Urbana, IL, United States of America

Mark D Kraman

USPTO Granted Patents = 1 

Average Co-Inventor Count = 8.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Innovations of Mark D Kraman

Introduction

Mark D Kraman is an accomplished inventor based in Urbana, IL. He is known for his significant contributions to the field of electromagnetic components, particularly for on-chip applications. His innovative work has led to the development of a unique rolled-up electromagnetic component that has potential applications in various technological fields.

Latest Patents

Mark D Kraman holds a patent for a "Rolled-up electromagnetic component for on-chip applications and method of making a rolled-up electromagnetic component." This invention comprises a multilayer sheet in a rolled configuration, which includes at least one turn about a longitudinal axis. The core of the component is defined by the first turn of the rolled configuration, and it incorporates a soft magnetic material within the core. The multilayer sheet features a conductive pattern layer on a strain-relieved layer, showcasing Kraman's innovative approach to electromagnetic design.

Career Highlights

Kraman is affiliated with the University of Illinois, where he continues to advance research in electromagnetic components. His work is characterized by a commitment to developing practical solutions that enhance the functionality of on-chip applications. His patent reflects his expertise and dedication to innovation in this specialized field.

Collaborations

Mark D Kraman has collaborated with notable colleagues, including Xiuling Li and Wen Huang. These partnerships have contributed to the advancement of research and development in electromagnetic technologies.

Conclusion

Mark D Kraman's contributions to the field of electromagnetic components exemplify the spirit of innovation. His patented work not only showcases his technical expertise but also highlights the potential for future advancements in on-chip applications.

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