Pittsford, NY, United States of America

Timothy J Fuller

Average Co-Inventor Count = 3.6

ph-index = 23

Forward Citations = 1,800(Granted Patents)

Forward Citations (Not Self Cited) = 1,584(Sep 21, 2024)

DiyaCoin DiyaCoin 3.70 

Inventors with similar research interests:


Location History:

  • Henrietta, NY (US) (1992 - 1993)
  • West Henrietta, NY (US) (1990 - 1996)
  • W. Henrietta, NY (US) (1992 - 2000)
  • Agawam, MA (US) (2013)
  • Palm Bay, FL (US) (2021)
  • Pittsford, NY (US) (1995 - 2022)
  • Warren, MI (US) (2022)


Years Active: 1990-2022

where 'Filed Patents' based on already Granted Patents

207 patents (USPTO):

Title: Inventor Spotlight: Timothy J Fuller's Contributions to Technological Advancements

Introduction:

In the world of innovation, there are names that stand out for their remarkable contributions to technological advancements. One such notable figure is Timothy J Fuller, hailing from Pittsford, NY, USA. With an impressive portfolio of 206 patents, Fuller has made significant strides in various fields. This article aims to highlight his latest patents, career highlights, collaborations, and the impact of his work on the industry.

Latest Patents:

Among Timothy J Fuller's recent patents is the "Cure-in-place Lightweight Thermally-Conductive Interface." This invention focuses on a thermal interface member that effectively manages heat transfer between a heat sink and a heat-releasing device. The innovative design consists of a thermally-conductive, cure-in-place, polymer foam pad, ensuring even contact with both the heat sink and the heat-releasing device. Additionally, the interface member absorbs and directs the released thermal energy to the heat sink. The patent outlines the unique matrix structure of the polymer foam pad, including anisotropic and isotropic thermally conductive filler materials, characterized by a foam density below 0.5 g/cm.

Fuller's second recent patent is for a "Method for Making Silicon-Containing Composite Electrodes for Lithium-Based Batteries." This invention focuses on the development of electroactive materials with a nitrogen-containing carbon coating and composite electrode materials for high-energy-density lithium-based batteries. The method involves coating a silicon-containing electroactive material with a nitrogen-containing carbon layer by heating a mixture of the electroactive material and nitrogen-containing precursor materials. The resulting nitrogen-containing carbon coating optimizes the performance of lithium-based batteries, further enhancing their energy density.

Career Highlights:

Throughout his career, Timothy J Fuller has made notable contributions while working at renowned companies such as Xerox Corporation and General Motors Global Technology Operations LLC (GM GTO). His vast patent portfolio showcases his expansive knowledge and dedication to advancing various technological fields. Fuller's patents span across diverse areas, including materials science, electronics, and energy storage.

Collaborations:

Collaboration is often an essential aspect of innovation, and Timothy J Fuller has worked with esteemed colleagues to achieve his remarkable accomplishments. Notable coworkers include John F Yanus and Damodar M Pai, both recognized professionals in their respective fields. These collaborations demonstrate the power of teamwork and knowledge-sharing in pushing the boundaries of technological advancements.

Conclusion:

Timothy J Fuller's impressive resume leaves no doubt about his significant contributions to the world of innovation. His portfolio of 206 patents showcases his expertise in various fields, including the development of thermally-conductive interfaces and advancements in lithium-based battery electrode materials. With a career spanning reputable companies like Xerox Corporation and GM GTO, Fuller exemplifies the hard work and determination of inventors striving to advance technology for the betterment of society. We eagerly anticipate future contributions from this outstanding innovator that will undoubtedly shape the future of technological advancements.

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