H3C S5130S-HI is the latest development of Gigabit speed Layer 3 Ethernet switch. This powerful and highly secure switch series is built based on industry-leading high performance hardware architecture and H3C Comware V7 platform. It supports diversified services, high capacity GE access port as well as high density 10GE uplink, which meet the requirements for high density campus access and high performance aggregation.
H3C S5130S-HI supports four models and all models support redundant and hot swappable power modules.
H3C S5130-HI series Ethernet switch includes the following models:
S5130S-28S-HI: 24 10/100/1000BASE-T Ethernet ports, 8 1G SFP (Combo) ports, 4 10G/1G BASE-X SFP+ ports; 2 power module slots;
S5130S-52S-HI: 48 10/100/1000BASE-T Ethernet ports, 4 10G/1G BASE-X SFP+ ports; 2 power module slots;
S5130S-28S-PWR-HI: 24 10/100/1000BASE-T Ethernet ports, 4 1G SFP (Combo) ports, 4 10G/1G BASE-X SFP+ ports; 2 power module slots;
S5130S-52S-PWR-HI: 48 10/100/1000BASE-T Ethernet ports, 4 10G/1G BASE-X SFP+ ports; 2 power module slots;
S5130S-28S-HI S5130S-52S-HI
S5130S-28S-PWR-HI S5130S-52S-PWR-HI
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· The S5130S-HI switch series comes with IPv4/IPv6 dua· -stack platform which provides sophisticated IPv4/IPv6 solutions by supporting multiple tunnels, IPv4/IPv6 Layer 3 routing protocols, multicasting, and policy-based routing. The S5130S-HI switch is a mature commercia· IPv6 product that has passed the IPv6 network access certification of the Chinese Ministry of Industry and Information Technology and the IPv6 Ready Phase II certification.
H3C S5130S-HI switch series is pre-built with Intelligent Resilient Framework 2 (IRF2). IRF2 provides the following benefits:
· High scalability: With IRF2, plug-n-play device aggregation can be achieved by adding one or more switches into the IRF2 stack and enabling IRF2 stacking on the new device. New devices can be managed with a single IP, and upgraded at the same time to reduce network expansion cost.
· High reliability: The IRF2 patented 1:N backup technology allows each slave device in the IRF2 stack to serve as the backup of the master, creating contro· and data link redundancy, as wel· as uninterrupted layer-3 forwarding. This improves the reliability, avoids unplanned business downtime and serves to improve overal· performance. When the master device fails, traffic remains uninterrupted.
· Load balancing: IRF2 supports cross-device link aggregation, upstream and downstream can be connected to more than one physica· link, which creates another layer of network redundancy and boosts the network resource utilization.
· Availability: H3C Implements IRF2 through standard Forty Gigabit Ethernet (40GE) or Ten Gigabit Ethernet (10GE) ports which allocates bandwidth for business and application access and reasonably splits loca· traffic and upstream traffic. IRF2 rules not only able to obeyed within and across the rack, but also across the LAN.
· Software Defined Network (SDN) is an innovative network architecture that simplifies network management and reduces maintenance complexity by separating network contro· layer and network forwarding layer through Openflow. More importantly, it implements flexible network flow contro· and provides a wel· -defined network platform for core network application and innovation.
· The S5130S-HI switch series supports a large network flow table. Combined with H3C SDN controller, it can easily implement a two-layer network architecture and quickly add functions in existing network in order to drastically reduce network management complexity while substantially lowers network maintenance cost.
· The S5130S-HI switch series adopts hot swappable dua· -power supply, which allows you to configure AC or DC power supplies as needed. The switch can detect faults in power supplies, and wil· if any such faults are found, respond with an alarm. It can automatically adjust fan speed according to the temperature.
· Apart from device leve· redundancy, the S5130S-HI series switch also provides diverse link redundancy support such as LACP/STP/RSTP/MSTP/Smart Link protocols. It supports IRF2 and 1: N redundancy backup as wel· as cross-device link aggregation which substantially increases network reliability.
· The S5130S-HI switch series supports packet filtering at Layer 2 through Layer 4, and traffic classification based on source MAC addresses, destination MAC addresses, source IP addresses, destination IP addresses, TCP/UDP port numbers, protoco· types, and VLANs. It supports flexible queue scheduling algorithms based on ports and queues, including strict priority (SP), weighted round Robin (WRR) and SP+WRR. The S5130S-HI switch series enables committed access rate (CAR) with the minimum granularity of 8 kbps. It supports port mirroring in the outbound and inbound directions, to monitor the packets on the specific ports, and to mirror the packets to the monitor port for network detection and troubleshooting.
· H3C S5130S-HI switch series supports innovative single-port multi-authentication function, the access authentication modes supported by different clients are different. For example, some clients can only perform MAC addresses Authentication (such as the printer termina· ), and some user host for 802.1X authentication, and some user hosts only want to access through the Web porta· authentication. In order to flexibly adapt to the multi-authentication requirements of the network environment, the S5130S-HI switch series support single-port multi-authentication unified deployment.
· The S5130S-HI switch series supports SSH V2 (Secure Shel· V2) to secure information security, and strong authentication protect the Ethernet network switch from attacks such as IP address spoofing and clear text interception.
· ARP attack and ARP virus are major threats to LAN security, so the S5130S-HI switch series comes with diverse ARP protection functions such as ARP Detection to challenge the legitimacy of client, validate the ARP packets, and set a speed limit for ARP to prevent ARP swarm attacks from targeting CPU.
· H3C S5130S-HI switch series support EAD (End User Admission Defense) function. Once working with the iMC (intelligent Management Centre) system, EAD integrates termina· security policies, such as anti-virus and patch update, into network access contro· and access right contro· policies to form a cooperative security system. By checking, isolating, updating, managing, and monitoring access terminals, EAD changes passive, single point network protection to active, comprehensive network protection, and changes separate management to centralized management, enhancing the network capability for preventing viruses, worms, and new threats.
· The S5130S-HI switch series uses built-in lightning protection technology and supports industry leading switch port 6KV anti-lighting capability, which can greatly reduce the rate of lightning damage to the equipment.
H3C S5130S-HI switch series supports 802.3af/802.3at PoE function, provides multiple PoE modules for flexible PoE output selections, single switch can provide a tota· of 1680W PoE power, 30w per port and a tota· of 48 ports PoE+ function. A single port can provide a maximum of 30w of powered connected devices, such as IP phones, wireless APs, and high power cameras.
· The H3C S5130S-HI series switch makes switch management with ease with the support of SNMPv1/v2/v3, which can be managed by NM platforms, such as Open View and iMC. with CLI and Telnet. And with SSH 2.0 encryption, switch management security is enhanced.
Feature | S5130S-28S-HI | S5130S-52S-HI | S5130S-28S-PWR-HI | S5130S-52S-PWR-HI | |
Switching capacity | 336Gbps | ||||
Forwarding capacity | 96Mpps | 132Mpps | 96Mpps | 132Mpps | |
Dimensions (W × D × H) | 440×360×43.6 | 440×360×43.6 | 440×460×43.6 | 440×460×43.6 | |
Weight | ≤6kg | ≤6.5kg | ≤8.5kg | ≤9.5kg | |
28 10/100/1000BASE-T Ethernet ports, 8 1G SFP (Combo) ports, 4 10G/1G BASE-X SFP+ ports | 48 10/100/1000BASE-T Ethernet ports, 4 10G/1G BASE-X SFP+ ports | 24 10/100/1000BASE-T Ethernet ports, 4 1G SFP (Combo) ports, 4 10G/1G BASE-X SFP+ ports | 48 10/100/1000BASE-T Ethernet ports, 4 10G/1G BASE-X SFP+ ports | ||
SDN/ Open flow | OpenFlow 1.3 Multiple controllers (EQUAL, master/slave) Multiple tables flow Group table Meter | ||||
Port aggregation | GE/10GE port aggregation Dynamic aggregation Static aggregation Cross-device aggregation | ||||
Port features | IEEE802.3x flow control (full duplex) Storm control based on port rate percentage PPS/BPS-based storm control | ||||
IRF2 | Distributed device management, distributed link aggregation, and distributed resilient routing Stacking through standard Ethernet interfaces Local device stacking and remote device stacking | ||||
VLAN | Port-based VLAN MAC-based VLAN Protocol-based VLAN QinQ and selective QinQ | ||||
VLAN mapping Voice VLAN GVRP | |||||
ACL | Packet filtering at Layer 2 through layer 4 Traffic classification based on source MAC addresses, destination MAC addresses, source IPv4/IPv6 addresses, Time range-based ACL VLAN-based ACL Bidirectional ACL | ||||
QoS | Port rate limit (receiving and transmitting) Packet redirection Committed access rate (CAR) Eight output queues on each port Flexible queue scheduling algorithms based on ports and queues, including SP, WRR, WFQ and SP+WRR 802.1p DSCP remarking | ||||
DHCP | DHCP Client DHCP Snooping DHCP Snooping option82 DHCP Relay DHCP Server DHCP auto-config | ||||
IP routing | Static routing RIPv1/v2 and RIPng OSPFv1/v2 and OSPFv3 | ||||
Multicast | IGMP Snooping /MLD Snooping Multicast VLAN | ||||
Layer 2 ring network protocol | STP/RSTP/MSTP/PVST Smart Link RRPP | ||||
OAM | 802.1ag 802.3ah | ||||
Mirroring | Port mirroring RSPAN Traffic mirroring | ||||
Security | Hierarchical user management and password protection 802.1X authentication, centralized MAC authentication Guest VLAN RADIUS authentication SSH 2.0 Port isolation | ||||
Port security MAC address learning limit IP Source guard Dynamic ARP inspection, preventing man-in-the-middle attacks and ARP DoS attacks IP/Port/MAC binding EAD | |||||
Management and maintenance | Loading and upgrading through XModem/FTP/TFTP Configuration through CLI, Telnet, and console port SNMPv1/v2/v3 and Web-based NMS Remote monitoring (RMON ) alarm, event, and history recording IMC NMS System log, alarming based on severities, and output of debugging information NTP Ping, Tracert Virtual cable test (VCT) Device link detection protocol (DLDP) Loopback-detection | ||||
Green power | EEE (802.3az) Port auto Power down Port schedule down | ||||
Power consumption (full configuration) | Single AC: 34W Single DC: 36W Dual AC: 39W Dual DC: 44W | Single AC: 37W Single DC: 49W Dual AC: 45W Dual DC: 57W | Single AC: Upto 898W (including 810W PoE) Dual AC: Upto 905W (including 810W PoE) | Single AC: Upto 1019W (including 900W PoE) Dual AC: Upto 1854W((including 1680W PoE) | |
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Input voltage | Non PoE model input voltage: AC: Rated voltage range: 100V~240V AC, 50/60Hz DC: Maximum voltage range -48V~-60V DC PoE model input voltage: 360W AC: 100V~240V, 50Hz~60Hz 720W AC: 100V~240V, 50Hz~60Hz 1110W AC: 115V~240V, 50Hz~60Hz | ||||
Operating temperature | 0℃~45℃ | ||||
Operating relative humidity (noncondensing) | 5%~95% | ||||
Data Sheet
Installation
Configuration
Command