Forrest Lake, MN, United States of America

Thomas A Kerrick


Average Co-Inventor Count = 4.3

ph-index = 3

Forward Citations = 103(Granted Patents)


Location History:

  • Forest Lake, MN (US) (1992)
  • Forrest Lake, MN (US) (1994)

Company Filing History:


Years Active: 1992-1994

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3 patents (USPTO):Explore Patents

Title: **Thomas A. Kerrick: Innovator in Non-Volatile Residue Measurement**

Introduction

Thomas A. Kerrick, an accomplished inventor based in Forrest Lake, Minnesota, has made significant contributions to the field of residue monitoring and filtration efficiency. With a total of three patents to his name, Kerrick's innovative designs focus on improving measurement techniques for non-volatile residues in various solvents and assessing filter efficiencies.

Latest Patents

Kerrick's latest invention, the "Syringe Injection System for Measuring Non-Volatile Residue in Solvents," presents a novel approach to determining the concentration of non-volatile residues. This system generates and analyzes multiple liquid droplets from a liquid stream containing both the test solvent and ultrapure water. The drying of these droplets results in the formation of particles representing non-volatile residues. The process employs a syringe for the intermittent injection of the test solvent and incorporates a microprocessor to convert the particle counts to concentration values.

Another notable patent involves an "Apparatus and Process for Determining Filter Efficiency in Removing Residues." This innovative system assesses the fractional capture efficiency of filters by directing a controlled flow of ultrapure water through two series-connected filters. The collected data from multiple non-volatile residue monitors is processed to indicate residue concentration and calculate the efficiency of the filtration process.

Career Highlights

Currently, Thomas A. Kerrick is associated with TSI, Inc., a company known for its dedication to precision measurement solutions. His work has greatly influenced the way different industries monitor solvent purity and filter performance.

Collaborations

Kerrick's inventive journey is supported by collaborative efforts with notable colleagues, including David B. Blackford and Frederic R. Quant. Together, they contribute to technological advancements that improve measurement methodologies and environmental monitoring.

Conclusion

Thomas A. Kerrick continues to demonstrate extraordinary ingenuity in the field of residue monitoring and filtration technology. His patents not only reflect his commitment to innovation but also offer substantial advancements that serve various industrial applications. As he progresses in his career, Kerrick's contributions are poised to have a lasting impact on the scientific community and beyond.

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