Cisco Systems CRS-1 manual Show controllers switch inter-rack udld all location node-id

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Chapter 2 Converting to an Integrated Switch System

How to Convert from the Cisco Catalyst 65xx Switch to the Integrated Switch System for a Four-FCC Multishelf System

Connecting the 22-port SCGEs into a Full Mesh Configuration (Four-FCC Multishelf System)

To connect the 22-port SCGEs in a full mesh configuration, perform the following steps:

Step 1 Connect all of the 22-port SCGE cards to every other 22-port SCGE cards in the system in a mesh connection topology. Every 22-port SCGE card has seven connections to other 22-port SCGE cards.

Step 2 Verify that all new connections are bidirectional and connected to the right neighbors by using the show controllers switch inter-rack udld command, with the all and location keywords, in administration EXEC mode, as shown in the following syntax:

show controllers switch inter-rack udld {all location node-id}

Replace the node-idargument with the location of all of the 22-port SCGE cards.

Step 3 Verify that all of the connected ports to the 22-port SCGE cards are displayed as either in forwarding (FWD) state or blocked (BLK) state for all of the 22-port SCGE cards in the system by using the show controller switch inter-rack stp command, with the location keyword, in administration EXEC mode.

The location is used for all of the 22-port SCGE cards in the system.

The following example shows location f0/sc0/cpu0:

RP/0/RP0/CPU0:router(admin)# show controllers switch inter-rack stp location f0/sc0/cpu0

##### MST

0 vlans mapped:

2-4094

 

 

 

 

 

 

Bridge

address

5246.48f0.20ff

priority

32768 (32768 sysid 0)

Root

this switch

for

the CIST

 

 

 

 

 

Operational

hello time

1, forward delay

 

6, max age

8, txholdcount

6

Configured

hello time

1, forward delay

 

6, max age

8, max hops

4

Interface

 

Role

Sts

Cost

 

Prio.Nbr

Type

 

 

 

---------------- ----

---

---------

--------

---------------------------

 

##### MST

1 vlans mapped:

1

 

 

 

 

 

 

Bridge

address

5246.48f0.20ff

priority

32769 (32768 sysid 1)

Root

this switch

for

MST1

 

 

 

 

 

 

Interface

 

Role

Sts

Cost

 

Prio.Nbr

Type

 

 

 

---------------- ----

---

---------

--------

---------------------------

 

 

GE_13 Desg

FWD

 

20000

128.

14

P2p

 

 

 

 

GE_14

Desg

FWD

 

20000

128.

15

P2p

 

 

 

 

GE_15

Desg

FWD

 

20000

128.

16

P2p

 

 

 

 

GE_17

Desg

FWD

 

20000

128.

18

P2p

 

 

 

 

GE_22

Desg

FWD

 

20000

128.

23

P2p

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Cisco CRS-1 Carrier Routing System Multishelf System Upgrade and Conversion Guide

 

 

 

 

 

 

OL-12571-01

 

 

2-15

 

 

 

 

 

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Contents Americas Headquarters Page N T E N T S Index Obtaining Documentation Changes to This DocumentCisco.com Cisco Product Security Overview Documentation FeedbackProduct Documentation DVD Ordering Documentation Product Alerts and Field Notices Reporting Security Problems in Cisco ProductsCisco Technical Support & Documentation Website Obtaining Technical AssistanceDefinitions of Service Request Severity Submitting a Service RequestObtaining Additional Publications and Information Preface Obtaining Additional Publications and Information Prerequisites for Upgrading to a Multishelf System ContentsMultishelf System section on Restrictions for Upgrading to a Multishelf SystemInformation About Upgrading to a Multishelf System How to Upgrade to a Multishelf SystemNone Upgrading the Fabric Cards and Adding an FCCPlaces the router in administration configuration mode Apply power to the FCCPlaces the router in administration Exec mode All commands listed in this procedure should beTo 7 you want to configure Configures the FCC identified by the serial number as anConfigures a plane to operate in an FCC slot Enter this command sequence for each of the eightReplace the planeNumber parameter with the number Do command prefix allows the Exec mode showCommand to execute in administration configuration ExamineDisplays the status of the Rack 0 fabric slot specified by Modifies the target configuration to bring up the specifiedWhich is now configured to use the FCC-SFC Displays the administrative and operational status of allWhat to Do Next Adding an LCC to a Multishelf SystemFor racks in installation mode Configures the additional LCC as Rack 1 in the multishelfModifies the target configuration to change the Rack Configuration to installation modeDisplaying Chassis Serial Numbers Example Adding a Fabric Card Chassis Example Power is applied to the FCC at this time Fabric cable is attached to the FC/M card at this point FC/S card is replaced with an FC/M card at this pointAdding an LCC to a Multishelf System Example Apply power, attach cables, and check cable LEDsNormal Additional References Where to Go NextRelated Documents Technical Assistance Related Documentation for the Catalyst 6509 SwitchConverting to an Integrated Switch System Prerequisites for the Integrated Switch System Naming Conventions Cisco CRS-1 Multishelf Integrated Switch SolutionThis section contains the following procedures Partner node F0/SC1/CPU0 is in Standby role Repeat to for the remaining FCCShow controllers switch inter-rack stp location node-id Redundancy switchover location node-id Repeat to for the other fabric chassis on a two-FCC MC MST1 Validating the 22-port Scge Cards Four-FCC Multishelf System OL-12571-01 OL-12571-01 For Cist Redundancy switchover location node-id Show controllers switch inter-rack udld all location node-id Show controllers switch inter-rack udld all location node-id Fabric card, single-chassis system Admin configure command 1-5,1-10Installation documents LEDs Serial number configurationIN-2
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CRS-1 specifications

Cisco Systems' Carrier Routing System (CRS-1) is a cutting-edge, high-capacity router designed to meet the demands of service providers and large enterprises. Introduced in the early 2000s, the CRS-1 represents a significant leap forward in routing technology, offering unparalleled performance, scalability, and reliability.

One of the primary features of the CRS-1 is its exceptional scalability. The system is built on a modular architecture that allows for easy upgrades and expansions. This enables service providers to start with a configuration that suits their immediate needs while having the flexibility to expand as traffic demands grow. The CRS-1 supports a wide range of line cards, enabling data, voice, and video to be managed on a single platform, which simplifies network management and reduces operating costs.

The CRS-1 leverages advanced technologies that enable it to deliver impressive performance. With the ability to handle up to 92 terabits per second of throughput, the router is capable of supporting a vast number of connections, making it well-suited for large-scale service providers and data centers. This level of performance is powered by Cisco’s proprietary silicon technology, which optimizes the packet forwarding process and enhances overall efficiency.

Another key characteristic of the CRS-1 is its strong focus on reliability and redundancy. The system is designed with high availability in mind, ensuring that it can continue to operate seamlessly even in the event of hardware failures. Redundant components, such as power supplies and route processors, allow the CRS-1 to maintain its performance and uptime, a critical requirement for mission-critical network operations.

Additionally, the CRS-1 supports a wide variety of protocols and technologies, including Internet Protocol (IP), Multiprotocol Label Switching (MPLS), and various service provider features. This versatility makes it a compelling choice for organizations looking to implement advanced networking capabilities, such as Quality of Service (QoS) and traffic engineering.

In summary, the Cisco Systems CRS-1 stands out as a formidable solution for modern routing needs. Its modular design, exceptional scalability, robust performance, reliability, and support for multiple protocols and services make it an ideal choice for service providers and enterprises seeking to future-proof their networks. As the demand for bandwidth continues to surge, the CRS-1 remains a pivotal component in the evolution of networking infrastructure.