This inventor holds 1 USPTO granted patent. Top assignee: Texas Instruments Corporation. Active years: 1991.
Company Filing History:
Years Active: 1991
Title: Bruce L Beverly - Innovator in Position Tracking Technology
Introduction
Bruce L Beverly is an accomplished inventor based in Johnson City, TN (US). He has made significant contributions to the field of industrial automation through his innovative patent. His work focuses on enhancing the functionality of moving parts in robotic systems.
Latest Patents
Bruce L Beverly holds a patent for a "Device for tracking and recording the position reached by a moving part." This device is designed to record the position of moving components, such as the arm of an industrial robot powered by a rotary motor. The invention includes an angular-position transducer, capable of generating signals that indicate the position reached during rotation. Additionally, it features counting means that store a cumulative count of the signals generated, ensuring accurate tracking of the moving part's position. The device is equipped with a power supply, such as a buffer battery, to maintain functionality even without an external power source. Bruce's patent represents a significant advancement in the field of robotics.
Career Highlights
Bruce L Beverly is associated with Texas Instruments Corporation, where he has contributed to various projects that leverage his expertise in automation and robotics. His innovative approach has led to the development of technologies that improve efficiency and precision in industrial applications.
Collaborations
Bruce has worked alongside notable colleagues, including Ernesto De Ferrari and Alan D McNutt. Their collaborative efforts have fostered an environment of innovation and creativity within their projects.
Conclusion
Bruce L Beverly is a notable inventor whose work in position tracking technology has made a lasting impact on the field of robotics. His patent demonstrates his commitment to advancing industrial automation and improving the functionality of robotic systems.
