Aichi-ken, Japan

Yasunori Murayama


Average Co-Inventor Count = 1.8

ph-index = 2

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 2002-2003

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2 patents (USPTO):Explore Patents

Title: Yasunori Murayama: Innovator in Acceleration Sensor Technology

Introduction

Yasunori Murayama is a notable inventor based in Aichi-ken, Japan. He has made significant contributions to the field of sensor technology, particularly in the development of acceleration sensors. With a total of 2 patents to his name, Murayama's work showcases his innovative approach to engineering challenges.

Latest Patents

Murayama's latest patents include two distinct designs for acceleration sensors. The first patent describes an acceleration sensor that maintains a supporting body at a predetermined angle, even when the inclining member is tilted. This design features a U-shaped limiting protrusion and predetermined clearances that allow for the vertical alignment of the bracket's center line, regardless of the seatback's inclination. The second patent focuses on an acceleration sensor that reliably detects acceleration within a fixed range of inclination. This invention incorporates a unique gear design that enhances space efficiency by minimizing unnecessary movement of components when the inclination exceeds a predetermined angle.

Career Highlights

Yasunori Murayama is associated with Kabushiki Kaisha Tokai Rika Denki Seisakusho, a company known for its advancements in electronic components and systems. His work has contributed to the company's reputation for innovation in sensor technology.

Collaborations

Murayama has collaborated with talented coworkers, including Tomonori Nagata and Keiichi Kato. Their combined expertise has likely played a role in the successful development of Murayama's patents.

Conclusion

Yasunori Murayama's contributions to acceleration sensor technology reflect his innovative spirit and dedication to engineering excellence. His patents demonstrate a commitment to improving functionality and efficiency in sensor design.

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