Location History:
- Guangdong Province, CN (2015)
- Guangdong, CN (2018)
- Shenzhen, CN (2014 - 2019)
Company Filing History:
Years Active: 2014-2019
Title: Innovator Dezhi Zhang: Pioneering Optical Network Technologies
Introduction
Dezhi Zhang, located in Shenzhen, China, is a prominent inventor with a remarkable record of 18 patents in the field of optical networking. His innovative contributions have significantly enhanced the performance and efficiency of optical communication systems.
Latest Patents
Dezhi Zhang's latest inventions include a patented method and apparatus for adjusting wavelength for Optical Line Terminals (OLT) and Optical Network Units (ONU). This invention involves a system where a source OLT sends an adjustment notification to a target OLT, indicating that an ONU will be adjusted into a Time-Wavelength Division Multiplexing Channel (TWDM CH) of the target OLT. The process is completed with an adjustment acknowledgement message from the target OLT, ensuring that the ONU continues to operate normally even when switched to the target OLT's channel. Another significant patent outlines working channel tuning methods, devices, and systems for OLTs and ONUs, aimed at optimizing power consumption during operation.
Career Highlights
Dezhi Zhang has made substantial contributions to companies such as ZTE Corporation and Xi'an Zhongxing New Software Co., Ltd. His work demonstrates a strong commitment to advancing optical networking technology and improving communication infrastructure.
Collaborations
Throughout his career, Dezhi Zhang has collaborated with talented individuals like Weiliang Zhang and Liquan Yuan. These partnerships have furthered his ability to innovate and develop cutting-edge solutions in the optical networking landscape.
Conclusion
Dezhi Zhang's dedication to innovation and his impressive portfolio of patents underscore his significant role in the optical networking field. As technology continues to evolve, his contributions and inventions will undoubtedly shape the future of communication systems.