2. Basic Configuration

Using RIP with FrameSaver SLV CSU/DSUs

Using the system’s standard Routing Information Protocol (RIP) feature, routing information is passed to the router over the management PVC, so the router can learn routes to FrameSaver devices. Node IP information should be set up (see Using the Easy Install Feature on page 2-2).

Procedure

To set up your router and FrameSaver SLV CSU/DSU so that the router can learn routes to FrameSaver devices:

1.Configure the router to receive RIP.

For example, if using a Cisco router, you would use the commands config-t, router RIP, int serialx, IP RIP Receive version 1, then ctl-z WR.

2.Create a Standard DLCI for the user data port.

ConfigurationData PortsDLCI Records

3.Create a Management PVC using the user data port DLCI just configured. ConfigurationManagement and CommunicationManagement PVCs

4.Set Primary Link RIP to Standard_Out, and Save the configuration.

Refer to Table 3-26, DLCI Record Options, and Table 3-32, Management PVC

Options, in Chapter 3, Configuration Options, for configuration information.

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Paradyne 9128 carrier-mount, and 9820-45M Using RIP with FrameSaver SLV CSU/DSUs, Configuration→Data Ports→DLCI Records

and 9820-45M, 9123, 9623, 9783, 9720 specifications

The Paradyne 9820-8M, 9788, 9128 standalone, 9128 carrier-mount, and 9820-2M are critical components in telecommunications networks, designed to enhance data transmission and improve connectivity. Each model offers unique features and capabilities that cater to various requirements in both enterprise and service provider environments.

The Paradyne 9820-8M is a multi-service access platform that provides high-speed connectivity for voice, video, and data transmission. It supports multiple protocols, enabling seamless integration into existing infrastructures. Key features include a modular design that allows for scalability and easy upgrades, ensuring that organizations can adapt to evolving demands. Its advanced error correction and QoS (Quality of Service) features ensure reliable performance, even in challenging network conditions.

The Paradyne 9788 serves as a versatile platform for both digital and analog communications. It excels in the delivery of broadband services, supporting T1/E1 lines and providing robust mechanisms for data transmission. This model emphasizes redundancy and resilience, with built-in protection switching capabilities that maintain service continuity during faults or maintenance activities. Its compact design makes it an ideal solution for environments with space constraints.

The 9128 standalone model is aimed at customers requiring an easy-to-deploy solution for point-to-point connections. This model offers critical features such as an intuitive user interface, comprehensive diagnostics, and monitoring capabilities that facilitate system management. It also supports diverse network topologies, making it suitable for various deployment scenarios.

In contrast, the 9128 carrier-mount version is engineered for organizations needing to manage multiple connections within a central office or remote site. This model is specifically designed to be mounted in standard telecom racks, optimizing space utilization while maintaining high performance. Its robust hardware allows for excellent thermal management and environmental resilience.

Lastly, the Paradyne 9820-2M combines versatility with high-performance capabilities, making it a reliable choice for service providers. It features dual-channel support, enabling simultaneous transmission and providing a cost-effective solution for high-capacity data needs. With enhanced security features, including encryption capabilities, the 9820-2M ensures that sensitive information transmitted across networks is protected against unauthorized access.

Collectively, these Paradyne models exemplify advanced telecommunications technology, offering scalability, resilience, and high performance. Their diverse features cater to the unique demands of various users, from enterprise networks to service providers, facilitating the continual evolution of communication technologies.