Fujieda, Japan

Masao Hara


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Masao Hara: Innovator in Robotic Trajectory Systems

Introduction

Masao Hara is a notable inventor based in Fujieda, Japan. He has made significant contributions to the field of robotics, particularly in the area of trajectory optimization for robotic systems. His innovative work has led to the development of a patented system that enhances the efficiency and accuracy of robotic movements.

Latest Patents

Masao Hara holds a patent for a "System and method for determining dynamic motion data in robot trajectory." This invention involves a simulation system designed to determine an optimal trajectory path for a robot equipped with an implement. The system includes a trajectory simulator that provides a simulated trajectory path, an implement model database containing motion data, and a logger that timestamps the implement's motion during the simulation. The logger data is used to identify motion that exceeds predetermined thresholds, allowing a tuner to adjust the trajectory path to minimize such occurrences. This patent showcases Hara's commitment to advancing robotic technology.

Career Highlights

Masao Hara is currently employed at Abb Schweiz AG, where he continues to innovate and develop solutions in robotics. His work at Abb Schweiz AG has positioned him as a key player in the field, contributing to the company's reputation for technological advancement.

Collaborations

Hara has collaborated with talented individuals such as Xiongzi Li and Steinar Riveland. These partnerships have fostered a creative environment that encourages the exchange of ideas and the development of cutting-edge technologies.

Conclusion

Masao Hara's contributions to robotic trajectory systems exemplify the impact of innovative thinking in technology. His patent and ongoing work at Abb Schweiz AG highlight his dedication to improving robotic efficiency and functionality.

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