Hekinan, Japan

Koichi Ichigo


Average Co-Inventor Count = 5.1

ph-index = 3

Forward Citations = 36(Granted Patents)


Company Filing History:


Years Active: 1998

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3 patents (USPTO):Explore Patents

Title: Koichi Ichigo: Innovator in Electromagnetic Valves

Introduction

Koichi Ichigo is a notable inventor based in Hekinan, Japan. He has made significant contributions to the field of electromagnetic valves, holding a total of 3 patents. His innovative designs have advanced the functionality and efficiency of pressure regulating systems.

Latest Patents

Ichigo's latest patents include an electromagnetic pressure regulating valve and an electromagnetic valve. The electromagnetic pressure regulating valve features a hollow core, a coil surrounding the core, and a plunger that applies a load to a valve member through a shaft fitted in the hollow of the core. This design allows the valve to be actuated when an electric signal is fed to the coil. Additionally, a bushing made of resin material supports the shaft for sliding relative to the core, while an oil passage circulates lubricant to reduce friction. The electromagnetic valve includes a hydraulic circuit coupling with an input port and a strainer that features a mesh filter portion. This strainer is designed to be fixed on the cylindrical wall of the input port, ensuring efficient operation.

Career Highlights

Koichi Ichigo is currently employed at Aisin Aw Co., Ltd., where he continues to develop innovative solutions in the field of electromagnetic technology. His work has been instrumental in enhancing the performance of various hydraulic systems.

Collaborations

Ichigo has collaborated with talented coworkers such as Yoshikazu Sakaguchi and Takenori Kano, contributing to a dynamic team focused on innovation and excellence in engineering.

Conclusion

Koichi Ichigo's contributions to the field of electromagnetic valves demonstrate his commitment to innovation and engineering excellence. His patents reflect a deep understanding of technology and its applications in modern systems.

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