Fremont, CA, United States of America

Zequin Mei


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 28(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: Zequin Mei: Innovator in Photonic Assembly Technology

Introduction

Zequin Mei is a notable inventor based in Fremont, California. He has made significant contributions to the field of photonics, particularly through his innovative patent that enhances the performance of photonic modules. His work is characterized by a focus on improving thermal management in substrate structures.

Latest Patents

Zequin Mei holds a patent for a substrate structure designed for photonic assemblies. The patent, titled "Substrate structure for photonic assemblies and the like having a low-thermal-conductivity dielectric layer on a high-thermal-conductivity substrate body," describes a substrate that features a high-thermal-conductivity substrate body combined with a low-thermal-conductivity dielectric layer. This unique combination allows for improved RF behavior, especially when lasers are driven at high frequencies. The design also facilitates the soldering of components, enhancing the overall functionality of photonic modules.

Career Highlights

Zequin Mei is currently employed at K2 Optronics, Inc., where he continues to develop innovative solutions in the field of photonics. His expertise in thermal management and substrate design has positioned him as a key player in advancing photonic technologies.

Collaborations

Throughout his career, Zequin has collaborated with notable colleagues, including Robert A. Clarke and Frans Kusnadi. These collaborations have contributed to the development of cutting-edge technologies in the photonics sector.

Conclusion

Zequin Mei's contributions to photonic assembly technology through his innovative patent and work at K2 Optronics, Inc. highlight his role as a significant inventor in the field. His advancements in substrate structures are paving the way for improved performance in photonic applications.

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