Company Filing History:
Years Active: 2004
Title: The Innovative Mind of Louise Min Chuin Hoo
Introduction
Louise Min Chuin Hoo is a remarkable inventor based in Stanford, California. With a keen interest in multicarrier transmission systems, she has made her mark in the field of communication technologies. Louise is known for her unique methods and devices that optimize the performance of communication signals.
Latest Patents
Louise holds a patent for "Express bit swapping in a multicarrier transmission system." This invention focuses on adaptive methods for changing crucial parameters such as sub-carrier bit allocations and gain within multi-carrier communication signals. The patent outlines a systematic approach where a unit identifies a need for modification and sends an express change request to a second unit. This request specifies which sub-carrier needs alteration and the desired value for the parameter adjustments. The innovative aspect of her work includes an analytical method to monitor communication signals and ensure that changes are successfully implemented based on a detailed analysis of the received signals.
Career Highlights
Throughout her career, Louise has dedicated her efforts to advancing communication technologies. With one patent to her name, she exemplifies the essence of innovation in a rapidly evolving field. Her work not only demonstrates her technical expertise but also her ability to think critically about solving complex problems in communication systems.
Collaborations
Louise has collaborated with talented individuals in her field, including Atul Salvekar and Carlos Aldana. These collaborations have fostered an environment of creativity and innovation, contributing to advancements in communication technologies and improving the effectiveness of multicarrier transmission systems.
Conclusion
In conclusion, Louise Min Chuin Hoo is an influential figure in the realm of inventions related to communication systems. Her patent showcases her inventive spirit and dedication to improving technology. With continued innovations and collaborations, Louise is poised to make even greater contributions to the field in the years to come.