Hiratsuka, Japan

Kiyoharu Sasaki


Average Co-Inventor Count = 6.5

ph-index = 2

Forward Citations = 37(Granted Patents)


Company Filing History:


Years Active: 2001-2003

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2 patents (USPTO):Explore Patents

Title: Kiyoharu Sasaki: Innovator in Thermoelectric Technology

Introduction

Kiyoharu Sasaki is a prominent inventor based in Hiratsuka, Japan. He has made significant contributions to the field of thermoelectric technology, holding 2 patents that focus on enhancing thermoelectric performance. His innovative methods have the potential to advance the efficiency of thermoelectric materials and devices.

Latest Patents

Sasaki's latest patents include a thermoelectric element and a method of fabricating the same, as well as a thermoelectric module employing the same. The first patent describes a method that improves the preparation of thermoelectric material by employing hot plastic working in combination. This method involves mixing and heat-melting a raw material, turning it into microglobules, and then plastically deforming the thermoelectric material to achieve an excellent figure of merit. The second patent outlines a process for manufacturing thermoelectric semiconductor material, which includes packing a semiconductor material and solvent into a rubber tube, applying hydraulic pressure, and extruding the material into a rectangular shape.

Career Highlights

Kiyoharu Sasaki is currently associated with Komatsu Corporation, where he continues to innovate in the field of thermoelectric technology. His work has garnered attention for its practical applications and potential impact on energy efficiency.

Collaborations

Sasaki has collaborated with notable coworkers, including Kenichi Tomita and Takeshi Kajihara. Their combined expertise contributes to the advancement of thermoelectric technologies.

Conclusion

Kiyoharu Sasaki's contributions to thermoelectric technology through his innovative patents and collaborations highlight his role as a key inventor in this field. His work promises to enhance the performance and efficiency of thermoelectric materials and devices.

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