Tianjin, China

Jingjun Xu


 

Average Co-Inventor Count = 7.3

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2004-2025

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5 patents (USPTO):Explore Patents

Title: **Innovator Jingjun Xu: Pioneering Advances in Lithium Niobate Technologies**

Introduction

Jingjun Xu, an accomplished inventor based in Tianjin, China, has made significant contributions to the field of semiconductor technology. With a portfolio of five patents, his work is characterized by innovative methods and structures that enhance the functionality of electronic devices. His research primarily focuses on the manipulation of liquid crystals and the development of lithium niobate semiconductor structures.

Latest Patents

Jingjun Xu's latest patents showcase his expertise and forward-thinking approach:

1. **Lithium Niobate Semiconductor Structure and Manufacturing Method**: This patent outlines a novel semiconductor structure composed of multiple lithium niobate material layers. The design innovatively addresses the polarization directions of ferroelectric domains, making it a pivotal advancement in semiconductor technology.

2. **Method for Orientation of Liquid Crystals in Micro/Nano Region Based on Laser Direct Writing**: This patent describes an advanced method utilizing laser direct writing to create micro/nano structures that facilitate the self-orientation of liquid crystal molecules. The ability to control the orientation in such fine structures is expected to significantly impact the miniaturization of liquid crystal display devices and the design of complex three-dimensional structures.

Career Highlights

Throughout his career, Jingjun Xu has worked at respected institutions, including Nankai University, where he likely engaged in cutting-edge research, and Taishan Sports Industry Group Co., Ltd., contributing his expertise in the realm of applied sciences. His involvement in these organizations reflects his commitment to both academic research and practical innovations.

Collaborations

Xu has collaborated with notable peers such as Yongfa Kong and Qian Sun. Working alongside these talented individuals has undoubtedly fostered creativity and has led to advancements in their shared fields of interest.

Conclusion

Jingjun Xu stands out as a leading figure in semiconductor research, driven by a passion for innovation and a keen understanding of material science. His contributions through patenting new technologies not only highlight his ingenuity but also underscore his dedication to pushing the boundaries of electronic device capabilities. As his work continues to unfold, it is clear that Jingjun Xu will remain a significant player in shaping the future of electronics.

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