List of Figures
- Figure 1: ATM Interface Column
- Figure 2: NBMA Interface Stack
- Figure 3: Configuring an ATM Interface, Subinterface, and PVC
- Figure 4: Interconnection and Relationship of NNIs and Subnetworks
- Figure 5: MLFR Aggregation of T1 Lines into a Single Bundle
- Figure 6: Terminating the Bundle at an MLFR Bridge
- Figure 7: Structure of MLFR
- Figure 8: Multiplexing Multiple Protocols over a Single Physical Link
- Figure 9: Example of IP over Ethernet Stacking Configuration Procedure
- Figure 10: Example of PPPoE Stacking Configuration Procedure
- Figure 11: Example of IP and MPLS Stacking Configuration Procedure
- Figure 12: Example of IP, MPLS, and PPPoE Stacking Configuration Procedure
- Figure 13: Use of VLANs to Multiplex Different Protocols over a Single Physical Link
- Figure 14: Example of IP/VLAN/Fast Ethernet Stacking Configuration Procedure
- Figure 15: Example of PPPoE/VLAN/Fast Ethernet Stacking Configuration Procedure
- Figure 16: Example of MPLS/VLAN/Fast Ethernet Stacking Configuration Procedure
- Figure 17: Example of PPPoE over VLAN with IP over VLAN Stacking Configuration Procedure
- Figure 18: Example of PPPoE over S-VLAN Stacking Configuration Procedure
- Figure 19: S-VLAN Tunnels for Ethernet Layer 2 Services over MPLS
- Figure 20: Interface Stack for 802.3ad Link Aggregation
- Figure 21: Ethernet Link Redundancy Configuration Models
- Figure 22: GE-2 Line Module Using Physical Port Redundancy
- Figure 23: Single-Homed GE-2 Line Module Configuration
- Figure 24: Single-Homed FE-8 Line Module Configuration (1:N)
- Figure 25: FE-8 Line Module with 4 Redundant Ethernet Links (1:1)
- Figure 26: Single-Homed GE-4 IOA Configuration (1:4)
- Figure 27: GE-8 IOA Configuration Across IOAs (1:N)
- Figure 28: Dual-Homed Configuration (1:1)
- Figure 29: Dual-Homed Heterogeneous Configuration in an RSTP Network
- Figure 30: OAM PDU Format
- Figure 31: OAM Sublayer Interfaces
- Figure 32: OAM Sublayer Entities
- Figure 33: Interrelationship Between 802.3ah OAM and 802.3ad LAG
- Figure 34: Authentication with EAP
- Figure 35: MLPPP Aggregation of T1 Lines into a Single Bundle
- Figure 36: Structure of MLPPP
- Figure 37: PPPoE over ATM
- Figure 38: Example of PPPoE over ATM Stacking
- Figure 39: Single DSLAM Connected to a PPPoE Access Concentrator
- Figure 40: Multiple DSLAMs Connected to a PPPoE Access Concentrator
- Figure 41: Example of Configuring IPv4 and IPv6 over PPPoE
- Figure 42: Example of PPPoE Stacking
- Figure 43: Bridged Ethernet Topology, Router Terminating and Routing Traffic
- Figure 44: Interface Stacking for VLANs over Bridged Ethernet
- Figure 45: Bridge Group with Fast Ethernet and Gigabit Ethernet Bridge Interfaces
- Figure 46: Configuring an ATM 1483 Interface to Support Dynamic Interfaces
- Figure 47: Dynamic PPP Interface Columns
- Figure 48: Dynamic PPPoE Interface Columns
- Figure 49: Dynamic PPPoE over Static PPPoE with ATM Interface Columns
- Figure 50: Dynamic PPPoE over Static PPPoE with Non-VLAN Interface Columns
- Figure 51: Dynamic PPPoE over Static PPPoE with VLAN Interface Columns
- Figure 52: IPv4 and IPv6 Interface Columns over Static and Dynamic PPPoE
- Figure 53: Dynamic PPPoE over Static PPPoE with S-VLAN Interface Columns
- Figure 54: Dynamic IPoA over Static ATM 1483 Interface Columns
- Figure 55: Dynamic Bridged Ethernet over Static ATM 1483 Interface Columns
- Figure 56: Creating and Configuring a Profile
- Figure 57: Assigning a Profile to a Static Interface
- Figure 58: Dynamic Interface Columns over Dynamic ATM 1483 Subinterfaces
- Figure 59: Dynamic Interface Columns over Dynamic VLAN Subinterfaces
- Figure 60: Dynamic IP and PPPoE over Single Dynamic VLAN Subinterface
- Figure 61: Dynamic VLAN Subinterfaces for Subscribers
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