This inventor holds 3 USPTO granted patents. Top assignee: Brigham Young University. Active years: 1990-1991.
Company Filing History:
Years Active: 1990-1991
Title: Larry V Knight: Innovator in Radiation Detection Technology
Introduction
Larry V Knight is a notable inventor based in Provo, UT (US), recognized for his contributions to the field of radiation detection technology. With a total of 3 patents to his name, Knight has developed innovative methods that enhance the functionality and efficiency of radiation detection systems.
Latest Patents
One of Knight's latest patents is titled "Layered devices having surface curvature." This invention outlines a method for treating a substrate with first and second sides to produce curvature in the first surface. The process involves removing material from the second side of the substrate according to a predetermined pattern and applying a stress-producing film to induce the desired curvature.
Another significant patent is the "Method of manufacturing radiation detector window structure." This invention describes a radiation detector window structure designed for use with radiation detection systems. It features a frame with spaced-apart ribs that support a thin film of material, allowing for the detection of radiation while filtering out unwanted signals. The design minimizes the risk of damaging the film, ensuring optimal performance.
Career Highlights
Larry V Knight is affiliated with Brigham Young University, where he continues to contribute to research and development in his field. His work has significantly impacted the design and manufacturing processes of radiation detection technologies.
Collaborations
Knight has collaborated with esteemed colleagues such as James M Thorne and Richard C Woodbury, further enhancing the innovative capabilities within his research environment.
Conclusion
Larry V Knight's inventive spirit and dedication to advancing radiation detection technology have led to significant advancements in the field. His patents reflect a commitment to improving the efficiency and effectiveness of radiation detection systems.
