El Segundo, CA, United States of America

Jason D Heebl


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Jason D Heebl: Innovator in Acoustic Lens Technology

Introduction

Jason D Heebl is a notable inventor based in El Segundo, California. He has made significant contributions to the field of acoustic technology, particularly with his innovative designs that enhance the focusing of acoustic waves. His work is recognized for its potential applications in various industries, including defense and telecommunications.

Latest Patents

Heebl holds a patent for an "Air Coupled Acoustic Aperiodic Flat Lens." This invention provides a broadband acoustic lens and a method for designing it to focus incident acoustic waves effectively. The lens consists of a series of concentric rings, each with specific widths and gaps that are arranged in an aperiodic manner. This unique design allows the lens to focus acoustic waves to a spot smaller than the wavelength of the incident wave in air, showcasing Heebl's innovative approach to acoustic engineering.

Career Highlights

Heebl is currently associated with the United States of America as represented by the Secretary of the Air Force. His role involves working on advanced technologies that support national defense and enhance acoustic applications. His expertise in the field has led to the development of cutting-edge solutions that address complex challenges in acoustic wave manipulation.

Collaborations

Heebl has collaborated with notable colleagues, including John T Welter and Shamachary Sathish. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas, further advancing the field of acoustic technology.

Conclusion

Jason D Heebl's contributions to acoustic lens technology exemplify the spirit of innovation. His patented designs and collaborative efforts continue to push the boundaries of what is possible in the manipulation of acoustic waves.

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