Cinnaminson, NJ, United States of America

Nathan Bivans

USPTO Granted Patents = 3 

Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 147(Granted Patents)


Company Filing History:


Years Active: 2015-2018

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3 patents (USPTO):Explore Patents

Title: Nathan Bivans: Innovator in Unmanned Vehicle Control Systems

Introduction

Nathan Bivans is a notable inventor based in Cinnaminson, NJ (US), recognized for his contributions to the field of unmanned vehicle control systems. With a total of three patents to his name, Bivans has made significant strides in developing technologies that enhance the safety and efficiency of robotic systems.

Latest Patents

Bivans' latest patents include a "System and method for remote control of unmanned vehicles." This innovative device features a first processing unit that determines the status of connections between devices, allowing for effective communication and control. Additionally, he has developed an open architecture control system that facilitates remote and semi-autonomous operations of various robotic systems. This system is designed to adapt to rapidly evolving threats and operational environments, providing high interoperability with a range of robotic platforms and software.

Career Highlights

Throughout his career, Nathan Bivans has worked with various companies, including Humanistic Robotics, Inc. His work has focused on creating solutions that address complex challenges in the field of robotics and unmanned vehicles. His patents reflect a commitment to advancing technology in ways that enhance safety and operational effectiveness.

Collaborations

Bivans has collaborated with notable individuals in the industry, including Trevor O'Neill and Samuel Reeves. These partnerships have contributed to the development of innovative solutions in unmanned vehicle technology.

Conclusion

Nathan Bivans stands out as a key figure in the innovation of unmanned vehicle control systems. His patents and collaborative efforts demonstrate a dedication to improving safety and functionality in robotic applications.

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