Toyama, Japan

Tohru Matsuoka


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: Tohru Matsuoka: Innovator in Solenoid Valve Technology

Introduction

Tohru Matsuoka is a notable inventor based in Toyama, Japan. He has made significant contributions to the field of valve technology, particularly with his innovative solenoid valve design. His work exemplifies the intersection of engineering and practical application in fluid control systems.

Latest Patents

Matsuoka holds a patent for a solenoid valve that features a unique design. The valve comprises a valve body and a poppet that is vertically slidable within the valve body. This poppet is moved to and from a valve seat to open and close an oil passage. The design includes a cylindrical tube poppet that is oil-tight and supported by a guide rod. The guide rod has a valve seat at its bottom and an oil passage for communication with the interior of the poppet. This innovative design allows the solenoid valve to function as both an on-off valve and a relief valve.

Career Highlights

Matsuoka's career is marked by his dedication to developing advanced valve technologies. His patent demonstrates his ability to create solutions that enhance the efficiency and functionality of fluid control systems. The solenoid valve he developed is particularly notable for its proportional control capabilities, which are achieved through the integration of an armature with the head of the poppet.

Collaborations

Throughout his career, Matsuoka has collaborated with talented individuals such as Takashi Nishimoto and Fumio Honda. These collaborations have likely contributed to the refinement and success of his innovative designs.

Conclusion

Tohru Matsuoka's contributions to solenoid valve technology highlight his inventive spirit and engineering expertise. His patented design not only improves fluid control but also showcases the potential for innovation in mechanical systems.

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