Name:

S5700-52C-PWR-EI-AC

Model: S5700-52C-PWR-EI-AC Huawei S5700 Series Switch
Detail:
S5700-52C-PWR-EI-AC(48 Ethernet 10/100/1000 PoE+ ports,with 1 interface slot,with 500W AC power supply)
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Replacement: S5720-56C-PWR-EI-AC
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S5700-52C-PWR-EI-AC

S5700-52C-PWR-EI-AC(48 Ethernet 10/100/1000 PoE+ ports,with 1 interface slot,with 500W AC power supply)

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Overview

S5700-52C-PWR-EI-AC Overview

S5700 Series Switches provide highly scalable gigabit access for terminals in enterprise campus networks; also ideal for resilient server support and aggregation in large-scale data centers.


Typical Deployment Scenarios

S5700-SI Series Switches used for Resilient End-user Access in an Enterprise Campus Network



S5700-HI Series Switches Providing High-availability Server Access and Aggregation in a Data Center



Highlights – Features and Benefits

Advanced, high-performance electronics with comprehensive scalability and management features make S5700 Series Switches ideal for next-generation data centers and enterprise campus networks.


Huawei S5700 Ethernet Switches provide powerful support for services

The S5700 supports IGMP v1/v2/v3 snooping, IGMP filter, IGMP fast leave, and IGMP proxy. The S5700 supports wire-speed replication of multicast packets between VLANs, multicast load balancing among member interfaces of a trunk, and controllable multicast, meeting requirements for IPTV and other multicast services.


The Multi-VPN-Instance CE (MCE) function isolates users in different VLANs, ensuring data security and reducing costs.


S5700HI switches are cost-effective, case-shaped MPLS switches. They support MPLS, VPLS, and VLL functions and can be used as high-quality access devices to provide leased line services for enterprises.


Comprehensive reliability mechanisms

Besides STP, RSTP, and MSTP, the S5700 supports enhanced Ethernet reliability technologies, such as Smart Link and Rapid Ring Protection Protocol (RRPP), which implement millisecond-level protection switchover and ensure network reliability. The S5700 also provides Smart Link multi-instance and RRPP multi-instance to implement load balancing among links, optimizing bandwidth usage.


Enhanced Trunk (E-Trunk) enables a Customer Edge (CE) to be dual-homed to two Provider Edges (PEs) (S5700s). E-Trunk greatly enhances link reliability and implements link aggregation between devices, which improves access device reliability.


The S5700 supports the Smart Ethernet Protection (SEP) protocol, a ring network protocol applied to the link layer on an Ethernet network. SEP can be used on open ring networks and can be deployed on upper-layer aggregation devices to provide fast switchover, ensuring continuous transmission of services. SEP features simplicity, high reliability, fast switchover, easy maintenance, and flexible topology, facilitating network planning and management.


The S5700 supports Ethernet Ring Protection Switching (ERPS), also referred to as G.8032. As the latest ring network protocol, ERPS was developed based on traditional Ethernet MAC and bridging functions and uses a mature Ethernet OAM function and a Ring Automatic Protection Switching (R-APS) mechanism to implement millisecond-level protection switching. ERPS supports various services and allows flexible networking, helping customers build a network with lower OPEX and CAPEX.


The S5700 supports redundant power supplies and simultaneous use of AC and DC power. Users can choose either one or two power supplies to ensure device reliability.


The S5700EI supports VRRP and can set up VRRP groups with other Layer 3 switches. VRRP provides redundant routes to ensure stable and reliable communications. Multiple equal-cost routes to an uplink device can be configured on the S5700 to provide route redundancy. When an active route is unreachable, traffic is switched to a backup route.


BFD improves network reliability by providing millisecond-level fault detection for protocols such as OSPF, IS-IS, VRRP, and PIM. Complying with IEEE 802.3ah and 802.1ag, the S5700 supports point-to-point Ethernet fault management and can detect faults within the last mile of an Ethernet link to users.


The S5700HI provides millisecond-level hardware-based Ethernet OAM function and Y.1731, which can quickly detect and locate faults. Ethernet OAM and switchover technologies can provide millisecond-level protective switchovers for networks.


Well-designed QoS policies and security features

The S5700 implements complex traffic classification based on packet information, such as 5-tuple, IP preference, ToS, DSCP, IP protocol type, ICMP type, TCP source port, VLAN ID, Ethernet protocol type, and CoS. ACLs can be applied to inbound or outbound directions on an interface. The S5700 supports a flow-based, two-rate, three-color CAR. Each port supports eight priority queues and multiple queue scheduling algorithms, such as WRR, DRR, SP, WRR + SP, and DRR + SP. All of these ensure the quality of voice, video, and data services.


The S5700 provides multiple security measures to defend against Denial of Service (DoS) attacks, as well as attacks against networks or users. DoS attack types include SYN Flood attacks, Land attacks, Smurf attacks, and ICMP Flood attacks. Attacks to networks refer to STP BPDU/root attacks. Attacks to users include bogus DHCP server attacks, ‘man-in-the-middle’ attacks, IP/MAC spoofing attacks, and DHCP request flood attacks. DoS attacks that change the CHADDR field in DHCP packets are also attacks against users.


The S5700 supports DHCP snooping, which discards invalid packets that do not match any binding entries, such as ARP spoofing packets and IP spoofing packets. This prevents ‘man-in-the-middle’ attacks to campus networks that hackers initiate by using ARP packets. The interface connected to a DHCP server can be configured as a trusted interface to protect the system against bogus DHCP server attacks.


The S5700 supports strict ARP learning, which prevents ARP spoofing attacks that exhaust ARP entries. It also provides IP source checks to prevent DoS attacks caused by MAC address spoofing, IP address spoofing, and MAC/IP spoofing.


The S5700 supports centralized MAC address authentication, 802.1x authentication, and NAC. It authenticates users based on statically or dynamically bound user information, such as the user name, IP address, MAC address, VLAN ID, access interface, and flag indicating whether antivirus software is installed. VLANs, QoS policies, and ACLs can be dynamically applied to users.


The S5700 can limit the number of MAC addresses learned on an interface to prevent attackers from exhausting MAC address entries by using bogus source MAC addresses. This function minimizes the packet flooding that occurs when users’ MAC addresses cannot be found in the MAC address table.


Fine-grained traffic management

The NetStream module supports V5, V8, and V9 packet formats and provides various traffic analysis functions, such as real-time traffic sampling, dynamic report generation, traffic attribute analysis, and traffic exception reporting. Administrators can monitor network status in real time, and the module provides applications and analysis functions, including potential fault detection, effective fault rectification, fast problem handling, and security monitoring to help customers optimize network structure and adjust resource deployment.


The Sampled Flow (sFlow) function uses a sampling mechanism to obtain statistics about traffic forwarded on a network and sends the statistics in real time to the Collector, which analyzes traffic statistics to help customers manage network traffic efficiently. The S5700-EI integrates the sFlow Agent module and uses hardware for traffic monitoring. Unlike traffic monitoring through port mirroring, sFlow does not degrade network performance.


Maintenance-free design for easy manageability

The S5700 supports automatic configuration, plug-and-play features, deployment using a USB flash drive, and batch remote upgrades. These capabilities simplify device management and maintenance and reduce maintenance costs. The S5700 supports SNMP v1/v2c/v3 and provides flexible methods for managing devices. Users can manage the S5700 using the Command Line Interface (CLI), Web Network Management System (NMS), Telnet, and HGMP. The Network Quality Analyzer (NQA) function assists users with network planning and upgrades. In addition, the S5700 supports NTP, SSH v2, HWTACACS, RMON, log hosts, and port-based traffic statistics.


GARP VLAN Registration Protocol (GVRP) dynamically distributes, registers, and propagates VLAN attributes to reduce manual configuration and ensure correct VLAN configuration. In a complex network topology, GVRP simplifies VLAN configuration and reduces network communication faults caused by incorrect VLAN configuration.


PoE function

The S5700 PWR provides improved Power over Ethernet (PoE) solutions. It can use PoE power supplies with different power levels to provide -48V DC power for Powered Devices (PDs), such as IP phones, WLAN APs, and Bluetooth APs. As Power Sourcing Equipment (PSE), the S5700 PWR complies with IEEE 802.3af and 802.3at (PoE+) and can work with PDs that are incompatible with 802.3af or 802.3at. Each port provides a maximum of 30W of power, complying with IEEE 802.3at. The PoE+ function increases the maximum power available on each port and implements intelligent power management for high-power consumption applications, facilitating the ease of PD use. PoE ports continue to work while in power-saving mode. Users can configure whether and when a PoE port supplies power.


Highly scalable Gigabit Ethernet switching with Huawei iStack Technology

The S5700 supports intelligent stacking (iStack). Multiple S5700s can be connected with stack cables to set up a stack, which functions as a virtual switch. A stack consists of a master switch, a backup switch, and several slave switches. The backup switch takes over services when the master switch fails, reducing service interruption time. Stacks support intelligent upgrades so that users do not need to change a switch’s software version when adding it to a stack. The iStack function allows users to connect multiple switches with stack cables to expand the system capacity. These switches can be managed using a single IP address, greatly reducing the costs of system expansion, operation, and maintenance. Compared with traditional networking technologies, iStack has distinct advantages regarding scalability, reliability, and system architecture.


Various IPv6 features

The S5700 supports IPv4/IPv6 dual stack and can migrate from an IPv4 network to an IPv6 network. S5700 hardware supports IPv4/IPv6 dual stack, IPv6 over IPv4 tunnels (including manual tunnels, 6to4 tunnels, and ISATAP tunnels), and Layer 3 line-speed forwarding. The S5700 can be deployed on IPv4 networks, IPv6 networks, or on networks that run both IPv4 and IPv6. This makes networking flexible and enables easy migration from IPv4 to IPv6.


Innovative energy-efficient design

The S5700-LI offers customers extensive energy-saving options through standard mode, basic mode, and advanced mode, which accommodates most needs. By matching port link down/up, optical-module in-place/out-of-place, port shut down/undo shutdown, idle period, and busy period, users can increase dynamic energy savings and reduce power consumption.


Models S5700-LI, S5710-EI, and S5700-HI use Energy Efficient Ethernet (EEE), port energy detection, CPU variable-frequency and device hibernation technologies, greatly reducing energy consumption and noise without compromising performance and stability.


Quality Certifications
Specification

S5700-52C-PWR-EI-AC Specification

Item S5700(S)-LI/S5710-LI* S5700-SI* S5700-EI/S5710-EI/S5720-EI* S5700-HI/S5710-HI/S5720-HI*
Fixed port LI S5700-10P-LI-AC/S5700-10P-PWR-LI-AC: 8 × 10/100/1000Base-T,2 × 1000Base-X SFP
S5700(S)-28P-LI/S5700-28P-PWR-LI/ S5700-28P-LI-BAT/S5700-28P-LI-4AH: 24 × 10/100/1000Base-T, 4 × 1000Base-X SFP
S5700-28P-LI-24S-BAT/S5700-28P-LI-24S-4AH: 28 × 1000Base-X,4 of which are dual-purpose 10/100/1000 or SFP, 4 × 1000Base-X
S5700-28TP-LI-AC/S5700-28TP-PWR-LI-AC/S5701-28TP-PWR-LI-AC: 24× 10/100/1000Base-T, 2×1000Base-X SFP and 2 dual-purpose 10/100/1000 or SFP
S5700-28X-LI/S5700-28X-PWR-LI-AC/ S5701-28X-LI-AC: 24 × 10/100/1000Base-T, 4 × 10GE SFP+
S5700-28X-LI-24S-AC/S5700-28X-LI-24S-DC/ S5701-28X-LI-24S-AC: 28x1000Base-X,4 of which are dual-purpose 10/100/1000 or SFP,4 × 10GE SFP+
S5700(S)-52P-LI/S5700-52P-PWR-LI: 48 × 10/100/1000Base-T, 4 × 1000Base-X SFP
S5700-52X-LI/S5700-52X-PWR-LI-AC: 48 × 10/100/1000Base-T, 4 × 10GE SFP+
S5700-52X-LI-48CS-AC:48x1000Base-X(CSFP) or 24 × 1000Base-X, 4 of which are dual-purpose 10/100/1000 or Base-X(CSFP), 4 × 10GE SFP+
SI S5700-24TP-SI/S5700-24TP-PWR-SI/S5700-28C-SI/S5700-28C-PWR-SI:24 × 10/100/1000Base-T, 4 of which are dual-purpose 10/100/1000 or SFP
S5700-26X-SI-12S-AC: 12 × 10/100/1000BASE-T,12×100/1000Base-X,2 × 10GE SFP+
S5700-48TP-SI/S5700-48TP-PWR-SI: 48 × 10/100/1000Base-T, 4 of which are dual-purpose 10/100/1000 or SFP
S5700-52C-SI/S5700-52C-PWR-SI: 48 × 10/100/1000Base-T
EI S5700-28C-EI/S5700-28C-PWR-EI: 24 × 10/100/1000Base-T
S5700-52C-EI/S5700-52C-PWR-EI: 48 × 10/100/1000Base-T
S5700-28C-EI-24S: 20 × 100/1000Base-X, 4 × GE Combo
S5710-28C-EI/S5710-28C-PWR-EI-AC: 20 x 10/100/1000Base-T, 4 × GE Combo, 4 × 10GE SFP+
S5710-52C-EI/S5710-52C-PWR-EI/S5710-52C-PWR-EI-AC: 48 x 10/100/1000Base-T, 4 × 10GE SFP+
S5720-32P-EI-AC: 24×10/100/1000Base-T, 4×100/1000Base-X SFP, 4 Gig SFP
S5720-52P-EI-AC:48×10/100/1000Base-T, 4 Gig SFP
S5720-36C-EI-AC/S5720-36C-PWR-EI-AC: 28×10/100/1000Base-T(4GE Combo SFP), 4×10 GE SFP+
S5720-36C-EI-28S-AC:28×100/1000Base-X SFP(4GE Combo), 4×10GE SFP+
S5720-36PC-EI-AC: 28×10/100/1000Base-T(4GE Combo SFP), 4 Gig SFP
S5720-56C-EI-AC/S5720-56C-PWR-EI-AC/S5720-56C-PWR-EI-AC1:48×10/100/1000Base-T, 4×10GE SFP+
S5720-56C-EI-48S-AC: 48×100/1000Base-X SFP, 4×10GE SFP+
S5720-56PC-EI-AC: 48×10/100/1000Base-T, 4 Gig SFP
S5720-32X-EI-AC: 24×10/100/1000 Base-T, 4×100/1000Base-X SFP, 4×10 GE SFP+
S5720-32X-EI-24S-AC: 24×100/1000Base-X SFP, 4×10/100/1000Base-T, 4×10GE SFP+
S5720-50X-EI-AC : 46 ×10/100/1000Base-T, 4×10GE SFP+
S5720-50X-EI-46S-AC: 46 ×100/1000Base-X SFP, 4×10GE SFP+
S5720-52X-EI-AC: 48×10/100/1000Base-T, 4×10GE SFP+
HI S5700-28C-HI: 24 × 10/100/1000Base-T
S5700-28C-HI-24S: 24 × 100/1000Base-X
S5710-108C-PWR-HI: 48 × 10/100/1000BASE-T, 8 × 10GE SFP+
S5720-32C-HI-24S-AC: 24×100/1000Base-X ,8 of which are dual-purpose 10/100/1000 or SFP, 4×10GE SFP+
S5720-56C-HI-AC/S5720-56C-PWR-HI-AC: 48×10/100/1000Base-T, 4×10GE SFP+
MAC address table IEEE 802.1d compliance
MAC address learning and aging
Static, dynamic, and blackhole MAC address entries
Packet filtering based on source MAC addresses
MAC address entries:
S5700S-LI series: 8K, S5700-LI/S5700-SI series: 16K, S5700-EI series: 32K, S5720-EI series: 64K, S5700-HI series: S5700-HI: 32K, S5710-HI: 456K, S5720-HI: 128K
VLAN 4K VLANs
Guest VLAN and voice VLAN
GVRP
MUX VLAN
VLAN assignment based on MAC addresses, protocols, IP subnets, policies, and ports
1:1 and N:1 VLAN Mapping
SuperVLAN(supported by the S5700-SI/S5700-EI/S5700-HI series)
Ring protection RRPP ring topology and RRPP multi-instance
Smart Link tree topology and Smart Link multi-instance, providing the millisecond-level protection switchover
SEP
ERPS(G.8032)(supported by the S5700-LI/S5700-SI/S5700-EI/S5700-HI series)
STP, RSTP, and MSTP
BPDU protection, root protection, and loop protection
BPDU Tunnel
Reliability Ethernet OAM (IEEE 802.3ah and 802.1ag)
ITU-Y.1731
DLDP
LACP
E-Trunk(supported by the S5700-SI/S5700-EI/S5700-HI series)
BFD for OSPF, BFD for IS-IS, BFD for VRRP, and BFD for PIM (supported by the S5700-EI/S5700-HI series)
MPLS features MPLS L3VPN
MPLS L2VPN(VPWS/VPLS)
MPLS-TE
MPLS QoS
Notes: supported by S5710-EI, S5700-HI and S5710-HI
IP routing Static routing
RIPv1, RIPv2 and RIPng,ECMP(supported by the S5700-SI/S5700-EI/S5700-HI series)
OSPF, OSPFv3, IS-IS, IS-ISv6, BGP and BGP4+ (supported by the S5700-EI/S5700-HI series)
IPv6 features Neighbor Discovery (ND)
Path MTU (PMTU)
IPv6 ping, IPv6 tracert, and IPv6 Telnet
ACLs based on the source IPv6 address, destination IPv6 address, Layer 4 ports, or protocol type
MLD v1/v2 snooping
6to4 tunnel, ISATAP tunnel, and manually configured tunnel(supported by the S5700-SI/S5700-EI/S5700-HI series)
Multicast IGMP v1/v2/v3 snooping and IGMP fast leave
Multicast forwarding in a VLAN and multicast replication between VLANs
Multicast load balancing among member ports of a trunk
Controllable multicast
Port-based multicast traffic statistics
IGMP v1/v2/v3, PIM-SM, PIM-DM, PIM-SSM, MSDP (supported by the S5700-EI/S5700-HI series)
QoS/ACL Rate limiting on packets sent and received by an interface
Packet redirection
Port-based traffic policing and two-rate three-color CAR
Eight queues on each port
WRR, DRR, SP, WRR+SP, and DRR+SP queue scheduling algorithms
WRED (supported by the S5710-EI and S5700-HI)
Re-marking of the 802.1p priority and DSCP priority
Packet filtering at Layers 2 through 4, filtering out invalid frames based on the source MAC address, destination MAC address, source IP address, destination IP address, TCP/UDP port number, protocol type, and VLAN ID
Rate limiting in each queue and traffic shaping on ports
Security User privilege management and password protection
DoS attack defense, ARP attack defense, and ICMP attack defense
Binding of the IP address, MAC address, interface, and VLAN
Port isolation, port security, and sticky MAC
MFF
Blackhole MAC address entries
Limit on the number of learned MAC addresses
802.1x authentication and limit on the number of users on an interface
AAA authentication, RADIUS authentication, HWTACACS authentication, and NAC
SSH v2.0
Hypertext Transfer Protocol Secure (HTTPS)
CPU defense
Blacklist and whitelist
Access Security DHCP Relay, DHCP Server, DHCP Snooping, DHCP Security
Management and maintenance Virtual cable test
Port mirroring and RSPAN (remote port mirroring)
Remote configuration and maintenance using Telnet
SNMP v1/v2c/v3
RMON
Web NMS
HGMP
System logs and alarms of different levels
802.3az EEE (supported by the S5700(S)-LI, S5710-EI, S5700-HI and S5710-HI)
Dying gasp (supported by the S5700-HI, S5710-HI and S5700(S)-LI(except battery LAN switches)
NetStream (supported by the S5710-EI, S5700-HI and S5710-HI)
sFlow(supported by the S5700(S)-LI/S5700-EI/S5700-HI series)
Interoperability Supports VBST (Compatible with PVST/PVST+/RPVST)
Supports LNP (Similar to DTP)
Supports VCMP (Similar to VTP)
Operating environment Operating temperature: 0℃–50℃
Relative humidity: 10%–90% (non-condensing)
Input voltage AC:
Rated voltage range: 100 V to 240 V AC, 50/60 Hz
Maximum voltage range: 90 V to 264 V AC, 47/63 Hz
DC:
Rated voltage range: –48 V to –60 V, DC
Maximum voltage range: –36 V to –72 V DC
Note: PoE-support switches do not use DC power supplies.
Dimensions (W x D x H) S5700-10P-LI-AC:250 x 180 x 43.6 mm
S5700-10P-PWR-LI-AC:320 x 220 x 43.6 mm
S5700-28P-LI/S5700-28TP-LI-AC/S5700-28X-LI/S5700-28X-LI-24S/S5700-24TP-SI/S5700-28C-HI/S5700-28C-HI-24S/ S5701-28X-LI-AC/ S5701-28X-LI-24S-AC/ S5700-52X-LI-48CS-AC: 442 x 220 x 43.6 mm
S5700-28P-PWR-LI/S5700-28TP-PWR-LI-AC/S5701-28TP-PWR-LI-AC/S5700-52P-LI/S5700-52P-PWR-LI/S5700-28X-PWR-LI-AC/S5700-52X-LI/S5700-52X-PWR-LI-AC/ S5700-26X-SI-12S-AC/S5700-28P-LI-BAT/S5700-28P-LI-4AH/S5700-28P-LI-24S-BAT/S5700-28P-LI-24S-4AH: 442 x 310 x 43.6 mm
S5710-108C-PWR-HI: 442x470.0x87.2
Others: 442 x 420 x 43.6 mm
Powerconsumption S5700-10P-LI-AC<11.5W
S5700-10P-PWR-LI-AC<139W
S5700-28P-LI<25W S5700-24TP-SI<40W S5700-28C-EI<60W S5700-28C-HI<76W
S5700S-28P-LI<25W S5700-26X-SI-12S-AC<42.3W S5700-28C-EI-24S<63W S5700-28C-HI-24S<80W
S5700-28TP-LI-AC<26.4W S5700-48TP-SI<64W S5700-52C-EI<88W S5710-108C-PWR-HI<1680W (PoE:1440W)
S5700-28TP-PWR-LI-AC<469.7W(PoE:370W) S5700-28C-SI<56W S5710-28C-EI<100W
S5701-28TP-PWR-LI-AC<238.7W(PoE:185W) S5700-52C-SI<78W S5710-52C-EI<165W S5720-32C-HI-24S-AC<172.7W
S5700-52P-LI<52W S5700-24TP-PWR-SI<455W(PoE: 370W) S5700-28C-PWR-EI<842W (PoE: 740W) S5720-56C-HI-AC<183.3W
S5700S-52P-LI<52W S5700-48TP-PWR-SI<907W (PoE: 740W)

S5720-56C-PWR-HI-AC:
without PD: <188.74W,
with PD: <1739W(device:
299W, PD: 1440W)

S5700-52C-PWR-EI<930W (PoE: 740W)

S5700-28P-PWR-LI<436.5W (PoE: 370W)

S5710-28C-PWR-EI-AC<942W
S5710-52C-PWR-EI/S5710-52C-PWR-EI-AC: < 1043W with two 580W AC supplies(PoE:740W), or <1625W with two 1150W AC supplies(PoE:1440W)
S5720-32P-EI-AC <50.7W  
S5720-52P-EI-AC <60.3W

S5700-52P-PWR-LI<464.5W (PoE: 370W)

S5720-36C-EI-AC <75.8W

S5720-36C-PWR-EI-AC :
without PD: <78W,
with PD: <864.3W(PoE:740W)

S5720-36PC-EI-AC<74.6W
S5720-36C-EI-28S-AC<83.9W
S5700-28X-LI<42W

S5720-56C-EI-AC<86.9W

S5700-28X-LI-24S<54W S5720-56C-PWR-EI-AC:
without PD: <91.6W,
with PD:<889.4W(PoE:740W)

S5700-28X-PWR-LI-AC <448.8W (PoE: 370W)

S5720-56C-PWR-EI-AC1:
without PD: <91.6W,
with PD:<1564.8W(PoE:1440W)
S5700-52X-LI<61W S5720-56PC-EI-AC<85.7W

S5700-52X-PWR-LI-AC <479.3W (PoE: 370W)

S5720-56C-EI-48S-AC<104W
S5700-28P-LI-BAT/S5700-28P-LI-4AH<23W S5720-32X-EI-AC <51.9W
S5700-28P-LI-24S-BAT/S5700-28P-LI-24S-4AH<34.1W S5720-32X-EI-24S-AC<58.9W
S5700-52X-LI-48CS-AC<79.9W S5720-50X-EI-AC<55.3W
S5701-28X-LI-AC <39.5W S5720-50X-EI-46S-AC<81.5W
S5701-28X-LI-24S-AC<60W S5720-52X-EI-AC <61.5W

Q&A

Questions & Answers

What are common troubleshooting steps for the S5700-52C-PWR-EI-AC?

Common steps include checking power connections, verifying port configurations, and ensuring firmware is up to date. Refer to the user manual for detailed troubleshooting.

What accessories are available for the S5700-52C-PWR-EI-AC?

Accessories include mounting kits, additional power supplies, SFP modules, and console cables.

How does the S5700-52C-PWR-EI-AC compare to similar products?

The S5700-52C-PWR-EI-AC offers competitive PoE+ support and high port density, often at a lower price point compared to similar switches from other manufacturers.

Can the S5700-52C-PWR-EI-AC be used in a data center?

Yes, its high port density and PoE+ capabilities make it suitable for small to medium-sized data centers to connect a variety of devices.

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