| Model | N3K-C3548P-10GX |
| Brand | Cisco |
| Physical | - 48 fixed SFP+ ports (1 or 10 Gbps)
- Dual redundant hot-swappable power supplies
- Four individual redundant hot-swappable fans
- One 1-PPS timing port with RF1.0/2.3 QuickConnect connector
- One 10/100/1000-Mbps management port
- One RS-232 serial console port
- Two USB ports
- Locator LED
- Locator LED button
|
| Performance | - 960 Gbps switching capacity
- 720 Mpps forwarding rate
- Line-rate traffic throughput on all ports for Layer 2 and Layer 3
- Configurable MTUs up to 9216 bytes (jumbo frames)
|
| Typical Operating Power | 112 W |
| Maximum Power | 213 W |
| Typical Heat Dissipation | 383 BTUs per hour |
| Maximum Heat Dissipation | 727 BTUs per hour |
| Number of MAC Addresses | 64,000 |
| Number of VLANs | 4,096 |
| Number of ACL Entries | 4,096 |
| Number of Spanning-Tree Instances | Rapid Spanning Tree Protocol (RSTP): 512 Multiple Spanning Tree (MST): 64 |
| Number of EtherChannels | 24 |
| Number of Ports per EtherChannel | 24 |
| Buffer Size | 6 MB shared among 16 ports; 18 MB total |
| Boot Flash Memory | 2 GB (3524P and 3548P models); 4 GB (3524X and 3548X models) |
| Power Supply Types | AC (forward and reversed airflow) DC (forward and reversed airflow) |
| Input Voltage | 100 to 240 VAC |
| Frequency | 50 to 60 Hz |
| Power Supply Efficiency | 89% to 91% at 220V |
| Cooling | - Forward and reversed airflow schemes
- Forward airflow: port-side exhaust; air enters through fan tray and power supplies and exits through ports
- Reversed airflow: port-side intake; air enters through ports and exits through fan tray and power supplies
- Four individual hot-swappable fans (3+1 redundant)
|
| Operating Temperature | 32 to 104°F (0 to 40°C) |
| Storage Temperature | -40 to 158°F (-40 to 70°C) |
| Relative Humidity (Operating) | 10% to 85% non-condensing; up to 5 days at maximum 85% humidity |
| Relative Humidity (Nonoperating) | 5% to 95% non-condensing |
| Altitude | 0 to 10,000 ft (0 to 3,000 m) |
| Mean Time Between Failures (MTBF) | 317,030 hours |
| Layer 2 | - Layer 2 switch ports and VLAN trunks
- IEEE 802.1Q VLAN encapsulation
- Support for up to 4096 VLANs
- Rapid Per-VLAN Spanning Tree Plus (PVRST+), IEEE 802.1w compatible
- MSTP (IEEE 802.1s): 64 instances
- Spanning Tree PortFast
- Spanning Tree Root Guard
- Spanning Tree Bridge Assurance
- Cisco EtherChannel technology, up to 24 ports per EtherChannel
- LACP: IEEE 802.3ad and IEEE 802.1ax
- Advanced PortChannel hashing based on Layer 2, 3, and 4 information
- Jumbo frames on all ports, up to 9216 bytes
- Storm control for multicast and broadcast traffic
- Link-level flow control (IEEE 802.3x)
- vPC
|
| Layer 3 | - Layer 3 interfaces: routed ports, SVIs, PortChannels, and subinterfaces (total: 1024)
- 24-way Equal-Cost Multipath (ECMP)
- 4096 ACL entries
- Routing protocols: Static, RIPv2, EIGRP, OSPF, and BGP
- HSRP and VRRP
- Routed ACL with Layer 3 and Layer 4 options
- VRF-Lite (IP VPN)
- VRF-aware unicast for BGP, OSPF, and RIP
- VRF-aware multicast
- VRF route leaking
- Jumbo frame support up to 9216 bytes
|
| Multicast | - PIMv2
- PIM Sparse Mode (PIM-SM)
- Source-Specific Multicast (SSM)
- Bi-directional PIM (BiDir)
- Bootstrap Router (BSR)
- Auto-RP and Static RP
- MSDP and Anycast RP
- IGMP Versions 2 and 3
|
| Security | - Ingress ACLs (standard and extended) on Ethernet
- Standard and extended Layer 3/4 ACLs for IPv4, ICMP, TCP, and UDP
- VLAN-based ACLs (VACLs)
- Port-based ACLs (PACLs)
- Named ACLs
- ACLs on virtual terminals (VTYs)
- DHCP relay
- Control Plane Policing (CoPP)
|
| Cisco Nexus Data Broker | - Topology support for TAP and SPAN aggregation
- Traffic load balancing to multiple monitoring tools
- Time stamping using PTP
- Packet truncation
- Traffic filtering based on Layer 1 through Layer 4 header information
- Traffic replication and forwarding to multiple monitoring tools
- Robust RBAC
- Northbound REST API for programmability
|
| Management | - Power On Auto Provisioning (POAP)
- Python scripting
- Switch management through 10/100/1000-Mbps management or console ports
- CLI-based out-of-band management
- In-band switch management
- Locator and beacon LEDs
- Configuration rollback
- SSHv2
- Telnet
- AAA and AAA with RBAC
- RADIUS
- TACACS+
- Syslog
- Embedded packet analyzer
- SNMP v1, v2, and v3
- Enhanced SNMP MIB support
- XML (NETCONF) support
- Remote Monitoring (RMON)
- AES for management traffic
- Unified usernames and passwords across CLI and SNMP
- MS-CHAP
- Digital certificates for switch-to-RADIUS management
- Cisco Discovery Protocol Versions 1 and 2
- RBAC
- SPAN on physical ports, PortChannels, and VLANs
- ERSPAN Versions 2 and 3
- Ingress and egress packet counters per interface
- Network Time Protocol (NTP)
- Cisco OHMS
- Comprehensive bootup diagnostic tests
- Cisco Call Home
- Cisco DCNM
- Active buffer monitoring
- PTP (IEEE 1588) boundary clock
|
| Standards | - IEEE 802.1D: Spanning Tree Protocol
- IEEE 802.1p: CoS Prioritization
- IEEE 802.1Q: VLAN Tagging
- IEEE 802.1s: Multiple VLAN Instances of Spanning Tree Protocol
- IEEE 802.1w: Rapid Reconfiguration of Spanning Tree Protocol
- IEEE 802.3z: Gigabit Ethernet
- IEEE 802.3ad: Link Aggregation Control Protocol (LACP)
- IEEE 802.1ax: Link Aggregation Control Protocol (LACP)
- IEEE 802.3ae: 10 Gigabit Ethernet
- IEEE 802.3ba: 40 Gigabit Ethernet
- IEEE 802.1ab: LLDP
|
| RFC Support | BGP- RFC 1997: BGP Communities Attribute
- RFC 2385: Protection of BGP Sessions with TCP MD5 Signature
- RFC 2439: BGP Route Flap Damping
- RFC 2519: Framework for Inter-Domain Route Aggregation
- RFC 2545: BGPv4 Multiprotocol Extensions
- RFC 2858: Multiprotocol Extensions for BGPv4
- RFC 3065: Autonomous System Confederations for BGP
- RFC 3392: Capabilities Advertisement with BGPv4
- RFC 4271: BGPv4
- RFC 4273: BGPv4 MIB
- RFC 4456: BGP Route Reflection
- RFC 4486: Subcodes for BGP Cease Notification Message
- RFC 4724: Graceful Restart Mechanism for BGP
- RFC 4893: BGP Support for Four-Octet AS Number Space
OSPF - RFC 2328: OSPF Version 2
- RFC 3101: OSPF Not-So-Stubby-Area (NSSA) Option
- RFC 3137: OSPF Stub Router Advertisement
- RFC 3509: Alternative Implementations of OSPF Area Border Routers
- RFC 3623: Graceful OSPF Restart
- RFC 4750: OSPF Version 2 MIB
RIP - RFC 1724: RIPv2 MIB Extension
- RFC 2082: RIPv2 MD5 Authentication
- RFC 2453: RIP Version 2
IP Services - RFC 768: User Datagram Protocol (UDP)
- RFC 783: Trivial File Transfer Protocol (TFTP)
- RFC 791: IP
- RFC 792: Internet Control Message Protocol (ICMP)
- RFC 793: TCP
- RFC 826: ARP
- RFC 854: Telnet
- RFC 959: FTP
- RFC 1027: Proxy ARP
- RFC 1305: Network Time Protocol (NTP) Version 3
- RFC 1519: Classless Interdomain Routing (CIDR)
- RFC 1542: BootP Relay
- RFC 1591: DNS Client
- RFC 1812: IPv4 Routers
- RFC 2131: DHCP Helper
- RFC 2338: VRRP
- RFC 2236: Internet Group Management Protocol Version 2
- RFC 3376: Internet Group Management Protocol Version 3
- RFC 3446: Anycast Rendezvous Point Mechanism Using PIM and MSDP
- RFC 3569: Overview of Source-Specific Multicast (SSM)
- RFC 3618: Multicast Source Discovery Protocol (MSDP)
- RFC 4601: PIM Sparse Mode (PIM-SM)
- RFC 4607: Source-Specific Multicast for IP
- RFC 4610: Anycast-RP Using PIM
- RFC 5015: PIM BiDir
- RFC 5132: IP Multicast MIB
|
| Weight | 17.4 kg |
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