Cambridge, MA, United States of America

Douglas P Perrin

USPTO Granted Patents = 1 

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2007

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1 patent (USPTO):Explore Patents

Title: Innovations of Douglas P Perrin

Introduction

Douglas P Perrin is an accomplished inventor based in Cambridge, MA (US). He is known for his innovative contributions to robotics and automation. His work focuses on creating solutions that enhance the functionality and efficiency of robotic systems.

Latest Patents

Douglas P Perrin holds a patent for an "Actuated tether." This invention describes a self-actuating robot or vehicle tether capable of moving itself while navigating around obstacles. The tether can free itself from obstructions, which is a significant advancement in robotic technology. In the preferred embodiment, a valve is mounted to the tether or robot, with an inflow conduit connected to the valve. A fluid flows through the tether, and the valve is opened and closed to create a waterhammer effect in the inflow conduit. The forces generated from this effect result in motion and the ability to free the tether from obstructions. Additionally, the opening and closing of the valve create pressure changes in the tether, causing momentary dimensional changes. In an alternative embodiment, multiple valves are placed along the tether, allowing for pulsing that enables the tether to move itself effectively.

Career Highlights

Douglas P Perrin is affiliated with Harvard College, where he contributes to research and development in robotics. His work has garnered attention for its innovative approach to solving complex problems in the field.

Collaborations

One of his notable collaborators is Robert Howe, with whom he has worked on various projects related to robotics and automation.

Conclusion

Douglas P Perrin's contributions to the field of robotics, particularly through his patented actuated tether, demonstrate his commitment to advancing technology. His work continues to influence the development of self-actuating systems in robotics.

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