Kitakyushu, Japan

Shinobu Sato


Average Co-Inventor Count = 3.4

ph-index = 4

Forward Citations = 125(Granted Patents)


Location History:

  • Kitakyushu, JP (1985 - 1986)
  • Kitayushu, JP (1987)

Company Filing History:


Years Active: 1985-1987

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4 patents (USPTO):Explore Patents

Title: Discovering the Innovations of Shinobu Sato

Introduction

Shinobu Sato, an inventive mind hailing from Kitakyushu, Japan, has made significant contributions to the field of robotics, particularly in welding technology. With a total of four patents to his name, Sato's work primarily revolves around innovative methods of controlling welding robots, showcasing his expertise and creativity in automation.

Latest Patents

Sato's latest patents include a groundbreaking method for controlling a welding robot. This method significantly enhances the ability to define complex weaving patterns while welding. It includes a procedure where an operator teaches the robot by defining three points near a teaching line, which helps to establish a weaving pattern. The robot's welding torch tip is then maneuvered along a triangular pillar created by shifting the defined triangular plane along the teaching line.

Additionally, another patent outlines a refined method of controlling the welding robot when it receives a locus correction signal. This method allows the welding torch to adjust its path by utilizing resultant vectors, correcting its trajectory in real time without requiring an operator to redefine the weaving pattern for each teaching line.

Career Highlights

Throughout his career, Shinobu Sato has worked with notable companies such as Yaskawa Electric Corporation, a leader in industrial automation. His experiences in these settings have helped him develop cutting-edge technology in welding automation. Sato's dedication to his work is reflected in the innovative solutions he has created that improve the efficiency of robotic welding processes.

Collaborations

Sato has collaborated with esteemed colleagues Satoru Nio and Toyoji Hamashima. Together, they have potentially contributed to the development of innovative technologies that push the boundaries of robotic applications in welding. Their teamwork highlights the importance of collaboration in driving technological advancements within the industry.

Conclusion

In conclusion, Shinobu Sato illustrates the significant impact that inventors can have in the field of robotics and automation. With his inventive patents and collaborative spirit, Sato continues to pave the way for future innovations that will undoubtedly enhance the capabilities and efficiencies of welding robots. As the world increasingly embraces automation, the contributions of inventors like Shinobu Sato are vital to shaping the industry's future.

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