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A DATA CENTER SWITCH WITH IMMEDIATE ROI
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A DATA CENTER SWITCH WITH IMMEDIATE ROI

Features

 
The Extreme VDX 8770 Switch is a highly scalable, low-latency modular switch, perfectly suited for helping respond to demanding network environments based on booming data usage and cloud computing. Designed to support VCS data center networking fabrics, the VDX 8770 supports complex, highly dynamic environments with dense virtualization and high availability requirements.
 

Specifications

Specifications

  • VDX 8770-4
  • Port-to-port latency (64-byte packets) 4 microseconds
  • Form factor 8U
  • Slots 4
  • Dimensions and weight Width: 43.74 cm (17.22 in.)
  • Height: 34.7 cm (13.66 in.)
  • Depth: 66.04 cm (26 in.)
  • Weight: 31.75 kg (70 lb)
  • Weight (fully loaded): 86.18 kg (190 lb)
  • 1 GbE SFP/SFP copper ports 192
  • 10 GbE SFP+/RJ45 ports 192
  • 40 GbE QSFP+ ports 108
  • 100 GbE CFP2 ports 24
  • Power supplies 4 max
  • Cooling fans 2
  • Airflow Side-to-back airflow
  • Connector options 1 GbE copper SFP options
  • 10 Gbps SFP+ options: 1/3/5 m direct-attached copper (Twinax)
  • 10 GbE SR and 10 GbE LR
  • 10 GbE 10GBASE-T RJ45
  • 40 GbE QSFP+
  • 100 GbE CFP2
  • Maximum VLANs 4,096
  • Maximum MAC addresses 384,000
  • Maximum IPv4 routes 352,000
  • Maximum IPv6 routes 88,000
  • Maximum ACLs 57,000
  • Maximum port profiles (AMPP) 1,024
  • Maximum ARP entries 128,000
  • Maximum members in a standard LAG 64
  • Maximum switches in a VCS fabric 48
  • Maximum ECMP paths in a VCS fabric 16
  • Maximum trunk members for VCS fabric ports 16
  • Maximum switches that a vLAG can span 8
  • Maximum members in a vLAG 64
  • Maximum jumbo frame size 9,216 bytes
  • DCB Priority Flow Control (PFC) classes 8
  • Management Module (half-slot) Multicore processor
  • 8 GB SDRAM, USB port
  • Console, management port, auxiliary service port (all RJ-45)
  • Flash memory support One 8 GB compact flash in each Management Module
  • Two 4 GB compact flash in each line card
  • 1 GbE access (fiber/copper) line card 48-port SFP/SFP-copper
  • 1 GbE/10 GbE access (copper) line card 48-port RJ45
  • 10 GbE access or aggregation line card 48-port SFP+ (10 GbE/1 GbE)
  • 48-port RJ45 (10 GbE/1 GbE)
  • 40 GbE aggregation line card 12-port QSFP+ module
  • 27-port QSFP+ module
  • 100 GbE aggregation line card 6-port CFP2 module
  • Enclosure,19-inch EIA-compliant power from port side Operating: 0°C to 40°C (32°F to 104°F)
  • Temperature Non-operating and storage: -25°C to 70°C (-13°F to 158°F)
  • Operating: 10% to 85% non-condensing
  • Humidity Non-operating and storage: 10% to 90% non-condensing
  • Operating: Up to 3,000 meters (9,842 feet)
  • Altitude Non-operating and storage: Up to 12 kilometers (39,370 feet)
  • VDX 8770-4 •Maximum: 675 CFM •Nominal: 200 CFM
  • Airflow VDX 8770-8 •Maximum: 1,250 CFM •Nominal: 375 CFM
  • VDX 8770-4: 3,250 W
  • Max power utilization VDX 8770-8: 6,387 W
  • C19
  • Power inlet 200 to 240 VAC (Operating voltage range: 180 to 264 VAC)
  • Input voltage 50/60 Hz
  • Input line frequency AC: 16.0 A max per power supply
  • Maximum current DC: 70,0 A max per power supply
  • User Datagram Protocol (UDP)
  • UL 60950-1 Second Edition TFTP Protocol (revision 2)
  • CAN/CSA - C22.2 No. 60950 No. 60950-1 Second Edition Internet Protocol (IP)
  • EN 60950 - 1 Second Edition Internet Control Message Protocol (ICMP)
  • IEC 60950 - 1 Second Edition Transmission Control Protocol (TCP)
  • AS/NZS 60950-1 ARP
  • 47CFR Part 15 (CFR 47) Class A Telnet Protocol Specification
  • AS/NZS CISPR22 Class A A Standard for the Transmission of IP Datagram over Ethernet Networks
  • CISPR22 Class A FTP
  • EN55022 Class A Using ARP to Implement Transparent Subnet Gateways (Proxy ARP)
  • ICES003 Class A IGMPv1
  • VCCI Class A Simple Network Management Protocol (SNMP) v1 and v2
  • EN61000-3-2 Network Time Protocol (NTP) Version 3
  • EN61000-3-3 TACACS+
  • KN22 Class A Classless Inter-Domain Routing (CIDR)
  • EN55024 Multicast Extensions to OSPF
  • CISPR24 OSPF Database Overflow
  • EN300386 Requirements for IP Version 4 Routers
  • KN 61000-4 series BGP Communities Attribute
  • RoHS-6-compliant (with lead exemption) Directive 2002/95/EC HTTP Server
  • NEBS-compliant Dynamic Host Configuration Protocol (DHCP)
  • The VDX 8770 products conform to the following Ethernet standards: OSPF with Digital Signatures (Password, MD-5)
  • IEEE 802.3ad Link Aggregation with LACP IGMPv2
  • IEEE 802.3 Ethernet Network Ingress Filtering
  • IEEE 802.3ae 10G Ethernet OSPF v2
  • IEEE 802.1Q VLAN Tagging OSPF Opaque Link-State Advertisement (LSA) Option—Partial Support
  • IEEE 802.1p Class of Service Prioritization and Tagging IPv6 Multicast Address Assignments
  • IEEE 802.1v VLAN Classification by Protocol and Port Protection of BGP Sessions with the TCP MD5 Signature Option
  • IEEE 802.1AB Link Layer Discovery Protocol (LLDP) BGP Route Flap Damping
  • IEEE 802.3x Flow Control (Pause Frames) Internet Protocol, Version 6 (v6) Specification (on management interface)
  • IEEE 802.1D Spanning Tree Protocol IPv6 Stateless Address Auto-Configuration
  • IEEE 802.1s Multiple Spanning Tree Transmission of IPv6 Packets over Ethernet Networks (on management interface)
  • IEEE 802.1w Rapid Reconfiguration of Spanning Tree Protocol Definition of the Differentiated Services Field in the IPv4 and IPv6 Headers
  • RFC 768 An Architecture for Describing SNMP Management Frameworks
  • RFC 783 IPv6 Router Alert Option
  • RFC 791 Remote Authentication Dial-In User Service (RADIUS)
  • RFC 792 The OSPF Not-So-Stubby Area (NSSA) Option
  • RFC 793 OSPF Stub Router Advertisement
  • RFC 826 sFlow
  • RFC 854 Capabilities Advertisement with BGPv4
  • RFC 894 An Architecture for Describing SNMP Frameworks
  • RFC 959 Message Processing and Dispatching for the SNMP
  • RFC 1027 Simple Network Management Protocol (SNMP) Applications
  • RFC 1112 IPv6 Global Unicast Address Format
  • RFC 1157 Graceful OSPF Restart—IETF Tools
  • RFC 1305 VRRP
  • RFC 1492 BGPv4
  • RFC 1519 IPv6 Addressing Architecture
  • RFC 1584 IP Forwarding MIB
  • RFC 1765 Management Information Base for the Internet Protocol (IP)
  • RFC 1812 ICMPv6 (replaces 2463)
  • RFC 1997 BGP Route Reflection
  • RFC 2068 Lightweight Directory Access Protocol (LDAP): Technical Specification Road Map
  • RFC 2131 Protocol Independent Multicast—Sparse Mode (PIM-SM): Protocol Specification (Revised)
  • RFC 2154 Graceful Restart Mechanism for BGP
  • RFC 2236 IPv6 Neighbor Discovery
  • RFC 2267 BGP Support for Four-Octet AS Number Space
  • RFC 2328 Generalized TTL Security Mechanism (GTSM)
  • RFC 2370 Bidirectional Forwarding Detection (BFD)
  • RFC 2375 Bidirectional Forwarding Detection (BFD) for IPv4 and IPv6 (Single Hop)
  • RFC 2385 Generic Application of Bidirectional Forwarding Detection (BFD)
  • RFC 2439 Bidirectional Forwarding Detection (BFD) for Multihop Paths
  • RFC 2460 IPv6 Neighbor Discovery
  • RFC 2462 BGP-EVPN—Network Virtualization Using VXLAN Data Plane
  • RFC 2464
  • RFC 2474
  • RFC 2571
  • RFC 2711
  • RFC 2865
  • RFC 3101
  • RFC 3137 Multicast Listener Discovery (MLD) for IPv6
  • RFC 3176
  • RFC 3392
  • RFC 3411
  • RFC 3412
  • RFC 3413 Maximum switches in a fabric
  • RFC 3587 Maximum ECMP paths in a fabric
  • RFC 3623 Maximum LAGs in a fabric
  • RFC 3768 Service Node Load Balancing BFD/ARP Optimizations
  • RFC 4271 Conversational MAC Learning
  • RFC 4291 Virtual Link Aggregation Group (vLAG) spanning
  • RFC 4292 Layer 2 Access Control Lists (ACLs)
  • RFC 4293 Supports 2K ingress and egress ACLs
  • RFC 4443 Edge Loop Detection (ELD)
  • RFC 4456 Address Resolution Protocol (ARP) RFC 826
  • RFC 4510 Private VLANs
  • RFC 4601 Maintenance Mode/Graceful Traffic Diversion
  • RFC 4724 Distributed VXLAN Gateway
  • RFC 4861 Diagnostic Ports
  • RFC 4893 IP Maps Support
  • RFC 5082 L2 Loop prevention in an overlay environment
  • RFC 5880 High availability/In-Service Software Upgrade—hardware-enabled
  • RFC 5881 IGMP snooping support for multicast flooding
  • RFC 5882 IGMPv1/v2 Snooping
  • RFC 5883 IGMPv1/v2 Snooping
  • RFC 5942 IGMPv3
  • RFC 7432 MAC Learning and Aging
  • IPv6 Routing Link Aggregation Control Protocol (LACP) IEEE 802.3ad/802.1AX
  • RFC 2545 Virtual Local Area Networks (VLANs)
  • Use of BGP-MP Extensions for IPv6 VLAN Encapsulation 802.1Q
  • RFC 2740 Per-VLAN Spanning Tree (PVST+/PVRST+)
  • OSPFv3 for IPv6 Rapid Spanning Tree Protocol (RSTP) 802.1w
  • IPv6 Multicast Multiple Spanning Tree Protocol (MSTP) 802.1s
  • RFC 2710 STP PortFast, BPDU Guard, BPDU Filter
  • VRRP/VRRPe STP Root Guard
  • RFC 5798 Pause Frames 802.3x
  • VRRP Version 3 for IPv4 and IPv6 Static MAC Configuration
  • Uni-Directional Link Detection (UDLD)
  • Software scalability Uplink switch for VDX switches, VCS fabrics, and the VCS Virtual Fabric feature
  • Transparent LAN Services
  • L2 Traceroute for VXLAN
  • Layer 2 switching BUM Storm Control
  • Border Gateway Protocol (BGP4+)
  • DHCP Helper
  • Layer 3 ACLs
  • Multicast: PIM-SM, IGMPv2
  • OSPF v2/v3
  • Static routes
  • IPv4/v6 ACL
  • IPv4/v6 ACL
  • Policy-Based Routing (PBR)
  • Bidirectional Forwarding Detection (BFD)
  • 32-Way ECMP
  • VRF Lite
  • VRF-aware OSPF, BGP, VRRP, static routes
  • VRRP v2 and v3
  • uRPF for IPv4 and IPv6
  • IPv4/IPv6 dual stack
  • IPv6 ACL packet filtering
  • BGP automatic neighbor discovery for IP fabric
  • BGP Additional-Path
  • BGP-Allow AS
  • BGP Generalized TTL Security Mechanism (GTSM)
  • BGP graceful shutdown for maintenance mode
  • BGP Peer Auto Shutdown
  • Multicast Refactoring
  • IPv6 routing
  • OSPF Type-3 LSA Filter
  • Wire-speed routing for IPv4 and IPv6 using any routing protocol
  • BGP-EVPN Control Plane Signaling RFC 7432
  • BGP-EVPN VXLAN Standard-based Overlay
  • Multi-VRF
  • IP Unnumbered Interface
  • Intersubnet Routing (Symmetric and Asymmetric)
  • IP over Port Channel
  • Layer 3 switching VRRP-E
  • Fabric Virtual Gateway
  • Static Anycast Gateway
  • ARP Suppression
  • OpenFlow 1.3
  • REST API with YANG data model
  • Puppet
  • Python
  • PyNOS libraries
  • VMware vRealize plugins
  • DHCP automatic fabric provisioning
  • Netconf API
  • TRILL FGL-based VCS Virtual Fabric feature
  • Virtual fabric extension
  • VM-Aware Network Automation
  • BFD for virtual fabric extension
  • Automatic Migration of Port Profiles (AMPP)
  • Priority-based Flow Control (PFC) 802.1Qbb
  • Enhanced Transmission Selection (ETS) 802.1Qaz
  • Manual configuration of lossless queues for protocols other than FCoE and iSCSI
  • Data Center Bridging Exchange (DCBX)
  • DCBX Application Type-Length-Value (TLV) for FCoE and iSCSI
  • Multi-hop Fibre Channel over Ethernet (FCoE); requires VCS Fabric technology
  • FC-BB5 compliant Fibre Channel Forwarder (FCF)
  • Native FCoE forwarding
  • FCoE to Fibre Channel Bridging
  • FCoE on VDX 8770
  • FCoE on QSFP+ port
  • Multi-hop Access Gateway Support
  • End-to-end FCoE (initiator to target)
  • FCoE Initialization Protocol (FIP) v1 support for FCoE device login and initialization
  • Name Server-based zoning
  • Supports connectivity to FIP Snooping Bridge (FSB) device
  • FCoE traffic over standard LAG
  • Interface Binding
  • Dual Personality Ports
  • Logical SANs
  • Automation and programmability ISSU L2 and L3
  • BFD
  • OSPF3-NSR
  • BGP4-GR
  • Management Module Failover
  • ACL-based QoS
  • Eight priority levels for QoS
  • Class of Service (CoS) IEEE 802.1p
  • Mulititenancy and virtualization DSCP Trust
  • DSCP to Traffic Class Mutation
  • DSCP to CoS Mutation
  • DSCP to DSCP Mutation
  • Random Early Discard
  • DCB Per-port QoS configuration
  • ACL-based Rate Limit
  • Dual-rate, three-color token bucket
  • ACL-based remarking of CoS/DSCP/Precedence
  • ACL-based sFlow
  • Fibre Channel/FCoE Scheduling: Strict Priority (SP), Deficit Weighted Round-Robin (DWRR), Hybrid Scheduling (Hybrid)
  • Queue-based Shaping
  • Flow-based QoS
  • Logical chassis management
  • IPv4/IPv6 management
  • Industry-standard Command Line Interface (CLI)
  • Netconf API
  • REST API with YANG data model
  • VDX Plugin for OpenStack
  • Link Layer Discovery Protocol (LLDP) IEEE 802.1AB
  • MIB II RFC 1213 MIB
  • Switch Beaconing
  • Management VRF
  • Switched Port Analyzer (SPAN)
  • Telnet
  • High availability SNMP v1, v2C, v3
  • sFlow RFC 3176
  • Out-of-band management
  • Remote SPAN (RSPAN)
  • Quality of Service (QoS) RMON-1, RMON-2
  • NTP
  • Management Access Control Lists (ACLs)
  • Role-Based Access Control (RBAC)
  • Range CLI support
  • UDLD
  • OpenStack Neutron ML2 plugin
  • Python
  • Puppet
  • Distributed Configuration Management
  • Maps switch health monitoring
  • Port-based Network Access Control 802.1X
  • RADIUS (AAA)
  • TACACS+
  • Secure Shell (SSHv2)
  • BPDU Drop X X
  • Management and monitoring Lightweight Directory Access Protocol (LDAP)
  • Secure Copy Protocol
  • Port Security
  • Description
  • 4-slot chassis with three Switch Fabric Modules, one Management Module, two fans, two 3,000 W power supply units AC
  • 4-slot chassis, three Switch Fabric Modules, one Management Module, two fans, two 3,000 W power supply units DC
  • 8-slot chassis, six Switch Fabric Modules, one Management Module, four fans, three 3,000 W power supply units AC
  • 4-slot chassis, no Switch Fabric Modules, no Management Modules, two fans, no power supply units
  • 8-slot chassis, no Switch Fabric Modules, no Management Modules, four fans, no power supply units
  • 48×1 GbE, SFP module, no optics
  • 48×1/10 GbE, SFP/SFP+ module, no optics
  • 48×1/10 GbE, RJ45 module, no optics
  • 12×40 GbE, QSFP+ module, no optics
  • 27×40 GbE, QSFP+ module, no optics
  • 6×100 GbE, CFP2 module, no optics
  • Management Module
  • Switch Fabric Module
  • Fan FRU for 4- and 8-slot chassis
  • Fan FRU for 4- and 8-slot chassis
  • 3,000 W power supply unit AC
  • 3,000 W power supply unit DC
  • FCoE feature chassis license
  • Layer 3 feature chassis license
  • Layer 3 feature chassis license
  • Advanced feature chassis license (includes Layer 3, FCoE, and VCS licenses)
  • Upgrade license from VCS, FCoE, or Layer 3 features to Advanced license
  • URL
 
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