College Station, TX, United States of America

Jose Wippold

USPTO Granted Patents = 3 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2023-2025

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3 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Jose Wippold

Introduction

Jose Wippold is a notable inventor based in College Station, TX (US). He has made significant contributions to the field of microfluidics, holding a total of 3 patents. His work focuses on developing advanced microfluidic devices that have the potential to revolutionize various applications in science and technology.

Latest Patents

Wippold's latest patents include innovative designs for microfluidic devices. One of his patents, titled "Microfluidic devices and associated methods," describes a microfluidic device that features a channel defined by a floor and a ceiling. This device is designed to facilitate fluid flow through at least one fluid inlet and outlet, with the unique aspect of having a sloped ceiling or floor relative to a horizontal plane. Another significant patent is the "Ultra high efficiency microfluidic platform," which outlines a combination micro/macro-fluidic analysis system. This system incorporates various units, such as a droplet transition unit and a merging unit, to enable highly efficient complex droplet microfluidic assays.

Career Highlights

Jose Wippold is affiliated with The Texas A&M University System, where he continues to advance his research in microfluidics. His work has garnered attention for its potential applications in various fields, including biomedical engineering and chemical analysis.

Collaborations

Wippold collaborates with esteemed colleagues, including Arum Han and Adrian Guzman. Their combined expertise contributes to the innovative research and development of microfluidic technologies.

Conclusion

Jose Wippold's contributions to microfluidics exemplify the impact of innovative thinking in science and technology. His patents reflect a commitment to advancing the field and improving the efficiency of fluidic systems.

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