Toms River, NJ, United States of America

Stacy Test



Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2024

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2 patents (USPTO):Explore Patents

Title: Innovations by Stacy Test in Undersea Fiber Optic Transmission Systems

Introduction

Stacy Test is an accomplished inventor based in Toms River, NJ (US). She has made significant contributions to the field of undersea fiber optic transmission systems. With a total of two patents to her name, her work focuses on enhancing the efficiency and reliability of optical communication paths.

Latest Patents

Stacy's latest patents include innovative techniques for enhanced line monitoring and parameter reporting for high fiber count undersea fiber optic transmission systems with multiple switchable branches. These patents provide techniques, devices, and systems that enable the updating of a reportable parameter table database when a reconfigured optical communication path is formed. The switching is performed by a branching unit in an undersea optical communication transmission system. A processor is utilized to obtain system attributes of each respective segment of the reconfigured optical communication path from a first endpoint to a second endpoint. The system attributes are evaluated, and a reportable parameter table is generated based on these evaluations, listing operational and structural parameters of the system.

Career Highlights

Stacy Test has established herself as a key figure in her field through her innovative work at Subcom, LLC. Her contributions have been instrumental in advancing the technology used in undersea communication systems.

Collaborations

Stacy has collaborated with notable coworkers, including Yunlu Xu and Richard Kram, to further enhance the development of her projects.

Conclusion

Stacy Test's work in undersea fiber optic transmission systems showcases her innovative spirit and dedication to advancing communication technology. Her patents reflect her commitment to improving the efficiency and reliability of optical communication paths.

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