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H3C S12500X-AF Data Center Cloud Core Series Switches
Home / Communication & Connectivity / Switches / Data Center Switches

H3C S12500X-AF Data Center Cloud Core Series Switches

Categories: Communication & Connectivity, Data Center Switches, Switches Tags: Data Center Switches, Ethernet Switches, Ethernet Switches H3C, H3C
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The H3C S12500X-AF DataCenter Cloud Core Switch Series is designed for cloud services data centers. It provides the following features:

  • CLOS+ multi-grade multi-plane architecture
  • With 768 line-speed 40G/100G interface per chassis and up to 9.6Tbps switch capacity per slot
  • Integration of IRF2 (Intelligent Resilient Framework version 2), and MDC (Multi-tenant Device Context) to implement virtual resource pools
  • Distributed ingress buffers (200 ms) to accommodate burst traffic in data centers
  • Independent control, detection, and maintenance engines to implement 50ms failover and powerful control capabilities
  • The S12500X-AF switch series includes S12504X-AF, 12508X-AF and S12516X-AF, which meet various port density and performance requirements. The S12500X-AF switch series can work with H3C routers, switches, security devices, IMC, and H3Cloud to provide a wide variety solutions
  • Features
  • Specifications
  • Networking Application
  • Ordering Information

🎯 Advanced CLOS+ multi-grade multi-plane switching architecture

  • CLOS+ multi-grade multi-plane architecture, midplane free design, providing continuous bandwidth upgrade capability
  • Supports industry first 48-port 40GE/ 100GE interfaces and can meet the existing and future application requirements of data centers
  • Adopts independent switching fabric modules and MPU engines to improve device availability and ensure bandwidth expansion

🎯 Virtualization technologies – IRF2

  • IRF2 can virtualize up to two S12500X-AF switches into one logical IRF fabric. IRF2 delivers the following benefits:
  • High Availability (HA) – Patented hot standby technology provides data backup and non-stop forwarding on the control plane and data plane. It improves availability and performance, eliminates single-point of failures, and ensures service continuity
  • Distribution – Multi-chassis link aggregation to enable load sharing and backup over multiple uplinks, improving redundancy and link utilization
  • Easy Management – A single IP address to manage the whole IRF fabric, which simplifies device and topology management, improving operating efficiency, and lowering network maintenance cost

🎯 Virtualization technologies – MDC

  • MDC virtualizes one S12500X-AF switch into multiple logical switches, enabling multiple services to share one core switch. The 1:N virtualization maximizes switch utilization, reduces network TCO, and ensures secure isolation of services

🎯 DC-oriented features

  • VXLAN (Virtual Extensible LAN) —VXLAN uses a MAC-in-UDP encapsulation method where the original Layer 2 package is added with a VXLAN header, and is then placed in a UDP-IP packet. With the help of MAC-in-UDP encapsulation, VXLAN tunnels Layer 2 network over Layer 3 network which provides two major benefits: higher scalability of Layer 2 segmentation and better utilization of available network paths
  • MP-BGP EVPN ( Mutliprotocol Border Gateway Protocol Ethernet Virtual Private Network) MP-BGP EVPN uses standard-based BGP protocol as the control plane for VXLAN overlay networks, providing BGP based VTEP auto peer discovery and end-host reachability information distribution. MP-BGP EVPN delivers many benefits, such as eliminating traffic flooding, reducing full mesh requirements between VTEPs via the introduction of BGP RR, achieving optimal flow based end to end load sharing and more
  • Large capacities for storing ARP/ND, MAC, and ACL entries

🎯 RoCE (RDMA over Converged Ethernet)

  • Remote Direct Memory Access (RDMA) directly transmits the user application data to the storage space of the servers, and uses the network to fast transmit the data from the local system to the storage of the remote system. RDMA eliminates multiple data copying and context switching operations during the transmission process, and reduces the CPU load.
  • RoCE supports RDMA on standard Ethernet infrastructures. H3C S6850 switch support RoCE and can be used to build a lossless Ethernet network to ensure zero packet loss.
  • RoCE include the following key features,include PFC(Priority based Flow Control), ECN(Explicit Congestion Notification), DCBX(Data Center Bridging Capability Exchange Protocol), ETS(Enhanced Transmission Selection).

🎯 Innovative multi-engine design

  • Independent control, detection, and maintenance engines provide powerful control capability and millisecond-level HA:
  • Independent control engine— Uses a powerful CPU system that can efficiently process protocol and control packets, providing refined control for protocol packets and comprehensive protection against protocol packet attacks
  • Independent detection engine— Provides highly reliable Fast Fault Detection and Restoration (FFDR) such as BFD and OAM, which can interact with protocols on the control plane to implement millisecond-level failover and convergence, ensuring service continuity
  • Independent maintenance engine—Uses an intelligent Embedded Maintenance Subsystem (EMS), a CPU system that provides smart power management, including sequential power-on and power-off and device status check. Sequential power-on and power-off reduces power impulse, electromagnetic radiation, power consumption, and extends the device lifespan

🎯 DC-class HA

  • FFDR provides BFD and OAM functions to implement fast failover and convergence. The following lists the DC-class HA features:
  • BFD for VRRP/BGP/IS-IS/RIP/OSPF/RSVP/static routing
  • NSR/GR for OSFP/BGP/IS-IS/RSVP
  • Separation of control and data planes through independent control engine and switching fabric module.
  • 1+1 redundancy for control engines
  • N+1 redundancy for switch fabric modules
  • 1+1 redundancy for fan trays
  • N+M redundancy for power modules

🎯 Multi-level security protection

  • The S12500X-AF switch series use QoS policies to filter and limit traffic from data plane to control plane. During a DoS attack, the switch can identify and protect important packets and discard attack packets, ensuring normal operation
  • Supports a large numbers of ACLs while ensuring line-speed forwarding. ACLs can identify and control L2/IPv4/IPv6/MPLS traffic by using combinations of packet fields
  • The S12500X-AF switch series supports hardware level encryption technology MACsec (802.1ae), which is an industry-standard security technology that provides secure communication for all traffic on Ethernet links.

🎯 Distributed buffering and precise QoS

  • Distributed ingress buffers accommodate burst traffic. Each port performs a precise bandwidth assignment and traffic shaping for incoming traffic, and distributes the traffic to ingress buffers. Distributed buffering can fully utilize the buffers of line cards to ensure best buffering performance
  • A network model change from C/S to B/S leads to increased volumes of burst traffic. Network devices must have larger buffering capabilities to support this. The S12500X-AF series supports 200 ms buffering of burst traffic per 10G interface, which can meet the burst traffic requirements of large data centers
  • Each chip can support 4GB buffer, maximum of 24GB buffer per line card
  • Each line card supports a maximum of 96K hardware queues, refined QoS, and traffic management. QoS can assign different priorities and queues to different users to provide differentiated services

🎯 Comprehensive maintenance and monitoring

  • Online state monitoring – Uses a dedicated engine to monitor the state of switch fabric modules, backplane channels, service communication channels, key chips, and storage. Once a failure occurs, it reports the failure to the system through EMS
  • Card isolation- Isolates specified cards from the forwarding plane. The isolated cards still work on the control plane, allowing the user to perform management operations such as real-time diagnosis and CPLD upgrade on the isolated cards without affecting system operation
  • Ethernet OAM- Provides multiple device-level and network-level fault detection methods

🎯 Green

  • Intelligent EMS engine system – Provides smart power management that supports sequential power-on and power-off and device status check. Sequential power-on and power-off reduces power impulse and electromagnetic radiation, and increases the lifetime of the device. Additionally, device status checks can isolate faulty and idle cards to reduce power consumption
  • Smart fan management- Collects fan temperature, calculates fan speed, and assigns the calculated speed to the fan tray. In addition, it detects fan speeds, fault alarms, and performs speed adjustment based on configuration sand area, reducing power consumption and noise, increasing the fan’s lifetime
  • Internal interface monitoring-Automatically shuts down unused internal interfaces to reduce power consumption
  • RoHS compliance – The S12500X-AF switch series meets the EU RoHS safety standards.
  • The S12500X-AF switch series is designed with front to back air flow, satisfying highly efficient heat dissipation requirements in data center.
Hardware Specifications
ItemS12504X-AFS12508X-AFS12516X-AF
Switching capacity57.6T/387Tbps115.2T/516Tbps230.4T/1032Tbps
Throughput28800Mpps57600Mpps115200Mpps
MPU slots222
LPU slots4816
Maximum power consumption4800 W9600 W19200W
Weight (full configuration)≤ 100 kg

≤ 220.5 lb

≤ 190 kg

≤ 418.9 lb

≤ 350 kg

≤ 771.6 lb

Dimensions (H x W x D)264 x 440 x 857 mm (6U)

10.4 x 17.3 x 33.7 in

531 x 440 x 857 mm (12U)

20.9 x 17.3 x 33.7 in

931 x 440 x 857 mm (21U)

36.7 x 17.3 x 33.7 in

Switching fabric module slots666
MPU NameLSXM1SUP04B1LSXM1SUP04H1LSXM1SUPB1LSXM1SUPH1LSXM1SUPB1LSXM1SUPH1
MPU processorQuad Core 1.2 GHzQuad Core 1.2 GHzQuad Core 1.2 GHz
MPU SDRAM8 GB16 GB8 GB16 GB8 GB16 GB
MPU Flash1 GB1 GB1 GB
MPU Console Port111
MPU MGMT Ports2x 10/100/1000M Base-T

2x 1000M SFP

2x 10/100/1000M Base-T

2x 1000M SFP

1x 10/100/1000M Base-T

1x 1000M SFP

2x 10/100/1000M Base-T

2x 1000M SFP

1x 10/100/1000M Base-T

1x 1000M SFP

MPU USB Port111
RedundancyRedundant MPUs, switching fabric modules, power modules, and fan trays
Software Specification
ItemFeature description
Device VirtualizationIRF
Network VirtualizationBGP-EVPN
VxLAN
VxLANL2 VxLAN gateway
L3 VxLAN gateway
Distributed VxLAN gateway
Centralized VxLAN gateway
EVPN VxLAN
manual configured VxLAN
IPv4 VxLAN tunnel
ProgrammabilityOpenflow1.3
Netconf
Ansible
Python//TCL/Restful API to realize DevOps automated operation and maintenance
Traffic analysisSflow
VLANPort-based VLANs
VLAN mapping
L2PT
MVRP(Multiple VLAN Registration Protocol)
MAC addressDynamic learning and aging of mac address entries
Dynamic,static and blackhole entries
IPv4 routing

(Hardware-based

unicast routing)

RIP(Routing Information Protocol) v1/2
OSPF (Open Shortest Path First) v1/v2
ISIS(Intermediate System to Intermediate system)
BGP (Border Gateway Protocol)
Routing policy
VRRP
PBR
ICMP
IPv6 routing

(Hardware-based

unicast routing)

RIPng
OSPFv3
IPv6 ISIS
BGP4+
Routing policy
VRRP
PBR
IPv6 ICMP
IP ServiceDHCP Server, DHCP Relay, DHCP Snooping

DHCP server of 3K operations/second

MPLS/VPLSSupport L3 MPLS VPN
Support MCE
VPLS
Support MPLS OAM
Support P/PE function
Support LDP protocol
Multicast

(Hardware-based multicast routing)

IGMP snooping
MLD snooping
IPv4 and IPv6 multicast VLAN
IPv4 and IPv6 PIM snooping
IGMP and MLD
PIM and IPv6 PIM, Any-RP
MSDP
ReliabilityLACP

LACP local forwarding first

LACP short-time

LACP Stack split detection

STP/RSTP/MSTP protocol, PVST/PVST+/RPVST+compatible
STP Root Guard and BPDU Guard
RRPP and ERPS(ITU-T G.8032)
Loopback detection
Ethernet OAM
Smartlink
DLDP
BFD for OSPF/OSPFv3, BGP/BGP4, IS-IS/IS-ISv6, PIM/IPM for IPv6 and Static route
VRRP and VRRPE
TelemetryERSPAN
Packet capture
QOSWeighted Random Early Detection (WRED) and tail drop
Flexible queue scheduling algorithms based on port and queue, including strict priority (SP), Weighted Deficit Round Robin (WDRR), Weighted Fair Queuing (WFQ), SP + WDRR, and SP + WFQ.
Traffic shaping
COPP
QOSCommitted access rate (CAR)
Account by packet and byte
Packet filtering at L2 (Layer 2) through L4 (Layer 4); flow classification based on source MAC address, destination MAC address, source IP (IPv4/IPv6) address, destination IP (IPv4/IPv6) address, port, protocol, and VLAN to apply qos policy,including mirroring,redirection,priority remark etc.
Configuration and maintenanceConsole telnet and SSH terminals
SNMPv1/v2/v3
ZTP
Configuration and maintenanceSystem log
File upload and download via FTP/TFTP

BootRom update and remote update

NQA
ping,tracert
NTP
Security and managementHierarchical management and password protection of users
Authentication methods,including AAA,RADIUS and HWTACACS
Support DDos, ARP attack and ICMP attack function
SSH 2.0
HTTPS
SSL
PKI
Boot ROM access control (password recovery)
RMON
permit third party transceivers (license)
HAIndependent switching fabric modules

1+1 redundancy or key components such as MPUs and power modules

N+1 redundancy for switching fabric modules

Passive backplane

CLOS+ midplane free design (12500X-AF)

Hot swapping for all components

Real-time data backup on active/standby MPUs

HAHot patching

NSR/GR for OSFP/BGP/IS-IS/RSVP

Port aggregation and multi-card link aggregation

BFD for VRRP/BGP/IS-IS/OSPF/RSVP/static routing, with a failover time less than 50 milliseconds

IP FRR and TE FRR with a switchover time less than 50 millisecond

IEEE Standard802.3ab/802.3ae/802.3z/802.3x/802.3ad

802.3AH/802.1P/802.1Q/802.1X/802.1D/802.1w/802.1s/802.1AG

802.1x/802.1Qbb/802.1az/802.1Qaz

RFCRFC793/RFC2328/RFC1256/RFC1771/RFC1185/RFC1191/RFC1195/RFC1195/RFC1212/RFC1213/RFC1213/RFC1213/RFC1215/RFC1245/RFC1246/RFC1256/RFC1256/RFC1265/RFC1266/RFC1268/RFC1271/RFC1284/RFC1286/RFC1305/RFC1305/RFC1305/RFC1321/RFC1323
EMCFCC Part 15 (CFR 47) CLASS A

ICES-003 CLASS A

VCCI CISPR 32 CLASS A

CISPR 22 CLASS A

EN 55022 CLASS A

AS/NZS CISPR22 CLASS A

CISPR 32 CLASS A

EN 55032 CLASS A

AS/NZS CISPR32 CLASS A

CISPR 24

EN 55024

EN 61000-3-2

EN 61000-3-3

ETSI EN 300 386

TemperatureOperating temperature: 0°C to 40°C (32°F to 104°F)

Storage temperature: -40°C to 70°C (-40°F to 158°F)

Humidity5% to 95% (non-condensing)
Environmental protectionWEEE and RoHS
SafetyUL 60950-1

CAN/CSA C22.2 No 60950-1

IEC 60950-1

EN 60950-1

AS/NZS 60950-1

FDA 21 CFR Subchapter J

GB 4943.1

Performance and scalability
ItemDescriptionHB LPUHF LPU
VirtualizationIRF2.0 stack22
M-LAG device number22
ACLmax number of ingress ACLs40K40K
max number of ingress Car8K8K
max number of ingress Counter8K8K
max number of egress ACLs20K20K
max number of egress Counter4K4K
Forwarding tableJumbo frame length(byte)1228812288
Mirroring group1515
PBR policy10001000
PBR node256256
max number of MACs per switch750K750K
max number of ARP entries IPv4350K1M
max ND table size for IPv648K48K
max number of unicast routes IPv4250K4M
max number of unicast routes IPv664K2M
IPv4 l2 multicast group20004000
IPv4 l3 multicast group20004000
IPv4 multicast routing16K16K
IPv6 l2 multicast group10002000
IPv6 l3 multicast group10002000
IPv6 multicast routing8K8K
LAGG group10241024
LAGG member per group6464
ECMP groupmax 2047max 2047
ECMP member per group2-1282-128
VRF40954095
InterfaceLoopback interface number1K1K
L3 sub interface number40944094
SVI interface number40944094
VxLAN AC number16K16K
VxLAN VSI number16K16K
VxLAN tunnel number4K4K
VSI interface number8K8K
IPv4 tunnel number127127
IPv6 tunnel number127127
VLAN number40944094
PerformanceRIB1M4M
MSTP instance6464
PVST instance128128
PVST logical port number10001000
VRRP VRID1616
PerformanceVRRP group256256
NQA group3232
MPLS/VPLSLDP peer128(local),256(remote)128(local),256(remote)
VRF40004000
VPLS: Number of Pseudo Wires40004000
VPLS: number of peers/single VPLS full mesh instance100100
RSVP adjacency200200
Static tablestatic mac-address20K20K
static multicast mac-address256256
static ARP8K8K
static ND1K1K
static IPv4 routing table250K250K
static IPv6 routing table128K128K

The typical data center application is an EVPN-VxLAN design,S12500G-AF or S12500X-AF swithes work as spine or spine/border, S68XX series work as leaf and border or ED. From this design ,the users can get a non-blocking large L2 system.

Product IDProduct Description
LS-12504X-AFH3C S12504X-AF Ethernet Switch Host
LS-12508X-AFH3C S12508X-AF Ethernet Switch Host
LS-12516X-AFH3C S12516X-AF Ethernet Switch Host
LSXM1SUP04B1H3C S12504X-AF Supervisor Engine Module
LSXM1SUP04H1H3C S12504X-AF Supervisor Engine Unit
LSXM1SUPB1H3C S12500X-AF Supervisor Engine Module
LSXM1SUPH1H3C S12500X-AF Supervisor Engine Unit
LSXM1SFH04D1H3C S12504X-AF Fabric Module,Type H(Class D)
LSXM1SFH08C1Switching Fabric Module For S12508X-AF,Type H(Class C)
LSXM1SFH08D1H3C S12508X-AF Fabric Module,Type H(Class D)
LSXM1SFH08E1Switching Fabric Module For S12508X-AF,Type H(Class E)
LSXM2SFH16C1H3C S12516X-AF Fabric Module,Type H(Class C)
LSXM1SFH16C1H3C S12516X-AF Fabric Module,Type H(Class C+)
LSXM1SFH16E1H3C S12516X-AF Fabric Module,Type H(Class E)
LSXM1CGQ18QGHF1H3C S12500X-AF 18-PORT 100GBASE Ethernet Optical Interface(QSFP28)/36-Port 40GBASE Ethernet Optical Interface Module(QSFP+)(HF)
LSXM1CGQ18QGHB1H3C S12500X-AF 18-Port 100GBASE (QSFP28)/36-Port 40GBASE Ethernet Optical Interface Module (QSFP+)(HB)
LSXM1TGS24QGMODHB1H3C S12500X-AF 24-Port 10GBASE Ethernet Optical Interface(SFP+,LC)+4-Port 40GBASE Ethernet Optical Interface Module(QSFP+)(HB),With 1 Expansion Slot
LSXM1CGQ36HB1H3C S12500X-AF 36-Port 100GBASE Ethernet Optical Interface Module(QSFP28)(HB)
LSXM1QGS36HB1H3C S12500X-AF 36-Port 40GBASE Ethernet Optical Interface Module(QSFP+)(HB)
LSXM1TGS48HB1H3C S12500X-AF 48-Port 10GBASE Ethernet Optical Interface Module(SFP+,LC)(HB)
LSXM1QGS48HB1H3C S12500X-AF 48-Port 40GBASE Ethernet Optical Interface Module(QSFP+)(HB)
LSXM1CGQ48HB1H3C S12500X-AF 48-Port 100GBASE Ethernet Optical Interface Module(QSFP28)(HB)
LSXM1CGQ6QGHB1H3C S12500X-AF 6-Port 100GBASE Ethernet Optical Interface(QSFP28)/12-Port 40GBASE Ethernet Optical Interface Module(QSFP+)(HB)
LSXM1TGS48C2HB1H3C S12500X-AF,48-Port 10G BASE Ethernet Optical Interface(SFP+,LC)+2-Port 100GBASE Ethernet Optical Interface Module(QSFP28)(HB)
LSXM1BFP16A16 Fabric Blank Filler Panel
LSXM1BFP08A08 Fabric Blank Filler Panel
LSXM1BFP04A04 Fabric Blank Filler Panel
LSXM116XFANH3C S12516X-AF Ethernet Switch Fan Module
LSXM108XFANH3C S12508X-AF Ethernet Switch Fan Module
LSXM104XFANH3C S12504X-AF Ethernet Switch Fan Module
LSXM116XFANHH3C S12516X-AF Ethernet Switch High Speed Fan Module
LSXM108XFANHH3C S12508X-AF Ethernet Switch High Speed Fan Module
LSXM104XFANHH3C S12504X-AF Ethernet Switch High Power Fan Module
PSR2400-54AAC Power Module,2400W
PSR2400-54DDC Power Module,2400W
PSR3000-54A3000W AC Power Supply Module
PSR3000-54AHD3000W AC & 240V-380V HVDC Power Supply

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