Showing posts with label Great value S7700 campus Switch. Show all posts
Showing posts with label Great value S7700 campus Switch. Show all posts

Thursday, April 12, 2018

What is the Application Scenarios of Huawei S7700 Switch?

Application of the S7700 on a Large-scale Enterprise Campus Network

This section describes the application of the S7700 on a large-scale enterprise campus network.
As shown in Figure 1, Great value S7700 campus Switch is deployed at the aggregation layer of a large-scale campus network, helping you built a highly reliable, scalable, and manageable enterprise campus network.
Figure 1 Position of the S7700 on a large-scale enterprise campus network 
The S7700 uses distributed forwarding architecture, 480 Gbit/s slot bandwidth, 24 40G ports to build a high performance service platform, supporting long-term enterprise service development.
The S7700 provides innovative cluster switching system (CSS) to reduce data forwarding latency, improve IT network efficiency, and enhance enterprises' competitiveness.
The S7700 supports hardware-based Ethernet OAM/BFD and hardware CPU queues to make network more reliable and secure.

Application of the S7700 on a Small- or Medium-scale Enterprise Campus Network

This section describes the application of the S7700 on a small- or medium-scale enterprise campus network.
As shown in Figure 1, the S7700 can function as a core device on a small- or medium-scale enterprise campus network. It provides a cost-effective, reliable, and easy-to-deploy network solution for a small- or medium-scale enterprise campus network.
Figure 1 Position of the S7700 on a small- or medium-scale enterprise campus network 
The S7700 provides innovative cluster switching system (CSS) to reduce data forwarding latency, improve IT network efficiency, and enhance enterprises' competitiveness.
The S7700 uses high-reliability technologies such as hardware-based Ethernet OAM and BFD to ensure service continuity.
The S7700 is 480 high-density 10GE ports switch and uses compact chassis and left-to-rear air channels to increase cabling capability, reduce switch size, and reduce power consumption.