San Francisco, CA, United States of America

Asa Kaplan

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Asa Kaplan: Innovator in Robotics Control Technology

Introduction

Asa Kaplan is a notable inventor based in San Francisco, CA. She has made significant contributions to the field of robotics through her innovative patent. Kaplan's work focuses on enhancing the control systems used in robotic applications, showcasing her expertise and creativity in this rapidly evolving industry.

Latest Patents

Kaplan holds a patent for a "Transferable real-time clock for robotics control." This invention encompasses methods, systems, and apparatus, including computer programs encoded on computer storage media, designed for a real-time robotics control framework that implements a real-time clock with transferable ownership. The system is configured to operate a real-time control loop for a robot in multiple modes, including a base mode and an augmented mode. In the base mode, the system operates a base real-time control loop initiated by a real-time software control module. In the augmented mode, it operates multiple real-time control loops, including the base real-time control loop and a robot real-time control loop, with each tick initiated by the real-time software drive module.

Career Highlights

Asa Kaplan is currently associated with Intrinsic Innovation LLC, where she continues to develop cutting-edge technologies in robotics. Her work has positioned her as a key player in the field, contributing to advancements that enhance robotic functionality and efficiency.

Collaborations

Kaplan collaborates with talented individuals such as Gregory Prisament and Michael Beardsworth, further enriching her work environment and fostering innovation.

Conclusion

Asa Kaplan's contributions to robotics control technology through her patent and work at Intrinsic Innovation LLC highlight her role as a leading inventor in the field. Her innovative approach continues to influence the development of advanced robotic systems.

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