Configuring H.323 Gatekeepers and Proxies

H.323 Gatekeeper Configuration Task List

 

Command

Purpose

Step 9

 

 

Router(config-if)# h323 asr [bandwidth

Enables ASR and specifies the maximum bandwidth

 

max-bandwidth]

for a proxy.

 

 

The keywords and arguments are as follows:

 

 

bandwidth max-bandwidth—Specifies the

 

 

maximum bandwidth on the interface. Value

 

 

ranges are from 1 to 10,000,000 kbps. If you do

 

 

not specify a value for the max-bandwidth

 

 

argument, the value defaults to the bandwidth on

 

 

the interface. If you specify the max-bandwidth

 

 

value as a value greater than the interface

 

 

bandwidth, the bandwidth will default to the

 

 

interface bandwidth.

Step 10

 

 

Router(config-if)# ip address ip-address mask

Sets up the ASR interface network number.

 

[secondary]

For an explanation of the keywords and arguments,

 

 

 

 

see Step 3 in this configuration task table.

Step 11

 

 

Router(config-if)# exit

Exits interface configuration mode and returns to

 

 

global configuration mode.

Step 12

 

 

Router(config)# interface type number [name-tag]

Enters interface configuration mode for a non-ASR

 

 

interface.

 

 

For an explanation of the keywords and arguments,

 

 

see Step 2 in the configuration task table in the

 

 

“Configuring a Proxy Without ASR” section on

 

 

page 333.

Step 13

 

 

Router(config-if)# ip address ip-address mask

Sets up a non-ASR interface network number.

 

[secondary]

For an explanation of the keywords and arguments,

 

 

 

 

see Step 3 in this configuration task table.

Step 14

 

 

Router(config-if)# exit

Exits interface configuration mode.

Step 15

 

 

Router(config)# router rip

Configures the Routing Information Protocol (RIP)

 

 

for a non-ASR interface.

Step 16

 

 

Router(config)# network network-number

Specifies a list of networks for the RIP routing

 

 

process or a loopback interface in an Interior

 

 

Gateway Routing Protocol (IGRP) domain. The

 

 

network-numberargument specifies the IP address of

 

 

the directly connected networks.

Step 17

 

 

Router(config)# router igrp autonomous-system

Configures Interior IGRP for an ASR interface. The

 

 

autonomous-systemargument specifies the

 

 

autonomous system number that identifies the routes

 

 

to the other IGRP routers. It is also used to tag the

 

 

routing information.

Step 18

 

 

Router(config)# network network-number

Specifies a list of networks for the Routing

 

 

Information Protocol (RIP) routing process. The

 

 

network-numberargument should include an ASR

 

 

interface in an IGRP domain.

Step 19

 

 

Router(config)# network loopback-addr

Includes a loopback interface in an IGRP domain.

 

 

 

Cisco IOS Voice, Video, and Fax Configuration Guide

VC-339

Page 51
Image 51
Cisco Systems VC-289 manual VC-339

VC-289 specifications

Cisco Systems has long been a leader in networking technology, and among its diverse range of products is the VC-289. Designed specifically for enhanced performance in high-demand environments, the VC-289 serves a critical role in supporting the modern networking infrastructure.

One of the standout features of the VC-289 is its scalability. The device is engineered to easily accommodate expanded workloads, ensuring that organizations can grow without the need for frequent upgrades. This scalability is complemented by Cisco's commitment to backward compatibility, allowing businesses to integrate new systems with existing setups seamlessly.

In terms of performance, the VC-289 boasts impressive processing power. With advanced multi-core architecture, it is capable of handling multiple data streams simultaneously, making it ideal for environments that require consistent data flow, such as cloud computing and IoT applications. The device’s high throughput ensures that users experience minimal latency, facilitating quick data transfers even during peak usage times.

Security is another key characteristic of the VC-289. Cisco has integrated robust security protocols that protect against various cyber threats. Through features such as advanced encryption standards and intrusion prevention systems, organizations can ensure that sensitive data remains secure and is not compromised during transmission.

Another notable technology within the VC-289 is its support for software-defined networking (SDN) capabilities. This allows for more flexible network management, enabling IT teams to adapt the network according to evolving business needs. The ability to programmatically control the network also means that businesses can implement changes more rapidly, reducing downtime and improving overall productivity.

The VC-289 is designed with energy efficiency in mind, featuring power-saving modes that help reduce operational costs. This focus on sustainability not only benefits the environment but also appeals to organizations striving to meet corporate social responsibility objectives.

In conclusion, the Cisco Systems VC-289 stands as an exemplary solution for modern networking challenges. With its scalability, performance capabilities, enhanced security features, SDN support, and energy efficiency, it meets the demands of today's fast-paced and ever-evolving technological landscape. Organizations looking to invest in a robust networking solution would do well to consider the VC-289 as a cornerstone of their infrastructure.