slm248gt-na
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SLM248GT-NA

Cisco SLM248GT-NA Catalyst SF200-48 48-Port 10/100 & 2 Combo mini-GBIC Switch

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slm248gt-na Datasheet

 

Cisco 200 Series Switches
Model Number SLM248GT-NA
Performance
Model SF200-48
Capacity in Millions of Packets per Second (mpps) (64-byte packets) 10.12
Switching Capacity in Gigabits per Second (Gbps) 13.6
Layer 2 Switching
Spanning Tree Protocol (STP) Standard 802.1d STP support

Fast convergence using 802.1w (Rapid Spanning Tree [RSTP]), enabled by default
Port gouping Support for IEEE 802.3ad Link Aggregation Control Protocol (LACP)
  • Up to 4 groups
  • Up to 8 ports per group with 16 candidate ports for each (dynamic) 802.3ad link aggregation
VLAN Support for up to 256 VLANs simultaneously (out of 4096 VLAN IDs). 16 VLANs supported in SG200-08 and SG200-08P

Port-based and 802.1Q tag-based VLANs
Voice VLAN Voice traffic is automatically assigned to a voice-specific VLAN and treated with appropriate levels of QoS
Internet Group Management Protocol (IGMP) versions 1 and 2 snooping IGMP limits bandwidth-intensive multicast traffic to only the requesters; supports 256 multicast groups (16 for SG200-08 and SG200-08P)
Head-of-line (HOL) blocking HOL blocking prevention
Security
IEEE 802.1X (Authenticator role) 802.1X: RADIUS authentication, MD5 hash
Port security Locks MAC addresses to ports, and limits the number of learned MAC addresses
Storm control Broadcast, multicast, and unknown unicast
DoS prevention DoS attack prevention
Quality of Service
Priority levels 4 hardware queues
Scheduling Strict priority and weighted round-robin (WRR)

Queue assignment based on differentiated services code point (DSCP) and class of service (802.1p/CoS)
Class of service Port based, 802.1p VLAN priority based, IPv4/v6 IP precedence/type of service (ToS)/DSCP based, Differentiated Services (DiffServ)
Rate limiting Ingress policer, per VLAN and per port
Standatds
Standards IEEE 802.3 10BASE-T Ethernet, IEEE 802.3u 100BASE-TX Fast Ethernet, IEEE 802.3ab 1000BASE-T Gigabit Ethernet, IEEE 802.3ad LACP, IEEE 802.3z Gigabit Ethernet, IEEE 802.3x Flow Control, IEEE 802.1D (STP), IEEE 802.1Q/p VLAN, IEEE 802.1w RSTP, IEEE 802.1X Port Access Authentication, IEEE 802.3af, RFC 768, RFC 783, RFC 791, RFC 792, RFC 793, RFC 813, RFC 879, RFC 896, RFC 826, RFC 854, RFC 855, RFC 856, RFC 858, RFC 894, RFC 919, RFC 922, RFC 920, RFC 950, RFC 951, RFC 1042, RFC 1071, RFC 1123, RFC 1141, RFC 1155, RFC 1350, RFC 1533, RFC 1541, RFC 1542, RFC 1624, RFC 1700, RFC 1867, RFC 2030, RFC 2616, RFC 2131, RFC 2132, RFC 3164, RFC 2618
IPv6
IPv6
  • IPv6 host mode
  • IPv6 over Ethernet
  • Dual IPv6/IPv4 stack
  • IPv6 neighbor and router discovery (ND)
  • IPv6 stateless address auto-configuration
  • Path maximum transmission unit (MTU) discovery
  • Duplicate address detection (DAD)
  • Internet Control Message Protocol (ICMP) version 6
  • IPv6 over IPv4 network with Intra-Site Automatic Tunnel Addressing Protocol (ISATAP) support
IPv6 Qos Prioritize IPv6 packets in hardware
Multicast Listener Discovery (MLD) snooping Deliver IPv6 multicast packets only to the required receivers
IPv6 applications Web, ping, Simple Network Time Protocol (SNTP), Trivial File Transfer Protocol (TFTP), RADIUS, syslog, DNS client
IPv6 RFCs supported
  • RFC 2463: ICMP version 6
  • RFC 3513: IPv6 address architecture
  • RFC 4291: IPv6 addressing architecture
  • RFC 2460: IPv6 specification
  • RFC 2461: Neighbor discovery for IPv6
  • RFC 2462: IPv6 stateless address auto-configuration
  • RFC 1981: Path maximum transmission unit (MTU) discovery
  • RFC 4007: IPv6 scoped address architecture
  • RFC 3484: Default address selection mechanism
  • RFC 4214: ISATAP tunneling
  • RFC 4293: MIB IPv6: Textual conventions and general group
  • RFC 3595: Textual conventions for IPv6 flow label

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