Shenzhen, China

Zefei Dou

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Zefei Dou: Innovator in Memory Configuration Technology

Introduction

Zefei Dou, an accomplished inventor based in Shenzhen, China, has made a significant contribution to the field of memory management. With expertise in optimizing system performance, he has developed innovative methods that address complex memory configuration parameters. His work is indicative of the ever-evolving landscape of technology in which memory efficiency is crucial.

Latest Patents

Zefei Dou holds a patent for a "Method and apparatus for adjusting memory configuration parameter." This innovative application outlines a systematic approach for managing memory compression by considering various resource pressures—such as processor, I/O, memory reclaim, and memory swap space pressure. By obtaining multiple pieces of resource pressure data, the method optimally adjusts memory configuration parameters, ensuring that memory management is enhanced while maintaining overall system performance.

Career Highlights

Currently, Zefei Dou is affiliated with Honor Device Co., Ltd., where he actively contributes to the development of advanced technological solutions. His ability to fuse technical knowledge with practical applications underscores his standing as a leading inventor in his field.

Collaborations

Zefei Dou has collaborated with notable professionals, including Yang Hu and Xiaofeng Yuan. This teamwork exemplifies the collaborative spirit essential in research and development, inspiring new ideas and solutions in the tech industry.

Conclusion

Zefei Dou's work in memory configuration technology represents a significant stride in enhancing memory management systems. With one patent to his name and ongoing collaborations, he exemplifies the spirit of innovation that drives advancements in technology. His contributions are invaluable in an era where efficient memory utilization is paramount.

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