Location History:
- Mountain View, CA (US) (2007)
- Milpitas, CA (US) (2019)
- San Jose, CA (US) (2012 - 2020)
- Millbrae, CA (US) (2019 - 2024)
Company Filing History:
Years Active: 2007-2025
Title: Innovations of Yee Chun Lee
Introduction
Yee Chun Lee is a prominent inventor based in Millbrae, CA, known for his significant contributions to wireless communication technology. With a total of 10 patents to his name, he has developed innovative systems that enhance data communication in modern networks.
Latest Patents
One of Yee Chun Lee's latest patents is a communication network with base station nodes and repeater nodes for wirelessly communicating data between the base station nodes and a multi-antenna mobile handset. This system comprises a wireless network that allows a mobile handset, equipped with multiple antennas, to communicate with various base stations. The design ensures that data is transmitted through different wireless signals, optimizing the directionality of the antennas. Another notable patent is a communication network with a control plane network. This system features first and second wireless networks, where the first network operates at a higher frequency and includes multiple repeater nodes. The second network serves as an overlay out-of-band control plane, facilitating efficient data communication between nodes.
Career Highlights
Throughout his career, Yee Chun Lee has worked with various companies, including General Display, Ltd. His expertise in wireless communication has positioned him as a key figure in the development of advanced communication technologies.
Collaborations
Yee Chun Lee has collaborated with notable professionals in his field, including Huei Meng Chang and Tat-Sing Huen. These collaborations have contributed to the successful development of his innovative patents.
Conclusion
Yee Chun Lee's work in wireless communication technology showcases his inventive spirit and dedication to advancing the field. His patents reflect a commitment to improving data transmission and connectivity in modern networks.