West Lafayette, IN, United States of America

Chi Hwan Lee

USPTO Granted Patents = 13 


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 13(Granted Patents)


Location History:

  • Urbana, IL (US) (2018)
  • West Lafayette, IN (US) (2020 - 2024)

Company Filing History:


Years Active: 2018-2025

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13 patents (USPTO):Explore Patents

Title: Innovator Spotlight: Chi Hwan Lee - Pioneering Transient Electronics in Urbana, IL

Introduction:

Chi Hwan Lee, a brilliant inventor based in Urbana, Illinois, is making waves in the field of transient electronics. With a strong background in materials science and engineering, Lee has developed cutting-edge technologies that have the potential to revolutionize various industries.

Latest Patents:

Lee holds a significant patent for "Materials, electronic systems and modes for active and passive transience." This groundbreaking invention introduces transient devices, both active and passive, that undergo electrical and physical transformation in response to internal or external stimuli. From innovative materials to advanced device designs, Lee's patent encompasses a wide range of transient electronics applications.

Career Highlights:

Currently affiliated with the prestigious University of Illinois, Chi Hwan Lee is a key player in the university's research endeavors. His expertise in transient electronics has garnered attention from both academic and industrial sectors, propelling him to the forefront of technological innovation.

Collaborations:

Lee's collaborative spirit is evident in his work with distinguished colleagues such as John A. Rogers and Lan Yin. Together, they have pushed the boundaries of transient electronics, exploring new possibilities and pushing the limits of innovation.

Conclusion:

In conclusion, Chi Hwan Lee stands as a beacon of innovation in Urbana, IL, and beyond. His contributions to the field of transient electronics have the potential to reshape the technological landscape and inspire future generations of inventors. Keep an eye on Lee's work as he continues to redefine what is possible in the world of electronics.

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