Tallahassee, FL, United States of America

Carlos Sanabria


 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2020

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2 patents (USPTO):Explore Patents

Title: Innovations by Carlos Sanabria in Superconducting Technology

Introduction

Carlos Sanabria is an accomplished inventor based in Tallahassee, Florida. He has made significant contributions to the field of superconducting technology, holding two patents that showcase his innovative approaches. His work focuses on enhancing the performance of NbSn superconducting materials, which are critical for various applications in advanced technology.

Latest Patents

Sanabria's latest patents include a novel heat treatment method for NbSn superconducting strands. This method utilizes Nausite membranes to reduce the volume fraction of the η phase, minimizing its liquefaction and resulting in better-connected NbSn. The heat treatment is efficient, requiring only one stage aside from the final NbSn reaction stage, and it enables a remarkable 28% increase in critical current density at 16 T. Another significant patent involves a method for producing multifilament NbSn superconducting wire. This method ensures a Jc value of at least 2000 A/mm at 4.2 K and 12 T by carefully assembling Cu-encased Nb rods within a matrix, optimizing the ratios of Nb, Cu, and Sn to achieve superior performance.

Career Highlights

Carlos Sanabria is currently employed at Bruker Ost LLC, where he continues to push the boundaries of superconducting technology. His innovative methods and patents have positioned him as a key figure in the development of advanced superconducting materials.

Collaborations

Sanabria collaborates with notable colleagues, including Michael Field and Hanping Miao, who contribute to his research and development efforts in superconducting technology.

Conclusion

Carlos Sanabria's work in superconducting technology exemplifies innovation and dedication to advancing material science. His patents reflect a commitment to improving the performance of superconducting wires, which are essential for future technological advancements.

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