Cisco Systems RSP8 manual Electrical Equipment Guidelines, Telephone Wiring Guidelines

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Installation Prerequisites

Electrical Equipment Guidelines

Follow these basic guidelines when working with any electrical equipment:

Before beginning any procedures requiring access to the chassis interior, locate the emergency power-off switch for the room in which you are working.

Disconnect all power and external cables before moving a chassis.

Do not work alone when potentially hazardous conditions exist.

Never assume that power has been disconnected from a circuit; always check.

Do not perform any action that creates a potential hazard to people or makes the equipment unsafe.

Carefully examine your work area for possible hazards such as moist floors, ungrounded power extension cables, and missing safety grounds.

Telephone Wiring Guidelines

Use the following guidelines when working with any equipment that is connected to telephone wiring or to other network cabling:

Never install telephone wiring during a lightning storm.

Never install telephone jacks in wet locations unless the jack is specifically designed for wet locations.

Never touch uninsulated telephone wires or terminals unless the telephone line has been disconnected at the network interface.

Use caution when installing or modifying telephone lines.

Preventing Electrostatic Discharge Damage

Electrostatic discharge (ESD) damage, which can occur when electronic cards or components are improperly handled, can result in complete or intermittent failures. Each processor module contains a printed circuit card that is fixed in a metal carrier.

Electromagnetic interference (EMI) shielding, connectors, and a handle are integral components of the carrier. Although the metal carrier helps to protect the board from ESD, use an ESD-preventive wrist or ankle strap whenever you handle any electronic system component.

Following are guidelines for preventing ESD damage:

Always use an ESD-preventive wrist or ankle strap and ensure that it makes good skin contact.

When you work at the interface processor end of the router, connect the equipment end of the strap to the captive installation screw on an installed interface processor, or to the chassis grounding receptacle that is located next to each power supply.

When you install a processor module, use the ejector levers to properly seat the bus connectors in the backplane, and then tighten both captive installation screws. These screws prevent accidental removal, provide proper grounding for the system, and help to ensure that the bus connectors are seated in the backplane.

Handle processor modules by the carrier handles and carrier edges only; never touch the board or any connector pins.

Route Switch Processor (RSP8) Installation and Configuration Guide

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Contents Document Contents Related Documentation Cisco.com, Obtaining Documentation,Product Description Topics discussed in this section areMonitoring interface and environmental status RSP8-Horizontal Front-Panel ViewFlash Eprom ROMmon Bus connectors Auxiliary port U12Memory Components Shows the memory components on the RSP8Type Size Quantity Description Location There are no user-configurable jumpers on the RSP8 JumpersLEDs Flash Memory Cards and Flash DisksPC Card Slots Serial PortsLED Label Color State Indication Specifications Lists the physical specifications for the RSP8Specifications System SoftwareInstallation Prerequisites Safety GuidelinesSafety Warnings Installation Prerequisites Telephone Wiring Guidelines Electrical Equipment GuidelinesPreventing Electrostatic Discharge Damage Compatibility Requirements Chassis Slot and Dram RequirementsMemory Requirements Software Prerequisites Hardware PrerequisitesList of Parts and Tools Microcode RequirementsInstalling the RSP8 Removing the RSP8Ejector Levers and Captive Installation Screw Replacing the RSP8 Handling the RSP8 During Removal and Installation Connecting a Console Terminal Connecting to the Auxiliary PortUsing the Y-Cables for Console and Auxiliary Connections Restarting the System Shows the console Y-cable and shows the auxiliary Y-cableInstalling the RSP8 Router show version Configuring the Router for a Single RSP8 Using the Exec Command InterpreterConfiguring High System Availability HSA Active and Standby OperationHSA Implementation Methods HSA Configuration Task List HSA System RequirementsSpecifying the Default Standby RSP Command PurposeRouter# configure terminal Router# copy system running-config nvramstartup-configEnsuring that Both RSPs Contain the Same System Image Ensuring that Both RSPs Contain the Same Microcode Image Router# show controller cbusRouter# dir slavebootflash slaveslot0 slaveslot1 Router# copy bootflashfilename slot0filenameSlot1filename slavebootslotfilename Router# copy source bootflash slot0 slot1 Determines whether the standby RSP contains the sameCopies a different system image to the active RSP Upgrading to a New Software Version Example Bootflash Now view the standby software image location and versionRouter# copy tftp slot0rsp-pv-mz.120-22.3.S1 Routerconfig# boot system tftp rsp-pv-mz.120-23.S Routerconfig# config-register 0x010FBacking Up with an Older Software Version Example ANB Router# show bootflash Delete the rsp-pv-mz.120-22.3.S1image from the standby RSPRouter# delete slaveslot0rsp-pv-mz.120-22.3.S1 Manually Setting Environment Variables on the Standby RSP Router# copy system running-config startup-configRouter# copy running-config startup-config Routerconfig# slave sync configRouterconfig# hw-module slot image Monitoring and Maintaining HSA OperationInformation under that RSP’s ROM monitor control Specifies which image the standby runsEnabling High Availability Features High Availability Feature OverviewRouter# slave sync config Enabling High Availability Features Installation Procedures Hardware and Software PrerequisitesThis completes the procedure to enable the router Enabling the RouterCopying an Image onto an RSP Router# copy tftp slot slot-number Router# copy tftp slaveslot slot-numberSetting the Config-Register Boot Variable Configuring RPR and RPR+Routerconfig# boot system flash Router# show versionRouterconfig# hw-module slot slot-numberimage file-spec Router# hw-module sec-cpu resetConfiguring RPR and RPR+ Example Verifying RPR and RPR+Router# show redundancy Configuring a Stateful Switchover SSO Saves the configuration changes to the startup Configuration fileVerifying SSO Router# show redundancy states my state = 13 -ACTIVE Router# show redundancy clientConfiguring Nonstop Forwarding NSF Configuring CEF NSFConfiguring BGP NSF Configuring Ospf NSF Configuring IS-IS NSFAs-number Graceful-restartVerifying CEF NSF Seconds adjacencyVerifying BGP NSF Router# show ip bgp neighborsRunning-config command This example, note the presence of NSF restart enabledVerifying Ospf NSF Verifying IS-IS NSFNetworking device Troubleshooting NSF Features NSF Troubleshooting TipsBGP NSF Configuration Example BGP NSF Neighbor Device Configuration ExampleOspf NSF Configuration Example IS-IS NSF Configuration ExamplePerforming a Fast Software Upgrade Routerconfig# hw-module slot slot-number image Specifies the image to be used by the standby RSP atName of the image of the standby RSP Configuring Slcr Fast Software Upgrade ExampleRouter# redundancy force-switchover Routerconfig# service single-slot-reload-enableRPR, RPR+, SSO, and FSU Troubleshooting Tips Slcr Configuration ExampleSlcr Troubleshooting Tips Disabling SlcrTroubleshooting the Installation System Power LEDsMonitoring and Maintaining the Active and Standby RSPs Verifying LEDsRSP8 LEDs NormalVerifying System Startup Sequence Troubleshooting the Installation Troubleshooting a Router That is Failing to Boot Troubleshooting a Failed RSP8Maintenance Information Saving and Retrieving a Configuration FileReloading a Failed RSP Displaying a Stack Trace of an RSPUsing the ping Command to Ensure Connectivity Router# pingCopying the Configuration File Section on page 24 to enable the privileged levelMight include the name or address of a default file server Copy to this fileRouter# show startup-config Retrieving the Configuration File Replacing and Upgrading Dram DIMMs Product Numbers Quantity Dram Sockets Totals Sdram DimmRemoving DIMMs Polarization notchInstalling New DIMMs Inserting the DimmRecovering a Lost Password Checking the RSP Memory UpgradeInitialize the router using the i command as follows Console Port Signals Pin Signal Direction DescriptionReference Information Auxiliary Port Signals Female DB-25 Pins Male DB-25 Pins Signal DescriptionConsole and Auxiliary Y-Cable Pinouts Software Configuration Register Settings Male DB-25 Pins Female DB-25 Pins Signal DescriptionP1-5 J1-5 and J2-5 P1-7 J1-7 and J2-7 Ground P1-8 J1-8 and J2-8Boot Field Meaning Stays at the system bootstrap promptBoots the first system image in onboard Flash memory Bit Number Hexadecimal MeaningChanging Settings Routerconfig# config-register 0xvalueBit Meanings Tftp flash filenameAction/Filename Bit Enabling a Boot from Flash Memory Routerconfig# boot system flash devicefilenameBit Address net host Baud BitEnabling a Boot from the Flash Disk Using Flash Memory System# copy running-config startup-configObtaining Documentation Cisco.comObtaining Technical Assistance Documentation CD-ROMOrdering Documentation Documentation FeedbackCisco TAC Website Opening a TAC Case TAC Case Priority DefinitionsObtaining Additional Publications and Information Copyright 2004 Cisco Systems, Inc. All rights reserved