Koshi, Japan

Shogo Kiyama


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Shogo Kiyama - Master of Substrate Liquid Processing

Introduction: Shogo Kiyama, a notable inventor based in Koshi, Japan, has made significant strides in the field of substrate liquid processing. With his innovative mindset, Kiyama has been able to contribute to advancements in technology that enhance operational efficiencies within this niche.

Latest Patents: Kiyama holds a patent for a Substrate Liquid Processing Apparatus designed to improve the gas-liquid separation of exhaust gases from a liquid processing unit. This apparatus features a liquid processing unit along with a first and second exhaust pipe. The unique design enables more effective evacuation of the liquid processing unit through the first exhaust pipe, ensuring robustness and efficiency in the overall processing system.

Career Highlights: Kiyama is currently employed at Tokyo Electron Limited, a leading company in the semiconductor and electronics industry. Throughout his career, he has demonstrated an unwavering commitment to innovation, positioning himself as a thought leader within his organization and the broader technological landscape.

Collaborations: Alongside his coworker, Junya Minamida, Kiyama has been able to collaborate on various projects aimed at refining processes and fostering technological advancements within their field. Their teamwork has resulted in enhanced solutions that benefit their company and the industry at large.

Conclusion: Shogo Kiyama exemplifies the spirit of innovation, highlighting the importance of meticulous design and problem-solving in technology. His contributions to substrate liquid processing through patents and collaboration underscore his role as a leading inventor in this domain. As technology continues to evolve, the impact of inventors like Kiyama will undoubtedly shape the future of industrial processes.

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