Company Filing History:
Years Active: 2004-2010
Title: The Innovative Journey of Kerry T. Sanders
Introduction
Kerry T. Sanders, an accomplished inventor based in Jacksonville, FL, has made significant contributions to the field of ophthalmic lens technology. With a total of four patents to her name, she has developed innovative solutions that have advanced the industry.
Latest Patents
Among her latest patents is the "Thin Film In-Line Degasser," which pertains to a stackable packing element designed for degassing liquid ophthalmic lens monomer. This invention allows for a modular approach, using one or more stackable elements to implement an in-line degassing process. The stackable packing element comprises a body module and a removable puck component, enabling efficient operation in lens production.
Another significant patent is the "Method and Apparatus for Contact Lens Mold Assembly." This invention offers a novel apparatus and method for assembling first and second mold parts that feature contact lens forming surfaces. The process involves preventing movement of the first mold part while controllably positioning the second mold part, ensuring that the contact lens forming surface is properly wetted by the reaction mixture on the first mold part.
Career Highlights
Kerry's career includes notable positions at prominent companies such as Johnson & Johnson Vision Care, Inc. and Johnson & Johnson. Her role in these organizations has played a crucial part in the development and innovation of new ophthalmic products.
Collaborations
Throughout her journey, Kerry has collaborated with several talented individuals in the industry, including colleagues Stephen C. Pegram and Kent Young. These collaborations have fostered creativity and innovation, allowing for the advancement of technology within the field.
Conclusion
Kerry T. Sanders continues to be a pioneering force in the field of ophthalmic lens technology, with her patented inventions demonstrating her commitment to innovation. Her work not only enhances product quality but also contributes to the overall advancement of lens manufacturing processes.