Derwood, MD, United States of America

Anthony J Dickherber


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2014

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1 patent (USPTO):

Title: Innovating Acoustic Technologies: The Contributions of Anthony J. Dickherber

Introduction

Anthony J. Dickherber, based in Derwood, MD, is an accomplished inventor with a notable contribution to the field of acoustic technology. With one patent to his name, he has made significant strides in the design of bulk-acoustic-wave resonators.

Latest Patents

His most prominent patent, titled “Multi-mode bulk-acoustic-wave resonators,” pertains to various embodiments of bulk-acoustic-wave resonators. This innovative resonator features an acoustic reflector and a substantially c-axis oriented hexagonal crystal structure, complemented by a plurality of electrodes. The unique aspect of this invention lies in its ability to resonate in at least two non-harmonically-related operational modes, showcasing its versatility and potential applications in various technological domains.

Career Highlights

Anthony J. Dickherber is associated with the Georgia Tech Research Corporation, where he continues to advance his research and innovative efforts. His work reflects a commitment to pushing the boundaries of acoustic technology, ensuring that his inventions address real-world challenges and contribute to academic and practical advancements.

Collaborations

Collaboration plays a key role in Anthony's work. He has partnered with talented individuals such as Adam Wathen and Farasat Munir, leveraging their skills and insights to enhance his inventions. These collaborations have facilitated a more comprehensive approach to research and development, fostering a creative and productive environment.

Conclusion

In summary, Anthony J. Dickherber stands out as a forward-thinking inventor in the field of bulk-acoustic-wave resonators. His patent demonstrates not only technical ingenuity but also a dedication to collaboration and innovation within the research community. As technology continues to evolve, contributions like his will undoubtedly influence future developments in acoustic technologies and beyond.

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