Higashimurayama, Japan

Seiji Takeuchi


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2007

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1 patent (USPTO):Explore Patents

Title: Seiji Takeuchi: Innovator in Data Processing Technologies

Introduction

Seiji Takeuchi, located in Higashimurayama, Japan, is an accomplished inventor with a focus on enhancing data processing technologies. With one significant patent to his name, Takeuchi has contributed valuable innovations that aim to improve the stability and efficiency of data processors.

Latest Patents

Takeuchi's notable patent, titled "Data processor employing register banks with overflow protection to enhance interrupt processing and task switching," addresses critical challenges in data processing. This invention prevents undesirable operation stops in a data processor caused by overflow situations in multiple register banks. By incorporating a status register that includes an overflow flag, the invention ensures that when an interrupt exception occurs, the data processor can save and restore data effectively, enhancing the overall system reliability.

Career Highlights

Seiji Takeuchi is associated with Renesas Technology Corporation, where he has applied his expertise to drive advancements in technology. His work focuses on developing processes that improve the functionality of data processors, particularly in task switching and interrupt processing.

Collaborations

Throughout his career, Takeuchi has collaborated with esteemed colleagues, including Yasuo Sugure and Tomomi Ishikura. Together, they have worked on projects that push the boundaries of data processing technology, contributing to the company's reputation as a leader in innovative solutions.

Conclusion

With his inventive spirit and dedication to advancing technology, Seiji Takeuchi exemplifies the qualities of a forward-thinking inventor. His patented innovations showcase his commitment to improving data processing systems, ensuring greater reliability and efficiency in modern computing.

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