Orlando, FL, United States of America

Roger M Finnerty


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 8(Granted Patents)


Company Filing History:


Years Active: 1995

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1 patent (USPTO):Explore Patents

Title: Roger M Finnerty: Innovator in Electrodynamic Cooling Systems

Introduction

Roger M Finnerty, based in Orlando, FL, is a recognized inventor known for his contribution to the field of electrodynamic machines. With a focus on enhancing heat transfer, he has been instrumental in innovating methods that improve the efficiency of cooling systems in electrodynamic devices.

Latest Patents

Roger holds a significant patent titled "Method of improving heat transfer in stator coil cooling tubes." This innovative method addresses the critical issue of cooling electrodynamic machines. The invention involves locating a hot-spot along the stator coil's length and deforming the cooling tube adjacent to that hot spot to increase flow resistance. This design allows for improved heat transfer between the stator coil and the cooling medium during the machine's operation, thereby optimizing performance.

Career Highlights

Roger M Finnerty is associated with Westinghouse Electric Corporation, a leader in electrical equipment and energy solutions. His work in the field has highlighted the importance of effective cooling mechanisms in enhancing the performance of electrodynamic machines, showcasing his expertise and commitment to innovation.

Collaborations

Throughout his career, Roger has worked alongside esteemed colleagues, including Kathleen M Biseli and James R Pipkin. These collaborations have fostered an environment of creativity and shared knowledge, propelling advancements in technologies relevant to their field.

Conclusion

Roger M Finnerty's innovative approach and dedication to improving heat transfer in electrodynamic cooling systems mark him as a valuable inventor in the field. His contributions not only advance technology at Westinghouse Electric Corporation but also set a standard for future developments in electrodynamic machine efficiency.

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