This inventor holds 1 USPTO granted patent. Top assignee: USA as Represented by Secretary of the Navy. Active years: 1992.
Company Filing History:
Years Active: 1992
Title: Lynn K Thomas: Innovator in Visual Aid Technology
Introduction
Lynn K Thomas is a notable inventor based in San Diego, California. She has made significant contributions to the field of visual display systems, particularly in the context of very low frequency (VLF) signals. Her innovative approach has led to the development of a unique patent that aids operators in understanding incoming signals and their noise environments.
Latest Patents
Lynn K Thomas holds a patent for a "Visual aid for VLF MSK signals." This visual display system provides patterns that assist operators in determining the nature and noise environment of incoming signals. The system integrates a conventional signal receiver and an oscilloscope, which are coupled to a phase detector, a clock circuit, and a frequency synthesizer. The clock circuit synchronizes the operation of these components, while the phase detector includes a digital delay means that imparts a digital time delay between two signals. This setup allows for a display in a lissajous form on the oscilloscope screen, generating patterns that represent the inherent nature of the incoming signal, including noise types, the presence of Doppler shift, or component drift.
Career Highlights
Lynn K Thomas is currently employed by the United States Navy, where she contributes her expertise in visual display technology. Her work has been instrumental in enhancing the understanding of signal processing and noise analysis.
Collaborations
One of her notable collaborators is Paul A Singer, with whom she has worked closely on various projects related to signal processing and visual aids.
Conclusion
Lynn K Thomas is a pioneering inventor whose work in visual aid technology has made a significant impact in the field of signal processing. Her innovative patent demonstrates her commitment to advancing technology and improving operational efficiency in understanding complex signals.