Waltham, MA, United States of America

Dana Krause


 

Average Co-Inventor Count = 11.0

ph-index = 1


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Dana Krause: Innovator in High Temperature Superconducting Technology

Introduction

Dana Krause is a prominent inventor based in Waltham, MA (US). She has made significant contributions to the field of high temperature superconducting technology. With a focus on mitigating defects in superconducting wires, her work has the potential to enhance the performance and reliability of these advanced materials.

Latest Patents

Dana Krause holds a patent for a method titled "Mitigating the effects of defects in high temperature semiconductor wires." This innovative approach involves locating a defect in a first segment of high temperature superconducting wire. A second segment of high temperature superconducting wire is then positioned onto the first segment such that it overlaps the defect. A path is created to ensure that current flows through the second segment, and both segments are laminated together. This method addresses critical challenges in the use of superconducting materials.

Career Highlights

Dana Krause is associated with American Superconductor Corporation, where she applies her expertise in superconducting technology. Her work is instrumental in advancing the company's capabilities in this cutting-edge field. With her innovative mindset, she continues to push the boundaries of what is possible in high temperature superconducting applications.

Collaborations

Dana has collaborated with notable colleagues, including Henry C Valcour, III and Peter D Antaya. These partnerships have fostered a collaborative environment that enhances the development of new technologies and solutions in the field.

Conclusion

Dana Krause is a trailblazer in the realm of high temperature superconducting technology. Her innovative patent and contributions to American Superconductor Corporation highlight her commitment to advancing this important field. Her work not only addresses existing challenges but also paves the way for future innovations in superconducting materials.

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