Hangzhou, China

Xia Wan

USPTO Granted Patents = 2 

 

Average Co-Inventor Count = 5.8

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2021-2025

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2 patents (USPTO):Explore Patents

Title: The Innovations of Inventor Xia Wan

Introduction

Xia Wan is a notable inventor based in Hangzhou, China, recognized for his innovative contributions to sensor technology. Specializing in infrared technologies, he has focused on enhancing the capabilities of gas detection through his unique inventions.

Latest Patents

Xia Wan holds a patent for an innovative infrared sensor and infrared gas detector. This patent outlines a sophisticated air quality detection device that incorporates electrodes, a substrate, an isolation layer, and a graphene film with a periodical nanostructure. The innovative design significantly improves the absorption of infrared light, allowing the detector to selectively absorb specific infrared wavelengths. This advancement enhances the performance of infrared gas detection, making the technology more efficient and reliable.

Career Highlights

Xia Wan is affiliated with Hangzhou Sanhua Research Institute Co., Ltd., where he has made significant strides in sensor research and development. His work in the realm of infrared sensors has placed him at the forefront of technological innovation, allowing for improved applications in various industries.

Collaborations

At Hangzhou Sanhua Research Institute Co., Ltd., Xia collaborates closely with talented colleagues, including Xinkai Lu and Huanhuan Rao. Together, they work to further the development of cutting-edge technologies that aim to improve environmental sensing and monitoring.

Conclusion

Xia Wan's contributions to the field of infrared sensing technology exemplify the spirit of innovation. With his patented advancements, he is helping to pave the way for future improvements in air quality detection. As he continues his work alongside his colleagues, the potential for further breakthroughs in this field remains promising.

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