Forest, VA, United States of America

Hudson R Carter


Average Co-Inventor Count = 1.1

ph-index = 3

Forward Citations = 36(Granted Patents)


Company Filing History:


Years Active: 1994-1999

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4 patents (USPTO):Explore Patents

Title: Hudson R Carter: Innovator in Combustion Monitoring Technologies

Introduction

Hudson R Carter is a notable inventor based in Forest, Virginia, with a focus on innovations in combustion monitoring technologies. He holds a total of 4 patents that contribute to advancements in the efficiency and safety of fossil-fueled boilers.

Latest Patents

Carter's latest patents include a system for monitoring unburned carbon and other combustibles in fly ash producing fossil-fueled boilers. This innovative system utilizes an infrared imaging camera to count hot particles in the gases downstream of the boiler's furnace region. The data collected is processed to provide signals that help optimize the air/fuel ratio, enhancing combustion efficiency. Another significant patent is his combustion optimization system, which gathers data on the physical and temperature characteristics of the fireball produced by multiple burners. This system processes and displays information related to the NOx content of the hot gases, aiding in the monitoring and control of combustion conditions.

Career Highlights

Throughout his career, Hudson R Carter has worked with reputable companies such as Applied Synergistics, Inc. and Framatome Technologies, Inc. His contributions in these roles have been instrumental in developing technologies that improve boiler performance and reduce emissions.

Collaborations

Carter has collaborated with various professionals in the field, including his coworker John T Huston, to further enhance the effectiveness of his inventions.

Conclusion

Hudson R Carter's work in combustion monitoring technologies showcases his commitment to innovation and environmental sustainability. His patents reflect a deep understanding of combustion processes and a dedication to improving energy efficiency in fossil-fueled systems.

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