Fukuoka, Japan

Tsutomu Sasao


Average Co-Inventor Count = 2.0

ph-index = 2

Forward Citations = 15(Granted Patents)


Company Filing History:


Years Active: 2009-2010

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2 patents (USPTO):Explore Patents

Title: Tsutomu Sasao: Innovator in Logic Synthesis and Programmable Logic Devices

Introduction

Tsutomu Sasao is a prominent inventor based in Fukuoka, Japan. He has made significant contributions to the fields of logic synthesis and programmable logic devices. With a total of 2 patents, his work has advanced the technology used in digital circuits and logic functions.

Latest Patents

Sasao's latest patents include a device for reducing the width of graphs and a method to reduce the width of graphs. Additionally, he has developed a device for logic synthesis that can synthesize LUT logic circuits with intermediate outputs for multiple-output logic functions. This device incorporates various means to store and process Binary Decision Diagrams (BDD) for characteristic functions, allowing for efficient logic synthesis. Another notable invention is a programmable logic device that can adapt the number of input lines and memory rails according to the desired logic function, optimizing memory size and configuration.

Career Highlights

Tsutomu Sasao is affiliated with the Kitakyushu Foundation for the Advancement of Industry, Science and Technology. His work at this institution has allowed him to focus on innovative solutions in the realm of logic design and synthesis. His inventions have been instrumental in enhancing the efficiency and functionality of programmable logic devices.

Collaborations

Sasao has collaborated with Yukihiro Iguchi, contributing to the development of advanced technologies in their field. Their partnership has fostered innovation and has led to significant advancements in logic synthesis.

Conclusion

Tsutomu Sasao's contributions to the fields of logic synthesis and programmable logic devices have made a lasting impact on technology. His innovative patents and collaborative efforts continue to shape the future of digital circuit design.

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