Next-Generation 100G Spine Switch Enables Digital Transformation
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NEXT-GENERATION 100G SPINE SWITCH ENABLES DIGITAL TRANSFORMATION
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NEXT-GENERATION 100G SPINE SWITCH ENABLES DIGITAL TRANSFORMATION

Features

 
This fixed spine switch delivers the high-density 100G / 40G connectivity required by enterprise and cloud data centers. Its programmable architecture is designed for dense workloads, with the capacity to transition to emerging protocols and new technologies. Automation, simplified management, and in-context end-to-end network visibility help infrastructure teams continue to drive SLAs as they transition.
 

Specifications

Specifications

  • Form factor 1U
  • Switching bandwidth (data rate, full duplex) 3.2 Tbps
  • Forwarding capacity (data rate, full duplex) (L2) 2.4 Bpps, (L3) 600 Mpps line-rate performance
  • Dimensions and weight 44.0 cm; 173.2 in. (Width), 444.7 cm; 175 in. (Depth), 4.37cm; 1.72 in. (Height) 9.07 kg; 20 lb
  • 100/40 GbE ports 32
  • Power supplies Two internal, redundant, field-replaceable, load-sharing AC or DC power supplies
  • Cooling fans Five field-replaceable fans
  • Dynamically shared packet buffer 24 MB
  • Connector Options 10 GbE SFP+ (via splitter cable)
  • 40 GbE QSFP+
  • 100 GbE QSFP-28
  • Out-of-band Ethernet management: 10/100/1000 Mbps RJ-45
  • Console management: RJ45 serial port and USB type-C port with serial communication device class support
  • Storage: USB port, standard-A plug
  • Power inlet (AC) C13
  • Input voltage 90 V to 264 V or 40.8 V to 60 V DC
  • Input line frequency 47 Hz to 63 Hz
  • Inrush current 25 A peak
  • Maximum current 12 A/AC, 14 A/DC
  • Typical power consumption 184 W Two AC PSU, five fan trays, 10% traffic, low fan speed
  • Maximum power consumption 581W Two AC PSU, six fan trays, 100% traffic, high fan speed
  • Power supply rated maximum (AC) 650 W
  • Switch power consumption DC PSU 563W; AC PSU 581 W
  • Humidity 5% to 95% at 50°C
  • Altitude Up to 3,000 m safety; 60 m to 4,000 m operational
  • Shock (operational) 20 G, 11 ms, half-sine wave
  • Vibration (operational) 1 G sine, 0.4 gms random, 5 Hz to 500 Hz
  • Airflow 134 CFM (estimated with two PSU, six fan trays)
  • Acoustics (25°C) 52 dBA
  • MTBF (25°C) 327,539 hours
  • Maximum MAC addresses Up to 48,000
  • Maximum VLANs 4,096
  • Maximum routes (in hardware) Up to 40,000
  • Maximum ACLs 512
  • Maximum members in a standard LAG 16
  • Maximum per-port priority pause level 8
  • Maximum switches an mLAG can span 2
  • Maximum IPv4 unicast routes 48,000
  • Maximum IPv6 unicast routes 8,000
  • DCB priority flow control classes 4
  • Maximum jumbo frame size 10,000 bytes
  • QoS priority queues (per port) 8
  • IEEE 802.1D Spanning Tree Protocol
  • IEEE 802.1s Multiple Spanning Tree User Datagram Protocol (UDP)
  • IEEE 802.1w Rapid Reconfiguration of Spanning Tree Protocol TFTP Protocol (revision 2)
  • IEEE 802.3 Ethernet Internet Protocol (IP)
  • IEEE 802.3ad Link Aggregation with LACP Internet Control Message Protocol (ICMP)
  • IEEE 802.3ae 10G Ethernet Transmission Control Protocol (TCP)
  • IEEE 802.1Q VLAN Tagging ARP
  • IEEE 802.1p Class of Service Prioritization and Tagging Telnet Protocol Specification
  • IEEE 802.1v VLAN Classification by Protocol and Port A Standard for the Transmission of IP Datagram over Ethernet Networks
  • IEEE 802.1AB Link Layer Discovery Protocol (LLDP) FTP
  • IEEE 802.3x Flow Control (Pause Frames) Using ARP to Implement Transparent Subnet Gateways (Proxy ARP)
  • IEEE 802.3ab 1000BASE-T IGMPv1
  • IEEE 802.3z 1000BASE-X Simple Network Management Protocol (SNMP) v1 and v2
  • General Protocols Network Time Protocol (NTP) Version 3
  • RFC 768 TACACS+
  • RFC 783 Classless Inter-Domain Routing (CIDR)
  • RFC 791 Multicast Extensions to OSPF
  • RFC 792 OSPF Database Overflow
  • RFC 793 Requirements for IP Version 4 Routers
  • RFC 826 BGP Communities Attribute
  • RFC 854 HTTP Server
  • RFC 894 Dynamic Host Configuration Protocol (DHCP)
  • RFC 959 OSPF with Digital Signatures (Password, MD-5)
  • RFC 1027 IGMPv2
  • RFC 1112 Network Ingress Filtering
  • RFC 1157 OSPF v2
  • RFC 1305 OSPF Opaque Link-State Advertisement (LSA) Option—Partial Support
  • RFC 1492 IPv6 Multicast Address Assignments
  • RFC 1519 Protection of BGP Sessions with the TCP MD5 Signature Option
  • RFC 1584 BGP Route Flap Damping
  • RFC 1765 Internet Protocol, Version 6 (v6) Specification (on management interface)
  • RFC 1812 IPv6 Stateless Address Auto-Configuration
  • RFC 1997 Transmission of IPv6 Packets over Ethernet Networks (on management interface)
  • RFC 2068 Use of BGP-MP Extensions for IPv6
  • RFC 2131 Definition of the Differentiated Services Field in the IPv4 and IPv6 Headers
  • RFC 2154 An Architecture for Describing SNMP Management Frameworks
  • RFC 2236 Multicast Listener Discover (MLD) for IPv6
  • RFC 2267 IPv6 Router Alert Option
  • RFC 2328 OSPFv3 for IPv6
  • RFC 2370 Remote Authentication Dial-In User Service (RADIUS)
  • RFC 2375 The OSPF Not-So-Stubby Area (NSSA) Option
  • RFC 2385 OSPF Stub Router Advertisement
  • RFC 2439 sFlow
  • RFC 2460 Capabilities Advertisement with BGPv4
  • RFC 2462 An Architecture for Describing SNMP Frameworks
  • RFC 2464 Message Processing and Dispatching for the SNMP
  • RFC 2545 Simple Network Management Protocol (SNMP) Applications
  • RFC 2474 IPv6 Global Unicast Address Format
  • RFC 2571 Graceful OSPF Restart—IETF Tools
  • RFC 2710 VRRP
  • RFC 2711 BGPv4
  • RFC 2740 ICMPv6 (replaces 2463)
  • RFC 2865 BGP Route Reflection
  • RFC 3101 Lightweight Directory Access Protocol (LDAP): Technical Specification Road Map
  • RFC 3137 Graceful Restart Mechanism for BGP
  • RFC 3176 OSPFv2.MIB
  • RFC 3392 IPv6 Neighbor Discovery
  • RFC 3411 BGP Support for Four-Octet AS Number Space
  • RFC 3412 Generalized TTL Security Mechanism (GTSM)
  • RFC 3413 Bidirectional Forwarding Detection (BFD)
  • RFC 3587 Bidirectional Forwarding Detection (BFD) for IPv4 and IPv6 (Single Hop)
  • RFC 3623 Bidirectional Forwarding Detection (BFD) for Multihop Paths
  • RFC 3768 IPv6 Neighbor Discovery
  • RFC 4271 BGP-EVPN—Network Virtualization Using VXLAN Data Plane
  • RFC 4443
  • RFC 4456 IP Forwarding MIB
  • RFC 4510 Management Information Base for the Internet Protocol (IP)
  • RFC 4724 BFD MIB
  • RFC 4750 SNMP-USM-AES-MIB
  • RFC 4861 BGP-4 MIB
  • RFC 4893 The Interfaces Group MIB
  • RFC 5082 Entity MIB (Version 3); rmon.mib, rmon2.mib, sflow_v5.mib, bridge.mib, pbridge.mib, qbridge.mib, lag.mib, rstp.mib, lldp.mib, lldp_ext_dot1.mib, lldp_ext_dot3.mib
  • RFC 5880 TCP MIB
  • RFC 5881 UDP.MIB
  • RFC 5883 OSPFv2.MIB
  • RFC 5942 SLX 9240-32C Switch AC with front-to-back airflow. 32×100 GbE/40 GbE
  • RFC 7432 SLX 9240-32C Switch DC with front-to-back airflow. 32×100 GbE/40 GbE
  • MIBs SLX 9240-32C Switch AC with back-to-front airflow. 32×100 GbE/40 GbE
  • RFC 4292 SLX 9240-32C Switch DC with back-to-front airflow. 32×100 GbE/40 GbE
  • RFC 4293
  • RFC 7331 Advanced License for BR-SLX-9240
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