Hudson, NH, United States of America

Emanual C Ebner, Jr


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 12(Granted Patents)


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Emanual C Ebner, Jr.

Introduction: Emanual C Ebner, Jr. is a noteworthy inventor based in Hudson, NH, known for his contributions to the field of optical fiber technology. With one patent to his name, he has made significant strides in the production of optical fiber cables that enhance light transmission using innovative methods and materials.

Latest Patents: Ebner's patent focuses on an "Optical Fiber Cable Producer and Method of Bonding Optical Fibers to a Flexible Fiber Optic Belt." This invention involves a planar array of fiber optic filaments that run along the length of a flexible belt designed for the coherent transmission of light from an LED light source. The design incorporates transverse elements that position the filaments along the belt’s major neutral plane, ensuring efficient light transmission. By thermoelectrically cooling the LED light source, the invention improves light availability, making it a significant advancement in the field.

Career Highlights: Emanual C Ebner, Jr. is currently associated with Itek Graphix Corporation, where his innovative work continues to evolve. His contributions are vital in enhancing optical fiber technology, and his dedication to creating efficient methods in this field sets him apart as a pioneering inventor.

Collaborations: Over the course of his career, Ebner has worked alongside notable colleagues such as Peter R Ebner and John H Shaw. Their collaborative efforts have undoubtedly enriched the scope of his projects and further fostered innovation within the optical fiber sector.

Conclusion: Emanual C Ebner, Jr. exemplifies the spirit of innovation through his patent and the technological advancements he promotes in optical fiber production. As he continues to work within the industry, his contributions are likely to pave the way for future developments in light transmission technology.

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