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RG-S5310-48GT4XS-P-E 48-Port GE Electrical Layer 3 Managed Access Switch with PoE+, Four 10G Uplink Ports

Full Gigabit Ethernet Access Switch for Large-sized Networks, PoE+ Supported

Models

Series

Highlight Features

  • Rich port types, 48 x 1000 Mbps Ethernet ports, 4 x 10G optical ports for uplink
  • IEEE 802.3af and IEEE 802.3at compliant, PoE+ supported
  • VSU virtualization, flexible networking and high performance
  • Network security policies and real-time monitoring, delivering enhanced network robustness
  • Multiple management modes, simplified and easy network maintenance

Key Specification

Layer 3 Access Switch for 10G Uplink RG-S5310-48GT4XS-P-E

Full-gigabit access switch for large-sized enterprise and campus LANs, with four 10G uplink optical ports for high-speed data transmission 48 x 1000 Mbps Ethernet ports with auto-negotiation, PoE+ supported, providing high-speed network experience for short-distance services

PoE+ Supported, Powering Different Terminal Devices

The switch automatically detects and supplies the required power for powered devices, providing up to 15.4 W for IEEE 802.3af-compliant devices, or up to 30 W for IEEE 802.3at-compliant devices, meeting the requirements of common PoE applications such as security surveillance, teleconferencing, and wireless coverage.

VSU Virtualization, Flexible Networking and High Performance

Millisecond Failover

High Scalability

Simplified Networking

The VSU connects to peripherals through an aggregate link, realizing service switching in milliseconds upon a failure.

Network Security Policies and Real-Time Monitoring, Delivering Enhanced Network Robustness

CPU Protect Policy (CPP) is supported to control the packet type and traffic volume sent to the CPU to prevent high CPU usage. Network Foundation Protection Policy (NFPP) is supported to isolate users with attacker behaviors to ensure network security and stability.

Managed by the INC Controller to Achieve Easy and Efficient O&M Management

The switch automatically completes registration and
configuration after it accesses the all-optical network, achieving
plug and play, no commissioning and fast onboarding.
A switch can be flexibly replaced based on service needs
without reconfiguration. Service ports supports auto-sensing,
achieving automatic O&M.

Fast Onboarding

Zero Touch Replacement

FAQ

Tips: Product information and performance will be affected by upgrade iteration, specific environment and other factors, so FAQ content is for reference only. For further information, please contact online support.

Documents

Specifications

Hardware Specifications

Hardware Specifications

RG-S5310-24GT4XS-E

RG-S5310-24GT4XS-P-E

RG-S5310-48GT4XS -E

RG-S5310-48GT4XS-P-E

RG-S5310-24SFP4XS-E

RG-S5310-48SFP4XS-E

Interface Specifications

Fixed port

24 x 10/100/1000 BASE-T ports

4 x 1G/10G SFP+ ports

24 x 10/100/1000 BASE-T ports

4 x 1G/10G SFP+ ports

IEEE 802.3af and 802.3at

48 x 10/100/1000 BASE-T ports

4 x 1G/10G SFP+ ports

48 x 10/100/1000 BASE-T ports

4 x 1G/10G SFP+ ports

IEEE 802.3af and 802.3at

24 x 1000M SFP ports

4 x 1G/10G SFP+ ports

 

48 x 1000M SFP ports

4 x 1G/10G SFP+ ports

 

Power module

2 x power modules (1+1 redundancy of power modules)

2 x power modules (1+1 redundancy of power modules)

2 x power modules (1+1 redundancy of power modules)

2 x power modules (1+1 redundancy of power modules)

2 x power modules (1+1 redundancy of power modules)

2 x power modules (1+1 redundancy of power modules)

Management port

1 x MGMT port, 1 x console port, and 1 x USB 2.0 port

System Specifications

Switching Capacity

128 Gbps

128 Gbps

176 Gbps

176 Gbps

128 Gbps

176 Gbps

Packet Forwarding Rate

96 Mpps

96 Mpps

132 Mpps

132 Mpps

96 Mpps

132 Mpps

Number of MAC addresses

32,000

ARP table size

4k/16k (authorized)

ND table size

2k/8k (authorized)

Number of IPv4 unicast routes

8k/12k (authorized)

Number of IPv4 multicast routes

2,500

Number of IPv6 unicast routes

4,000

Number of IPv6 multicast routes

1,200

Number of ACEs

Ingress: 3,500

Egress: 1,500

Number of IGMP groups

2,500

Number of MLD groups

1,000

Number of VSU members

8

8

8

8

8

8

Dimensions and Weight

Dimensions (W x D x H)

442 mm x 420 mm x 43.6 mm (17.40 in. x 16.56 in. x 1.72 in.), 1 RU

Weight

4.2 kg (9.26 lbs)

4.3 kg (9.48 lbs)

4.3 kg (9.48 lbs)

4.6 kg (10.14 lbs)

4.2 kg (9.26 lbs)

4.5 kg (9.92 lbs. )

CPU and Storage

CPU

1.2 GHz dual-core processor

BOOTROM

16 MB

Flash

2 GB

SDRAM 

1 GB

Power and Consumption

Maximum power consumption

≤ 40 W

< 85 W (non-PoE)

< 810 W (PoE full load)

≤ 55 W

< 75 W (non-PoE)

< 1,570 W (PoE full load)

≤ 85 W

≤ 108 W

Maximum output power

RG-PA70IB: 70 W

RG-PA150IB-F: 150 W

RG-PD150IB-F: 150 W

RG-PA600I-P-F: 600 W (PoE: 370 W)

RG-PD600I-P-F: 600 W (PoE: 370 W)

RG-PA1000I-P-F: 176–290 V AC, 1000 W; 90–176 V AC, 930 W (PoE: 740 W)

RG-PA70IB: 70 W

RG-PA150IB-F: 150 W

RG-PD150IB-F: 150 W

RG-PA600I-P-F: 600 W (PoE: 370 W)

RG-PD600I-P-F: 600 W (PoE: 370 W)

RG-PA1000I-P-F: 176–290 V AC, 1000 W; 90–176 V AC, 930 W (PoE: 740 W)

RG-PA70IB: 70 W

RG-PA150IB-F: 150 W

RG-PD150IB-F: 150 W

RG-PA150IB-F: 150 W

RG-PD150IB-F: 150 W

Rated input voltage

RG-PA70IB: 100 V AC to 240 V AC

RG-PA150IB-F: 100 V AC to 240 V AC

RG-PD150IB-F: -48 V DC to -60 V DC

RG-PA600I-P-F: 200 V AC to 240V AC

RG-PD600I-P-F: -60V DC to -48V DC

RG-PA1000I-P-F: 200 V AC to 240V AC

RG-PA70IB: 100 V AC to 240 V AC

RG-PA150IB-F: 100 V AC to 240 V AC

RG-PD150IB-F: -48 V DC to -60 V DC

RG-PA600I-P-F: 200 V AC to 240 V AC

RG-PD600I-P-F: -48 V DC to -60 V DC

RG-PA1000I-P-F: 200 V AC to 240V AC

RG-PA70IB: 100 V AC to 240 V AC

RG-PA150IB-F: 100 V AC to 240 V AC

RG-PD150IB-F: -48 V DC to -60 V DC

RG-PA150IB-F: 100 V AC to 240 V AC

RG-PD150IB-F: -48 V DC to -60 V DC

Maximum input voltage

RG-PA70IB: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PA150IB-F: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PD150IB-F: -75 V DC to -36 V DC

RG-PA600I-P-F: 176AC to 264V AC, 50 Hz to 60 Hz

RG-PD600I-P-F: -75V DC to -38 V DC

RG-PA1000I-P-F: 176AC to 264V AC, 50 Hz to 60 Hz

RG-PA70IB: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PA150IB-F: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PD150IB-F: -36 V DC to -75 V DC

RG-PA600I-P-F: 176 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PD600I-P-F: -38V DC to -75 V DC

RG-PA1000I-P-F: 176 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PA70IB: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PA150IB-F: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PD150IB-F: -36 V DC to -75 V DC

RG-PA150IB-F: 90 V AC to 264 V AC, 50 Hz to 60 Hz

RG-PD150IB-F: -36 V DC to -75 V DC

Environment and Reliability

MTBF

44.03 years (dual power modules) 24.85 years (single power module)

40.67 years (dual power modules)

23.74 years (single power module)

40.03 years (dual power modules)

23.53 years (single power module)

35.97 years (dual power modules)

22.06 years (single power module)

35.27 years (dual power modules)

21.08 years (single power module)

33.03 years (dual power modules)

20.92 years (single power module)

Primary airflow

Left/Front-to-rear airflow

Operating temperature

0°C to 45°C (32°F to 113°F)

Storage temperature

–40°C to +70°C (–40°F to +158°F)

Operating humidity

10% to 90% RH (non-condensing)

Storage humidity

5% to 95% RH (non-condensing)

Operating altitude

0 m to 5000 m (16404.20 ft.)

Operating noise

< 56.5 dB

< 57.4 dB

< 52.4 dB

< 58.3 dB

< 53.7 dB

< 53.7 dB

Interface surge protection

Power port: 6 kV

Telecom port: 10 kV (MGMT port: 4 kV)

Power port: 6 kV

Telecom port: 10 kV (MGMT port: 4 kV)

Power port: 6 kV

Telecom port: 10 kV (MGMT port: 4 kV)

Power port: 6 kV

Telecom port: 10 kV (MGMT port: 4 kV)

Power port: 6 kV

Telecom port: 10 kV (MGMT port: 4 kV)

Power port: 6 kV

Telecom port: 10 kV (MGMT port: 4 kV)


Software Specifications

RG-S5310-E Series

Feature

Description

Ethernet Switching

IEEE 802.1Q (supporting 4K VLANs)

Jumbo frame (maximum length: 9,216 bytes)

Maximum number of VLANs that can be created: 4,094

Voice VLAN

Super VLAN and private VLAN

MAC address-based, port-based, protocol-based, and IP subnet-based VLAN assignment

GVRP

Basic QinQ and selective QinQ

STP (IEEE 802.1.d), RSTP (IEEE 802.1w), and MSTP (IEEE 802.1s)

Auto errdisable recovery

BPDU filter

BPDU guard

Port fast

Root guard

ERPS (G.8032)

LLDP/LLDP-MED, LLDP IPv6, and LLDP-POE

IP Service

Static and dynamic ARP, ARP proxy, and ARP entry timeout

DHCP client, DHCP relay, DHCP server, and DHCP snooping

DHCPv6 client, DHCPv6 relay, DHCPv6 server, and DHCPv6 snooping

DNS client, DNS proxy, and DNSv6 client

MAC address filtering

Setting the MAC address aging time

Neighbor Discovery (ND), ND proxy, and ND snooping

GRE tunnel

IP Routing

IPv4 and IPv6 static routing

RIP and RIPng

OSPFv2, OSPFv3, and GR

IS-ISv4 and IS-ISv6

BGP4 and BGP4+

IPv4/IPv6 VRF

IPv4/IPv6 PBR

Multicast

IGMPv1/v2/v3

IGMPv1/v2 snooping

IGMP fast leave

PIM-DM, PIM-SM, PIM-SSM, PIM SMv6, and PIM-SSMv6

MSDP for inter-domain multicast

MLDv1/v2 and MLD proxy

MLDv1/v2 snooping

PIM-SMv6

Multicast source IP address check

Multicast source port check

Multicast querier

ACL and QoS

Standard IP ACLs (hardware ACLs based on IP addresses)

Extended IP ACLs (hardware ACLs based on IP addresses or TCP/UDP port numbers)

Extended MAC ACLs (hardware ACLs based on source MAC addresses, destination MAC addresses, and optional Ethernet type)

Expert-level ACLs (hardware ACLs based on flexible combinations of the VLAN ID, Ethernet type, MAC address, IP address, TCP/UDP port number, protocol type, and time range)

Time based ACLS, ACL 80, and IPv6 ACL

Global ACLs

ACL redirection

Port traffic identification

Port traffic rate limiting

802.1p/DSCP/ToS traffic classification

Congestion management: SP, WRR, DRR, WFQ, SP+WFQ, SP+WRR, SP+DRR, and SP+WFQ

Congestion avoidance: tail drop, RED, and WRED

Eight priority queues per port

Rate limiting in each queue

Security

Multiple AAA modes

RADIUS authentication and authorization

RADIUS and TACACS+

IEEE802.1X authentication, MAC address bypass (MAB) authentication, and interface-based and MAC address-based 802.1X authentication

Web authentication

Hypertext Transfer Protocol Secure (HTTPS)

SSHv1 and SSHv2

Global IP-MAC binding

ICMPv6

Port security

IP source guard

SAVI

ARP spoofing prevention

CPP and NFPP

Multiple attack defense functions

3-tuple binding (IP address, MAC address, and port)

3-tuple binding (IPv6 address, MAC address, and port)

Filtering of invalid MAC addresses

Port- and MAC address-based 802.1x authentication

MAB authentication

Portal authentication and Portal 2.0 authentication

ARP check

DAI

ARP packet rate limiting

Gateway ARP spoofing prevention

Broadcast storm suppression

Hierarchical management of administrators and password protection

BPDU guard

Port protection

Reliability

REUP

RLDP

RLDP, Layer 2 link connectivity detection, and unidirectional link detection

DLDP

IPv4 VRRP v2/v3, IPv6 VRRP, and super-VLAN for VRRP

BFD, RAS, NSR, VRRR, VRRP+, and SDN loop detection

Basic LACP

Inter-VSU AP

Link monitoring, fault notification, and remote loopback based on 802.3ah (EFM)

Hot swapping of power modules

Device virtualization

VSU

Local and remote stacking

Inter-chassis link binding in a stack

Virtualization through standard service interfaces

NMS and maintenance

RSPAN and ERSPAN

sFlow

NTP client, NTP server, NTPv6 client, and NTPv6 server

SNTP

CLI (Telnet/Console)

FTP client, FTP server, FTPv6 client, and FTPv6 server

TFTP client, TFTP server, TFTPv6 client, and TFTPv6 server

FTP and TFTP

SNMP v1/v2/c3

Web

Syslog/Debug

RMON (1, 2, 3, 9)

Various types of RMON groups, including event groups, alarm groups, history groups, and statistics groups, as well as private alarm extension groups

RMON used to implement Ethernet statistics, historical statistics, and alarm functions

NETCONF

MACC

CWMP

gRPC

OpenFlow Special 1.3

Flow table analysis defined by all protocols

Transmission of specified packets to the controller

Configuring the controller's IP address and port

Notifying port status changes to the controller

RNS, configuration rollback, and 802.3ah

1:1 mirroring

N:1 mirroring

1:N mirroring

Flow-based local and remote mirroring

VXLAN

VXLAN (authorized)

PoE

RG-S5310-24GT4XS-P-E and RG-S5310-48GTXS-P-E:

IEEE 802.3af and 802.3at power supply standards

Automatic and energy-saving power supply management modes

Uninterrupted power supply in hot start mode

Scheduled power-on or power-off of PoE ports based on the time policy

Port priority



Order Information

Model

Description

RG-S5310-24GT4XS-E

24 x 10/100/1000M BASE-T ports, 4 x 1G/10G SFP+ ports

RG-S5310-24GT4XS-P-E

24 x 10/100/1000M BASE-T ports, 4 x 1G/10G SFP+ ports, supporting PoE and the maximum PoE output power of 740 W.

RG-S5310-48GT4XS-E

48 x 10/100/1000M BASE-T ports, 4 x 1G/10G SFP+ ports

RG-S5310-48GT4XS-P-E

48 x 10/100/1000M BASE-T ports, 4 x 1G/10G SFP+ ports, supporting PoE and the maximum PoE output power of 1440 W

RG-S5310-24SFP4XS-E

24 x 1000M SFP ports, 4 x 1G/10G SFP+ ports

RG-S5310-48SFP4XS-E

48 x 1000M SFP ports, 4 x 1G/10G SFP+ ports

RG-PA70IB

70 W AC power module

RG-PA150IB-F

150 W AC power module

RG-PA600I-P-F

600 W AC power module, PoE power module

RG-PA1000I-P-F

1,000 W AC power module, PoE power module

RG-VXLAN-MPLS-ENTRY-LIC

S5310E series, software license for VXLAN, MPLS, routing table, and ARP table

Mini-GBIC-GT

1000BASE-GT mini GBIC module

Mini-GBIC-SX-MM850

Single-port 1000BASE-SX mini GBIC module (LC)

Mini-GBIC-LX-SM1310

Single-port 1000BASE-LX mini GBIC module (LC)

Mini-GBIC-LH40-SM1310

Single-port 1000BASE-LH mini GBIC module (LC), supporting a transmission distance of 40 km

Mini-GBIC-ZX100-SM1550

1000BASE-ZX mini GBIC module, supporting a transmission distance of 100 km

XG-SFP-SR-MM850

10G LC interface module (62.5/125 μm: 33 m; 50/125 μm: 66 m; 300-meter transmission at modal bandwidth of 2000 MHz•km), applicable to SFP+ ports

XG-SFP-LR-SM1310

10G LC interface module (1310 nm), 10 km, applicable to SFP+ ports

XG-SFP-ER-SM1550

10G LC interface module (1550 nm), 40 km, applicable to SFP+ ports

Note: The item marked with the asterisk (*) will be available in the future.

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