Osaka, Japan

Yoshimi Ota


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 1990

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1 patent (USPTO):Explore Patents

Title: Innovations of Yoshimi Ota: Pioneering Change Speed Control in Hydraulic Transmission

Introduction: Yoshimi Ota, a talented inventor based in Osaka, Japan, has made a noteworthy contribution to the field of hydraulic transmission technology. With a unique approach to innovation, she has developed a patent that enhances the reliability and efficiency of hydraulic systems.

Latest Patents: Yoshimi Ota holds a patent for a "Change Speed Control Structure for Hydraulic Transmission." This invention includes a rotary valve for controlling multiple hydraulic actuators and features a shift lever that extends through a specially designed crooked guide groove. This innovative guide groove incorporates three parallel straight portions that showcase various change speed positions. A bight portion interconnects adjacent straight portions, allowing for seamless transitions in speed control. Her invention promises to improve the operation of hydraulic transmissions significantly.

Career Highlights: Yoshimi Ota is associated with Kubota Corporation, a leading company in the manufacturing of machinery and equipment. Her relentless pursuit of innovation has led to advancements in hydraulic transmission technology, elevating the company’s position as a key player in the industry.

Collaborations: Throughout her career, Yoshimi has worked alongside esteemed colleagues such as Satoshi Machida and Shigekazu Hasegawa, both of whom have been instrumental in fostering a collaborative environment that encourages the exploration of new ideas and methods in engineering.

Conclusion: Yoshimi Ota's inventive contributions, particularly her patented change speed control structure, reflect her dedication to improving hydraulic transmission systems. As she continues her work at Kubota Corporation, the engineering community looks forward to seeing what further innovations she will bring to light in the future.

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