Location History:
- Yamanashi, JP (1992 - 1996)
- Minamitsuru, JP (1994 - 1996)
- Minamitsuru-gun, JP (1996)
Company Filing History:
Years Active: 1992-1996
Title: The Innovations of Yasuo Sasaki
Introduction
Yasuo Sasaki is a prominent inventor based in Yamanashi, Japan. He has made significant contributions to the field of welding technology, holding a total of nine patents. His work has been instrumental in advancing automated welding processes, particularly through the development of innovative detection systems.
Latest Patents
One of Yasuo Sasaki's latest patents is a weld-position detector equipped with an optical axis adjustment means. This device is designed for use with automatic welding machines, such as welding robots. It consists of three essential units: a laser-beam projecting unit that emits a detection laser-beam, a scanning unit that directs the laser-beam towards the weld portions of a workpiece, and a light-receiving unit that detects the reflected laser-beam. The scanning means includes a movable reflecting mirror and an optical axis adjusting unit, which allows for precise adjustments to ensure accurate detection of weld positions.
Career Highlights
Yasuo Sasaki has spent a significant portion of his career at Fanuc Corporation, a leader in automation and robotics. His work has not only contributed to the company's success but has also set new standards in the industry for welding technology. His innovative approaches have garnered attention and respect within the engineering community.
Collaborations
Throughout his career, Yasuo has collaborated with talented individuals such as Akihiro Terada and Ryo Nihei. These collaborations have fostered a creative environment that has led to the development of groundbreaking technologies in the field of automation.
Conclusion
Yasuo Sasaki's contributions to welding technology through his patents and work at Fanuc Corporation highlight his role as a key innovator in the industry. His dedication to advancing automated processes continues to influence the field significantly.