This inventor holds 1 USPTO granted patent. Top assignee: National Instruments Corporation. Active years: 2009.
Company Filing History:
Years Active: 2009
Title: Christopher J Squibb: Innovator in I/O Device Synchronization
Introduction
Christopher J Squibb is a notable inventor based in Austin, TX (US). He has made significant contributions to the field of technology, particularly in the synchronization of input/output (I/O) devices. His innovative approach has led to the development of a unique patent that addresses the challenges of timing and operation in I/O systems.
Latest Patents
Christopher J Squibb holds a patent for a system and method for automatically synchronizing multiple I/O devices with homogeneous and/or heterogeneous timing and I/O channel types. The patent, titled "Automatically synchronizing timed circuits on I/O Devices," outlines a graphical program that allows users to specify the configuration and operation of various timed circuits. This program is designed to analyze the timed circuits, configure them according to timing and triggering information, and operate them to perform I/O operations effectively. The patent highlights the importance of user input in setting and querying properties of the circuits, ensuring a tailored approach to I/O device management.
Career Highlights
Christopher is currently employed at National Instruments Corporation, where he continues to innovate and develop solutions for complex engineering challenges. His work at National Instruments has positioned him as a key player in the advancement of I/O device technology.
Collaborations
One of his notable coworkers is Timothy J Hayles, with whom he collaborates on various projects within the company. Their combined expertise contributes to the innovative environment at National Instruments.
Conclusion
Christopher J Squibb's contributions to the field of I/O device synchronization exemplify the impact of innovative thinking in technology. His patent serves as a testament to his dedication to improving the functionality and efficiency of I/O systems.
