Nisshin, Japan

Takeshi Kaino



Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Takeshi Kaino: Innovator in Vehicle Engine Control Technology

Introduction

Takeshi Kaino, an inventive mind from Nisshin, Japan, has made strides in the field of vehicle technology. With a patent for a Vehicle Engine Control Device, he is contributing to advancements in automotive engineering at Toyota Jidosha Kabushiki Kaisha.

Latest Patents

Takeshi Kaino holds a significant patent for a Vehicle Engine Control Device. This innovative device is designed to enhance vehicle efficiency by stopping fuel injection once a predetermined fuel cut condition is satisfied. When the fuel injection is ceased, the system monitors the inertia of the power transmission system that rotates with the engine. If this rate of inertia is smaller than that acting on the output shaft of the engine, the device allows fuel injection to restart at a lower engine rotation speed. This design incorporates a clutch which connects and interrupts power transmission, further optimizing performance based on the clutch's operational amount.

Career Highlights

Kaino's work at Toyota Jidosha Kabushiki Kaisha has positioned him as a significant contributor to automotive innovations. His focus on engine control technology demonstrates his commitment to improving vehicle functionality and efficiency. His single patent exemplifies his skill and dedication in his field.

Collaborations

Takeshi collaborates with talented coworkers Ryo Suzuki and Akiyoshi Negishi. Together, they form a dynamic team dedicated to pushing the boundaries of automotive technology and innovation.

Conclusion

In conclusion, Takeshi Kaino represents the innovative spirit of automotive engineering in Japan. His patented Vehicle Engine Control Device showcases his ability to blend technology with practicality. As he continues to work with industry leaders at Toyota, Kaino's contributions are likely to shape the future of vehicle efficiency and performance.

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