This inventor holds 1 USPTO granted patent. Top assignee: Eci Telecom Ltd.. Active years: 2009.
Company Filing History:
Years Active: 2009
Title: Michael Meged - Innovator in Ethernet Traffic Protection
Introduction
Michael Meged is a notable inventor based in Givatayim, Israel. He has made significant contributions to the field of telecommunications, particularly in the protection of Ethernet traffic within optical ring networks. His innovative approach addresses critical challenges in data transmission, ensuring reliability and efficiency.
Latest Patents
Michael Meged holds a patent for a "Method for protection of Ethernet traffic in optical ring networks." This method focuses on safeguarding Ethernet data packets transmitted over SDH/SONET traffic in a ring-like optical network formed by multiple nodes. The patented method utilizes the MS-SPRING/BLSR system for SDH/SONET traffic protection. In the event of network failures that isolate one or more nodes, the method prevents the initiation of a squelching algorithm of the MS-SPRING/BLSR system concerning the SDH/SONET virtual containers carrying the Ethernet data packets. Additionally, it ensures that the standardized use of byte J1 is prevented with respect to the same virtual containers.
Career Highlights
Michael Meged is currently employed at Eci Telecom Ltd., where he continues to develop innovative solutions in telecommunications. His work has been instrumental in enhancing the reliability of data transmission in complex network environments.
Collaborations
Michael collaborates with Idan Kaspit, a fellow innovator in the field. Their combined expertise contributes to the advancement of technologies that improve network performance and data integrity.
Conclusion
Michael Meged's contributions to the field of telecommunications, particularly through his patented method for protecting Ethernet traffic, highlight his role as an influential inventor. His work at Eci Telecom Ltd. and collaborations with peers further emphasize his commitment to innovation in this critical area.
