Jacksonville, FL, United States of America

Kenneth John Weber

This inventor holds 2 USPTO granted patents. Top assignee: Johnson & Johnson Vision Products Inc.. Active years: 1996-1997.


% Patents Active = 100.0

Average Co-Inventor Count = 5.0

ph-index = 2

Forward Citations = 17(Granted Patents)


Company Filing History:


Years Active: 1996-1997

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2 patents (USPTO):Explore Patents

Title: Innovations by Kenneth John Weber in Ophthalmic Lens Technology.

Introduction

Kenneth John Weber is a notable inventor based in Jacksonville, FL, who has made significant contributions to the field of ophthalmic lens technology. With a total of 2 patents, his work focuses on improving the manufacturing process of ophthalmic lens molds.

Latest Patents

Weber's latest patents include an "Apparatus for treating an ophthalmic lens mold" and a "Method for treating an ophthalmic lens mold." Both inventions aim to enhance the separation of polymerized excess monomer from molded lenses by increasing the surface energy of the mold pieces. Specifically, these innovations involve the use of a corona treatment electrode to generate ionized oxygen, which increases the adherence of the polymer to the treated mold piece. This process is particularly effective when manufactured under inert atmosphere conditions, ensuring that the lens manufacturing area remains uncontaminated.

Career Highlights

Kenneth John Weber is currently associated with Johnson & Johnson Vision Products Inc., where he continues to develop innovative solutions in the ophthalmic lens industry. His expertise and inventions have contributed to advancements in lens manufacturing techniques.

Collaborations

Weber has collaborated with notable coworkers, including Jonathan Patrick Adams and Edmund C Rastrelli, who have also contributed to the field of ophthalmic technology.

Conclusion

Kenneth John Weber's innovative patents and contributions to ophthalmic lens technology demonstrate his commitment to improving manufacturing processes in the industry. His work continues to influence advancements in lens production and polymer adherence techniques.

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