This inventor holds 1 USPTO granted patent and 3 published patent applications. Top assignee: Texas Instruments Corporation. Active years: 2007.
Company Filing History:
Years Active: 2007
Title: Clayton Gibbs: Innovator in FIFO-DMA Interface Technology
Introduction
Clayton Gibbs is a notable inventor based in McKinney, TX (US). He has made significant contributions to the field of digital signal processing through his innovative patent. His work focuses on enhancing the efficiency and reliability of data transfer processes in computing systems.
Latest Patents
Clayton Gibbs holds a patent for a "FIFO interface for flag-initiated DMA frame synchro-burst operation." This invention describes a modification of FIFO hardware that allows for improved use of FIFOs for burst reading from or writing to a processor direct memory access unit. The technology utilizes either an expansion bus or an external memory interface, employing FIFO flag-initiated bursts. The modifications ensure that the FIFO-DMA interface is immune to deadlock conditions and the generation of spurious interrupt events during burst transfers. By delaying the programmable flag assertions within the FIFO until after the current burst is complete, the interface can synchronize frame transfers on the digital signal processor, even if the processor lacks this functionality.
Career Highlights
Clayton Gibbs is currently employed at Texas Instruments Corporation, where he continues to develop innovative solutions in the field of electronics and computing. His work has had a lasting impact on the efficiency of data transfer mechanisms, making significant strides in the industry.
Collaborations
Some of Clayton's coworkers include Natarajan Kurian Seshan and Kyle Castille. Their collaborative efforts contribute to the advancement of technology at Texas Instruments Corporation.
Conclusion
Clayton Gibbs is a distinguished inventor whose work on FIFO-DMA interface technology has improved data transfer processes in computing systems. His contributions continue to influence the field and enhance the performance of digital signal processing.
