Paradyne 4929 DSLAM manual Important Safety Instructions

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! Important Safety Instructions

1.Read and follow all warning notices and instructions marked on the product or included in the manual.

2.This product is to be connected to a nominal –48 to –60 VDC supply source that is electrically isolated from the AC source using minimum 18 AWG (0.75mm² ) leads . Two inputs are provided for redundancy. The positive terminal of the DC source is to be reliably connected to earth. Connect a minimum 18 AWG (0.75mm² ) green/yellow earthing (grounding) wire to the protective earthing (grounding) screw, identified by the protective earth symbol on the back of the chassis.

3.This product may only be used in a Restricted Access Location in accordance with the requirements of the National Electric Code, ANSI/NFPA 70, and the Canadian Electrical Code, or in accordance with the standards and regulatory requirements of the country in which it is installed. A Restricted Access Location is a secure area (dedicated equipment rooms, equipment closets, or the like) for equipment where access can only be gained by service personnel or by users who have been instructed about the reasons for the restrictions applied to the location and about any precautions that must be taken. In addition, access into this designated secured area is possible only through the use of a tool or lock and key, or other means of security, and is controlled by the authority responsible for the location.

4.A readily accessible disconnect device as part of the building installation shall be incorporated in fixed wiring. The DC disconnect device must be rated at a minimum 60 VDC, minimum 2A. The disconnect device shall be readily accessible to the operator. The disconnect device must be included with an adequately rated fuse or circuit breaker in the ungrounded conductor. Use a minimum 18 AWG (0.75 mm²) fixed power source wires with strain retention.

5.Do not allow anything to rest on the power cord and do not locate the product where persons will walk on the power cord.

6.Slots and openings in the cabinet are provided for ventilation. To ensure reliable operation of the product and to protect it from overheating, these slots and openings must not be blocked or covered.

7.Do not attempt to service this product yourself, as it will void the warranty. Opening or removing covers may expose you to dangerous high voltage points or other risks. Refer all servicing to qualified service personnel.

8.A rare phenomenon can create a voltage potential between the earth grounds of two or more buildings. If products installed in separate buildings are interconnected, the voltage potential may cause a hazardous condition. Consult a qualified electrical consultant to determine whether or not this phenomenon exists and, if necessary, implement corrective action prior to interconnecting the products.

9.CLASS 1 LASER PRODUCT: This product has provisions for the customer to install a Class 1 laser transceiver, which provides optical coupling to the telecommunication network. Once a Class 1 laser product is installed, the equipment is to be considered to be a Class 1 Laser Product (Appareil à Laser de Classe 1). The customer is responsible for selecting and installing the laser transceiver and for insuring that the Class 1 AEL (Allowable Emission Limit) per EN/IEC 60825 is not exceeded after the laser transponders have been installed. Do not install laser products whose class rating is greater than 1. Refer to all important safety instructions that accompanied the transceiver prior to installation. Only laser Class 1 devices certified for use in the country of installation by the cognizant agency are to be utilized in this product. Also, laser warnings are to be provided in accordance with IEC 60825-1 and its Amendments 1 and 2, as well as 21 CFR 1010 and 1040.10(g).

10.General purpose cables are described for use with this product. Special cables, which may be required by the regulatory inspection authority for the installation site, are the responsibility of the customer. To reduce the risk of fire, use a UL Listed or CSA Certified, minimum No. 26 AWG (0.128 mm2) telecommunication cable, or comparable cables certified for use in the country of installation.

11.The equipment is intended for installation in a maximum 149° F (65° C) ambient temperature, in an environment that is free of dust and dirt.

12.Do not physically stack more than eight (8) units high. Physical stability has not been evaluated for stacking higher than eight units, and any configuration greater than eight may result in an unstable (tip-over) condition. Ensure that the four (4) rubber feet supplied with the product have been installed on the bottom of each unit prior to stacking any 4929 units on top of one another.

C

March 2005

4929-A2-GN20-00

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Contents Dslam Copyright 2005 Paradyne Corporation All rights reserved Software and Firmware License Agreement Important Safety Instructions Page United States EMI Notice Contents Command Line Interface Configuration Using the NMSLEDs Equipment List Technical Specifications Index Connectors and Pin AssignmentsSnmp Interface Contents March Document Purpose and Intended Audience About This GuideDocument Summary Related Product Documents Document Number Document TitleIntroduction FeaturesOverview Introduction Preparation InstallationCables Required ADSL2+ PotsSFP MIM-100FXMounting Configurations Package ContentsUnpacking the Hardware Installing the Brackets for Rack Mounting ProcedureInstalling the Dslam Into a Rack 05-17616 Installing the Dslam on a Wall 17.85 in 453 mm Installing the Dslam on a Shelf or Desktop Installation March Cabling Cabling OverviewInstalling the Micro Interface Module Connecting the ADSL2+ and Pots Connectors Connecting the SFP Connector or the 10/100/1000 Connector Connecting DSLAMs to Each Other Connecting the COM Port Connecting a Terminal or PC to the COM PortConnecting to Power Connecting a Modem to the COM Port+48 VDC -48 VDC LEDs LED LocationsLED Meanings Front Panel LEDs 1ACT Front Panel LEDs 2PWR Configuration Using the NMS Web Interface System RequirementsConfiguring Your Windows PC to Communicate with NMS NMS home page appears Management Configuration Parameter DescriptionAdvanced Configuration DslamHttp Password Snmp Configuration Snmp Community Administration Global SetGlobal Circuit Configuration Parameter Description Global Dscp Rules Vlan Global IP Rules Specify a Vlan ID range. For each Global IP Range Global MAC Rules Specify a Vlan ID range. For each Global MAC Rule Global Vlan Rules Specify a Vlan ID range that constitutes a match Global Advanced Configuration EC/FDMCircuit Summary Circuit Configuration Parameter Description Dscp Rules Parameter Description IP Rules Parameter Description MAC Rules Parameter Description Vlan Rules Allow Tag/Untag on Ingress Specify tag or untag Pkt Backbone Vlan ID Upstream device must be properly configured Port Statistics Copy Port SNR Advanced Configuration MAC and Igmp Summary MAC-IGMPParameter Description Configuration Using the NMS Dslam Interconnect Configuration Configuration Using the NMS March Connecting a PC Directly Command Line InterfaceCLI System Requirements CLI Commands CLI Commands 1 DescriptionLaunching the Terminal Emulation Program Logging Into the CLICLI Commands 2 Description Set and Show Command Items and Values 1Set and Show Command Items and Values 2 Using the CLI to Establish Inband Management Set and Show Command Items and Values 3Command Line Interface March Snmp Interface Downloading MIBsSnmp Community Strings Access Community StringSnmp Community String Connectors and Pin Assignments Figure A-1 Dslam Front PanelDSL Ports and Pots Splitter Connectors SFP Connector Table A-2. Port 3 GigE Connector Signal PinTable A-3 /100/1000 Pinouts Signal 10/100/1000BaseT ConnectorDB9 to RJ45 Adapter Pinouts Equipment List Equipment List March Technical Specifications Table C-1 Series Dslam Technical Specifications 1 CriteriaDSL EMCTable C-1 Series Dslam Technical Specifications 2 Criteria Index CLIIN-2 Snmp IN-4

4929 DSLAM specifications

The Paradyne 4929 Digital Subscriber Line Access Multiplexer (DSLAM) represents a significant advancement in broadband access technology, designed to facilitate high-speed internet connectivity over existing copper phone lines. Its deployment has empowered telecommunications providers to offer enhanced services, ensuring reliable and efficient data transmission.

One of the main features of the Paradyne 4929 DSLAM is its ability to support multiple DSL technologies. Primarily, it accommodates both Asymmetric Digital Subscriber Line (ADSL) and Very high-bit-rate Digital Subscriber Line (VDSL), allowing operators to offer various service tiers depending on customer needs. This flexibility caters to both residential consumers seeking basic internet access and businesses requiring higher bandwidth and improved performance.

The Paradyne 4929 is designed with a robust architecture that supports high-density line cards. This enables the multiplexing of numerous DSL connections, maximizing the number of subscribers that can be served from a single unit. Additionally, its compact design and modular construction allow for easy scalability, ensuring that providers can expand capacity as subscriber demand grows without major overhauls to existing infrastructure.

Another notable characteristic of the Paradyne 4929 DSLAM is its advanced capabilities for traffic management and Quality of Service (QoS) features. By implementing intelligent traffic prioritization, the DSLAM can optimize bandwidth allocation for different types of data, ensuring that critical applications such as VoIP and streaming services receive the necessary resources for smooth performance. This focus on QoS enhances user experience and customer satisfaction.

The DSLAM also integrates seamlessly with the existing network infrastructure, supporting various management and provisioning protocols, including SNMP (Simple Network Management Protocol). This facilitates real-time monitoring and maintenance, allowing operators to quickly address issues and optimize performance.

Moreover, the Paradyne 4929 DSLAM includes built-in security features, protecting against unauthorized access and potential cyber threats. This increased security aspect is crucial for service providers looking to safeguard their networks and customer data.

In summary, the Paradyne 4929 DSLAM stands out in the competitive landscape of broadband access technologies. With its support for multiple DSL standards, high-density capabilities, intelligent traffic management, and robust security measures, it remains a reliable choice for telecommunications providers aiming to deliver high-speed internet services effectively. The 4929 DSLAM's adaptability and performance make it a strong contender in the evolution of broadband technology, driving the digital transformation in both residential and business environments.