Killington, VT, United States of America

Leonard R Kent


Average Co-Inventor Count = 4.4

ph-index = 2

Forward Citations = 14(Granted Patents)


Location History:

  • Corning, NY (US) (2004)
  • Killington, VT (US) (2013)

Company Filing History:


Years Active: 2004-2013

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Leonard R. Kent in Glass and Optical Technologies

Introduction: Leonard R. Kent, a notable inventor based in Killington, Vermont, has made significant strides in the fields of glass processing and optical technologies. With two patents to his name, he has developed methods and materials that enhance the efficiency and effectiveness of glass production and optical amplification.

Latest Patents: Leonard's latest patents focus on innovative methodologies in glass sheet production and advancements in optical waveguide amplifiers. His patent on the method of making a glass sheet using controlled cooling introduces techniques that involve both rapid and slow cooling processes. Specifically, by rapidly cooling glass below the root of the forming apparatus, Kent facilitates the utilization of glass with a liquidus viscosity of less than approximately 100,000 poise. Moreover, the slow cooling method assists in avoiding compaction in glass substrates while enabling elevated temperature substrate removal, ultimately increasing production rates in downdraw machines.

Another significant contribution is his patent related to a large effective area erbium-doped fiber optical amplifier. This optical waveguide amplifier fiber comprises a unique core region made of Er2O3, Al2O3, GeO2, and Ga2O3. The careful selection of the relative refractive index percentages and various dimensions ensures an effective area of at least 38.6 µm at a wavelength of 1590 nm, showcasing Kent's expertise in designing high-performance optical components.

Career Highlights: Leonard R. Kent's innovative prowess is exemplified in his association with Corning Incorporated, a prominent player in the glass and ceramics industry. His contributions significantly influence how glass and optical components are manufactured, blended with technical expertise and practical applications.

Collaborations: Kent has collaborated with distinguished colleagues, including Douglas Clippinger Allan and Olus Naili Boratav. These partnerships have fostered an environment of shared knowledge and innovation, leading to notable advancements in their respective fields.

Conclusion: Through his patents and commercial contributions, Leonard R. Kent continues to leave a lasting impact on the fields of glass technology and optical engineering. His innovative methodologies in glass sheet production and optical waveguide amplifier design showcase the importance of continuous innovation in meeting the evolving demands of modern technology.

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