Columbus, OH, United States of America

Milan Majoros

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: Milan Majoros - Innovator in Superconducting Fault Current Limiters

Introduction

Milan Majoros is a prominent inventor based in Columbus, OH (US). He has made significant contributions to the field of electrical engineering, particularly in the development of superconducting fault current limiters (FCL). His innovative approach aims to enhance the efficiency and affordability of power grid protection systems.

Latest Patents

Milan Majoros holds a patent for a "Fast-cycling, conduction-cooled, quasi-isothermal, superconducting fault current limiter." This invention addresses the limitations of conventional FCLs, which often require expensive conductors and complex cryogen handling. The disclosed embodiments of his patent describe systems that utilize lower-cost superconductors, eliminate the need for liquid cryogen, and enable fast cycling. These advancements allow the FCL to sustain multiple sequential faults while minimizing recovery time and energy deposition within the cryogenic system.

Career Highlights

Milan Majoros is affiliated with The Ohio State University, where he continues to engage in research and development in the field of superconducting technologies. His work has garnered attention for its potential to revolutionize the way electrical power grids manage fault currents.

Collaborations

Milan has collaborated with notable colleagues, including Michael D. Sumption and Edward Collings. Their combined expertise contributes to the advancement of innovative solutions in electrical engineering.

Conclusion

Milan Majoros is a key figure in the development of superconducting fault current limiters, with a focus on creating efficient and cost-effective solutions for power grid protection. His contributions are paving the way for advancements in electrical engineering and enhancing the reliability of power systems.

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