This inventor holds 1 USPTO granted patent. Top assignee: Source Photonics Inc.. Active years: 2013.
Company Filing History:
Years Active: 2013
Title: Hucheng Li: Innovator in Optical Signal Control
Introduction
Hucheng Li is a prominent inventor based in Chengdu, China. He has made significant contributions to the field of optical signal processing, particularly in dense wavelength division multiplexing (DWDM) devices. His innovative work focuses on enhancing the stability and efficiency of optical signals during rapid operational changes.
Latest Patents
Hucheng Li holds a patent for a method, circuitry, and apparatus designed to output a stable optical signal in a DWDM device during fast changes of operating conditions. The patent, which is titled "Method, circuitry and apparatus for outputting a stable optical signal in a dense wavelength division multiplexing device during fast changes of operating conditions," describes a fast and stable method of output wavelength control. This invention includes optimized automatic power control (APC), thermoelectric cooler (TEC), and electro-absorption (EA) modulator control hardware and algorithms. These advancements allow for effective control of transient processes, ensuring a stable power-up process that meets DWDM specification requirements.
Career Highlights
Hucheng Li is currently employed at Source Photonics Inc., where he continues to develop cutting-edge technologies in optical communications. His work has been instrumental in improving the performance of optical devices, particularly in minimizing crosstalk in adjacent channels within dense wave subsystems.
Collaborations
Hucheng Li has collaborated with notable colleagues, including Zhaoyang Hu and Anbin Wang. Their combined expertise has contributed to the advancement of optical signal processing technologies.
Conclusion
Hucheng Li's innovative contributions to the field of optical signal control have positioned him as a key figure in the advancement of DWDM technology. His work not only enhances the stability of optical signals but also plays a crucial role in the future of optical communications.
