Location History:
- Atlanta, GA (US) (2000)
- Beaverton, OR (US) (2006)
- Portland, OR (US) (2003 - 2014)
Company Filing History:
Years Active: 2000-2014
Title: Innovations and Contributions of Rajesh R Shah in Beaverton, OR
Introduction
Rajesh R Shah, based in Beaverton, Oregon, is a notable inventor with an impressive record of 19 patents. His work primarily focuses on advancements in processor features and I/O performance, contributing significantly to technological innovations in the field.
Latest Patents
Among his latest inventions is a patent for "Context State Management for Processor Feature Sets." This invention involves context state management based on processor features, where a processor is equipped with instruction logic and state management logic. The state management logic is designed to execute operations as directed by specific instructions pertaining to state management.
Another recent patent addresses "I/O Translation Lookaside Buffer Performance." This invention describes methods and apparatus enhancing the performance of input/output address translation lookaside buffers. It includes mechanisms to lock one or more entries of a cache in response to a locking request, ensuring improved efficiency in I/O operations.
Career Highlights
Rajesh Shah has made significant strides in his career, predominantly associated with Intel Corporation, where he has applied his expertise in processor technologies. His contributions have been pivotal in driving innovations that enhance processor capabilities and efficiency.
Collaborations
Throughout his career, Rajesh has worked alongside esteemed colleagues such as Ashok Raj and Jenlong Wang. Their collaborative efforts have further enriched the landscape of research and development in processor technology, leading to groundbreaking innovations.
Conclusion
Rajesh R Shah stands out as a prominent figure in the field of technology innovation, with a portfolio of patents that reflects his commitment to enhancing processor performance and efficiency. His contributions continue to shape advancements in this crucial area.