Company Filing History:
Years Active: 2010-2011
Title: Innovations of John A Robinson
Introduction
John A Robinson is a notable inventor based in Cupertino, CA. He has made significant contributions to the field of electronic devices, particularly in power estimation and context switching technologies. With a total of 3 patents, Robinson's work has had a substantial impact on the efficiency and performance of computer chips.
Latest Patents
One of Robinson's latest patents is titled "Power estimation based on block activity." This invention involves a power monitor for electronic devices, such as computer chips, which estimates power consumption by analyzing activity signals from various functional blocks. The estimated power consumption is compared against a predetermined power budget. If the estimated consumption exceeds this budget, the clock speed of the chip is reduced to maintain efficiency.
Another significant patent is "Using scan chains for context switching." This invention presents a novel approach to context switching that utilizes modified scan chains. This design requires less additional silicon area and engineering effort compared to existing methods, while also operating at a faster speed and providing enhanced debug observability during context switching operations.
Career Highlights
John A Robinson is currently employed at Nvidia Corporation, a leading company in the field of graphics processing and AI technology. His work at Nvidia has allowed him to explore innovative solutions that enhance the performance of electronic devices.
Collaborations
Robinson has collaborated with several talented individuals, including Brian D Hutsell and Sameer M Gauria. These collaborations have contributed to the development of cutting-edge technologies in the industry.
Conclusion
John A Robinson's contributions to the field of electronics through his patents and work at Nvidia Corporation highlight his innovative spirit and dedication to advancing technology. His inventions continue to influence the efficiency and performance of electronic devices today.