Greenbelt, MD, United States of America

Joyce C Breger

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Joyce C. Breger: Innovator in Flexible Electronics

Introduction

Joyce C. Breger is a notable inventor based in Greenbelt, MD (US). She has made significant contributions to the field of flexible electronics, particularly through her innovative work on four-dimensional printed circuit boards. Her research focuses on the integration of nanocellulose materials with traditional electronic components, paving the way for advanced electronic devices.

Latest Patents

Joyce C. Breger holds 1 patent for her invention titled "Four Dimensional Printed Circuit Boards." This patent describes an ultra-thin nanocellulose flexible electronic device that utilizes SU-8, an epoxy material that can become highly stressed upon UV exposure. The device is designed to self-mold into a desired form due to stress differences between the SU-8 and the nanocellulose sheet after UV exposure and release from its surface. This innovative approach allows for the manufacturing of flexible electronics using standard printed circuit board processing techniques, including electroless metallization and soldering of surface mount components.

Career Highlights

Joyce C. Breger is currently associated with the USA as represented by the Secretary of the Navy. Her work has been instrumental in advancing the capabilities of flexible electronic devices, which have numerous applications in various industries.

Collaborations

Joyce has collaborated with notable colleagues, including Jonathan D. Yuen and David A. Stenger. Their combined expertise has contributed to the successful development of her innovative technologies.

Conclusion

Joyce C. Breger's contributions to the field of flexible electronics exemplify her innovative spirit and dedication to advancing technology. Her work on four-dimensional printed circuit boards represents a significant step forward in the integration of flexible materials with electronic devices.

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