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DG-S5360-48GP4X-740W - Layer 3 10G 48 Ports PoE Switch 4 SFP+

Enterprise Layer 3 PoE switch with 48 Gigabit PoE ports, 4 × 10G SFP+ uplinks, and a 740 W PoE budget. Dual hot-swappable DG-PA600-I-F power supplies ensure high availability for business-critical networks.

DG-S5360-48GP4X-740W
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DG-S5360-48GP4X-740W Layer 3 PoE Switch – Enterprise Performance with Redundant Power and 10G Uplinks

The DG-S5360-48GP4X-740W is an enterprise-grade Layer 3 Gigabit PoE switch from Data General, designed for professional deployments that require high reliability, centralized PoE power, and high-speed uplinks, without oversizing the power budget. It is ideally positioned for medium-to-large projects where performance, resilience, and scalability are essential.

This model is equipped with 48 Gigabit Ethernet PoE ports and 4 × 10G SFP+ uplink ports, providing high-density access connectivity and fast aggregation to the network core. With a 740 W PoE power budget, the DG-S5360-48GP4X-740W can reliably power a large number of WiFi 6 / WiFi 6E access points, IP cameras, VoIP phones, access control systems, and IoT devices, making it a balanced and efficient choice for enterprise networks.

A key feature of this switch is its dual redundant, hot-swappable power supply design, operating with two DG-PA600-I-F power supply units (equivalent to RG-PA600-I-F). This configuration ensures power redundancy and uninterrupted operation, allowing maintenance or power module replacement without network downtime—an essential requirement in business-critical environments.

Thanks to its Layer 3 capabilities, the DG-S5360-48GP4X-740W supports advanced routing, VLAN segmentation, and traffic management directly at the switch, improving network efficiency and simplifying overall architecture. The 10G SFP+ uplinks ensure high-throughput, low-latency connectivity, preventing bottlenecks in networks with heavy wireless traffic and data-intensive applications.

The DG-S5360-48GP4X-740W is ideally suited for hotels, hospitals, university campuses, large offices, industrial facilities, retail chains, and enterprise WiFi deployments, where redundancy, performance, and controlled PoE capacity are required. It offers the same enterprise feature set as higher-power models, with a more optimized PoE output for projects that do not require maximum wattage.

By combining Layer 3 intelligence, redundant hot-swappable power supplies, strong PoE capacity, and 10G uplinks, the DG-S5360-48GP4X-740W delivers a robust, scalable, and future-ready switching solution for professional and enterprise networks.

  • Multiple port types with full gigabit access, flexible 10GE uplink, and PoE/PoE+ for enhanced speed and performance.
  • Nano Coating Protection for Enhanced Durability.
  • Hot-pluggable Dual Power Modules for Higher Reliability.
  • Stronger Interference Resistance with Wide Temperature Range & 10kV Surge Protection.
  • 48 × 10/100/1000BASE-T ports, supporting PoE/PoE+.
  • 4 x 10GE SFP+ ports.
  • Nano Coating Protection for Enhanced Durability.
  • Hot-pluggable Dual Power Modules for Higher Reliability.
  • Stronger Interference Resistance with Wide Temperature Range & 10kV Surge Protection.

 

Hardware Specifications
Port specifications DG-S5360-48GP4X-740W
Fixed service port 48 x 10/100/1000BASE-T ports, supporting PoE/PoE+
4 x 1GE/2.5GE/10GE SFP+ ports
Module slot 2 x power module slots
Power module PA600IP-F
PA1000IP-F
(supporting mixed insertion)
Fixed management port 1 x RJ45 console port
USB 1 x USB 2.0 port
System specifications
System packet forwarding
rate*1
158 Mpps
System switching capacity*2 211 Gbps
CPU Dual-core CPU, each core with the clock speed of 1.0 GHz
Real-time clock (RTC) Supported
BootROM 16 MB (storing boot software for 1+1 boot redundancy)
Flash memory 512 MB
Memory 1GB DDR4
Switch buffer 4 MB
Number of MAC addresses 16000
ARP table size 4000
ND table size 4000
Number of IPv4 unicast routes 6000
Number of IPv4 multicast
routes
1000
Number of IPv6 unicast routes 2000
Number of IPv6 multicast
routes
750
Number of ACEs Ingress: 1,750
Egress: 800
Number of IGMP groups 1000
Number of MLD groups 750
Number of VSU members 8
*1 means the system’s packet forwarding rate.
*2 means the system’s switching capacity.
Power supply and consumption
Power supply 2 x pluggable power modules
Power module redundancy Only when the PoE load of the whole device is less than PoE output power of single power supply and dual power supplies are used, redundancy is supported.
Power input DG-PA600I-P-F (AC input):
· Rated input voltage: 100 V
AC to 240 V AC, 50/60 Hz
· Maximum input voltage: 90 V
AC to 264 V AC, 47 Hz to 63 Hz
· Maximum input current: 8 A
DG-PA1000I-P-F (AC input 1):
· Rated input voltage: 100 V
AC to 130 V AC, 50/60 Hz
· Maximum input voltage: 90 V
AC to 143 V AC, 47 Hz to 63 Hz
· Maximum input current: 12 A
DG-PA1000I-P-F (AC input 2):
Rated input voltage: 200 V AC
to 240 V AC, 50/60 Hz
Maximum input voltage: 180 V
AC to 264 V AC, 47 Hz to 63 Hz
Maximum input current: 8 A
Maximum output
power
DG-PA600I-P-F: 600 W
DG-PA1000I-P-F:
100 V AC to 130 V AC: 930 W
200 V AC to 240 V AC: 1000 W
Note: When the ambient
temperature is higher than 55°C (131°F), the maximum output power is reduced
by 50%.
PoE port Ports 1 to 48 support PoE/PoE+ (IEEE802.3af/at) power supply
PoE power cable pairs Mode A (1-2, 3-6 pairs)
PoE output power Each PoE port provides up to 30 W of power.
The maximum power depends on
the configured power supply.
1 x DG-PA600I-P-F: 370 W
2 x DG-PA600I-P-F: 740 W;
1 x DG-PA1000I-P-F: 740 W;
2 x DG-PA1000I-P-F: 1480 W;
a maximum output of 1440 W
over 48 ports (30 W x 48)
Note:
The maximum number of powered devices supported by the switch is determined
by the available power of the switch and the actual power consumption of each
device.
Maximum power
consumption
45 W (without PoE load)
1485 W (full PoE load)
Energy saving Supported
Dimensions and weight
Unit dimensions (W x D x H) 442mm x 420 mm x 43.6 mm (17.40 in. x 16.53 in. x 1.72 in.)
Rack height 1 RU
Unit weight 4.9 kg (10.80 lbs)
Mounting Mounting on a workbench or in a rack (cabinet)
Environment and reliability
Temperature Operating temperature: -40°C to +65°C (-40°F to +149°F) at an
altitude range of 0 m to 1,800 m (0 ft. to 5,905.51 ft.)
Note:
At an altitude between 1,800 m (5,905.51 ft.) and 5,000 m (16,404.20 ft.), every time the altitude increases by 220 m (721.78 ft.), the maximum
temperature decreases by 1°C (1.8°F).
When three or four 80-km long-reach optical transceivers are configured, the
operating temperature range is –40°C to +50°C (–40°F to
+122°F).
Storage temperature: –40°C to
+70°C (–40°F to +158°F)
Humidity Operating humidity: 10% to 90% RH (non-condensing)
Storage humidity: 5% to 95% RH
(non-condensing)
Altitude Operating altitude: -500 m to +5,000 m (-1640.42 ft. to
+16,404.20 ft.)
Storage altitude: -500 m to
+5,000 m (-1640.42 ft. to +16,404.20 ft.)
Mean time between failure
(MTBF)
200,253 hours (about 22 years)
Fan
Heat dissipation
Acoustic noise SPL at ambient
temperature of 27°C (80.6°F): 36 dB (30% PoE load, 2 DG-PA1000I-P-F power
modules, adjusted fan speed)
Power module hot swapping Supported
USB hot swapping Supported
Cable hot swapping Supported by all ports
Fan monitoring PID-based multi-level speed adjustment
Fan speed control (manual
configuration not supported)
Fan failure alarming
Temperature monitoring Supported
ESD ESD contact/air discharge: 6 kV/8 kV
ESD susceptibility contact/air
discharge: 8 kV/15 kV
Surge protection Service port: common mode 10 kV
Power port: common mode 6 kV,
differential mode 6 kV
Certifications and regulatory
compliance
DG-S5360-48GP4X-1440W
Safety regulation IEC 62368-1
EMC regulation EN 300386, EN 55032 ClassA, EN 55035, EN IEC 61000-3-2, EN 61000-3-3, EN 61000-4-2, EN 61000-4-3, EN
61000-4-4, EN 61000-4-5, EN 61000-4-6, EN 61000-4-11
RoHS European RoHS Directive 2011/65/EU & Amendment(EU) 2015/863
Software Specifications
Feature Description
Ethernet
switching
Jumbo frame (maximum length: 9,216 bytes)
IEEE 802.3az EEE
IEEE 802.1Q (4,000 VLANs)
Voice VLAN
Super VLAN and private VLAN
MAC address-based VLAN,
interface-based VLAN, protocol-based VLAN, and IP subnet-based VLAN
GVRP
Basic QinQ
Selective QinQ
STP, RSTP, and MSTP
ERPS (G.8032)
LLDP/LLDP-MED
IP service ARP
DHCP client, DHCP relay, and
DHCP server
DHCP snooping
DNS
DHCPv6 client, DHCPv6 relay,
and DHCPv6 server
DHCPv6 snooping
Neighbor Discovery (ND) and ND
snooping
IP routing Static routing
RIP and RIPng
OSPFv2 and OSPFv3
BGP4 and BGP4+
IPv4 and IPv6 VRF
IPv4 and IPv6 PBR
Multicast IGMP v1/v2/v3, and IGMP proxy
IGMP v1/v2 snooping
PIM-DM, PIM-SM, and PIM-SSM
MSDP
MLD v1/v2
MLD snooping v1/v2
PIM-SMv6 and PIM-SSM v6
ACL and QoS Standard IP ACLs
Extended IP ACLs
Extended MAC ACLs
Time-based ACLs
Expert-level ACLs
ACL80
IPv6 ACL
ACL redirection
Traffic rate limiting on an
interface
Congestion management: RR, SP,
WRR, DRR, WFQ, SP+WRR, SP+DRR, and SP+WFQ
Congestion avoidance: tail
drop
802.1p/DSCP/ToS traffic
classification
Eight priority queues per
interface
Security Multiple AAA modes
RADIUS and TACACS+
Interface-based and MAC
address-based 802.1x authentication
Web authentication
HTTPS
SSHv1 and SSHv2
Global IP-MAC binding
Port isolation and port
security
IP source guard
SAVI
CPP and NFPP
Reliability REUP, RLDP, DLDP
IPv4 VRRP v2/v3 and IPv6 VRRP
BFD
Link tracing, fault
notification, and remote loopback based on 802.3ah (EFM)
Dual-boot redundancy
Fan speed adjustment
Fan fault alarm
Device virtualization Virtual Switching Unit (VSU)
NMS and
maintenance
SPAN, RSPAN
sFlow
NTP and SNTP
FTP and TFTP
SNMP v1/v2/v3
RMON (1, 2, 3, 9)
NETCONF
CWMP (TR-069)
gRPC
PoE IEEE 802.3af and 802.3at
Warm start
Interface priority