Rockford, IL, United States of America

Martha J Campbell


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 1995

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1 patent (USPTO):Explore Patents

Title: Martha J Campbell: Innovator in Heat Exchange Technology

Introduction

Martha J Campbell is a notable inventor based in Rockford, IL (US). She has made significant contributions to the field of heat exchange systems, particularly with her innovative designs that enhance efficiency and performance.

Latest Patents

Martha holds a patent for her invention titled "Shear flow/jet fin condenser." This compact, rugged, and lightweight condenser structure is designed for heat exchange systems. It is fabricated in layers and incorporates a jet fin structure for effective heat exchange with a single-phase coolant fluid. The tapered passages maintain a relatively constant vapor flow velocity, ensuring a consistent and high-efficiency flow regime in refrigerant fluids that include both vapor and liquid phases. The layered construction allows for economical fabrication in various configurations and heat exchange capacities. This design is highly tolerant of variations in acceleration forces, providing consistent heat exchange performance across a wide range of conditions.

Career Highlights

Martha is associated with Sundstrand Corporation, where she has applied her expertise in developing advanced heat exchange technologies. Her work has been instrumental in improving the efficiency of thermal systems, making them more reliable and effective.

Collaborations

Martha has collaborated with notable colleagues, including Robert Scott Downing and Timothy J Bland. Their combined efforts have contributed to the advancement of innovative technologies in their field.

Conclusion

Martha J Campbell's contributions to heat exchange technology exemplify her innovative spirit and dedication to engineering excellence. Her patent for the shear flow/jet fin condenser showcases her ability to create solutions that enhance performance and efficiency in thermal systems.

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