John David Hopkins

Meridian, ID, United States of America

John David Hopkins

Average Co-Inventor Count = 2.7

ph-index = 12

Forward Citations = 421(Granted Patents)

Forward Citations (Not Self Cited) = 265(Sep 21, 2024)

DiyaCoin DiyaCoin 0.95 

Inventors with similar research interests:


Location History:

  • Lansing, MI (US) (1990)
  • Rives Junction, MI (US) (2010)
  • Boise, ID (US) (2006 - 2022)
  • Meridian, ID (US) (2016 - 2024)


Years Active: 1990-2025

where 'Filed Patents' based on already Granted Patents

238 patents (USPTO):

Title: John David Hopkins: A Prolific Innovator in Memory Array Technology

Introduction:

John David Hopkins, a seasoned inventor based in Meridian, ID, has made remarkable contributions to the field of memory array technology. With an impressive portfolio encompassing 153 patents, Hopkins has demonstrated his expertise in the design and fabrication of memory arrays and the integration of innovative materials into memory cell structures. In this article, we will delve into his latest patents, explore his illustrious career highlights, highlight his collaborations with notable coworkers, and acknowledge his significant contributions to the field.

Latest Patents:

Hopkins' recent patents focus on memory arrays and methods used in forming a memory array comprising strings of memory cells. These patents introduce innovative concepts and materials to enhance memory cell performance and overall array efficiency. The first patent introduces a memory array comprising strings of memory cells, which employ a vertical stack with alternating insulative and conductive tiers. By incorporating channel-material strings of memory cells that project upwards from the uppermost tier, and employing specific insulator materials, Hopkins presents a novel design to improve memory cell functionality and integration.

In his second patent, Hopkins introduces an integrated circuitry and method used in forming a memory array comprising strings of memory cells. This design incorporates lateral memory blocks with vertically stacked insulative and conductive tiers, allowing for improved spatial efficiency. Additionally, the integration of specific insulator materials, including solid carbon and nitrogen-containing material, further optimizes the memory array performance.

Career Highlights:

Throughout his career, Hopkins has held significant positions in renowned companies, such as Micron Technology Incorporated and Intel Corporation. At Micron Technology, he made substantial contributions to the development of cutting-edge memory technologies. His expertise in memory arrays and materials allowed him to drive innovation and improve memory performance, solidifying Micron's position as a leading player in the industry. Hopkins continued his illustrious career at Intel Corporation, where he further contributed to the advancement of memory technologies, positioning Intel as a key player in the semiconductor industry.

Collaborations:

Hopkins has had the privilege of working alongside esteemed colleagues in his career, including Jordan D Greenlee and Gordon A Haller. Collaborative efforts with Greenlee and Haller have undoubtedly played a pivotal role in the realization of innovative memory array technologies. Their combined knowledge and expertise have greatly influenced the field and led to advancements that continue to shape the industry.

Conclusion:

John David Hopkins' extensive patent portfolio, coupled with his career achievements, showcases his significant contributions to the field of memory array technology. His latest patents demonstrate his ingenuity in memory array design and materials integration, pushing boundaries and driving industry-wide innovation. Collaborating with notable coworkers has further enriched his work, allowing for the realization of groundbreaking advancements. Hopkins' dedication and passion for technological advancements continue to shape the field of memory arrays, inspiring future generations of inventors, and solidifying his legacy as a true innovator.

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