Shimonoseki, Japan

Chikara Omotani


Average Co-Inventor Count = 8.0

ph-index = 3

Forward Citations = 29(Granted Patents)


Location History:

  • Yamaguchi, JP (1993)
  • Shimonoseki, JP (1992 - 1994)

Company Filing History:


Years Active: 1992-1994

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3 patents (USPTO):Explore Patents

Title: The Innovative Mind of Chikara Omotani: Pioneering Electrical Conductivity

Introduction: Chikara Omotani, an accomplished inventor based in Shimonoseki, Japan, has made significant strides in the field of electrically conductive materials. With a total of three patents to his name, his work contributes to advancements in various industries by enhancing the performance and utility of conductive substances.

Latest Patents: Omotani's latest patents showcase his innovative approach to producing conductive materials. One such patent, titled "Method for producing white electrically conductive zinc oxide," describes a high-yield method for synthesizing white, electrically conductive zinc oxide through a careful process involving the simultaneous addition of an aqueous solution of zinc and other metals to a neutralization reaction solution. This method enables the production of conductive zinc oxide in a controlled manner.

Another notable patent is "Fibrous electrically-conductive filler and process for producing the same." This invention focuses on a fibrous aluminum borate core material coated with conductive substances, ensuring excellent electrical conductivity without peeling off when mixed with basic materials like resin. The versatility of this filler allows for customizable color tones by incorporating coloring agents, making it an essential component in various applications.

Career Highlights: Throughout his career, Chikara Omotani has worked with esteemed companies like Metallgesellschaft Aktiengesellschaft and Mitsui Mining & Smelting Company, Ltd., where he has honed his expertise in material science and electrical engineering. His contributions have paved the way for new innovations in the production of conductive materials.

Collaborations: Omotani has collaborated with notable coworkers such as Takao Hayashi and Norihiro Sato. Their joint efforts in research and development have significantly advanced the understanding and application of electrically conductive materials in contemporary technology.

Conclusion: Chikara Omotani's innovative work reflects his dedication to improving electrical conductivity in materials, with patents that promise to influence various industries. With a focus on producing effective and versatile conductive substances, Omotani continues to be a significant figure in the realm of inventions and innovations.

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