Company Filing History:
Years Active: 2002-2009
Title: Michael Walk - Innovator in Electronic Substrate Technology
Introduction
Michael Walk is a prominent inventor based in Mesa, AZ (US), known for his significant contributions to the field of electronic substrate technology. With a total of 16 patents to his name, Walk has been instrumental in advancing methods for manufacturing imprinted substrates that enhance electronic assembly processes.
Latest Patents
Among his latest patents are innovative methods for manufacturing imprinted substrates. One patent describes a package that includes at least one electronic component mounted on an imprinted substrate. This substrate comprises conductive traces, vias, and patterns of lands on one or more layers. Notably, these features can be formed by imprinting in a single operation rather than sequentially. Additionally, conductor features such as trenches, holes, and planes can be created in various sizes simultaneously. Another patent focuses on substrate-imprinting methods, where a package includes at least one electronic component mounted on a substrate formed through imprinting. This substrate also contains conductive traces, vias, and patterns of lands, with the ability to form conductor features of different geometries simultaneously on an imprintable tape.
Career Highlights
Michael Walk has made a significant impact in his field while working at Intel Corporation. His work has not only contributed to the advancement of electronic components but has also paved the way for more efficient manufacturing processes in the tech industry.
Collaborations
Throughout his career, Walk has collaborated with notable colleagues, including Yuan-Liang Li and David Gregory Figueroa. These collaborations have further enriched his work and contributed to the innovative solutions he has developed.
Conclusion
Michael Walk's contributions to electronic substrate technology through his patents and work at Intel Corporation highlight his role as a leading inventor in the field. His innovative methods continue to influence the manufacturing processes of electronic components, showcasing the importance of his work in advancing technology.