Thousand Oaks, CA, United States of America

Michael Smith


Average Co-Inventor Count = 3.7

ph-index = 2

Forward Citations = 31(Granted Patents)


Company Filing History:


Years Active: 1983

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2 patents (USPTO):Explore Patents

Title: The Innovations of Michael Smith

Introduction

Michael Smith is a notable inventor based in Thousand Oaks, CA. He has made significant contributions to the field of polarizer technology, holding 2 patents that enhance the hydrolytic stability of polarizers. His work is recognized for its innovative approach to improving material durability.

Latest Patents

Smith's latest patents include the "Hydrolytically Stabilized Polarizer" and the "Polyester Based Polarizer." The Hydrolytically Stabilized Polarizer is produced by impregnating a polyvinyl alcohol film with an iodine-containing composition, followed by exposure to concentrated infrared and ultraviolet radiation treatments. This process results in a polarizer with increased hydrolytic stability. Similarly, the Polyester Based Polarizer involves impregnating a polyvinyl alcohol substrate with an iodine-containing composition and subjecting it to radiation treatments that significantly enhance its hydrolytic stability. The polyvinyl alcohol film is laminated to a polyester support, ensuring a robust and durable product.

Career Highlights

Michael Smith is associated with American Hoechst Corporation, where he has been instrumental in advancing polarizer technology. His innovative work has positioned him as a key figure in the development of materials that withstand environmental challenges.

Collaborations

Smith has collaborated with notable coworkers, including Lawrence Bolt and Ali Tavasolian. Their combined expertise has contributed to the successful development of advanced polarizer technologies.

Conclusion

Michael Smith's contributions to polarizer technology through his patents reflect his commitment to innovation and material science. His work continues to influence the industry, showcasing the importance of advancements in hydrolytic stability.

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