Raleigh, NC, United States of America

Nathan Michael Kearney


Average Co-Inventor Count = 12.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Nathan Michael Kearney: Innovator in Robotic Technology

Introduction

Nathan Michael Kearney is an accomplished inventor based in Raleigh, NC (US). He has made significant contributions to the field of robotics, particularly with his innovative designs that enhance the functionality of robotic vehicles. His work is characterized by a focus on practical applications that address real-world challenges.

Latest Patents

Kearney holds a patent for a "Robotic platform with wheeled legs and virtual differential transmission." This invention features a novel wheel design that allows for secure engagement with irregular terrain structures, such as the rungs of an inclined ladder. The virtual differential transmission utilizes rotational sensors in independently driven wheels to maintain the relative rotational position of the left- and right-side wheels. This technology enables the robotic vehicle to realign its wheels for optimal engagement with various terrain structures.

Career Highlights

Kearney is currently associated with Cardinal Gibbons High School, where he applies his expertise in robotics and engineering. His role at the institution allows him to inspire and educate the next generation of innovators. With a focus on practical applications, he has been able to bridge the gap between theoretical knowledge and real-world implementation.

Collaborations

Kearney has worked alongside talented individuals such as Christopher Randall Bain and Miguel Douglas Chavez. These collaborations have fostered an environment of creativity and innovation, leading to advancements in robotic technology.

Conclusion

Nathan Michael Kearney is a notable inventor whose work in robotic technology exemplifies innovation and practical application. His contributions continue to influence the field and inspire future advancements in robotics.

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