Pittsburgh, PA, United States of America

Jesse Easudes

USPTO Granted Patents = 2 

Average Co-Inventor Count = 5.5

ph-index = 2

Forward Citations = 18(Granted Patents)


Company Filing History:


Years Active: 2015-2019

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2 patents (USPTO):Explore Patents

Title: Innovations by Jesse Easudes in Robotic Systems

Introduction

Jesse Easudes is an accomplished inventor based in Pittsburgh, PA. She has made significant contributions to the field of defense-related robotic systems. With a total of two patents to her name, her work focuses on enhancing the functionality and efficiency of robotic assemblies.

Latest Patents

Jesse's latest patents revolve around a robot quick-release assembly. This innovative design features a first joint member with a first coupler and a second joint member. The assembly includes a robot arm with a second coupler, a clamp, and a locking collar. The first coupler can be coaxially aligned with the second coupler and pressed into the second joint member, allowing for a detachable connection. This mechanical coupler system is designed to transfer power across the quick-release assembly effectively. Additionally, the robot component can receive an electrical connector that supplies power. The quick-release assembly is engineered to exert large forces with minimal torque applied to the locking collar, utilizing a two-stage wedge engagement and potentially incorporating a sequencing system.

Career Highlights

Jesse Easudes has established herself as a key player in the robotics industry through her innovative designs and patents. Her work at Re2, Inc. has positioned her at the forefront of advancements in robotic technology.

Collaborations

Jesse collaborates with notable colleagues, including Jorgen Pedersen and Keith M Gunnett. Their combined expertise contributes to the development of cutting-edge robotic systems.

Conclusion

Jesse Easudes is a pioneering inventor whose work in robotic systems is shaping the future of defense technology. Her innovative patents and collaborations highlight her significant impact in the field.

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