CloudEngine S5755-H series High-Quality Multi-GE Switches are brand-new full-1/2.5/5/10GE switches developed by Huawei for the Wi-Fi 6/Wi-Fi 7. Building on Huawei's unified Platform, the CloudEngine S5755-H implements the data plane through ASICs and boasts various IDN features. For example, the VXLAN functionality implements network virtualization. With these merits, the CloudEngine S5755-H can function as core switches for small-sized campus networks and branches of medium- and large-sized campus networks, and also work as access switches for Metropolitan Area Network. CloudEngine S5755-H can provide a maximum of 48 10GE Multi-GE ports, which is a good choice for WLAN APs to connect to a switch in the high-quality campus networks.
Specification of S5755-H24UTM4X4Y2C
Ports
12 × 10/100/1000M Base-T Ethernet ports, 12 ×100M/1/2.5/5/10G Base-T Ethernet ports, 4 x 1/10GE SFP+, 4 x 1/10/25GE SFP28, 2 x 40/100GE QSFP28 ports
Dimensions (H x W x D, mm)
43.6 x 442 x 335
Chassis height
1 U
Chassis weight (including packaging)
7.53kg
ETH port
Supported
Console port (RJ45)
Supported
USB port
USB 2.0
CPU Frequency
2 GHz
CPU Cores
4
Memory (RAM)
4 GB
Flash memory
2 GB
Power supply type
600 W PoE AC (pluggable)
1000 W PoE AC (pluggable)
1000 W PoE DC (pluggable)
Rated voltage range
AC input : 100 V AC to 130V AC, 200 V AC to 240 V AC, 50/60 Hz
High-Voltage DC input: 240V DC
DC input : -48 VDC to -60 V DC
Maximum voltage range
AC input: 90 V AC to 290V AC, 45 Hz to 65 Hz
High-Voltage DC input: 190V DC to 290V DC
DC input: -38.4V DC to -72V DC
Maximum power consumption
100% traffic under the ATIS standard, dual power supplies, and without PoE:
135 W (all ports used)
124 W (2 x 100GE ports not used)
Full PoE load, two 1000 W power modules: 1823 W (PoE:1645 W)
Typical power consumption
30% traffic under the ATISstandard, dual power supplies:
128 W (all ports used)
117 W (2 x 100GE ports not used)
Static power consumption
74 W
Heat dissipation mode
Air cooling for heat dissipation, intelligent fan speed adjustment
Number of fan modules
2
Airflow
Air intake from left, front, and right and air exhaust from rear
Maximum heat dissipation of the device
100% traffic under the ATIS standard, dual power supplies, and without PoE:
460.63 (all ports used)
423.10 (2 x 100GE ports not used)
Full PoE load, two 1000W power modules: 6220.26
Long-term operating temperature
0-1800 m: -5°C to 45°C
1800-5000 m: The operating temperature decreases 1°C every time the altitude increases 220 m
Short-term operating temperature
0-1800 m: -5°C to 50°C
1800-5000 m: The operating temperature decreases 1°C every time the altitude increases 220 m
Storage temperature
-40°C to +70°C
Relative humidity
5%–95% (non-condensing)
Operating altitude
5000 m
Noise at normal temperature(acoustic power)
30% PoE load: 51.70 dBA
Noise at normal temperature(acoustic pressure)
30% PoE load: 39.7 dBA
Surge protection specification(power port)
AC power port: ±6 kV in differential mode, ±6 kV in common mode
DC power port: ±2 kV in differential mode, ±4 kV in common mode
MTBF (years)
59.77
MTTR(hours)
2
Availability
> 0.99999
Certification
EMC certification
Safety certification
Manufacturing certification
What is a Switch? A switch is a device that enables communication between two or more IT devices, such as computers, servers, printers, and more. It helps devices within a network share resources, including printers, file storage, internet access, and application processing. In simple terms, a switch acts as a "traffic hub" in a network.
Key Characteristics:
Intelligent Forwarding: Unlike a basic hub, a switch intelligently directs data packets only to the intended recipient device based on MAC addresses.
Efficient Communication: This targeted data transmission reduces unnecessary traffic, enhances network performance, and improves security within the local network.
Scalability: Switches come in various sizes, from small desktop models for home/office use to large modular switches for enterprise data centers.
Common Applications:
Connecting devices within a Local Area Network (LAN)
Building enterprise networks, data centers, or home networks
Supporting resource sharing and collaborative workflows
In summary, a switch is a fundamental networking device that efficiently manages and directs data flow, ensuring smooth and reliable communication between connected devices.
Core Functions of a Switch The primary functions of a switch include:
VLAN Segmentation – Enhances network security by isolating traffic into separate virtual networks.
Targeted Forwarding – Improves network performance by accurately identifying and forwarding data only to the intended destination device.
Traffic Control – Optimizes network reliability and stability through mechanisms like Quality of Service (QoS) and loop prevention (e.g., Spanning Tree Protocol).
Link Aggregation – Increases bandwidth and provides redundancy by combining multiple physical links into a single logical channel.
Working Principle of a Switch A switch operates at either the Data Link Layer (Layer 2) or the Network Layer (Layer 3) of the OSI model:
Layer 2 Switch: Forwards data based on MAC addresses.
Layer 3 Switch: Forwards data based on IP addresses.
A switch continuously learns the MAC addresses of connected devices and records them in its MAC address table. The core processes include:
Learning: Records the source MAC address and its corresponding port.
Forwarding: Precisely forwards frames to the destination port based on the target MAC address.
Flooding: If the target MAC address is not found in the table, the switch broadcasts the frame to all ports (except the source port).
Update: Periodically refreshes the MAC address table to ensure accuracy and remove stale entries.