Shanghai, China

Gaige Mei


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: **Gaige Mei: Innovator in Connector Paddle Card Technology**

Introduction

Gaige Mei is an innovative inventor based in Shanghai, China, known for his contributions to the field of electronic connector technologies. His notable invention aims to enhance wiring connection geometries in connector paddle cards, addressing crucial challenges in impedance mismatch.

Latest Patents

Gaige Mei holds a patent for a "Connector paddle card with improved wiring connection geometry." This inventive design features a printed circuit board that optimizes wiring connections through a unique arrangement of edge connector traces and electrodes. Specifically, it includes an outer set of electrodes for attaching exposed ends of sheathed wires, and an inner set that is staggered relative to the outer set, ultimately leading to improved performance and reduced impedance mismatch.

Career Highlights

Currently, Gaige Mei works with Credo Technology Group Limited, a company recognized for its advancements in high-speed connectivity solutions. His work contributes significantly to the development of innovative technologies in the electronics sector, enhancing the efficiency and reliability of connections in various applications.

Collaborations

Throughout his career, Gaige has collaborated with talented professionals such as Xike Liu and Zhining Li, contributing to innovative projects and fostering a collaborative environment that drives technological advancements within their team at Credo Technology Group Limited.

Conclusion

Gaige Mei's contributions to connector technology demonstrate his commitment to innovation within the electronics industry. His patented designs not only improve the technical performance of connector paddle cards but also highlight the importance of innovative collaboration in engineering advancements. As he continues to develop solutions for modern connectivity challenges, his work remains a vital part of the ongoing evolution in electronic technologies.

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