H3C S6805 high-density intelligent switch series is developed for data centers and cloud computing networks. It provides powerful hardware forwarding capacity and abundant data center features. The switch supports modular power modules and fan trays. By using different fan trays, the switch can provide field-changeable airflows.
The switch is perfectly matched for high density 10GE, it can also operate as a TOR access switch on an overlay or integrated network.
H3C S6805 Series Data Center Switches Data Sheet
The S6805 switch series has two models:
S6805-54HF: The switch provides 48 × 10G SFP Plus ports, 6 × 100G QSFP28 ports
S6805-54HT: The switch provides 48 × 10G Base-T ports, 6 × 100G QSFP28 ports
Hardware Specification
Item | S6805-54HF | S6805-54HT | |
Dimensions (H × W × D) | 44× 440 × 400 mm
(1.74×17.32×15.74 in) |
44 × 440 × 460 mm
(1.74×17.32×18.11 in) |
|
Weight | ≤ 10 kg (22.04 lb) | ≤ 10 kg (22.04 lb) | |
Serial console port | 1 | ||
Out-of-band management port | One GE copper port and one GE fiber port | ||
Mini USB console port | 1 | ||
USB port | 1 | ||
QSFP28 port | 6 | ||
SFP+ port | 48 | N/A | |
10G Base-T port | N/A | 48 | |
CPU | 2.4 GHz@4 Cores | ||
Flash/ SDRAM | 4G/8G | ||
Latency | <1μs (64 byte) | ||
Switching capacity | 2.16 Tbps | ||
Forwarding capacity | 1001.7 Mpps | ||
Buffer | 32M | ||
AC-input voltage | 90v AC to 290v AC | ||
DC-input voltage | –36v DC to –72v DC | ||
Power module slot | 2 | ||
Fan tray slot | 5 Hot-swappable fan, fan speed adjustable and wind invertible | ||
Air flow direction | From front to rear or from rear to front | ||
Typical power consumption | AC : 208W
Double AC : 213W DC : 207W Double DC : 217W |
AC : 222W
Double AC : 229W DC : 230W Double DC : 236W |
|
Maximum heat consumption
(BTU/hour) |
AC : 710
Double AC : 727 DC : 706 Double DC : 740 |
AC : 757
Double AC : 781 DC : 784 Double DC : 805 |
|
MTBF(years) | 35.4 | ||
MTTR(hours) | 1 | ||
Operating temperature | 0°C to 45°C (32°F to 113°F) | ||
Operating humidity (noncondensing) | 5% to 95% |
Software Specification
Item | Feature description |
Device Virtualization | IRF2.0 |
M-LAG(DRNI) | |
S-MLAG | |
Network Virtualization | BGP-EVPN |
VxLAN | |
EVPN ES | |
VxLAN | L2 VxLAN gateway |
L3 VxLAN gateway | |
Distributed VxLAN gateway | |
Centralized VxLAN gateway | |
EVPN VxLAN | |
manual configured VxLAN | |
IPv4 VxLAN tunnel | |
IPv6 VxLAN tunnel | |
QinQ VxLAN access | |
SDN | H3C SeerEngine-DC |
Lossless network | PFC and ECN |
DCBX | |
RDMA and ROCE | |
PFC deadlock watchdog | |
ECN overlay | |
ROCE stream analysis | |
Programmability | Openflow1.3 |
Netconf | |
Ansible | |
Python//TCL/Restful API to realize DevOps automated operation and maintenance | |
Traffic analysis | Sflow |
VLAN | Port-based VLANs |
Mac-based VLAN ,Subnet-based VLAN and Protocol VLAN | |
VLAN mapping | |
QinQ | |
MVRP(Multiple VLAN Registration Protocol) | |
Super VLAN | |
PVLAN | |
MAC address | Dynamic learning and aging of mac address entries |
Dynamic,static and blackhole entries | |
Mac address limiting on ports | |
IPv4 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 | |
IPv6 routing | RIPng |
OSPF v3 | |
IPv6 ISIS | |
BGP4+ | |
Routing policy | |
VRRP | |
PBR | |
MPLS/VPLS | Support L3 MPLS VPN |
Support L2 VPN: VLL (Martini, Kompella) | |
Support VPLS, VLL | |
Support hierarchical VPLS and QinQ+VPLS access | |
Support P/PE function | |
Support LDP protocol | |
Support MCE | |
Support MPLS OAM | |
Multicast | IGMP snooping |
MLD snooping | |
IPv4 and IPv6 multicast VLAN | |
IPv4 and IPv6 PIM snooping | |
IGMP and MLD | |
PIM and IPv6 PIM | |
MSDP | |
Multicast VPN | |
Reliability | LACP |
STP/RSTP/MSTP protocol, PVST compatible | |
STP Root Guard and BPDU Guard | |
RRPP and ERPS | |
Reliability | Ethernet OAM |
Smartlink | |
DLDP | |
BFD for OSPF/OSPFv3, BGP/BGP4, IS-IS/IS-ISv6, PIM/IPM for IPv6 and Static route | |
VRRP and VRRPE | |
QOS | Weighted 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 | |
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. | |
Committed access rate (CAR) | |
Account by packet and byte | |
COPP | |
FCOE | FCOE |
Telemetry | gRPC |
ERSPAN | |
Mirror on drop | |
Telemetry Stream | |
INT | |
iNQA | |
Packet trace, Packet capture | |
Configuration and maintenance | Console telnet and SSH terminals |
SNMPv1/v2/v3 | |
ZTP | |
System log | |
File upload and download via FTP/TFTP
BootRom update and remote update |
|
NQA | |
ping,tracert | |
VxLAN ping and VxLAN tracert | |
NTP | |
PTP(1588v2) | |
GIR Graceful Insertion and Removal | |
Security and management | Micro-Segmentation |
Hierarchical management and password protection of users | |
Authentication methods,including AAA,RADIUS and HWTACACS | |
Support DDos, ARP attack and ICMP attack function | |
IP-MAC-port binding and IP Source Guard | |
SSH 2.0 | |
HTTPS | |
SSL | |
PKI | |
Boot ROM access control (password recovery) | |
Security and management | RMON |
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 GB/T 9254 YD/T 993 |
IEEE Standard | 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 |
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 |