Daejeon, South Korea

Jae Hwa Lee

USPTO Granted Patents = 2 

Average Co-Inventor Count = 1.6

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 2008-2025

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2 patents (USPTO):Explore Patents

Title: The Innovations of Jae Hwa Lee: A Pioneer in Acoustic Metamaterials

Introduction

Jae Hwa Lee, an inventive mind hailing from Daejeon, South Korea, has made significant contributions to the field of acoustic metamaterials. With a keen focus on noise reduction technologies, Lee's innovative designs aim to enhance our acoustic environment, proving invaluable across various applications.

Latest Patents

Jae Hwa Lee holds a remarkable patent for an "Acoustic Metamaterial Structure." This invention discloses a unique framework capable of effectively minimizing noise within a specific frequency range. By utilizing the formation of an acoustic bandgap, his design is determined by a carefully crafted periodic structure that consists of multiple unit cells. Each unit cell features a first space, with a defined cross-sectional area, and a downstream second space, designed to enhance fluid flow and maximize noise reduction in the targeted frequency range.

Career Highlights

Lee is currently affiliated with the Center for Advanced Metamaterials, an institute dedicated to pioneering advancements in material sciences. His tenure at this leading research center highlights his commitment to innovation and his role in transforming theoretical concepts into practical applications.

Collaborations

Throughout his career, Jae Hwa Lee has collaborated with fellow researchers such as Jong Jin Park and Eun Bok. These partnerships foster a dynamic environment for innovation, allowing for the exchange of ideas and expertise in the realm of acoustic metamaterials.

Conclusion

In summary, Jae Hwa Lee stands out as a notable inventor in the field of acoustic technology. His patent for an acoustic metamaterial structure showcases his aptitude for addressing real-world challenges related to noise reduction. With continued collaboration and research, it is certain that Lee's contributions will further influence advancements in material science and engineering.

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