Boston, MA, United States of America

Thomas G Chadbourne


Average Co-Inventor Count = 1.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 1976

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1 patent (USPTO):Explore Patents

Title: Thomas G Chadbourne - Innovator in Fluxmeter Technology

Introduction

Thomas G Chadbourne is a notable inventor based in Boston, MA. He holds a unique patent that addresses critical advancements in fluxmeter technology, enhancing the precision of measurements in various applications. His contributions to the field demonstrate innovation and a commitment to improving engineering solutions.

Latest Patents

Chadbourne’s patent, titled "Integrating fluxmeter with input current compensation to cancel drift," introduces an integrating fluxmeter that employs a second electronic integrator. This integrator operates during intervals between test periods to adjust a compensating bias current. Its primary purpose is to accurately cancel any residual drift, ensuring the main integrator delivers precise results. The integrating capacitor used is sufficiently substantial to maintain the stability of the compensating current throughout the test period, moving the technology forward in measurement accuracy.

Career Highlights

Thomas G Chadbourne currently works at Walker Magnetics Group, Inc., a company known for its dedication to innovative magnetic solutions. Throughout his career, Chadbourne has made significant contributions that reflect his expertise and interest in developing technologies that meet industry needs.

Collaborations

While specific collaborations involving Thomas G Chadbourne have not been detailed, his role within Walker Magnetics Group, Inc. likely facilitates partnerships focused on advancing magnetic technologies and precision instrumentation. Such collaborations are vital for cross-pollination of ideas and the driving of innovation in engineering disciplines.

Conclusion

In summary, Thomas G Chadbourne is an influential inventor whose work on integrating fluxmeter technology exemplifies the importance of mitigating measurement errors. His innovative approach continues to inspire advancements within the field of electrical engineering and measurement technology. Through his efforts, the future of precision instrumentation looks promising.

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