Tokyo, Japan

Naoaki Hidaka


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Naoaki Hidaka: Innovator in Thermoelectric Conversion Technology

Introduction

Naoaki Hidaka is a prominent inventor based in Tokyo, Japan. He is known for his innovative contributions to thermoelectric conversion technology. His work focuses on enhancing the efficiency of thermoelectric modules, which are crucial for energy conversion applications.

Latest Patents

Naoaki Hidaka holds a patent for a thermoelectric conversion module and structure for a thermoelectric conversion element. This patent describes a thermoelectric conversion module that includes a base material with heat insulation properties and carbon nanotube yarn helically wound around it. The design features P-type and N-type parts that are alternately arranged and series-connected along the carbon nanotube yarn. One side of the helix serves as a heat reception part, while the opposite side functions as a heat dissipation part. The lengths of the P-type and N-type parts are shorter than the length of a one-turn portion of the helix, ensuring efficient thermal management.

Career Highlights

Naoaki Hidaka is associated with TPR Co., Ltd., where he continues to develop innovative technologies. His work has significantly contributed to advancements in thermoelectric materials and applications. With a focus on practical solutions, he aims to improve energy efficiency in various systems.

Collaborations

Naoaki Hidaka has collaborated with notable colleagues, including Toshiaki Shimizu and Shinpei Teshima. These partnerships have fostered a creative environment that encourages the development of cutting-edge technologies.

Conclusion

Naoaki Hidaka's contributions to thermoelectric conversion technology exemplify the importance of innovation in energy efficiency. His patent and ongoing work at TPR Co., Ltd. highlight his commitment to advancing this field. His efforts are paving the way for future developments in thermoelectric applications.

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