Cupertino, CA, United States of America

James B McElroy


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: James B McElroy: Innovator in Integrated Circuit Technology

Introduction

James B McElroy is a notable inventor based in Cupertino, CA, who has made significant contributions to the field of integrated circuit technology. With a focus on minimizing noise interference and enhancing signal integrity, McElroy's work has implications for various electronic applications.

Latest Patents

McElroy holds a patent for a "Module for interconnecting integrated circuits." This innovative arrangement is designed to interconnect high-density signals of integrated circuits while providing minimal cross-talk, low noise, and controlled impedance. The invention features a thermally conductive baseplate that supports integrated circuit die within a multi-layered substrate. The integrated circuit die are thermally coupled to the baseplate, and the substrate includes apertures for receiving the die. Additionally, tape automated bonding is utilized to connect leads on the integrated circuit die with conductors in the substrate layers. To further reduce noise interference, the multi-layered substrate incorporates separate power and ground layers that are adjacent to each other.

Career Highlights

James B McElroy is associated with Digital Equipment Corporation, where he has contributed to advancements in integrated circuit technology. His innovative approach has led to the development of solutions that enhance the performance and reliability of electronic devices.

Collaborations

One of McElroy's notable coworkers is Donald E Marshall, with whom he has likely collaborated on various projects within the realm of integrated circuits.

Conclusion

James B McElroy's contributions to integrated circuit technology exemplify the importance of innovation in the electronics industry. His patent reflects a commitment to improving signal integrity and reducing noise, which are critical factors in modern electronic design.

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