Company Filing History:
Years Active: 2021-2022
Title: Tsung-Kai Chen: Innovator in Wireless Communication Technologies
Introduction
Tsung-Kai Chen is a prominent inventor based in Taipei, Taiwan. He has made significant contributions to the field of wireless communication, particularly in enhancing the efficiency and security of network transitions. With a total of 2 patents, his work is recognized for its innovative approach to key management and operational information exchange in wireless local area networks (WLAN).
Latest Patents
Chen's latest patents include "Key management for fast transitions" and "Rapidly disseminated operational information for WLAN management." The first patent addresses the establishment of secure communication between an access point and an electronic device through a four-way handshake. It also details the distribution of secondary pairwise master keys (PMKs) to neighboring access points, facilitating quick transitions during handovers without the need for repeated secure communication. The second patent focuses on the fast exchange of operational information among access points in a WLAN, allowing for improved service and communication performance for electronic devices.
Career Highlights
Tsung-Kai Chen is currently employed at Arris Enterprises LLC, where he continues to develop innovative solutions in wireless technology. His work has been instrumental in advancing the capabilities of WLAN management, making significant strides in how devices connect and communicate within networks.
Collaborations
Chen has collaborated with notable colleagues, including Sheetal Pandey and Wen Xiao Chen, contributing to a dynamic team focused on pushing the boundaries of wireless communication technology.
Conclusion
Tsung-Kai Chen's contributions to wireless communication through his patents and work at Arris Enterprises LLC highlight his role as a key innovator in the field. His advancements in key management and operational information exchange are paving the way for more efficient and secure wireless networks.