Cambridge, MN, United States of America

Donovan Erickson


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Donovan Erickson

Introduction: Donovan Erickson, based in Cambridge, MN, is a notable inventor who has made significant contributions to the field of corrosion inhibition. With a focus on innovative methods for protecting non-aqueous, non-conductive liquids, Erickson's work helps industries mitigate the effects of corrosion, which can be both costly and damaging.

Latest Patents: Erickson holds a patent titled "Methods and Compositions for Inhibiting Corrosion in Non-Aqueous, Non-Conductive Liquids." This invention provides a novel approach to preventing corrosion in environments where traditional aqueous solutions may not be effective. The methodology includes measuring or detecting corrosion inhibitors using a magnetic flow meter, showcasing a blend of creativity and practicality in his invention.

Career Highlights: Currently, Donovan Erickson is employed at Global Process Technologies, Inc., where he continues to innovate within the industry. His dedication and expertise in corrosion inhibition processes have contributed to advancing the company's technological offerings.

Collaborations: In his professional journey, Erickson collaborates closely with his coworker, Paul Young. Together, they combine their expertise to enhance the effectiveness and application of their innovative solutions, contributing to the ongoing success of their projects.

Conclusion: Donovan Erickson's work exemplifies the spirit of innovation in addressing technical challenges within the field of corrosion resistance. With a keen eye for detail and a commitment to developing effective methodologies, Erickson's contributions are significant in advancing both industry standards and technological capabilities. His patent stands as a testament to the impact that inventive minds can have on real-world applications.

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