Wilmington, NC, United States of America

Ashley Danielle Perritt


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Ashley Danielle Perritt: Innovator in Optical Fiber Technology

Introduction

Ashley Danielle Perritt, an accomplished inventor based in Wilmington, NC, has made significant strides in the field of optical fiber technology. Her innovative contributions illustrate her dedication to enhancing the methods used in this critical area of technology.

Latest Patents

Perritt holds a patent for her invention titled "Apparatus and method for tensioning and threading optical fiber." This innovative apparatus includes a first roller, a second roller, a belt that wraps around both rollers, and a third roller. The design allows for optimal tensioning and threading of optical fibers, with the ability for the third roller to move between engaged and disengaged configurations relative to the belt. The actuation mechanism captures the optical fiber effectively, demonstrating her ingenuity in practical applications.

Career Highlights

Ashley works with Corning Incorporated, a leader in materials science and specialty glass. Her role contributed not only to her personal career development but also to advancements in the optical fiber industry. She has one patent to her name, showcasing her capability to create impactful inventions that address real-world challenges.

Collaborations

Throughout her career, Ashley has collaborated with notable colleagues, including Kirk Patton Bumgarner and Bret Cooper Faler. These partnerships emphasize the collaborative spirit that is often essential in the field of innovation and invention.

Conclusion

Ashley Danielle Perritt is a remarkable figure in the realm of optical fiber technology. Her innovative patent and professional collaborations highlight her dedication to pushing boundaries and improving existing technologies. As she continues her work at Corning Incorporated, her contributions will undoubtedly shape the future of optical fiber applications.

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