Suffolk, VA, United States of America

Mark C Roth


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Innovations of Mark C Roth in Optical Sensing Technologies

Introduction

Mark C Roth, based in Suffolk, Virginia, is an accomplished inventor recognized for his contributions to optical sensing technologies. He holds a patent that addresses the critical challenges associated with measuring displacements and strains at ultra-high temperatures.

Latest Patents

Roth's most notable patent is titled "Optical method for detecting displacements and strains at ultra-high temperatures during thermo-mechanical testing." This innovative method incorporates speckle optics to achieve precise displacement and strain measurements in environments where conventional techniques fall short. Additionally, it employs specialized high-temperature pattern materials that withstand extreme thermal conditions while minimizing optical aberrations. The use of a purge medium further enhances the method by reducing optical distortions and preventing oxidation of the target specimen.

Career Highlights

Mark C Roth is affiliated with the National Aeronautics and Space Administration (NASA), where he contributes to the advancement of technology through his research and inventions. His work has demonstrated significant potential for improving the accuracy of measurements in high-temperature applications, which is crucial for numerous aerospace and engineering projects.

Collaborations

Roth has collaborated with notable professionals in his field, including Russell W Smith and H Kevin Rivers. Their combined expertise enhances the development and refinement of innovative measurement techniques, fostering advancements in optical sensing technologies.

Conclusion

Mark C Roth's pioneering work in optical measurement methods represents a significant leap forward in high-temperature testing capabilities. His inventions not only improve the accuracy of scientific measurements but also contribute to the broader field of aerospace engineering, showcasing the importance of innovation in advancing technology.

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