Stanford, CA, United States of America

Alexander Rucker

USPTO Granted Patents = 2 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2021-2023

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2 patents (USPTO):Explore Patents

Title: Alexander Rucker: Innovator in Cache Prefetching

Introduction

Alexander Rucker, located in Stanford, California, is a notable inventor with a focus on enhancing computer performance through innovative cache prefetching methods. With two patents to his name, his contributions are significant in the ever-evolving field of technology.

Latest Patents

Rucker's latest patents revolve around a novel method of cache prefetching that increases the hit rate of subsequent faster caches. The core idea involves modestly increasing the size of a cache to include a short pointer that predicts the next memory address within the same cache. Upon a cache hit, the predicted memory address identified by this pointer is utilized to push the associated entry to the next faster cache, provided that a valid short pointer is present. This dual-patent innovation presents a critical advancement in speed and efficiency in processing data.

Career Highlights

Currently, Alexander Rucker works at Marvell Asia Pte., Ltd., where he applies his expertise in cache prefetching to enhance the company's technological offerings. His career is marked by his commitment to advancing technology, especially in systems that require rapid data retrieval and processing capabilities.

Collaborations

Rucker collaborates with talented professionals such as Shay Gal-On and Srilatha Manne. Together, they form a dynamic team that focuses on pushing the boundaries of what is achievable in the realm of cache-related technology.

Conclusion

In summary, Alexander Rucker's contributions to the field of cache prefetching represent essential advancements in technology. As he continues to innovate at Marvell Asia Pte., Ltd., his work not only reflects his dedication but also significantly impacts the future of computing efficiency.

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