Foster City, CA, United States of America

Gregory David Miller


Average Co-Inventor Count = 2.4

ph-index = 10

Forward Citations = 295(Granted Patents)


Location History:

  • Warren, OH (US) (1991)
  • Stanford, CA (US) (1994 - 2000)
  • Severna Park, MD (US) (2006)
  • Foster City, CA (US) (2002 - 2009)

Company Filing History:


Years Active: 1991-2009

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25 patents (USPTO):Explore Patents

Title: Innovations of Gregory David Miller in Ferroelectric Materials and Non-Silicon-Based Devices

Introduction

Gregory David Miller, based in Foster City, California, is an accomplished inventor with a total of 25 patents to his name. His contributions to the field of materials science and device engineering have significantly advanced the understanding and performance of ferroelectric materials and non-silicon-based devices. His work is characterized by a robust combination of theoretical knowledge and practical application.

Latest Patents

One of Miller's latest patents addresses a "Method for increasing bulk conductivity of a ferroelectric material such as lithium tantalate." This innovative method involves processing the ferroelectric material in an environment with metal vapor, heating the material below its Curie temperature. This technique successfully enhances the bulk conductivity of lithium tantalate—a widely used ferroelectric material—without compromising its essential ferroelectric domain properties. Another notable patent of his is for a "Wafer-level seal for non-silicon-based devices." This patent presents a method for sealing the active area of a non-silicon-based device on a wafer, which includes utilizing a sacrificial material and depositing a seal coating. This technology aims to protect the integrity of the device before it is separated into individual units.

Career Highlights

Gregory David Miller has worked with several prestigious organizations, including Silicon Light Machines Corporation, where he contributed to advancements in optical technologies. Additionally, his tenure at Leland Stanford Junior University offered him a platform to collaborate with leading academics and researchers in the field.

Collaborations

Miller's collaborations with esteemed colleagues such as Robert L. Byer and Martin M. Fejer have resulted in a synthesis of ideas that drive innovation. These partnerships reflect a commitment to the advancement of knowledge and technology in their respective fields.

Conclusion

Gregory David Miller’s innovations have had a profound impact on the industries related to ferroelectric materials and non-silicon-based devices. His patented methods not only enhance device performance but also embody the essence of engineering ingenuity. With a well-established career and a record of successful collaborations, Miller continues to be a significant figure in the realm of technological advancements.

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