Adachi, Japan

Toru Tanzawa

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Toru Tanzawa: Innovator in Memory Array Technology

Introduction

Toru Tanzawa is a notable inventor based in Adachi, Japan. He has made significant contributions to the field of memory technology, particularly with his innovative patent that enhances the functionality of memory arrays. His work reflects a deep understanding of semiconductor technology and its applications.

Latest Patents

Toru Tanzawa holds a patent for a "Memory array having connections going through control gates." This invention includes apparatuses and methods featuring a substrate, a memory cell string with a body, and a select gate positioned along a portion of the body. The design incorporates control gates located in different levels of the apparatus, enhancing the overall efficiency and performance of memory devices. The patent outlines a conductive connection that couples the select gate or one of the control gates to a component, such as a transistor, in the substrate. This innovative connection can traverse through at least one of the control gates, showcasing a novel approach to memory architecture.

Career Highlights

Throughout his career, Toru Tanzawa has focused on advancing memory technology. His patent represents a significant milestone in his professional journey, demonstrating his commitment to innovation and excellence in the field. With a total of 1 patent, he has established himself as a key player in the development of advanced memory solutions.

Collaborations

Toru Tanzawa has collaborated with talented individuals such as Tamotsu Murakoshi and Deepak Thimmegowda. These partnerships have likely contributed to the refinement and success of his inventions, fostering a collaborative environment that encourages innovation.

Conclusion

Toru Tanzawa's contributions to memory technology through his patent highlight his role as an innovator in the field. His work not only advances the technology but also sets a foundation for future developments in memory arrays.

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