Location History:
- Kawasaki, JP (1991)
- Yokohama, JP (1988 - 1992)
Company Filing History:
Years Active: 1988-1992
Title: Innovator Izumi Hasegawa: Pioneering Electrical Connector Technologies
Introduction
Izumi Hasegawa is a notable inventor based in Kawasaki, Japan. She has made significant contributions to the field of electrical connectors, holding a total of 4 patents. Her innovative designs focus on enhancing the functionality and reliability of connector assemblies.
Latest Patents
One of her latest inventions is a plug connector assembly. This assembly includes a housing designed to receive multiple connectors, which carry cables. The assembly features a cover with mating halves that latch together onto the housing, effectively locking the connectors in place. Additionally, the housing incorporates a resilient arm that allows for easy latching to a mating connector. The cover also includes a resilient arm that can disengage the assembly from the mated connector.
Another significant patent is the noise filter connector. This invention comprises a dielectric housing and a metal shield case that covers the housing. The design includes aligned holes in the rear walls of both the housing and the case, with capacitors secured in specific holes. The electrical contacts extend through the capacitors and into the housing, ensuring effective noise filtering.
Career Highlights
Izumi Hasegawa works at Amp LLC, where she continues to develop innovative solutions in electrical connectivity. Her work has been instrumental in advancing the technology used in various applications.
Collaborations
Throughout her career, Hasegawa has collaborated with talented individuals such as Takashi Kamono and Kunio Nakamura. These partnerships have fostered a creative environment that encourages innovation and the development of cutting-edge technologies.
Conclusion
Izumi Hasegawa's contributions to the field of electrical connectors demonstrate her commitment to innovation and excellence. Her patents reflect her ability to solve complex problems and enhance the functionality of connector systems.