Yamato, Japan

Risa Tanaka

USPTO Granted Patents = 1 

Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Risa Tanaka: Innovator in Connector Technology

Introduction

Risa Tanaka is a prominent inventor based in Yamato, Japan. She has made significant contributions to the field of connector technology, showcasing her innovative spirit and technical expertise. Her work focuses on creating solutions that enhance the functionality and efficiency of connectors.

Latest Patents

Risa Tanaka holds a patent for a connector, connector assembly, and retainer. This invention aims to provide a connector capable of appropriately attaching a retainer to a housing while reliably arranging a cable terminal at an appropriate position. This is particularly important when the clearance between members is reduced, allowing for a more compact design. The cable terminal features a first stopped part, while the retainer includes a positioning post that restricts the movement of the cable terminal in a rearward direction. The positioning post is elastically deformable, enabling movement in a forward-rearward direction.

Career Highlights

Risa Tanaka is currently employed at Molex Corporation, a leading company in the field of electronic components. Her role involves developing innovative connector solutions that meet the demands of modern technology. With her expertise, she has contributed to various projects that enhance the performance and reliability of connectors.

Collaborations

Risa collaborates with her coworker, Teruki Nagase, to further advance their projects and share insights in the field of connector technology. Their teamwork exemplifies the importance of collaboration in driving innovation.

Conclusion

Risa Tanaka's contributions to connector technology highlight her role as an influential inventor. Her patent reflects her commitment to innovation and problem-solving in the industry. Through her work at Molex Corporation, she continues to push the boundaries of what is possible in connector design.

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