Warrenton, MO, United States of America

Tracy Michelle Ragan

USPTO Granted Patents = 10 

Average Co-Inventor Count = 2.7

ph-index = 2

Forward Citations = 41(Granted Patents)


Company Filing History:


Years Active: 2000-2022

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10 patents (USPTO):Explore Patents

Title: **Tracy Michelle Ragan: Innovator in Semiconductor Technology**

Introduction

Tracy Michelle Ragan, based in Warrenton, MO, is a notable inventor with a solid portfolio of innovations. With ten patents to her name, she has made significant contributions to the field of semiconductor technology, particularly in methods and materials that enhance the efficiency of semiconductor substrates.

Latest Patents

Among her latest patents are innovative techniques related to semiconductor substrate polishing methods. One such patent involves polishing slurries that include first and second sets of colloidal silica particles, where the second set features a higher silica content than the first. Additionally, she has patented methods for processing semiconductor wafers that possess a polycrystalline finish. This method entails depositing a silicon layer onto the semiconductor wafer with a substantially uniform thickness, followed by polishing to ensure that this thickness remains consistent after the polishing process.

Career Highlights

Tracy has worked with prominent companies in her field, including GlobalWafers Co., Ltd. and MEMC Electronic Materials, Inc. Throughout her career, she has developed a reputation for her innovative approaches to semiconductor processing, significantly advancing the field.

Collaborations

In her journey, Tracy has had the privilege of working alongside talented individuals such as Alexis Grabbe and Hui Wang. Her collaborations with these professionals have undoubtedly enriched her inventive endeavors, leading to groundbreaking advancements in semiconductor technology.

Conclusion

Tracy Michelle Ragan exemplifies the spirit of innovation in the semiconductor industry. With her extensive experience and multiple patents, she continues to pave the way for future developments that promise to enhance the functionality and efficiency of semiconductor technologies.

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