This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Cisco Technology, Inc.. Active years: 2025.
Company Filing History:
Years Active: 2025
Title: Mike Re Mallin: Innovator in Ethernet Virtual Private Networks
Introduction
Mike Re Mallin is a notable inventor based in Gatineau, Canada. He has made significant contributions to the field of networking, particularly in the development of methods and systems for Ethernet Virtual Private Networks (EVPN). His innovative work has led to the filing of a patent that addresses critical issues in local area network (LAN) failures.
Latest Patents
Mike Re Mallin holds a patent for a "Method and systems for ethernet virtual private networks fast re-route convergence." This patent discloses systems, methods, and computer-readable media for forwarding data in response to a detected LAN failure. The method includes identifying one or more EVPN services in a local area network, allocating FRR labels corresponding to each EVPN service, and broadcasting these labels to network appliances. Additionally, it involves detecting a LAN failure and forwarding incoming data to another network appliance based on determined EVI-EAD routes.
Career Highlights
Mike Re Mallin is currently employed at Cisco Technology, Inc., a leading company in networking and cybersecurity solutions. His work at Cisco has allowed him to apply his expertise in developing innovative networking solutions that enhance the reliability and efficiency of data transmission.
Collaborations
Throughout his career, Mike has collaborated with talented professionals, including Brandon D Theobald and Patrice Brissette. These collaborations have contributed to the advancement of networking technologies and the successful implementation of innovative solutions.
Conclusion
Mike Re Mallin is a distinguished inventor whose work in Ethernet Virtual Private Networks has made a significant impact on the field of networking. His patent reflects his commitment to improving data transmission reliability in local area networks.
