● Model No.:S5736-S48S4X-A
● Size:43.6*442*220mm
● Port details: 48*GE SFP ports, optional RTU upgrade to 10G, 4*10GE SFP+ ports, AC power supply, front access
● Place of Origin: Guangdong, China
● Place of use: LACP, QoS, SNMP, Stackable, VLAN Support
● PoE: Not Supported
● Warranty: 1years
● MOQ: 1 pieces
Trade Information
1. Full optical convergence/access in large and medium-sized enterprise parks
High density all-optical access: As an access layer switch, it can access a large number of terminals that require fiber optic connections, such as high-performance desktops, servers, fiber optic cameras, etc. equipped with fiber optic network cards, through 48 Gigabit SFP optical ports, providing stable, high-speed, and anti-interference network connections.
Aggregation access: It can also serve as an aggregation layer switch, connecting multiple access switches through fiber optic cables to aggregate data traffic and upload it to the core network through a 10 gigabit uplink port
2. Edge access to metropolitan area networks or data centers
Metropolitan area network access: It can serve as an access device for the metropolitan area network, providing fiber optic dedicated line access for government and enterprise users.
Data center edge: In small and micro data centers or large data centers, it can serve as an access switch, providing high-speed fiber optic connections for servers, storage devices, etc., meeting the bandwidth requirements of virtualization, high-performance computing, and other businesses
Introduction
1.48 full gigabit optical ports, high-density access: Provides 48 gigabit SFP ports, perfectly adapted to various terminals that require fiber optic access, providing longer transmission distances and stronger anti-interference capabilities than electrical ports.
2. RTU elastic upgrade, investment protection: This is one of the biggest differences from the 25736-S4XC. Based on the innovative RTU model, in the future, downstream ports can be smoothly upgraded from gigabit to 10G according to business growth, without the need for hardware replacement, maximizing the protection of existing network investments.
3. High performance forwarding: The packet forwarding rate is as high as 810Mpps, the switching capacity is 2.72/27.2 Tbps, and the performance is more than twice that of the 25736-S4XC, which can easily meet the traffic forwarding requirements during high-density access.
4. Rich three-layer features: Supports advanced three-layer routing protocols such as OSPF and BGP, which can meet the requirements for carrying voice, video, and other services in large networks.
5. Intelligent operation and maintenance: Supports real-time collection of device data using Telemetry technology, combined with Huawei iMaster NCE campus network analysis component CampusInsight, to achieve active monitoring of network quality and rapid fault location.
6. Minimalist deployment: Supports SVF super virtual switching network function, which can be used as a plug and play client device to achieve automated business distribution and significantly reduce operation and maintenance costs
Detailed description
| Item | Specification |
|---|---|
| Dimensions without packaging (H x W x D) [mm(in.)] |
Basic dimensions (excluding the parts protruding from the body): 43.6 mm x 442.0 mm x 220.0 mm (1.72 in. x 17.4 in. x 8.66 in.) Maximum dimensions (the depth is the distance from ports on the front panel to the parts protruding from the rear panel): 43.6 mm x 442.0 mm x 228.0 mm (1.72 in. x 17.4 in. x 9.0 in.) |
| Dimensions with packaging (H x W x D) [mm(in.)] | 90.0 mm x 555.0 mm x 345.0 mm (3.54 in. x 21.85 in. x 13.58 in.) |
| Chassis height [U] | 1 U |
| Chassis material | Metal |
| Weight without packaging [kg(lb)] | 3.6 kg (7.9 lb) |
| Weight with packaging [kg(lb)] | 4.7 kg (10.36 lb) |
| Typical power consumption [W] | 87 W |
| Typical heat dissipation [BTU/hour] | 296.85 BTU/hour |
| Maximum power consumption [W] | 111 W |
| Maximum heat dissipation [BTU/hour] | 378.74 BTU/hour |
| Static power consumption [W] | 39 W |
| MTBF [years] | 41.97 years |
| Availability | > 0.99999 |
| Noise at normal temperature (acoustic power) [dB(A)] | 56.8 dB(A) |
| Noise at normal temperature (acoustic pressure) [dB(A)] | 44.8 dB(A) |
| Number of card slots | 0 |
| Number of power slots | 0 |
| Number of fans modules | 3 |
| Redundant power supply | Not supported |
| Long-term operating temperature [°C(°F)] | -5°C to +45°C (23°F to 113°F) at an altitude of 0-1800 m (0-5906 ft.) |
| Short-term operating temperature [°C(°F)] | -5°C to +50°C (23°F to 122°F) at an altitude of 0-1800 m (0-5906 ft.) |
| Restriction on the operating temperature variation rate [°C(°F)] |
When the altitude is 1800-5000 m (5906-16404 ft.), the highest operating temperature reduces by 1°C (1.8°F) every time the altitude increases by 220 m (722 ft.). The equipment can operate beyond the normal operating temperature range for a short-term period, but the following conditions must be met:
The equipment may be damaged or experience unexpected exceptions if any of the preceding limits is exceeded. The equipment cannot start when the temperature is lower than 0°C (32°F). The maximum distance of optical modules used in these conditions cannot exceed 10 km. |
| Storage temperature [°C(°F)] | -40°C to +70°C (-40°F to +158°F) |
| Long-term operating relative humidity [RH] | 5% RH to 95% RH, non-condensing |
| Long-term operating altitude [m(ft.)] | 0-5000 m (0-16404 ft.) |
| Storage altitude [m(ft.)] | 0-5000 m (0-16404 ft.) |
| Power supply mode | AC built-in |
| Rated input voltage [V] |
|
| Input voltage range [V] |
|
| Maximum input current [A] | 6.0 A |
| Memory | 2 GB |
| Flash memory | 1 GB in total. To view the available flash memory size, run the display version command. |
| Console port | RJ45 |
| Eth Management port | RJ45 |
| USB | Not supported |
| RTC | Supported |
| RPS input | Not supported |
| Service port surge protection [kV] | - |
| Power supply surge protection [kV] | ±6 kV in differential mode, ±6 kV in common mode |
| Ingress protection level (dustproof/waterproof) | IP20 |
| Types of fans | Built-in |
| Heat dissipation mode | Heat dissipation with fan, intelligent fan speed adjustment |
| Airflow direction | Air intake from left and front, air exhaustion from right |
| PoE | Not supported |
| Certification |
EMC certification Safety certification Manufacturing certification |
Email: Lilicheng0510@163.com