Arlington, TX, United States of America

Christopher Ellis Jones


Average Co-Inventor Count = 3.5

ph-index = 4

Forward Citations = 69(Granted Patents)


Company Filing History:


Years Active: 2003-2010

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6 patents (USPTO):Explore Patents

Title: Christopher Ellis Jones: Innovator in Surface Acoustic Wave Technology

Introduction

Christopher Ellis Jones is a notable inventor based in Arlington, TX (US). He has made significant contributions to the field of surface acoustic wave (SAW) devices, holding a total of 6 patents. His innovative methods have advanced the manufacturing processes of these devices, showcasing his expertise and dedication to technological advancement.

Latest Patents

One of his latest patents is a method for forming a multi-frequency surface acoustic wave device. This method involves manufacturing a multi-frequency SAW device on a common piezoelectric substrate. The process features the ability to vary the resonant frequency of waveguide elements of the SAW device using a single etch step. This etch step effectively removes a sub-portion of multiple layers of conductive film disposed on the substrate, enhancing the efficiency and functionality of the device.

Career Highlights

Throughout his career, Christopher has worked with various companies, including Clarisay, Incorporated. His work has been instrumental in developing innovative solutions in the field of acoustic wave technology. His contributions have not only advanced the technology but have also paved the way for future innovations in the industry.

Collaborations

Christopher has collaborated with notable individuals in his field, including Martin P Goetz and Merrill A Hatcher. These collaborations have further enriched his work and contributed to the success of his inventions.

Conclusion

Christopher Ellis Jones is a distinguished inventor whose work in surface acoustic wave technology has made a significant impact. His innovative methods and collaborations highlight his commitment to advancing technology in this field. His contributions will continue to influence future developments in acoustic wave devices.

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