment of the vacuum insulator, enhancing thermal efficiency.

Career Highlights

Kazushi Yamaoka is currently employed at Sanyo Electric Co., Ltd., where he applies his expertise in developing advanced technologies. His work has significantly impacted the efficiency and effectiveness of drug filling processes and heat insulation applications.

Collaborations

Yamaoka has collaborated with notable coworkers, including Kazuo Takemasa and Takayuki Shimizu, contributing to various innovative projects within the company.

Conclusion

Kazushi Yamaoka's contributions to innovation in drug filling and heat insulation technologies highlight his role as a leading inventor in his field. His patents reflect a commitment to improving efficiency and functionality in critical applications.

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