This inventor holds 2 USPTO granted patents. Top assignee: Advanced Micro Devices Corporation. Active years: 2004-2005.
Company Filing History:
Years Active: 2004-2005
Title: Thomas J McKeone: Innovator in Integrated Circuit Heating Systems
Introduction
Thomas J McKeone is a notable inventor based in Austin, TX (US). He has made significant contributions to the field of semiconductor technology, particularly in the area of integrated circuit heating systems. With a total of 2 patents, McKeone's work has enhanced the analysis and functionality of semiconductor dies.
Latest Patents
McKeone's latest patents include an "Integrated Circuit Heating System and Method Therefor" and an "Integrated Circuit Internal Heating System and Method Therefor." The first patent focuses on enhancing semiconductor die analysis through a method that utilizes a heater with multiple heating elements. This system allows for selective heating of the die, which is thermally coupled to the heater. By operating the die while heating a specific portion, a response can be detected and used for analysis, improving critical timing path analysis. The second patent similarly enhances substrate removal for die analysis by incorporating heating elements within the semiconductor die itself. This method also enables controllable heating, facilitating better analysis of the die's performance.
Career Highlights
Thomas J McKeone is currently employed at Advanced Micro Devices Corporation, a leading company in semiconductor technology. His work at AMD has allowed him to focus on innovative solutions that improve the efficiency and effectiveness of semiconductor analysis.
Collaborations
One of McKeone's notable coworkers is David Harry Eppes. Their collaboration has likely contributed to the advancements in the technologies they are developing.
Conclusion
Thomas J McKeone's contributions to integrated circuit heating systems have made a significant impact on semiconductor technology. His innovative patents demonstrate his commitment to enhancing die analysis and improving the functionality of semiconductor devices.
