Livermore, CA, United States of America

Robert E Rudd


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Innovator Robert E. Rudd and His Contribution to Signal Processing Technologies

Introduction

Robert E. Rudd, a prominent inventor based in Livermore, California, has made significant strides in the field of physics-based signal processing. With a keen focus on advancing technology, he has been granted a patent that showcases his innovative approach to using micromachined cantilever arrays for detection purposes.

Latest Patents

Rudd holds a patent for "Physics-based signal processing algorithms for micromachined cantilever arrays." This invention details a method that employs physics-based algorithms to process signals from micromachined cantilevers. These cantilevers are designed to detect chemical, biological, or physical elements through their deflection. The patent outlines a comprehensive approach that includes modeling the deflection, sensing the cantilevers' response, and comparing signals with a deflection model, thereby enhancing detection capabilities in various applications.

Career Highlights

Robert E. Rudd is affiliated with Lawrence Livermore National Security, LLC, where he applies his expertise to advance security technologies. His contributions are particularly valuable in the fields of defense and environmental monitoring, where precise detection methods are crucial.

Collaborations

Throughout his career, Rudd has collaborated with notable colleagues, including James Vincent Candy and David S. Clague. These connections highlight the collaborative spirit within the research community, fostering innovation through teamwork and shared expertise.

Conclusion

Robert E. Rudd's innovative work and patent in signal processing represent a significant advancement in detection methodologies. His dedication to utilizing physics for practical solutions positions him as an influential figure in the field, with potential implications for various scientific and industrial applications.

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