Shanghai, China

Ansheng Liang

USPTO Granted Patents = 1 

Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Ansheng Liang: Innovator in Wavelength Conversion Technology

Introduction

Ansheng Liang is a prominent inventor based in Shanghai, China. He has made significant contributions to the field of optical technology, particularly in the development of wavelength conversion devices. His innovative work has led to the creation of a patented technology that enhances the performance of these devices.

Latest Patents

Ansheng Liang holds a patent for a "High temperature resistant reflective layer for wavelength conversion devices." This invention comprises a substrate, a reflective layer on the substrate, and a wavelength conversion layer on the reflective layer. The reflective layer consists of a binder and reflective titanium dioxide nanoparticles, which have a particle size ranging from about 200 nanometers to about 500 nanometers. This reflective layer exhibits enhanced thermal stability, making it suitable for high-temperature applications. The patent also discloses methods for manufacturing the wavelength conversion device.

Career Highlights

Ansheng Liang is currently employed at Materion Precision Optics (Shanghai) Limited, where he continues to advance his research and development efforts in optical technologies. His work at this company has allowed him to collaborate with other experts in the field and contribute to innovative solutions in wavelength conversion.

Collaborations

Ansheng Liang has worked closely with his coworker, Wen Bo Zhang, to further enhance the capabilities of their inventions. Their collaboration has been instrumental in driving forward the research and development of new optical technologies.

Conclusion

Ansheng Liang's contributions to the field of wavelength conversion technology demonstrate his commitment to innovation and excellence. His patented work not only showcases his expertise but also paves the way for future advancements in optical devices.

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