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The S7500X-G series PON product is a new generation of high-end multi-service access OLT device launched by New H3C Technologies Co., Ltd. for converged service networks, and it is also a distributed high-end routing switch. It supports simultaneous access to both GPON and XGSPON.
This product is based on H3C's self-developed intellectual property (IP) Comware (CMW) operating system. It integrates multiple services such as MPLS, IPv6, network security, wireless, and passive optical network, while providing various high-reliability technologies including non-stop forwarding, graceful restart, and ring network protection. By enhancing user productivity and ensuring reliable network run time, it effectively reduces the customer's total cost of ownership (TCO).
S7500X-G OLT can achieve PON network management and ONU uplink by adding standard OLT service modules. ONUs provide last kilometer broadband access to residential users and enterprise customers. XGSPON OLT supports a maximum splitting ratio of 1:256; a single OLT device can support up to 15,360 ONUs, with a transmission distance of up to 20 km. The uplink supports multiple access rates including 100G, 40G, 25G, 10G, and GE.
The S7500X-G OLT can achieve simultaneous Ethernet and PON access by adding standard GE/10GE/40G/100G Ethernet service modules, meeting users' hybrid networking needs. It can also satisfy user requirements for network security, automated operations and maintenance, and PON AP management by adding multi-service cards such as security, SDN, and AC cards.
The S7500X OLT series includes multiple products such as the S7510X-G, S7506X-G, and S7503X-G. All products support 1+1 backup for both the MPU and power supply. The H3C S7500X-G can be widely deployed in various network environments, including metropolitan area network (MAN) aggregation and edge, campus network core and aggregation, and wiring closets. It provides users with an industry solution that integrates wired and wireless access, as well as active and passive access. The product primarily offers broadband access solutions for carrier customers and is also suitable for optical network access and high-definition video transmission scenarios in education, government, and enterprise sectors.
H3C S7500X-G series high-end multiservice routing switch
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Distributed Architecture: to achieve wire-speed non-blocking forwarding of IPv4/IPv6 traffics, with slot bandwidth up to 960Gbps* (bidirectional) on S7503X-G and S7510X-G, 640Gbps* (bidirectional) on S7506X-G.
Distributed architecture design, with forwarding and control separation, eliminates the bottleneck of traditional centralized OLT processing; supports line rate forwarding, enabling error-free frame forwarding at full load on PON ports, meeting the evolving demands of network service.
The overall system supports a maximum of 240 PON ports, with XGSPON lines capable of providing symmetric bandwidth up to 10Gbps, and GPON lines supporting asymmetric bandwidth of 1.25Gbps upstream and 2.5Gbps downstream, achieving a maximum split ratio of 1:256.
High Speed 40G and 100G cards: to elevate uplink bandwidth, and help build a high bandwidth Campus.
Ultra-low forwarding latency: can be as less as <1µs to ensure a fluent use experience.
*: Based on LSCM3MPUS10C0/LSCM3MPUS06A0. ‘Bidirectional’ means sending + receiving, for instance, 960Gbps=480G sending direction + 480G receiving direction.
High level and multi-service Integration: integration of LAN & WLAN (Embedded AC), integration of security service (FW card), integration of PON (XGSPON, GPON OLT card), to combine diverse service into one Chassis.
Integration of Wireless network: with the feature of Embedded wireless AC: to delivers rich wireless functionalities, including refined user control and management, complete RF management and security control, fast roaming, outstanding QoS capability, providing customers with more options for building wired and wireless integrated networks.
AON (Adaptive Optical Network): S7500X-G can integrate Ethernet line cards, OLT cards in one single chassis, carrying Multichannel Optical Network, and Passive Optical Network in one single chassis at the same time to build a ‘Fiber optical to the room’ network, guaranteeing continuous bandwidth upgrades, delivering the benefits brought by H3C AON solution, such as simplified network architecture, centralized management, etc.
MACsec (256bits) capability: MACsec, an industry-standard point-to-point link-layer security technology, is supported across all ports of the SF series cards, protecting the network from security threats on the deepest data level.
NAC gateway: supports a variety of access authentication methods, and can be used as an authentication gateway for tens of thousands of users in the Campus. S7500X-G can play a key role in BYOD scenario, make the campus network user experience much more fluent.
Control plane—The embedded protocol packet attack recognition module prevents attacks from Topology Change Notification (TCN), Address Resolution Protocol (ARP), and other protocol packets. Use of the MD5 algorithm for the OSPF/BGP/IS-IS routing protocols prevents network breakdown caused by illegitimate route update packets.
Management plane—Use of SNMPv3, SSHv2, 802.1X and AAA/RADIUS user authentication, role-based user permission management ensures device access and management security.
Forwarding plane—Enhanced ACL capability, Standard and extended ACLs, VLAN-based ACLs and uRPF to prevent targeted traffics from accessing the network in a packet-by-packet match manner. And S7500X-G also supports the advanced Microsegmentation technology, which decouples the access policy from IP subnet, makes the policy more flexible, and accurate.
3ms Hardware BFD: to ensure the network continuity.
M-LAG (Multichassis link aggregation, formerly DRNI): provides device-level redundancy and load-balance through the simplest link aggregation protocol.
IRF2 (Intelligent Resilient Framework): device level reliability technology, virtualizes multiple switches into one virtual IRF system to provide Data Center-class availability, scalability and also simplifies the management complexity. IRF2 system can be formed over a distance of 80 km (49.71 miles).
Supports a variety of high-availability features such as NSR, ISSU, Graceful Restart, Smartlink, etc.
ERPS, RRPP with millisecond-level failover performance, help customer build a resilient Ethernet Ring network, improves the performance and efficiency.
Redundancy in key components, such as MPUs, Fan tray, PSUs.
Adopting Passive backplane hardware design to eliminate single point of failures.
key components including MPU, Line cards, Fan tray, Power supply module are hot swappable.
H3C S7500X-G series can operate at high level of stability, with a carrier-grade reliability of 99.999%.
Embedded NMS Platform (SmartMC) to provide a light-weight, convenient network management solution.
Compatible with H3C Intelligent SDN (software-defined network) campus network solution (AD-Campus) to build a SDN campus network with high-level automation, intelligence.
Support Cloud-based management through H3C Cloudnet, which is based on H3C unified O&M cloud platform, It provides a light-weight and multi-service public cloud platform for small business. It provides management of networks, terminals, users and service enabling features.
Supports Visualization technologies, INT, gRPC, Netstream, Telemetry Stream, etc.
Complete IPv4/IPv6 dual stack solutions: supports multiple IPv6 transition tunneling technologies, IPv4/IPv6 multicast technologies.
H3C S7500X-G has obtained IPv6 ready logo (phase 2), a globally recognized validation for commercial IPv6 deployment.
Differentiated and compact design: S7503X-M-G chassis hosts 124 ports in 4U chassis; Service ports integrated S7506X-G MPU provides 4*25G+6*100G service ports.
MDC (Multitenant Device Context): separates one chassis switch into several virtual switches to lower the cost through this advanced virtualization technology.
Item | S7503X-G | S7506X-G | S7510X-G |
Switching Capacity | 6.72Tbps1 | 13.44Tbps2 | 22.40Tbps2 |
Forwarding Capacity | 3000Mpps | 6000Mpps | 10000Mpps |
MPU Slots | 2 | 2 | 2 |
LPU Slots | 3 | 6 | 10 |
Fan tray | 13 | 14 | 15 |
PSU Slots | 2 | 2 | 2 |
GPON port count | 72 | 144 | 240 |
XGSPON port count | 72 | 144 | 240 |
MPU | LSCM2SUP03B0 LSCM3SUP03A0 | LSCM3MPUS06A0 LSCM2SRP6C4Y06A0 LSCM3SRP6C4Y06A0 | LSCM3MPUS10B0 |
MPU Processor | LSCM2SUP03B0: 4 cores/1.2GHz LSCM3SUP03A0: 4 cores/2.2GHz | LSCM3MPUS06A0: 4 cores/2.2GHz LSCM2SRP6C4Y06A0: 4 cores/1.8GHz LSCM3SRP6C4Y06A0: 4 cores/2.2GHz | LSCM3MPUS10B0: 4 cores/2.2GHz |
MPU Flash/SDRAM | LSCM2SUP03B0: 4GB/4GB LSCM3SUP03A0: 2GB/4GB | LSCM3MPUS06A0: 2GB/4GB LSCM2SRP6C4Y06A0: 8GB/8GB LSCM3SRP6C4Y06A0: 2GB/8GB | LSCM3MPUS10B0: |
MPU Console Ports | 1x RJ-45 1x mini USB console | 1x RJ-45 1x mini USB console | 1x RJ-45 1x mini USB console |
MPU MGMT Ports | 1x 10/100/1000M RJ45 1x 1000M SFP | 1x 10/100/1000M RJ45 1x 1000M SFP | 1x 10/100/1000M RJ45 1x 1000M SFP |
Operating Environment | Temperature: 0°C to 45°C (32°F to 113°F) Humidity: 5% to 95% (non-condensing) | ||
Input Voltage | DC: –48V to –60V AC: 100V to 240V | ||
Dimension (H x W x D) | 216mm×436mm×420mm (8.50 × 17.17 × 16.54 in); (5U) | 575mm×436mm×420mm (22.64 × 17.17 × 16.54 in); (13U) | 708mm×436mm×420mm (27.87 × 17.17 × 16.54 in); (16U) |
Fully Loaded Weight (kg) | <35KG <77.16LB | <75KG <165.34LB | <95KG <209.44LB |
Availability | 99.999% | 99.999% | 99.999% |
MTBF (yrs) | 59.1 | 38.2 | 111.6 |
MTTR (hrs) | 1 | 1 | 1 |
- 1: Full-mesh forwarding architecture.
- 2: Main Processing Unit includes switching fabric.
- 3: There are 2 independent fans with redundancy in the fan tray.
- 4: There are 9 independent fans with redundancy in the fan tray for S7506X-G.
- 5: There are 10 independent fans with redundancy the fan tray.
Item | Description |
PON | Number of ONUs per PON port: GPON: 64; XGSPON: 256 Supports FEC GPON: AES-128 encryption function GPON: SN authentication Supports dynamic bandwidth allocation (DBA) algorithm with a granularity of 64 Kbps Supports a maximum valid transmission distance of 20 km Supports batch and real-time software version upgrades for ONUs Supports optical power detection for PON port transmission and receive (Rx) optical power Rogue ONU detection (long-transmission ONU detection) Supports CTC standard alarm management Optical link protection changeover Supports communication between different ONUs under the same OLT port (unicast only) Supports LAN+CoS, supports SVLAN+CVLAN Supports GEM port+CoS PPPoE+ QinQ Support PON optical path protection Type B Single/Dual Homing ProtectionType C Single/Dual Homing Protection |
Ethernet | IEEE 802.1p (CoS priority) IEEE 802.1Q (VLAN) IEEE 802.1D (STP)/802.1w (RSTP)/802.1s (MSTP)/PVST/PVST+ STP Root Guard BPDU guard, BPDU filter Static MAC configuration MAC learning limit IEEE 802.1ad (QinQ), selective QinQ, VLAN mapping IEEE 802.3x (full-duplex flow control) IEEE 802.3ad (link aggregation), cross-card link aggregation Port isolation RRPP Mirroring, SPAN, RSPAN, ERSPAN with 128 mirror groups (Max) Cross-card port mirroring/flow mirroring Broadcast/multicast/unknown unicast storm suppression on an interface Port-based VLAN, Protocol-based VLAN, IP subnet-based VLAN, MAC-based VLAN Super VLAN PVLAN* Guest VLAN Voice VLAN Single VLAN cross connect, dual VLAN cross connect MVRP(IEEE802.1ak) GVRP LLDP |
Routing | ARP proxy ARP snooping DHCP client, DHCP server, DHCP relay, DHCP snooping, DHCP option82 DHCPv6 client, DHCPv6 server, DHCPv6 relay, DHCPv6 snooping, DHCPv6 option82 Static routing RIPv1/v2 OSPF IS-IS BGPv4 OSPF/IS-IS/BGP GR (Graceful Restart) IPv4/IPv6 ECMP IPv4/IPv6 Policy-based routing IPv4/IPv6 Routing policy ICMPv6 ICMPv6 redirection ACLv6 OSPFv3 RIPng BGP4+ IS-ISv6 Manual tunneling GRE ISATAP 6to4 tunneling Dual stack (IPv4 and IPv6) |
Multicast | IGMPv1/v2/v3 IGMPv1/v2/v3 snooping IGMP filter IGMP fast leave Multicast VLAN PIM-SM/PIM-DM/PIM-SSM PIM snooping, IPv6 PIM-snooping MSDP Anycast RP MLD V1/V2, MLD V1/V2 Snooping PIM-SMv6, PIM-DMv6, PIM-SSMv6 Multicast policy and Multicast QoS |
ACL/QoS | Basic and advanced ACL VLAN-based ACL Global ACL Ingress/Egress ACL Diff-Serv QoS Ingress/Egress CAR Traffic shaping 802.1P/DSCP priority marking Queue scheduling algorithms: SP, WRR, SP+WRR, WFQ Congestion avoidance techniques, including tail drop and WRED Ingress/Egress counting COPP |
SDN/OpenFlow | Support SDN solution (AD-Campus) OpenFlow 1.3 Multi-controller (EQUAL mode, active/passive mode) Multi-flow table pipeline Group table Two-level meter |
VXLAN | VXLAN* EVPN* VXLAN L2 switching VXLAN L3 routing VXLAN VTEP L2 VxLAN gateway, L3 VxLAN gateway Distributed VxLAN gateway, Centrilized VxLAN gateway IPv4/IPv6 VxLAN tunnel VXLAN OAM ping/tracert IS-IS+ENDP distributed control plane MP-BGP+EVPN distributed control plane EVPN ESI* OpenFlow+Netconf centralized control plane |
MPLS/VPLS | L3 MPLS VPN L2 VPN: VLL (Martini, Kompella) MCE MPLS OAM VPLS, VLL P/PE function LDP |
Multiservice convergence | Integrated AC, Unified Wireless Access Controller* AP Auto Registration Wireless User WPA2 + PSK Authentication Wireless User Portal Authentication |
Security | Hierarchical user management and password protection Port security Portal authentication MAC authentication IEEE 802.1x and IEEE 802.1x SERVER AAA/Radius TACACS+ HWTACACS (HW Terminal Access Controller Access Control System) (Same authentication processes and implementations with TACACS+) SSHv1.5/SSHv2 Basic and advanced Access Control Lists for packet filtering OSPF, RIPv2, BGPv4 pain text and MD5 authentication IP address, VLAN ID, MAC address multiple binding combination uRPF Active/standby data backup CPU DoS Protection ARP Attack Protection, ND attack defense Macsec* HTTPS SSL PKI Secure boot Micro-segmentation* |
System management | IMC network management system Loading and upgrading through XModem/FTP/TFTP SNMP v1/v2/v3 sFlow, NetStream* NQA (Network Quality Analysis) gRPC Telemetry Stream* RMON and groups 1, 2, 3 and 9 NTP, PTP (1588v2)* ZTP Ping, Tracert, VxLAN ping and VxLAN tracert Fault alarm and automatic fault recovery System logs Device status monitoring mechanism, including the CPU engine, backplane, chips and other key components Cloud management Intelligent power management, 802.3az EEE Online monitoring of the device and key components, including the MPUs, backplane, chips, and storage components Telemetry INT* MOD (Mirror on drop)* Packet capture INQA* Built-in intelligent management module, enabling one-key deployment of device configuration and commands and intelligent version upgrade from the GUI interface SmartMC eMDI* |
Programmability | Using Ansible for automated configuration management and bulk configuration deployment Using Python/NETCONF/Tcl for automated network orchestration and automated DevOps |
HA | 1+1 redundancy for key components such as MPUs 1+1 redundancy for power modules Passive backplane Hot swapping for all components Real-time data backup on active/standby MPUs CPU protection IP source guard VRRP, VRRPv3 Loop detection Hot patching NSR (Nonstop Routing)/GR (Graceful Restart) for OSFP/BGP/IS-IS Port aggregation and multi-card link aggregation, LACP BFD for VRRP, BGP/BGPv4, IS-IS/IS-ISv6, PIM/PIM for IPV6, OSPF/OSPFv3, static routing, with a failover detection time less than 50 milliseconds Ethernet OAM Hardware BFD RRPP/ERPS DLDP VCT Track Monitor Link Smart-Link ISSU (In-service Software Upgrade) IRF M-LAG S-MLAG MDC* Loopback detection +/–8 KV lightning protection |
EMC | FCC Part 15 Subpart B CLASS A ICES-003 CLASS A VCCI 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 |
Environmental Standards compliance | RoHS REACH WEEE |
Safety | UL 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 |
- The contents are applicable only to regions outside Greater China.
- There may be restrictions and limitations regarding certain features. Please refer to the corresponding configuration guide on H3C website for further confirmation.
- *: the feature is supported with certain switches/card models, please refer to the corresponding configuration guide on H3C website for further confirmation.
Item | S7500X-G |
VLAN | 4K |
VLAN interface | 4K |
MSTP instances | 64 |
PVST/PVST+ instances | 126 |
Jumbo frame length | 13312 |
DHCP-security users | 16K |
QOS forward queues | 8 |
MAC address entries | 720,896 (Max) |
IPv4 ARP entries | 96,230 (Max) |
IPv6 ND entries | 81,350 (Max) |
IPv4 routing entries | 780,288 (Max) |
IPv4 ACL entries | Ingress: 26K (Max) Egress: 2K (Max) |
IPv6 ACL entries | Ingress: 8K (Max) Egress: 1K (Max) |
L2 Multicast entries | 8K (Max) |
IPv6 routing entries | 278,528 (Max) |
IPv4 Multicast entries | 8K (Max) |
IPv6 Multicast entries | 8K (Max) |
Buffer | 36MB (Max) |
- The contents are applicable only to regions outside Greater China.
Item | 24-port XGSPON OLT Optical Interface Service Board |
Interface connector type | XGSPON OLT Optical Interface |
XGSPON OLT optical interface | 24 |
Compliant with standard | ITU-T G.9807、ITU-T G.987、ITU-T G.988 |
Item | 24-port GPON OLT Optical Interface Service Board |
Interface connector type | GPON OLT Optical Interface |
XGSPON OLT optical interface | 24 |
Compliant with standard | ITU-T G.984 |
PON optical transceiver module | Center Wavelength | Interface connector type | Maximum Access Sensitivity | Maximum output optical power | Minimum output optical power | Interface fiber optic specifications | Maximum transmission distance of fiber optic | |
TX | RX | |||||||
SFP-XGSPON-N2-D-SM1577 | 1577 | 1270 | SC | -28dBm(10G) | 7dBm | 4dBm | 9/125µm single-mode fiber | 20km |
SFP-GPON-B+-D-SM1490-A | 1490 | 1310 | SC | -28dBm | 5dBm | 1.5dBm | 9/125µm single-mode fiber | 20km |
SFP-GPON-C+-D-SM1490-A | 1490 | 1310 | SC | -32dBm | 7dBm | 3dBm | 9/125µm single-mode fiber | 20km |
SFP-GPON-C++-D-SM1490-A | 1490 | 1310 | SC | -33dBm | 8dBm | 4dBm | 9/125µm single-mode fiber | 20km |
Organization | Standards and Protocols |
IEEE | 802.1x Port based network access control protocol |
802.1ab Link Layer Discovery Protocol | |
802.1ak MVRP | |
802.1ax Link Aggregation | |
802.1d Media Access Control Bridges | |
802.1p Priority | |
802.1q VLANs | |
802.1s Multiple Spanning Trees | |
802.1ag CFD | |
802.1w Rapid Spanning Tree | |
802.3ad Link Aggregation Control Protocol / LACP | |
802.3ah Ethernet in the First Mile / Ethernet OAM | |
802.3x Full Duplex and flow control | |
802.3af Power over Ethernet | |
802.3at Power over Ethernet | |
802.3bt Power over Ethernet | |
802.3az Energy Efficient Ethernet | |
802.3u 100BASE-T | |
802.3ab 1000BASE-T | |
802.3z 1000BASE-X | |
802.3ae 10G Ethernet | |
802.3by 25G Ethernet | |
802.3ba 40/100G Ethernet | |
IETF | RFC1213 MIB-2 Stands for Management Information Base |
RFC1881 IPv6 Address Allocation Management | |
RFC1887 An Architecture for IPv6 Unicast Address Allocation | |
RFC1981 Path MTU Discovery for IP version 6 | |
RFC2375 IPv6 Multicast Address Assignments | |
RFC2460 Internet Protocol, Version 6 (IPv6) Specification | |
RFC2464 Transmission of IPv6 Packets over Ethernet Networks | |
RFC2526 Reserved IPv6 Subnet Anycast Addresses | |
RFC3307 Allocation Guidelines for IPv6 Multicast Addresses | |
RFC4191 Default Router Preferences and More-Specific Routes | |
RFC4291 IP Version 6 Addressing Architecture | |
RFC4443 Internet Control Message Protocol (ICMPv6) for the Internet Protocol Version 6 (IPv6) Specification | |
RFC4862 IPv6 Stateless Address Autoconfiguration | |
RFC2711 IPv6 Router Alert Option | |
RFC2787 Definitions of Managed Objects for the Virtual Router Redundancy Protocol | |
RFC2918 Route Refresh Capability for BGP-4 | |
RFC2925 Definitions of Managed Objects for Remote Ping, Traceroute, and Lookup Operations | |
RFC3019 MLDv1 MIB | |
RFC3046 DHCP Relay Agent Information Option | |
RFC3065 Autonomous System Confederation for BGP | |
RFC3376 IGMPv3 | |
RFC3416 (SNMP Protocol Operations v2) | |
RFC3417 (SNMP Transport Mappings) | |
RFC3418 Management Information Base (MIB) for the Simple Network Management Protocol (SNMP) | |
RFC3623 Graceful OSPF Restart | |
RFC3768 Virtual Router Redundancy Protocol (VRRP) | |
RFC3810 Multicast Listener Discovery Version 2 (MLDv2) for IPv6 | |
RFC3973 PIM Dense Mode | |
RFC4022 MIB for TCP | |
RFC4113 MIB for UDP | |
RFC4251 The Secure Shell (SSH) Protocol | |
RFC4252 SSH Authentication Protocol | |
RFC4253 SSH Transport Layer Protocol | |
RFC4254 SSH Connection Protocol | |
RFC4271 A Border Gateway Protocol 4 (BGP-4) | |
RFC4273 Definitions of Managed Objects for BGP-4 | |
RFC4292 IP Forwarding Table MIB | |
RFC4293 Management Information Base for the Internet Protocol (IP) | |
RFC4360 BGP Extended Communities Attribute | |
RFC4456 BGP Route Reflection: An Alternative to Full Mesh Internal BGP (IBGP) | |
RFC4486 Subcodes for BGP Cease Notification Message | |
RFC4541 IGMP & MLD Snooping Switch | |
RFC4552 Authentication/Confidentiality for OSPFv3 | |
RFC4601 PIM Sparse Mode | |
RFC4607 Source-Specific Multicast for IP | |
RFC4724 Graceful Restart Mechanism for BGP | |
RFC4750 OSPFv2 MIB partial support no SetMIB | |
RFC4760 Multiprotocol Extensions for BGP-4 | |
RFC4861 IPv6 Neighbor Discovery | |
RFC5059 Bootstrap Router (BSR) Mechanism for PIM, PIM WG | |
RFC5065 Autonomous System Confederation for BGP | |
RFC5095 Deprecation of Type 0 Routing Headers in IPv6 | |
RFC5187 OSPFv3 Graceful Restart | |
RFC5340 OSPFv3 for IPv6 | |
RFC5424 Syslog Protocol | |
RFC5492 Capabilities Advertisement with BGP-4 | |
RFC5519 Multicast Group Membership Discovery MIB (MLDv2 only) | |
RFC5798 VRRP (exclude Accept Mode and sub-sec timer) | |
RFC5880 BFD, Bidirectional Forwarding Detection | |
RFC5905 Network Time Protocol Version 4: Protocol and Algorithms Specification(NTPv4) | |
RFC6620 FCFS SAVI | |
RFC6987 OSPF Stub Router Advertisement | |
RFC7348 Virtual eXtensible Local Area Network (VXLAN): A Framework for Overlaying Virtualized Layer 2 Networks over Layer 3 Networks | |
RFC7432 BGP MPLS-Based Ethernet VPN | |
RFC4761 Virtual Private LAN Service (VPLS) Using BGP for Auto-Discovery and Signaling | |
RFC4762 Virtual Private LAN Service (VPLS) Using Label Distribution Protocol (LDP) Signaling | |
RFC5308 Routing IPv6 with IS-IS | |
RFC5381 Experience of Implementing NETCONF over SOAP |
Product code | Description | |
Chassis | LS-7503X-G | H3C S7503X-G Ethernet Switch Chassis |
LS-7506X-G | H3C S7506X-G Ethernet Switch Chassis | |
LS-7510X-G | H3C S7510X-G Ethernet Switch Chassis | |
Supervisor engine | LSCM2SUP03B0 | H3C S7503X-G Supervisor Engine Unit, Type B |
LSCM3SUP03A0 | H3C S7503X-G Supervisor Engine Unit,Type A | |
LSCM3MPUS06A0 | H3C S7506X-G Main Processing Unit with Switching, Type A | |
LSCM3SRP6C4Y06A0 | H3C S7506X-G Main Processing Unit with Switching and Routing, with 6-port 100GE(QSFP28) and 4-port 25GE(SFP28), Type A | |
LSCM2SRP6C4Y06A0 | H3C S7506X-G Main Processing Unit with Switching and Routing, with 6-port 100GE(QSFP28) and 4-port 25GE(SFP28), Type A | |
LSCM3MPUS10B0 | H3C S7510X-G Main Processing Unit with Switching, Type B | |
OLT interface board | LSCM2XPG24SF0 | H3C S7500X-G,24-Port XGS-PON OLT Optical Interface Module(SFP+,SC) |
LSCM3PG24TSSD0-G3 | H3C S7500X-G 24-Port GPON OLT(SFP+,SC)+4-Port 10G Ethernet (SFP+,LC) Optical Interface Module | |
OLT board PON port optical transceiver module | SFP-XGSPON-N2-D-SM1577 | SFP+ XGSPON N2 OLT Optical Transceiver Module (0°C to 70°C,TX1577nm/RX1270nm,TX9.95G/RX9.95G&2.5G,20km,SC/UPC) |
SFP-GPON-B+-D-SM1490-A | SFP GPON B+ OLT Optical Transceiver Module(0°C to 70°C,TX1490nm/RX1310nm,TX2.488G/RX1.244G,20km,SC/UPC) | |
SFP-GPON-C+-D-SM1490-A | SFP GPON C+ OLT Optical Transceiver Module(0°C to 70°C,TX1490nm/RX1310nm,TX2.488G/RX1.244G,20km+,SC/UPC) | |
SFP-GPON-C++-D-SM1490-A | SFP GPON C++ OLT Optical Transceiver Module(0°C to 70°C,TX1490nm/RX1310nm,TX2.488G/RX1.244G,20km+,SC/UPC) | |
Line card | LSCM2GT48SD0 | H3C S7500X-G 48-Port 10/100/1000BASE-T Ethernet Copper Interface Module (RJ45)(SD) |
LSCM2GP48SD0 | H3C S7500X-G 48-Port 1000BASE Ethernet Optical Interface Module (SFP, LC) (SD) | |
LSCM2GT24GPSD0 | H3C S7500X-G 24-Port 10/100/1000BASE-T Ethernet Copper Interface(RJ45)+8-Port 1000BASE Ethernet Optical Interface Module (SFP,LC)(SD) | |
LSCM2GP24GTSD0 | H3C S7500X-G 24-Port 1000BASE Ethernet Optical Interface(SFP,LC)+8-Port 10/100/1000BASE-T Ethernet Copper Interface Module (RJ45)(SD) | |
LSCM2GT24TSSD0 | H3C S7500X-G 24-Port 10/100/1000BASE-T Ethernet Copper Interface(RJ45) + 4-Port 10G Ethernet Optical Interface Module (SFP+)(SD) | |
LSCM2GT24GPTSSD0 | H3C S7500X-G 24-Port 10/100/1000BASE-T Ethernet Copper Interface(RJ45)+20-Port 1000BASE Ethernet Optical Interface(SFP,LC)+4-Port 10G Ethernet Optical Interface Module (SFP+,LC)(SD) | |
LSCM2GP40TS8SD0 | H3C S7500X-G 40-Port 1000BASE Ethernet Optical Interface(SFP) + 8-Port 10G Ethernet Optical Interface Module (SFP+)(SD) | |
LSCM2TGS16SD0-G3 | H3C S7500X-G 16-Port 10G Ethernet Optical Interface Module (SFP+)(SD) | |
LSCM2TGS16GPSD0 | H3C S7500X-G 16-Port 10G Ethernet Optical Interface(SFP+,LC)+24-Port 1000BASE Ethernet Optical Interface Module (SFP,LC)(SD) | |
LSCM2TGS16GP32SD0 | H3C S7500X-G 32-Port 1000BASE Ethernet Optical Interface(SFP,LC)+16-Port 10G Ethernet Optical Interface Module (SFP+,LC)(SD) | |
LSCM3TGS32GP16SF0 | H3C S7500X-G 32-Port 10G Ethernet Optical Interface(SFP+) + 16-Port 1000BASE Ethernet Optical Interface Module (SFP)(SF) | |
LSCM3TGS48SE0 | H3C S7500X-G 48-Port 10G Ethernet Optical Interface Module(SFP+,LC)(SE) | |
LSCM2TGS48SF0 | H3C S7500X-G 48-Port 10G Ethernet Optical Interface Module (SFP+,LC)(SF) | |
LSCM3TGS48SF0 | H3C S7500X-G 48-Port 10G Ethernet Optical Interface Module (SFP+)(SF) | |
LSCM2YGS16TS8SF0 | H3C S7500X-G 16-Port 25G Ethernet Optical Interface(SFP28)+8-Port 10G Ethernet Optical Interface Module (SFP+,LC)(SF) | |
LSCM2YGS32TS16SF0 | H3C S7500X-G 32-Port 25G Ethernet Optical Interface(SFP28)+16-Port 10G Ethernet Optical Interface Module (SFP+,LC)(SF) | |
LSCM3QGS8CSSE0 | H3C S7500X-G 8-Port 40G Ethernet Optical Interface(QSFP+)+4-Port 100G Ethernet Optical Interface Module(QSFP28)(SE) | |
LSCM2CGS8QS8SF0 | H3C S7500X-G 8-Port 40G Ethernet Optical Interface(QSFP+)+8-Port 100G Ethernet Optical Interface Module (QSFP28)(SF) | |
LSCM3CGS8QS8SF0 | H3C S7500X-G 8-Port 100G Ethernet Optical Interface(QSFP28)+8-Port 40G Ethernet Optical Interface Module (QSFP+)(SF) | |
LSCM1FWDSD0 | H3C S7500X-G SecBlade IV Next Generation Firewall Module | |
LSCM2FWDSD0 | H3C S7500X-G SecBladeIV-Lite Next Generation Firewall Module | |
Power supply module | LSQM1PWRSPB | Power Adapter Module |
LSQM2AC300-GL | H3C 300W AC Power Supply Module | |
LSQM2AC650-GL | H3C 650W AC Power Supply Module | |
LSQM1DC650-GL | H3C 650W DC Power Supply Module | |
PSR650C-12A-GL | H3C 650W AC Power Supply Module | |
PSR650C-12D-GL | H3C 650W DC Power Supply Module | |
LSQM2AC1400-GL | H3C 1400W AC Power Supply Module | |
PSR1400-12A1-F | H3C AC Power Supply Module,1400W | |
PSR2500-12AHD-GL | H3C 2500W AC Power Supply Module, HVDC Supported | |
PSR2500-12D-GL | H3C 2500W DC Power Supply Module | |