• S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch

S6730-H48X6C-V2 Switch

48x10GE SFP+ ports/6x40GE QSFP28 ports/optional license for upgrade to 6x100GE QSFP28/without power module
Model: S6730-H48X6C-V2

  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • S6730-H48X6C-V2 Switch
  • Description

  • Application Scenario

Huawei CloudEngine S6730-H48X6C-V2 series full-featured 10 GE switches are Huawei's new-generation fixed switches ,to provide 10 GE downlink ports as well as 100 GE uplink ports.

Specification of S6730-H48X6C-V2
Ports 48*10GE SFP+ ports, 6*40GE QSFP28 ports, optional license for upgrade to 6*100GE QSFP28, without power module
Dimensions without packaging (H x W x D)

Basic dimensions (excluding the parts protruding from the body): 43.6 mm x 442.0 mm x 420.0 mm (1.72 in. x 17.40 in. x 16.54 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 446.0 mm (1.72 in. x 17.40 in. x 17.56 in.)

Dimensions with packaging (H x W x D) 175.0 mm x 650.0 mm x 550.0 mm (6.89 in. x 25.59 in. x 21.65 in.)
Chassis height 1 U
Chassis material Metal
Weight without packaging 5.84 kg (12.87 lb)
Weight with packaging 9.2 kg (20.28 lb)
Typical power consumption 165 W
Typical heat dissipation 563 BTU/hour
Maximum power consumption

High temperature 45°C (113°F), 100% traffic, and dual power modules: 207 W

High temperature 45°C (113°F), 100% traffic, long-distance optical module, 100% fan speed, and dual power modules: 291 W

Maximum heat dissipation

High temperature 45°C (113°F), 100% traffic, and dual power modules: 706.30

High temperature 45°C (113°F), 100% traffic, long-distance optical module, 100% fan speed, and dual power modules: 992.92

Static power consumption 97 W
MTBF 56.87 years
Availability > 0.99999
Noise at normal temperature (acoustic power)  65 dB(A)
Noise at normal temperature (acoustic pressure) 52 dB(A)
Number of card slots 0
Number of power slots 2
Number of fans modules 4
Redundant power supply

1+1

Pluggable AC and DC power modules can be used together in the same switch.

Long-term operating temperature -5°C to +45°C (23°F to 113°F) at an altitude of 0-1800 m (0-5906 ft.)
Restriction on the operating temperature variation rate

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.).

Devices cannot start when the temperature is lower than 0°C (32°F).

When the QSFP-100G-ER4 optical module is used, the operating temperature ranges from -5°C to +40°C (23°F to 104°F).

Storage temperature -40°C to +70°C (-40°F to +158°F)
Long-term operating relative humidity 5% RH to 95% RH, non-condensing
Long-term operating altitude 0-5000 m (0-16404 ft.)
Storage altitude  0-5000 m (0-16404 ft.)
Power supply mode Pluggable power supply
Rated input voltage
  • AC input: 100 V AC to 240 V AC; 50/60 Hz
  • High-voltage DC input: 240 V DC
  • DC input: –48 V DC to –60 V DC
Input voltage range
  • AC input: 90–290 V AC; 45–65 Hz
  • High-voltage DC input: 190 V DC to 290 V DC
  • DC input: -38.4 V DC to -72 V DC
Maximum input current The current specifications depend on the pluggable power modules in use. For details, see the related power module specifications.
Memory 4 GB
Flash memory Physical space: 2 GB
Console port RJ45
Eth Management port RJ45
USB Supported
RTC Supported
RPS input Not supported
Service port surge protection -
Power supply surge protection
  • AC power module configured: ±6 kV in differential mode, ±6 kV in common mode
  • DC power module configured: ±2 kV in differential mode, ±4 kV in common mode
Ingress protection level (dustproof/waterproof) IP20
Types of fans Pluggable
Heat dissipation mode Heat dissipation with fan, intelligent fan speed adjustment
Airflow direction Air intake from front, air exhaustion from rear (front-to-rear)
PoE Not supported
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:

  1. VLAN Segmentation – Enhances network security by isolating traffic into separate virtual networks.

  2. Targeted Forwarding – Improves network performance by accurately identifying and forwarding data only to the intended destination device.

  3. Traffic Control – Optimizes network reliability and stability through mechanisms like Quality of Service (QoS) and loop prevention (e.g., Spanning Tree Protocol).

  4. 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:

    1. Learning: Records the source MAC address and its corresponding port.

    2. Forwarding: Precisely forwards frames to the destination port based on the target MAC address.

    3. Flooding: If the target MAC address is not found in the table, the switch broadcasts the frame to all ports (except the source port).

    4. Update: Periodically refreshes the MAC address table to ensure accuracy and remove stale entries.