Location History:
- Katano, JP (1991 - 1996)
- Moriguchi, JP (1996 - 1998)
- Osaka-fu, JP (1999 - 2000)
- Yamanashi-ken, JP (2005)
Company Filing History:
Years Active: 1991-2005
Title: Seiji Mizuoka: Innovator in Connection Inspection Technology
Introduction
Seiji Mizuoka is a prominent inventor based in Katano, Japan. He has made significant contributions to the field of connection inspection technology, holding a total of 10 patents. His work focuses on improving the accuracy and efficiency of inspecting electronic components mounted on printed circuit boards.
Latest Patents
Mizuoka's latest patents include a connection inspecting apparatus, a connection inspecting method, and a recording medium for executing the method. His innovative approach involves obtaining brightness information from X-ray images of connected parts when electronic components are mounted on a printed board. By synthesizing binary images from X-ray images of double face-mounted boards, he enhances the accuracy of connection inspections. Additionally, he has developed methods for inspecting the mounting state of components and the printing state of cream solder, utilizing advanced image processing techniques to ensure non-defective outputs.
Career Highlights
Mizuoka is associated with Matsushita Electric Industrial Co., Ltd., where he has played a crucial role in advancing inspection technologies. His inventions have significantly impacted the manufacturing processes of electronic components, leading to improved quality control and efficiency.
Collaborations
Mizuoka has collaborated with notable coworkers, including Kazumasa Okumura and Toshihiko Tsujikawa. Their combined expertise has contributed to the development of innovative solutions in the field of electronic component inspection.
Conclusion
Seiji Mizuoka's contributions to connection inspection technology exemplify the importance of innovation in the electronics industry. His patents and collaborative efforts continue to influence the standards of quality and efficiency in manufacturing processes.