Kawasaki, Japan

Hirofumi Takao


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 11(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Hirofumi Takao in Liquid Cooling Systems**

Introduction

Hirofumi Takao, an inventor based in Kawasaki, Japan, has made significant strides in the field of liquid cooling systems. With a patent to his name, he exemplifies the spirit of innovation that drives modern technological advancements.

Latest Patents

Takao's notable patent is for a reservoir tank designed for liquid cooling systems. The reservoir tank is engineered with a multitude of outlets and inlets for coolant circulation, ensuring optimal cooling of electronic devices. The unique design features outlets at the center of the tank's bottom, while the inlets are strategically placed around the outer circumference. This configuration creates a whirlpool effect that effectively stirs the coolant, maintaining a uniform temperature even when varying temperatures return from the electronics.

Career Highlights

As an engineer at Fujitsu Corporation, Hirofumi Takao has applied his expertise to enhance thermal management solutions in electronic devices. His work has been pivotal in improving the efficiency and reliability of cooling systems, which are critical in maintaining optimal performance of electronic components.

Collaborations

During his tenure at Fujitsu Corporation, Takao has collaborated with professional colleagues such as Motohiro Takemae and Takaaki Kanki. Together, they have contributed to advancements in cooling technologies, reflecting a team-oriented approach to innovation.

Conclusion

Hirofumi Takao's contributions to liquid cooling systems through his innovative patent highlight the importance of effective thermal management in contemporary electronics. His collaboration with fellow engineers further exemplifies the collective pursuit of excellence in the field. As technology continues to evolve, his work will undoubtedly play a crucial role in shaping the future of cooling systems.

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