Location History:
- Ibaraki, JP (1989)
- Mito, JP (1984 - 1993)
- Machida, JP (1991 - 2002)
Company Filing History:
Years Active: 1984-2002
Title: Juichi Noda: Innovator in Optical Technologies
Introduction
Juichi Noda is a prominent inventor based in Mito, Japan, known for his significant contributions to optical technologies. With a total of 13 patents to his name, Noda has made remarkable advancements in the field, particularly in cleaning tools and dielectric multilayer filters.
Latest Patents
One of Noda's latest inventions is a cleaning tool for optical fiber connectors. This innovative tool features a cleaning sheet that is exposed through a window in its case. A winding pulley allows the cleaning sheet to be wound at a constant pitch upon rotation. The tool is operated by a lever that rotates the winding pulley, and the case is designed with a first and second front plate, closed off by a perimeter wall. Another notable patent is a method of fabricating a dielectric multilayer filter, which is applicable to optical communication systems. This filter includes a fluorinated polyimide base layer with a dielectric multilayer formed on top. The fabrication method involves applying liquid fluorinated polyimide material over a smooth surface, followed by drying and hardening, resulting in a highly durable and uniform optical element.
Career Highlights
Throughout his career, Juichi Noda has worked with notable companies such as Nippon Telegraph and Telephone Corporation and Japan Aviation Electronics Industry, Limited. His work has significantly impacted the development of optical communication technologies.
Collaborations
Noda has collaborated with esteemed colleagues, including Hiroaki Hanafusa and Yoshiaki Takeuchi, contributing to various innovative projects in the field.
Conclusion
Juichi Noda's contributions to optical technologies through his patents and collaborations highlight his role as a leading inventor in the industry. His innovative solutions continue to advance the field and improve optical communication systems.