Weihai, China

Jing Zhao

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: **Jing Zhao: Innovator in Sheet Medium Stacking Technology**

Introduction

Jing Zhao, an accomplished inventor based in Weihai, China, has made significant contributions to the field of conveying technology. With one patented invention to his name, Jing Zhao’s innovations are paving the way for more efficient processes in medium stacking and conveying systems.

Latest Patents

His notable patent is titled “Sheet Medium Stacking Conveying Device and Method.” This innovative device includes a method that involves a medium conveying step, where a stacking mechanism clamps media and moves them from a medium inlet to a medium outlet. The mechanism can discharge the clamped media towards the outlet, ensuring efficient movement and processing. Remarkably, this device is designed to function without requiring an additional power source while providing reciprocal movement between the collection position and the discharge position.

Career Highlights

Jing Zhao is currently employed at Shandong New Beiyang Information Technology Co., Ltd., where he continues to push the boundaries of technology through his inventive work. His role in the company has allowed him to focus on developing solutions that meet the evolving needs of the industry, particularly in the realm of material handling and automation.

Collaborations

In his professional journey, Jing Zhao collaborates with talented colleagues like Tianxin Jiang and Yong Yuan. These partnerships not only enhance the innovative spirit at Shandong New Beiyang Information Technology Co., Ltd. but also contribute to a dynamic environment for creativity and problem-solving.

Conclusion

With a strong foundation in technology and a keen sense of innovation, Jing Zhao exemplifies the forward-thinking attitude that drives progress in the industry. His contributions, particularly through his patented device, will likely have lasting implications on how materials are efficiently handled and conveyed in various applications.

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