EN
S7800E-06
S7800E-10
FiberHome S7800E series switches (S7800E) are next-generation high-end terabit routing switches developed by FiberHome for service providers and enterprise networks. The S7800E provides high density of 10/40/100GE ports, and supports intelligent network optimizations using MPLS, traffic analysis, comprehensive QoS, multicast, load balancing, and security as well as high-performance of Layer 2 to Layer 4 switching. In addition, S7800E adopts high-reliability technologies such as non-stop forwarding, ring protection, redundant control and power supply. It can be deployed in various scenarios, such as core and convergence layer of WANs, MANs, campus networks, and data centers.
FiberHome S7800E series switches (S7800E) are next-generation high-end terabit routing switches developed by FiberHome for service providers and enterprise networks. The S7800E provides high density of 10/40/100GE ports, and supports intelligent network optimizations using MPLS, traffic analysis, comprehensive QoS, multicast, load balancing, and security as well as high-performance of Layer 2 to Layer 4 switching. In addition, S7800E adopts high-reliability technologies such as non-stop forwarding, ring protection, redundant control and power supply. It can be deployed in various scenarios, such as core and convergence layer of WANs, MANs, campus networks, and data centers.
Product Appearance
S7800E-06 | 6 power supply slots |
3 fan slots | |
6 service card slots | |
2 main control slots | |
2 switching slots | |
S7800E-10 | 6 power supply slots |
4 fan slots | |
10 service card slots | |
2 main control slots | |
2 switching slots |
Product Features & Benefits
High Density Interface
The S7800E supports high density interfaces for access, max 480 GE, 320 10G, 120 40G, 40 100G ports. The high density of 10GE ports brings enterprise, campus networks and data centers into the era of the all-10GE core networks.
High Switching Capacity
The backplane capacity of S7800E is up to 56T to provide all ports with non-stop forwarding. The S7800E high performance makes sure to build a reliable, sustainable high speed IP networks.
The S7800E supports multi-lever switching; the L2 to L7 flow can be identified, each port support separate packet filtering, so that different control can be applied.
Carrier Grade Reliability
The S7800E adopts redundant design of key components, such as main control, power supply, fan and monitoring. The seamless switching can be achieved via the redundant main control card. All cards are hot swappable to make sure that service could not be interrupted when switchover to redundant parts.
And S7800E provides enhanced Ethernet reliability technologies such as STP/RSTP/MSTP, VRRP, R-link, Ethernet Ring Protection Switching (G.8032) at millisecond-level protection switchover to ensure link-level reliability.
The S7800E also supports 802.1ag, 802.3ah and Y.1731 Ethernet OAM standards and BFD to make sure that it is 99.999% reliable.
Superior Quality of Service
The S7800E supports 802.1p, WRR, SP/PQ+WRR、WRED、DiffServ priorities scheduling to ensure the highest-priority packets are scheduled ahead of all other packets. And it supports L2-L7 flow classifications.
High-Performance IPv6 Service Support
The S7800E supports IPv4/IPv6 dual stack. IPv6 wire-rate processing is achieved by hardware forwarding. And it supports other IPv6 features, such as tunneling, IPv6 static routes, RIPng, OSPFv3, BGP4+, IS-ISv6, and IPv6 PIM, IPv6 ACL. to meet the requirements of independent IP networks and IPv4/IPv6 integrated networks.
Excellent Security Design
The S7800E offers a comprehensive ACL security solution including standard ACL, extended ACL.
It also supports MPLS VPN, as well as MPLS OAM to insure the data security and robustness. And subscriber security are protected by DHCP Snooping, ARP Inspection. IP Source Guard can be used to identify each customer based on MAC, IP address and port information to help prevent malicious attack.
Switch security means CPU can be protected from attack and storm control, such as DOS, etc., the port security feature allows controlling the number of MAC addresses against the overflow of the switch memory and MAC address table.
The S7800E supports IEEE 802.1x authentication to prevent malicious terminals to attack the entire networks.
Product Specifications
Features | S7800E-08 | S7800E-12 | ||
Main control slots | 2 | 2 | ||
Service card slots | 6 | 10 | ||
Backplane capacity | 21 Tbps | 56 Tbps | ||
Switching capacity | 5.76 Tbps | 9.6 Tbps | ||
Throughput | 4320 Mpps | 7200 Mpps | ||
Max 100G qty | 24 | 40 | ||
Max 40G qty | 72 | 120 | ||
Max 10G qty | 288 | 480 | ||
VLAN | Access, Trunk, Hybrid VLAN | |||
default VLAN | ||||
1:1, N:1VLAN Mapping based on 802.1p | ||||
QinQ, selective QinQ | ||||
MAC, protocol and IP based VLAN | ||||
PVLAN, super VLAN, voice VLAN | ||||
MAC | Dynamic learning and aging of MAC addresses | |||
Static, dynamic, and blackhole MAC address entries | ||||
Restriction of MAC address learning based on ports and VLANs | ||||
STP | STP(IEEE 802.1d), RSTP(IEEE 802.1w) and MSTP(IEEE 802.1s) | |||
BPDU protection, root protection, and loop protection | ||||
BDPU Tunnel | ||||
IP routing | IPv4 and IPv6 static routing | |||
IPv4 routing protocols, such as RIP, OSPF, BGP, and ISIS | ||||
IPv6 routing protocols, such as RIPng, OSPFv3, ISISv6, and BGP4+ | ||||
Multicast | IGMPv1/v2/v3, IGMP v1/v2/v3 Snooping | |||
PIM DM, PIM SM, PIM SSM | ||||
MLD, MSDP | ||||
Prompt leave of multicast members | ||||
Multicast traffic control | ||||
Multicast querier | ||||
Control of multicast packets | ||||
Multicast ACL and multicast duplications | ||||
Multicast VPN | ||||
MPLS | Static LSP, static VLAN to MPLS SVC mapping | |||
L2VPN, L3VPN | ||||
MPLS OAM | ||||
Reliability | LACP, RTrunk | |||
LLDP | ||||
G.8032, 50ms switchover | ||||
R-Link | ||||
VRRP, BFD for VRRP | ||||
BFD for BGP, ISIS, OSPF, and Static routing | ||||
Ethernet OAM (802.3ah and 802.1ag) | ||||
ITU-Y.1731 | ||||
Redundant power supply | ||||
AC power supports 1+1(<800W), 2+2(<1600W), 3+3(<2400W) redundancy | ||||
DC power supports 1+1(<1600W/2400W) redundancy | ||||
Fan redundant | ||||
Hot swappable(main control, service card, fan, power supply) | ||||
Main control 1+1 backup, Switching card 1+1 backup | ||||
QoS | Traffic classification based on the Layer-2 header, Layer-3 | |||
Information, Layer-4 information, and 802.1p priority | ||||
The actions of ACL, CAR, re-mark, and schedule | ||||
The queue scheduling algorithms of PQ, WRR, DRR, PQ+WRR, and PQ+DRR | ||||
Congestion avoidance mechanisms, such as WRED and tail drop | ||||
Traffic shaping and monitoring | ||||
Security and | 802.1x authentication | |||
management | RADIUS and TACACS authentication for login users | |||
Hierarchical protection for commands to prevent unauthorized users from accessing the equipment | ||||
Protection against DoS attack, TCP SYN Flood attack, UDP Flood attack, broadcast storm, and heavy traffic attack | ||||
CPU queues protection | ||||
The ping and tracert functions based on ICMP packets | ||||
RMON | ||||
Energy saving | Temperature alarms, and fan speed adjustable | |||
ALS(Automatic Laser Shutdown) | ||||
Configuration and | Console, Telnet, and SSH terminals | |||
maintenance | Network management protocols, such as SNMPv1/v2/v3 | |||
Standard MIB | ||||
File uploading and downloading through FTP and TFTP | ||||
User operation logs | ||||
Mirroring | ||||
BootROM upgrade and remote upgrade | ||||
Hot patches | ||||
Humidity | 10%~90% non condensing | |||
Temperature | (0~50)℃ | |||
Input voltage | AC: | |||
Rated voltage range:100V to 240V AC, 50/60Hz | ||||
Maximum voltage range:90V to 290V AC, 50/60Hz | ||||
DC: | ||||
Rated voltage range: -48V to -60V DC | ||||
Max voltage range: –48V:–38.4V~–57.6V,–60V:–48V~–72V | ||||
Chassis dimensions(mm) | 440×460×574 | 440×460×710 | ||
Chassis power supply | < 1000W | < 1200W | ||
Chassis weight | < 45kg | < 60kg |