Bend, OR, United States of America

John Michael Fife

USPTO Granted Patents = 26 

Average Co-Inventor Count = 1.3

ph-index = 5

Forward Citations = 86(Granted Patents)


Company Filing History:


Years Active: 2011-2025

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26 patents (USPTO):Explore Patents

Title: Innovations by John Michael Fife: A Pioneer in Electrical System Control

Introduction: John Michael Fife, based in Bend, Oregon, is a prominent inventor recognized for his contributions to electrical system control. With an impressive portfolio of 24 patents, his work centers around optimizing electrical systems, making significant strides in both technology and user interaction.

Latest Patents: Among his latest innovations is the patent for "Electrical system control with user input, and related systems, apparatuses, and methods." This invention focuses on economically optimal control of electrical systems, featuring an input device that allows users to express their preferences for participation events. Another notable patent is "Demand setpoint management in electrical system control and related systems, apparatuses, and methods." This technology involves monitoring and adjusting power setpoints based on user demand, ensuring efficient energy management.

Career Highlights: John’s career is characterized by his work with Enel X North America, Inc. and Enel X S.r.l., where he has developed innovative solutions for electrical system management. His expertise in the field has positioned him as a key player in advancing electrical technologies.

Collaborations: Throughout his career, John has collaborated with other talented professionals, including Steven G Hummel and Michael A Mills-Price. These partnerships have facilitated the development of groundbreaking inventions and improvements in electrical system controls.

Conclusion: John Michael Fife stands out as an influential inventor whose patents reflect his dedication to improving electrical system efficiency and user engagement. His innovative approach continues to shape the future of electrical control technologies, showcasing the potential of user input and demand management in optimizing energy use.

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