Location History:
- Fuzhuo, CN (2021)
- Xiamen, CN (2023)
Company Filing History:
Years Active: 2021-2023
Title: Innovations of Zhang Fan in Optical Communication
Introduction
Zhang Fan is a prominent inventor based in Fuzhou, China. He has made significant contributions to the field of optical communication, holding a total of 2 patents. His work focuses on enhancing the efficiency and performance of optical transceiver technologies.
Latest Patents
Zhang Fan's latest patents include a high-speed optical transceiver integrated chip drive circuit with phase delay compensation function. This invention addresses the challenges of signal degradation in high-speed communications by optimizing the drive circuits for both transmitting and receiving ends. The design incorporates phase adjustment circuits to compensate for delays, ensuring the integrity of high-speed signals.
Another notable patent is the receiving and sending integrated chip for an Optical Line Terminal (OLT). This innovation aims to reduce production costs and cycle times by integrating the functions of a limiting amplifier and a laser driver into a single chip. The design offers two solutions tailored for both EPON and GPON systems, enhancing the operational efficiency of optical modules.
Career Highlights
Zhang Fan has established himself as a key figure in the optical communication sector. His inventions have not only advanced technology but also contributed to the reduction of costs in production processes. His expertise in integrated circuits and optical communications has positioned him as a valuable asset in the industry.
Collaborations
Zhang has collaborated with notable colleagues, including Jinghu Li and Hanghui Tu. Their combined efforts have fostered innovation and development in their respective fields.
Conclusion
Zhang Fan's contributions to optical communication through his innovative patents demonstrate his commitment to advancing technology. His work continues to influence the industry, paving the way for future developments in high-speed communication systems.