FRUs of Different Routers

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    M7i

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    Routing Engine

    The Routing Engine runs Junos OS. The software processes that run on the Routing Enginemaintain the routing tables, manage the routing protocols used on the router, control the

    router's interfaces, control some chassis components, and provide the interface for system

    management and user access to the router.

    The Routing Engine is installed into the midplane from the front of the chassis.

    The Routing Engine is hotpluggable. !f you have only one Routing Engine, you can remove

    and replace the Routing Engine without powering down the router, but the routing functionsof the system are interrupted when it is removed. !f the host system is redundant, the

    bac"up Routing Engine is hotremovable and hotinsertable. # bac"up Routing Engine canbe removed without interrupting routing functions.

    $ommand to chec"%

    root@m7i-1> show chassis routing-engineRouting Engine status:  Temperature 34 degrees C / 93 degrees   C!" temperature 33 degrees C / 91 degrees   #R$% &1' %(  %emor) uti*i+ation , percent  C!" uti*i+ation:  "ser percent  (ac.ground percent  erne* 3 percent  0nterrupt percent  0d*e 9, percent  %ode* RE-&  2eria* 0# 1,49'&  2tart time '13-9-17 7:&3:'7 "TC  "ptime &1 da)s 1 hour 33 minutes 4 seconds  ast re5oot reason Router re5ooted a6ter a norma* shutdown  oad aerages: 1 minute & minute 1& minute 

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    root@m7i-1> show chassis routing-engine 5ios  Routing Engine (082 ersion: 1

    root@m7i-1>

    Physical Interface Cards (PICs)

    &!$s physically connect the router to networ" media. &!$s receive incoming pac"ets from

    the networ" and transmit outgoing pac"ets to the networ", performing framing and linespeed signaling for their media type as reuired. &!$s also encapsulate outgoing pac"ets

    received from the $ompact (orwarding Engine )oard *$(E)+ or Enhanced $(E) *$(E)E+before transmitting them. The controller #S!$ on each &!$ performs additional control

    functions specific to the &!$ media type.

    $ommand to chec"%

    root@m7i-1> show chassis 6pc pic-status2*ot 8n*ine E-!C  !0C 1 8n*ine 1; in. 2erice show chassis pic pic-s*ot 1 6pc-s*ot !C s*ot !0C s*ot 1 in6ormation:  T)pe 1; in. 2erice

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    root@m7i-1> show chassis 6pcTemp C!" "ti*i+ation

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    • )uiltin tunnel interface2Encapsulates arbitrary pac"ets inside a transport protocol,

    providing a private, secure path through an otherwise public networ". The builtin

    tunnel interface on the $(E) or $(E)E is configured the same way as a &!$. (or

    information about configuring the builtin tunnel interface, see the Junos OS Services

    !nterfaces $onfiguration -uide.

    • Optional #daptive Services /odule *#S/+2&rovides one or more services on one

    &!$.

    The $(E) and $(E)E are hotpluggable when you replace a $(E) with a $(E) or a $(E)Ewith a $(E)E. pgrading or downgrading a $(E) device reuires a system reboot. 5ou can

    remove and replace the $(E) or $(E)E without powering down the router, but the routingfunctions of the system are interrupted when it is removed.

    $(E)E &rovides the following additional functionality%

    • Optional /ultiServices /odule */S/+2&rovides one or more services on one &!$.

    • !ncreased number of logical interfaces.

    • !ncreased route, net hop, and interface loo"up memory.

    • !ncreased (&$ throughput.• Enhanced class of service features, including%

    o /ore ueues and priority levels

    o !ncreased drop precedence per ueue

    o Ecess bandwidth allocation in proportion to weights

    o 6ierarchical policing

    o !ncreased number of 7RE4 profiles

    o !ndependent E8& and 4S$& rewrite

    o !ndependent 3ayer 9 and 3ayer : classification on same port

    $ommand to chec"%

    root@m7i-1> show chassis c6e5CE( status:  2tate 8n*ine0nta.e temperature 3' degrees C / 9 degrees

      E;haust temperature 37 degrees C / 9 degrees   C!" uti*i+ation ' percent  0nterrupt uti*i+ation percent  Aeap uti*i+ation 4 percent  (u66er uti*i+ation '& percent  Tota* C!" #R$% '&, %(  0nternet !rocessor 00 ersion ' oundr) 0(% !art num5er1,4  2tart time: '13-9-17 7:&&:49 "TC

      "ptime: &1 da)s 1 hour ', minutes '7seconds

    Mid"lane "erfor#s the follo$ing

    • Transfer of pac"ets20 *(rom where to where+o"

    • &ower distribution2the midplane distributes power to all router components from the

    power supplies attached to it.

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    • Signal connectivity2the midplane transports the signals echanged by system

    components for monitoring and control purposes.

    M7i %da"ti&e 'er&ices Module (Not a FRU)

    The #daptive Services /odule is an optional component of the $(E) and $(E)E. The

    #daptive Services /odule is similar to the standalone #daptive Services &!$, but operates ata reduced bandwidth. The #daptive Services /odule enables you to perform one or more

    services on the same &!$ by configuring a set of services and applications.

    The #daptive Services /odule provides the following services%

    • Stateful firewall2a type of firewall filter that considers state information derived from

    previous communications and other applications when evaluating traffic.

    • ;etwor" #ddress Translation *;#T+2a security procedure for concealing host

    addresses on a private networ" behind a pool of public addresses.

    • !ntrusion detection services *!4S+2a set of tools for detecting, redirecting, and

    preventing certain "inds of networ" attac" and intrusion.

    The configuration for these three services comprises a series of rules that you can arrangein order of precedence as a rule set. Each rule follows the structure of a firewall filter, with a

     

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    o /ulticlass /3&&&

    o R&/

    ;OTE% 5ou can enable either 3ayer 9 or 3ayer : services on the /ultiServices /odule, butyou cannot enable both 3ayer 9 and 3ayer : services concurrently.

    Po$er 'yste# escri"tion

    The router uses either #$ or 4$ power. 5ou can install one or two loadsharing power

    supplies at the bottom rear of the chassis. The power supplies connect to the midplane,which distributes power to router components according to their individual voltage

    reuirements.

    Cooling 'yste# &er&ie$

    The router cooling system consists of a fan tray, located along the left side of the chassisthat provides sidetoside cooling. !t connects directly to the router midplane. The fan tray

    is a single unit containing four individually faulttolerant fans. !f a single fan fails, theremaining fans continue to function indefinitely. The fan tray is hotremovable and hot

    insertable.

    Misc Co##ands for M7i*

    root@m7i-1> show chassis cra6t-inter6ace

    Red a*arm: E# o66 re*a) o66Be**ow a*arm: E# on re*a) onRouting Engine 8 E#: 8nRouting Engine 6ai* E#: 866

    !Cs 1-------------?reen

    Red

    C# screen:  D--------------------D  m7i-1   1 $*arm actie   B: Aost 5oot: a*t   me   D--------------------D

    root@m7i-1> show chassis enironmentC*ass 0tem 2tatus %easurement!ower !ower 2upp*) 8

    !ower 2upp*) 1 $5sentTemp 0nta.e 8 3' degrees C / 9 degrees   !C 8 33 degrees C / 91 degrees   !ower 2upp*ies 8 33 degrees C / 91 degrees   CE( 0nta.e 8 3' degrees C / 9 degrees   CE( E;haust 8 37 degrees C / 9 degrees   Routing Engine 8 34 degrees C / 93 degrees ans an 1 8 2pinning at norma* speed  an ' 8 2pinning at norma* speed  an 3 8 2pinning at norma* speed

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      an 4 8 2pinning at norma* speed

    root@m7i-1> show chassis 6irmware!art T)pe ersion!C R8% Funiper R8% %onitor ersion ,51'

    8/2 ersion 93R44 5) 5ui*der on '9--1'3!C 1 R8% Funiper R8% %onitor ersion ,51'

    8/2 ersion 93R44 5) 5ui*der on '9--1'3CE( R8% Funiper R8% %onitor ersion ,51'

    8/2 ersion 93R44 5) 5ui*der on '9--1'3

    root@m7i-1> show chassis hardwareAardware inentor):0tem ersion !art num5er 2eria* num5er #escriptionChassis F'71 %7i%idp*ane RE & 71-7,1 !F91&1 %7i %idp*ane!ower 2upp*) Re , 74-9& T%&&49 #C !ower 2upp*)

    Routing Engine RE 9 74-94&9 1,49'& RE-&CE( RE 7&-14,& #$,3 0nternet !rocessor 00!C E-!C  !0C 1 RE 4 7&-7,1 C', 1; in. 2erice show chassis temperature-thresho*ds

    an speed Be**ow a*arm Red a*arm0tem Gorma* Aigh Gorma* (ad 6an Gorma* (ad 6anChassis de6au*t 4 &4 ,& && 7& ,&Routing Engine && ,& & & 1 1

    M+,i

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    -igh!%&ailability Chassis Manager (-CM) *7hat is euivalent hardware in otherplatforms+ o" it is euivalent to $)

    The 6igh#vailability $hassis /anager *6$/+ wor"s with its companion Routing Engine to

    provide control and monitoring functions for router components. The 6$/ also displaysalarm status and ta"es &!$s online and offline.

    Two 6$/s are installed into the midplane from the front of the chassis, the master 6$/

    performs all functions and provides &!$ removal buttons for the first (&$. The bac"up 6$/provides &!$ removal buttons for the second (&$. The 6$/ in the slot labeled 6$/1 is

    paired with the Routing Engine in the slot labeled RE1. 3i"ewise, the 6$/ in the slot labeled6$/0 is paired with the Routing Engine in the slot labeled RE0. )y default, the 6$/ in the

    slot labeled 6$/1 is the master.

    ;OTE% 7hen 6$/ mastership changes because of failure, Routing Engine mastership will

    change as well.

    The 6$/ performs the following functions%

    • /onitoring and control of router components2The 6$/ collects statistics from all

    sensors in the system. 7hen it detects a failure or alarm condition, it sends a signalto the Routing Engine, which generates control messages or sets an alarm. The 6$/

    also relays control messages from the Routing Engine to the router components.

    • $ontrolling component powerup and powerdown2The 6$/ controls the powerupseuence of router components as they start and powers down components whentheir offline buttons are pressed.

    • Signaling of mastership2in a router with more than one Routing Engine, the 6$/

    signals to all router components which Routing Engine is the master and which is the

    standby.

    • #larm display2if an alarm eists, the 6$/ displays the alarm condition.

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    • &!$ removal2!f a &!$ offline button is pressed, the 6$/ relays the reuest to the

    $(E) or $(E)E, which ta"es the &!$ offline and informs the Routing Engine. Other

    &!$s are unaffected, and system operation continues.

    Misc Co##ands for M+,i*

    user@host> show chassis routing-engineRouting Engine status:

      2*ot :  Current state %aster  E*ection priorit) %aster

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      E*ection priorit) (ac.up

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    Mid"lane "erfor#s the follo$ing

    The midplane is located in the center of the chassis and forms the rear of the (&$ card cage.The (&$s install into the midplane from the front of the chassis, and the (E)s, Routing

    Engines, power supplies, and $)s install into the midplane from the rear of the chassis. Thepower supplies and cooling system components also connect to the midplane.

    The midplane performs the following ma>or functions%

    • 4ata path24ata pac"ets are transferred across the midplane between an (&$ and its

    associated (E), and between the (E)s via the fabric #S!$s on the $).

    • &ower distribution2the router power supplies are connected to the midplane, which

    distributes power to all the router components.

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    • Signal path2the midplane provides the signal path to the (&$s, (E)s, Routing

    Engines, $), and other system components for monitoring and control of the system.

    Flexible PIC Concentrators (FPCs) 

    The (leible &!$ $oncentrators *(&$s+ provide the infrastructure to power and control &!$s

    and to translate pac"ets to and from each &!$ into a standard interface that the (E)processes.

    Each &ac"et (orwarding Engine receives incoming pac"ets from the &!$s installed on the

    (&$ and forwards them through the switch planes *located in $)???+ to the appropriatedestination (&$ and port. 5es o"

    Each (&$ contains data memory, which is managed by the @ueuing and /emory !nterface

    #S!$s, and either one or two &ac"et (orwarding Engines. Each (&$ contains a translator, acrossbar connection to the (E)s, power subsystem, and the physical &!$ connectors. The

    assembly contains a translation component that converts between the midplane signals and

    the signals reuired by the types of supported &!$s. The translator fully terminates the &!$side connection, providing local flow control, buffering, and electrical conversion. (&$s are

    hotremovable and hotinsertable.

    $ommand to chec"%

    user@host> show chassis 6pc detai* 12*ot 1 in6ormation:  2tate 8n*ine  Temperature 4 degrees C  Tota* C!" #R$% 3' %(  Tota* 2R$% 4 %(  Tota* 2#R$% '&, %(  0/8 %anager $20Cs in6ormation ersion ' oundr) 0(% !art num5er   0/8 %anager $20Cs in6ormation ersion ' oundr) 0(% !art num5er

      2tart time '-'- ':1:49 "TC  "ptime 14 hours 41 minutes 41 seconds

    user@host> show chassis enironment 6pc!C ' status:  2tate 8n*ine  Temperature E;haust $ 3' degrees C / 9 degrees Temperature E;haust ( 31 degrees C / 7 degrees !ower $-(oard1' 1'' m

      1& 1& m  1 179 m  '& '&7 m

      33 33&1 m  & 499& m  33 5ias 3'9, m  1' Roc.et 08 1'& m  1& Roc.et 08 1&1 m  0'C 2*ae Reision 1'!C 3 status:  2tate 8n*ine  Temperature E;haust $ 31 degrees C / 7 degrees Temperature E;haust ( 33 degrees C / 91 degrees

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      !ower $-(oard1' 1'11 m

      1& 1&1 m  1 179 m  '& '471 m  33 3'93 m  & 493 m  33 5ias 3'9, m  1' Roc.et 08 1'& m  1& Roc.et 08 1&1 m  !ower (-(oard

    1' 1'14 m  1& 1&1 m  '& '471 m  33 33 m  & 4943 m  33 5ias 3'9, m  1' Roc.et 08 1'& m  1& Roc.et 08 1&1 m  0'C 2*ae Reision 1'

    !C 4 status:  2tate 8n*ine  Temperature E;haust $ 3' degrees C / 9 degrees Temperature E;haust ( 3 degrees C / , degrees !ower $-(oard1' 119& m

      1& 1&4 m  1 11 m  '& '&4 m  33 3'93 m  & 4917 m  33 5ias 3'9, m  1' Roc.et 08 1'' m  1& Roc.et 08 149' m  0'C 2*ae Reision 1'

    Co#"act FPCs (CFPCs) escri"tion

    # $(&$ is a combination of a &!$ and an (&$. !t contains the interface circuitry and the (&$as a single assembly. Two $(&$s are available for the /091 router% a 01-igabit Ethernet

    $(&$ and an O$0A9 $(&$. Each $(&$ is rated at 01 -bps full duple.

    For$arding Engine oards (FEs) *!n other platform in place of (E), (&$ contains

    forwarding plane???+

    The /091 router provides redundant (orwarding Engine )oards *(E)s+. The (&$ *the board

    that hosts the &!$s+ is separate from the (E) *the board that handles the pac"ets+. (E)sprovide route loo"up and forwarding functions from (&$s and $(&$s. (&$s and $(&$s are

    located on the front of the chassis, and provide power and management to the &!$s throughthe midplane. The midplane relays signals to the (E) *inserted from the rear of the chassis,

    which processes the pac"ets.

    The midplane architecture allows any (E) to carry traffic for any (&$. 5ou can configure themapping of (&$s to (E)s. !f a (E) fails, a bac"up (E) can uic"ly ta"e over pac"et

    forwarding. *6ow????+

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    $ommand to chec"%

    user@host> show chassis 6e5  Temp C!" "ti*i+ation

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    $ommand to chec"%

    user@host> show chassis routing-engineRouting Engine status:  2*ot :

      Current state %aster  E*ection priorit) %aster

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    7ith redundant $)s, the bac"up $) is hotremovable and hotinsertable, but the master $)

    is hotpluggable. !f a $) fails and switches mastership to the redundant $), the RoutingEngine mastership switches as well.

    $ommand to chec"%

    user@host> show chassis enironment c5C( status:  2tate 8n*ine %aster  Temperature 33 degrees C / 91 degrees !ower1' 1'14 m

      1& 149& m  '& '494 m  33 3319 m  & && m  33 5ias 3'9, m  (us Reision 1'  !?$ Reision 17C( 1 status:  2tate 8n*ine 2tand5)  Temperature 34 degrees C / 93 degrees !ower1' 119& m

      1& 149& m  '& '&4 m  33 331' m  & &111 m  33 5ias 3'9, m  (us Reision 1'  !?$ Reision 17

    Connector Interface Panel (CIP)

    The $!& is located at the left side of the (&$ card cage.

    Misc Co##ands for M+.,*

    user@host> show chassis enironmentC*ass 0tem 2tatus %easurementTemp !E% 8

    !E% 1 8Routing Engine 8 43 degrees C / 19 degrees

      Routing Engine 1 8 44 degrees C / 111 degrees

      C( 0nta.e 8 33 degrees C / 91 degrees   C( E;haust $ 8 3, degrees C / 9, degrees   C( E;haust ( 8 3& degrees C / 9& degrees   C( 1 0nta.e 8 34 degrees C / 93 degrees   C( 1 E;haust $ 8 3 degrees C / 1 degrees   C( 1 E;haust ( 8 3& degrees C / 9& degrees   E( 3 0nta.e 8 3& degrees C / 9& degrees   E( 3 E;haust $ 8 37 degrees C / 9 degrees   E( 3 E;haust ( 8 39 degrees C / 1' degrees   E( 4 0nta.e 8 33 degrees C / 91 degrees

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      E( 4 E;haust $ 8 39 degrees C / 1' degrees   E( 4 E;haust ( 8 3, degrees C / 9, degrees   !C ' E;haust $ 8 3' degrees C / 9 degrees   !C ' E;haust ( 8 31 degrees C / 7 degrees   !C 3 E;haust $ 8 3' degrees C / 9 degrees   !C 3 E;haust ( 8 33 degrees C / 91 degrees   !C 4 E;haust $ 8 3' degrees C / 9 degrees   !C 4 E;haust ( 8 3 degrees C / , degrees ans ront Top Tra) an 1 8 2pinning at norma* speed  ront Top Tra) an ' 8 2pinning at norma* speed  ront Top Tra) an 3 8 2pinning at norma* speed  ront Top Tra) an 4 8 2pinning at norma* speed  ront Top Tra) an & 8 2pinning at norma* speed  ront Top Tra) an , 8 2pinning at norma* speed  ront Top Tra) an 7 8 2pinning at norma* speed  ront Top Tra) an 8 2pinning at norma* speed  ront (ottom Tra) an 1 8 2pinning at norma* speed  ront (ottom Tra) an ' 8 2pinning at norma* speed  ront (ottom Tra) an 3 8 2pinning at norma* speed  ront (ottom Tra) an 4 8 2pinning at norma* speed

      ront (ottom Tra) an & 8 2pinning at norma* speed  ront (ottom Tra) an , 8 2pinning at norma* speed  ront (ottom Tra) an 7 8 2pinning at norma* speed  ront (ottom Tra) an 8 2pinning at norma* speed  Rear Top Tra) an 1 8 2pinning at norma* speed  Rear Top Tra) an ' 8 2pinning at norma* speed  Rear Top Tra) an 3 8 2pinning at norma* speed  Rear Top Tra) an 4 8 2pinning at norma* speed  Rear Top Tra) an & 8 2pinning at norma* speed  Rear Top Tra) an , 8 2pinning at norma* speed  Rear Top Tra) an 7 8 2pinning at norma* speed  Rear Top Tra) an 8 2pinning at norma* speed  Rear (ottom Tra) an 1 8 2pinning at norma* speed  Rear (ottom Tra) an ' 8 2pinning at norma* speed  Rear (ottom Tra) an 3 8 2pinning at norma* speed  Rear (ottom Tra) an 4 8 2pinning at norma* speed  Rear (ottom Tra) an & 8 2pinning at norma* speed  Rear (ottom Tra) an , 8 2pinning at norma* speed  Rear (ottom Tra) an 7 8 2pinning at norma* speed  Rear (ottom Tra) an 8 2pinning at norma* speed

    user@host> show chassis enironment pem!E% status:  2tate 8n*ine  Temperature 8#C 0nput: 8

      #C 8utput: 8

      oad ess than ' percent  o*tage:  4 input &',4 m  4 6an supp*) 41,&& m  33 3399 m!E% 1 status:  2tate 8n*ine  Temperature 8#C 0nput: 8

      #C 8utput: 8

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      oad ess than ' percent  o*tage:  4 input &4&37 m  4 6an supp*) 4'91 m  33 3&, m

    user@host> show chassis 6pc pic-status2*ot 8n*ine E'-!C T)pe 1  !0C 8n*ine 1; ?/E 2! 1 ($2E  !0C 1 8n*ine $daptie 2erices-00  !0C ' 8n*ine 1; ?/E 0H 1 ($2E  !0C 3 8n*ine 1; ?/E 0H 1 ($2E2*ot 1 8n*ine !C T)pe 3-E2  !0C !resent "G"2E#- Got 2upported2*ot ' 8n*ine !C T)pe 4-E2  !0C 866*ine 4; 8C-19' 28GET !  !0C 1 !resent 1;1?E

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    The /:91 router supports the following types of (&$s%

    • (&$0, Enhanced !! (&$0, and Enhanced !!! (&$02Rated at C gigabits per second

    *-bps+ full duple

    • (&$9, Enhanced !! (&$9, and Enhanced !!! (&$92Rated at 0D -bps full duple

    • (&$:, Enhanced !! (&$:, and Enhanced !!! (&$:2Rated at 91 -bps full duple

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    FPC

    0y"eFPC Na#e

    FPCModel

    Nu#ber

    Maxi#u#Nu#ber of

    PICs 'u""orted

    Maxi#u#0hrough"ut "er

    FPC (Full!u"lex)

    First1unos '

    Release

     

    0 (&$0 /:91(&$0 C C -bps D.9

    0

    Enhanced

    !! (&$0

    /:91

    (&$0E9 C C -bps .F

    0Enhanced

    !!! (&$0

    /:91

    (&$0E:C C -bps G.C

    9 (&$9 /:91(&$9 C 0D -bps D.9

    9Enhanced!! (&$9

    /:91(&$9E9

    C 0D -bps .F

    9Enhanced!!! (&$9

    /:91(&$9E:

    C 0D -bps G.C

    : (&$: /:91(&$: 9 91 -bps D.9

    :Enhanced

    !! (&$:

    /:91

    (&$:E99 91 -bps .F

    :Enhanced

    !!! (&$:

    /:91

    (&$:E:

    9 91 -bps G.C

    Enhanced FPCs

    Enhanced (leible &!$ $oncentrators *(&$s+ are available for the /91, /C1, and T:91routers and the TDC1 routing node. #n Enhanced (&$ has all the features of the

    corresponding standard *nonenhanced+ (&$ and provides additional SR#/ memory forincreased scalability and more granular classofservice *$oS+ capabilities.

    Enhanced Plus FPCs

    Enhanced plus (leible &!$ $oncentrators *(&$s+ are available for the /91 and /C1e

    routers. #n Enhanced &lus (&$ has all the features of the corresponding standard*nonenhanced+ (&$ and provides additional SR#/ memory *from 9 to C /) on an Enhanced

    &lus (&$0 and C to G /) on an Enhanced &lus (&$9+ for increased scalability, more granular$oS capabilities, and enhanced H&; scaling.

    Enhanced II FPCs

    Enhanced !! (leible &!$ $oncentrators *(&$s+ are available for the /:91, T:91, and TDC1

    routing platforms. #n Enhanced !! (&$ has all the features of the corresponding standardand Enhanced (&$s and provides additional 4R#/ memory for @oS, tricolor mar"ing, and

    scaling enhancements.

    Enhanced 'caling FPC

    Enhanced scaling (leible &!$ $oncentrators *(&$s+ are available for the TDC1 routing node.#n Enhanced Scaling (&$ has all the features of the corresponding standard and Enhanced

    (&$s and provides additional forwarding features and scalability improvements. The

    Enhanced Scaling (&$C is compatible with all currently supported TDC1 (&$0, (&$9, and(&$: &!$ combinations.

    The &ac"et (orwarding Engine receives incoming pac"ets from the &!$s installed on the (&$and forwards them through the switch planes to the appropriate destination port. Each (&$

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    contains a memory subsystem *//)+ that is managed by the @ueuing and /emory!nterface #S!$s.

    '$itch Interface oard ('I)

    The Switch !nterface )oards *S!)s+ provide the switching function to the destination (&$.

    The S!)s create the switch fabric for the router, providing up to a total of :GF millionpac"ets per second */pps+ of forwarding with the maimum configuration.

    S!)s are located at the center rear of the router chassis in the slots labeled S!)1 through

    S!): *top to bottom+. The /:91 router can be configured with two, three, or four S!)s. 5oucan upgrade from two to three S!)s or from three to four S!)s without resetting or stopping

    &ac"et (orwarding Engines.

    Each (&$ has a dedicated #S!$ with up to four highspeed lin"s that connect to the S!)s*one lin" per S!)+.

    S!)s are hotinsertable and hotremovable.

    user@host> show chassis enironment si520( status:  2tate 8n*ine  Temperature 34 degrees C / 93 degrees   !ower:  ?R8"G# m  1 1& m  '& '49 m  33 33, m  1 5ias 179 m  33 5ias 3'99 m  & 5ias &3 m  5ias 7374 m

    20( 1 status:  2tate 8n*ine  Temperature 3& degrees C / 9& degrees   !ower:  ?R8"G# m  1 114 m  '& '477 m  33 3319 m  1 5ias 179' m  33 5ias 3'91 m  & 5ias 491 m  5ias 733& m20( ' status:  2tate 8n*ine  Temperature 33 degrees C / 91 degrees   !ower:  ?R8"G# m  1 111 m  '& '49 m  33 333 m  1 5ias 1797 m  33 5ias 334 m  & 5ias &'& m

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      5ias 733 m20( 3 status:  2tate 8n*ine  Temperature 37 degrees C / 9 degrees   !ower:  ?R8"G# m  1 179 m  '& '41 m  33 33' m  1 5ias 179' m  33 5ias 3313 m  & 5ias &13 m  5ias 74,7 m

    -ost 'ubsyste# escri"tion *7hat is euivalent hardware in other platforms and whereit is physically located+ o" it is the combination of RE and $)

    The host subsystem consists of a Routing Engine functioning together with a control board.

    The router can have one or two host subsystems.

    The host subsystem provides the routing and system management functions of the router.5ou can install one or two host subsystems on the router. To operate, each host subsystem

    functions as a unitB the Routing Engine reuires the corresponding $ontrol )oard *$)+ and

    vice versa.

    ;OTE% 7e recommend that you install two host subsystems for redundant protection. !f youinstall only one host subsystem, we recommend that you install it in slot RE1.

    Misc Co##ands for M/.,*

    user@host> show chassis enironment 6pm

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    !% status:  2tate 8n*ine  !% ?("2 o*tage:  & &, m  1 5ias 1799 m  33 5ias 3'94 m  & 5ias 499 m  5ias 7,' m  !% ?("2 temperature 3 degrees C / , degrees   ?("2 Reision &1

    M234 M2+,4 M25,4 M26,

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    /8F router% #llows usage of the /odular !nterface $ards */!$+ slot labeled 0I/!$ 1, which

    comes prepopulated with the -igabit Ethernet /!$ with S(&.

    /801 router% #llows usage of the /odular !nterface $ards */!$+ slot labeled 0I/!$ 1, which

    comes prepopulated with the -igabit Ethernet /!$ with S(& and the second /!$ slot labeled0I/!$ 0.

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    /8C1 router% #llows usage of both /odular !nterface $ards */!$+ slots and ports 1 and 0 of

    the builtin 01-igabit Ethernet /!$ *labeled 1I/!$ 1+.

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    /8G1 router% #llows usage of both /odular !nterface $ards */!$+ slots and all four ports of

    the builtin 01-igabit Ethernet /!$ *labeled 1I/!$ 1+. # fied version of the /8G1 router*model number% /8G1CGT+ has CG fied 01I011I0111)aseT RJCF ports in place of the /!$

    slots.

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    ;OTE% The port labeled $3O$ provides 01 /hK output. The port labeled S5;$ provides 0

    &&S output.

    aseboard escri"tion *!s it same as midplane???+ yes

    The baseboard is located in the center of the chassis and forms the rear of the /!$ card

    cage. The baseboard is not replaceable. The /!$s and power supplies install into the

    baseboard from the front of the chassis. 4ata pac"ets are transferred across the baseboardfrom the /!$ to the &ac"et (orwarding Engine, and from the &ac"et (orwarding Engine

    across the baseboard to the destination /!$. The baseboard provides the followingfunctions%

    • &owers on and powers off /!$s

    • $ontrols cloc"ing, system resets, and booting

    • /onitors and controls system functions, including fan speed, board power status,

    &4/ status and control, and the front panel

    • &rovides interconnections to all the /!$s within the chassis

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    Modular Interface Card escri"tion *!s it same as &!$ in / Series???+ o" yes

    /odular !nterface $ards */!$s+ provide the physical connections to various networ" mediatypes. /!$s receive incoming pac"ets from the networ" and transmit outgoing pac"ets to

    the networ". 4uring this process, each /!$ performs framing and highspeed signaling forits media type. )efore transmitting outgoing data pac"ets through the /!$ interfaces, the

    router encapsulates the pac"ets received.

    On the fied /8G1 chassis, the /!$s come preinstalled and cannot be replaced.

    On the modular /8F, /801, /8C1, and /8G1 chassis, /!$s install into two slots in the front

    of the router.

    The Services &!$ slot located in the rear of the chassis is currently not supported.

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    Front!Pluggable MICs*

    5ou can install and remove /!$s in the /8F, /801, /8C1, and modular /8G1 chassis. The/!$ slots are labeled 0I/!$ 1 and 0I/!$ 0. Each /!$ slot has an e>ector handle located

    above the /!$ slot.

    5ou can install /!$s of different media types as long as the router supports those /!$s.

    Fixed (uilt!in) MICs ! uilt!in +,!igabit Ethernet MIC*

    The builtin 01-igabit Ethernet /!$ is fied on the /8F, /801, /8C1, and /8G1 routers.The /!$ is labeled 1I/!$ 1 and is located on the front panel.

    )uiltin TriRate /!$ The builtin CGport TriRate /!$ is available only on the fied /8G1

    chassis */8G1CGT+ and is not replaceable.

    The chassis has two builtin /&$s */odular &ort $oncentrators+, which are represented in

    the $3! as (&$ 1 and (&$ 0.

    /&$ 1 *(&$ 1+ contains a Cport 01-igabit Ethernet /!$. )oth the /&$ and the /!$ are

    considered fied and are built into the front of the chassis. The /!$ is represented as /!$ 1

    in the $3! and is logically divided into a single &!$, which is represented as &!$ 1.

    /&$ 0 *(&$ 0+ has two slots, which accept up to two /!$s. The /!$s are represented as/!$ 1 and /!$ 0 in the $3! and are logically divided into &!$s depending on their type. #

    /!$ installed in /!$ slot 0I1 is represented in the $3! as &!$ 1 and &!$ 0. # /!$ installed in/!$ slot 0I0 is represented as &!$ 9 and &!$ :.

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    /&$ 1 *(&$ 1+ contains a Cport 01-igabit Ethernet /!$ and is built into the front of thechassis. The /!$ is represented as /!$ 1 in the $3! and is logically divided into a single &!$,

    which is represented as &!$ 1.

    /&$ 0 *(&$ 0+ contains a CGport TriRate /!$ and is built into the front of the chassis. The/!$ is represented as /!$ 1 in the $3! and is logically divided into four &!$s, which are

    numbered 1 through :. Each logical &!$ on the builtin TriRate /!$ contains twelve ports,

    which are numbered 1 through 00.

    Routing Engine escri"tion

    The Routing Engine is builtin on the /8F, /801, /8C1, and /8G1 baseboard and cannot be

    replaced.

    Misc Co##ands for M234 M2+,4 M25,4 M26,*

    *a5@m;1t-1K run show chassis hardwareAardware inentor):0tem ersion !art num5er 2eria* num5er #escriptionChassis ,9 %1-T%idp*ane RE 711-3'13 C$$(43 %1-T!E% Re 4 74-'' I$''3, $C !ower Entr) %odu*eRouting Engine ("0T0G ("0T0G Routing Engine

    TE( ("0T0G ("0T0G orwarding Engine!rocessor  H% RE , 711-'4 LL4,,, %!C H%!C ("0T0G ("0T0G %!C ("0T0G  %0C ("0T0G ("0T0G 4; 1?E !  !0C ("0T0G ("0T0G 4; 1?E !  cr RE 3 74-14'9 $#1'9%1( !-1?-2R  cr 3 RE 3 74-14'9 $#1'9%4 !-1?-2R!C 1 ("0T0G ("0T0G %!C ("0T0G

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      %0C RE ', 7&-'39' C$$C&&11 3# '; 1?E

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      1' 1'1,' m

    MeditN*a5@m;1t-1K run show chassis enironment pem!E% status:  2tate 8n*ine  Temperature 8#C 8utput: 8

    !E% 1 status:  2tate Empt)

    MeditN*a5@m;1t-1K run show chassis enironment routing-engineRouting Engine status:  2tate 8n*ine %aster  Temperature &' degrees C / 1'& degrees

    *a5@m;1t-1K run show chassis 6an0tem 2tatus R!% %easurement

      an 1 8 &94 2pinning at high speed

    an ' 8 , 2pinning at high speedan 3 8 , 2pinning at high speedan 4 8 &94 2pinning at high speedan & 8 , 2pinning at high speed

    *a5@m;1t-1K run show chassis 6pc detai*2*ot in6ormation:  2tate 8n*ineTemperature $5sent

      Tota* C!" #R$% 1'4 %(  Tota* 2R$% 43 %(  Tota* 2#R$% 131, %(  2tart time '13--1 13:3': "TC  "ptime 97 da)s '1 hours minutes 17 seconds2*ot 1 in6ormation:  2tate 8n*ineTemperature $5sent

      Tota* C!" #R$% 1'4 %(  Tota* 2R$% 43 %(  Tota* 2#R$% 131, %(  2tart time '13--1 13:3':9 "TC  "ptime 97 da)s '1 hours minutes 1, seconds

    *a5@m;1t-1K run show chassis 6pc pic-status2*ot 8n*ine!0C 8n*ine 4; 1?E !

    2*ot 1 8n*ine

    !0C 8n*ine 1; 1?E

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      "ser percent  (ac.ground percent  erne* 3 percent  0nterrupt 14 percent  0d*e 3 percent  %ode* RE-%1-T  2tart time '13--1 13:'9:41 "TC  "ptime 97 da)s '1 hours 13 minutes  ast re5oot reason Router re5ooted a6ter a norma* shutdown  oad aerages: 1 minute & minute 1& minute  3 33 1

    *a5@m;1t-1K run show chassis t6e5TE( status:2*ot in6ormation:  2tate 8n*ine0nta.e temperature &1 degrees C / 1'3 degrees

      E;haust temperature ,7 degrees C / 1&' degrees   C!" uti*i+ation 3 percent  0nterrupt uti*i+ation percent

      Aeap uti*i+ation 17 percent  (u66er uti*i+ation ' percent  Tota* C!" #R$% 1'4 %(  2tart time: '13--1 13:3': "TC  "ptime: 97 da)s '1 hours 11 minutes &seconds

    M256,

    The connections between 4&$s, (&$s, /&$s, and S$)s are organiKed in three groups%

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    • Switch fabric2connects the interface cards and provides for pac"et transport

    between 4&$s, (&$s, and /&$s.

    • $ontrol plane2-igabit Ethernet lin"s between the combined S$)sIRouting Engines

    and each 4&$, (&$, or /&$. #ll boardtoboard information is passed over Ethernetecept for lowlevel status and commands.

    • /anagement signals2&rovide for lowlevel status diagnostic support.

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    Mid"lane escri"tion

    The midplane is located toward the rear of the chassis and forms the rear of the card cage.The line cards and S$)s install into the midplane from the front of the chassis, and the

    power supplies install into the midplane from the rear of the chassis. The cooling system

    components also connect to the midplane.

    The midplane performs the following ma>or functions%

    • 4ata path24ata pac"ets are transferred across the midplane between the line cards

    through the fabric #S!$s on the S$)s.

    • &ower distribution2the router power supplies connect to the midplane, which

    distributes power to all the router components.

    • Signal path2the midplane provides the signal path to the line cards, S$)s, Routing

    Engines, and other system components for monitoring and control of the system.

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    ense Port Concentrator (PC)

    # 4ense &ort $oncentrator *4&$+ is optimiKed for Ethernet density. The 4&$ assembly

    combines pac"et forwarding and Ethernet interfaces on a single board, with either two orfour 01-bps &ac"et (orwarding Engines. Each &ac"et (orwarding Engine consists of one !

    chip for 3ayer : processing and one 3ayer 9 networ" processor. The 4&$s interface with thepower supplies and Switch $ontrol )oards *S$)s+. 4&$s are hotremovable and hot

    insertable.

    Modular Port Concentrator (MPC)

    /odular &ort $oncentrators */&$s+ provide pac"et forwarding services. The /&$s are

    inserted into a slot in a router. /odular !nterface $ards */!$s+ provide the physicalinterfaces and install into the /&$s. 5ou can install up to two /!$s of different media typeson the same /&$ as long as the /&$ supports those /!$s.

    # specialiKed fied configuration /&$ provides higher port density over /!$s and combines

    pac"et forwarding and Ethernet interfaces onto a single line card. The fied configuration/&$ is inserted into a slot in a router and contains no slots for /!$s.

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    /!$s receive incoming pac"ets from the networ" and transmit outgoing pac"ets to thenetwor". 4uring this process, each /!$ performs framing and highspeed signaling for its

    media type. )efore transmitting outgoing data pac"ets through the /!$ interfaces, the /&$sencapsulate the pac"ets received. Each /&$ is euipped with up to four Junos Trio chipsets,

    which perform control functions tailored to the /&$=s media type. The /&$s interface withthe power supplies and Switch $ontrol )oards *S$)s+. 5ou must install redundant S$)s to

    support full linerate. /&$s are hotremovable and hotinsertable.

    Modular Interface Card (MIC)

    /odular !nterface $ards */!$s+ install into /odular &ort $oncentrators */&$s+ and providethe physical connections to various networ" media types. /!$s allow different physical

    interfaces to be supported on a single line card. 5ou can install /!$s of different mediatypes on the /&$ as long as the /&$ supports those /!$s.

    /!$s receive incoming pac"ets from the networ" and transmit outgoing pac"ets to the

    networ". 4uring this process, each /!$ performs framing and highspeed signaling for itsmedia type. )efore transmitting outgoing data pac"ets through the /!$ interfaces, the /&$s

    encapsulate the pac"ets received.

    /!$s are hotremovable and hotinsertable. 5ou can install up to two /!$s in the slots ineach /&$.

    Flexible PIC Concentrator (FPC)

    # (leible &!$ $oncentrator *(&$+ occupies two 4&$ slots on an /8 Series router. The router

    has si dedicated 4&$ slots that are numbered 1 through F, bottom to top. p to three (&$scan be installed horiKontally on the front of the router the interface corresponds to the

    lowest numbered 4&$ slot for which the (&$ is installed.

    Each (&$ supports up to two &!$s. On an (&$9, one &ac"et (orwarding Engine receives

    incoming pac"ets from the &!$s installed on the (&$ and forwards them through the switchplanes to the appropriate destination port. On an (&$:, two &ac"et (orwarding Engines

    receive incoming pac"ets from the &!$s installed on the (&$ and forwards them through theswitch planes to the appropriate destination port. The (&$s interface with the power

    supplies and S$)s. (&$s are hotremovable and hotinsertable.

    $ommand to chec"%

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6pcTemp C!" "ti*i+ation

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      Temperature E;haust ( '9 degrees C / 4 degrees !ower #isa5*ed1' !E 9 m

      1' !E 1 9 m  1' !E ' m  1' !E 3 9 m  1& m  1 !E , m  1 !E 1 9 m  1 !E ' 1' m  1 !E 3 1' m  '& 9 m  33 4& m  0'C 2*ae Reision 43!C 1 status:  2tate 866*ine  Temperature 0nta.e ' degrees C / ' degrees Temperature E;haust $ ' degrees C / ' degrees Temperature E;haust ( '9 degrees C / 4 degrees !ower #isa5*ed

    1' !E m  1' !E 1 m  1' !E ' m  1' !E 3 m  1& m  1 !E , m  1 !E 1 , m  1 !E ' m  1 !E 3 m  '& 3 m  33 ,9, m  0'C 2*ae Reision 4'!C ' status:  2tate 866*ine  Temperature 0nta.e ' degrees C / ' degrees Temperature E;haust $ '7 degrees C / degrees Temperature E;haust ( 3 degrees C / , degrees !ower #isa5*ed1' !E '& m

      1' !E 1 '& m  1' !E ' '& m  1' !E 3 m  1& 3 m

    1 !E 3 m  1 !E 1 '& m  1 !E ' '& m  1 !E 3 m

      '& 3 m  33 &1 m  0'C 2*ae Reision 4'!C 3 status:  2tate 8n*ine  Temperature 0nta.e 3 degrees C / 1 degrees Temperature E;haust $ 4 degrees C / 14 degrees Temperature E;haust ( 4, degrees C / 114 degrees Temperature " T2en 4 degrees C / 11 degrees Temperature " Chip 4, degrees C / 114 degrees

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      Temperature " 1 T2en 4 degrees C / 11 degrees Temperature " 1 Chip &, degrees C / 13' degrees Temperature " ' T2en 4 degrees C / 11 degrees Temperature " ' Chip 4 degrees C / 11 degrees Temperature " 3 T2en 4 degrees C / 11 degrees Temperature " 3 Chip & degrees C / 1'' degrees Temperature %H T2en 44 degrees C / 111 degrees Temperature %H Chip 4 degrees C / 11 degrees Temperature %H 1 T2en 44 degrees C / 111 degrees Temperature %H 1 Chip 49 degrees C / 1' degrees Temperature %H ' T2en 44 degrees C / 111 degrees Temperature %H ' Chip 4, degrees C / 114 degrees Temperature %H 3 T2en 44 degrees C / 111 degrees Temperature %H 3 Chip 44 degrees C / 111 degrees !ower$2-(0$233-+*'1& 33 m

      $2-##1-+*', 179, m  $2-##'&-+*', '&9 m  $2-$##1-+*'4 11 m  $2-!C0EO1-+*'4 99 m

      $2-##33-+*'4 3'94 m  $2-##O1&$-+*'4 1& m  $2-##O1&(-+*'4 1& m  $2-"O1-+*'4 11 m  $2-"1O1-+*'4 99, m  $2-%HO1-+*'4 1 m  $2-%H1O1-+*'4 99, m  $2-"'O1-+*'4 1 m  $2-"3O1-+*'4 99, m  $2-%H'O1-+*'4 1 m  $2-%H3O1-+*'4 1 m  $2-!%(O11-+*', 19 m0'C 2*ae Reision ,

    !C 4 status:  2tate 8n*ine  Temperature 0nta.e 4 degrees C / 14 degrees Temperature E;haust $ 41 degrees C / 1& degrees Temperature E;haust ( &1 degrees C / 1'3 degrees Temperature " T2en &1 degrees C / 1'3 degrees Temperature " Chip & degrees C / 1'' degrees Temperature " 1 T2en &1 degrees C / 1'3 degrees Temperature " 1 Chip &, degrees C / 13' degrees Temperature " ' T2en &1 degrees C / 1'3 degrees Temperature " ' Chip 4 degrees C / 11 degrees Temperature " 3 T2en &1 degrees C / 1'3 degrees Temperature " 3 Chip & degrees C / 1'' degrees Temperature %H T2en 4, degrees C / 114 degrees

    Temperature %H Chip 47 degrees C / 11, degrees Temperature %H 1 T2en 4, degrees C / 114 degrees Temperature %H 1 Chip 4 degrees C / 11 degrees Temperature %H ' T2en 4, degrees C / 114 degrees Temperature %H ' Chip 43 degrees C / 19 degrees Temperature %H 3 T2en 4, degrees C / 114 degrees Temperature %H 3 Chip 44 degrees C / 111 degrees !ower$2-(0$233-+*'1& 3'99 m

      $2-##1-+*', 1' m

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      $2-##'&-+*', '&1 m  $2-$##1-+*'4 1 m  $2-!C0EO1-+*'4 1 m  $2-##33-+*'4 331 m  $2-##O1&$-+*'4 1&' m  $2-##O1&(-+*'4 149, m  $2-"O1-+*'4 999 m  $2-"1O1-+*'4 99 m  $2-%HO1-+*'4 99, m  $2-%H1O1-+*'4 997 m  $2-"'O1-+*'4 997 m  $2-"3O1-+*'4 99, m  $2-%H'O1-+*'4 999 m  $2-%H3O1-+*'4 999 m  $2-!%(O11-+*', 197 m  0'C 2*ae Reision ,!C & status:  2tate 8n*ine  Temperature 0nta.e 41 degrees C / 1& degrees Temperature E;haust $ 43 degrees C / 19 degrees

    Temperature E;haust ( 49 degrees C / 1' degrees Temperature " T2en & degrees C / 1'' degrees Temperature " Chip 49 degrees C / 1' degrees Temperature " 1 T2en & degrees C / 1'' degrees Temperature " 1 Chip &9 degrees C / 13 degrees Temperature " ' T2en & degrees C / 1'' degrees Temperature " ' Chip & degrees C / 1'' degrees Temperature " 3 T2en & degrees C / 1'' degrees Temperature " 3 Chip &' degrees C / 1'& degrees Temperature %H T2en 47 degrees C / 11, degrees Temperature %H Chip &1 degrees C / 1'3 degrees Temperature %H 1 T2en 47 degrees C / 11, degrees Temperature %H 1 Chip &' degrees C / 1'& degrees Temperature %H ' T2en 47 degrees C / 11, degrees Temperature %H ' Chip 4& degrees C / 113 degrees Temperature %H 3 T2en 47 degrees C / 11, degrees Temperature %H 3 Chip 47 degrees C / 11, degrees !ower$2-(0$233-+*'1& 3'93 m

      $2-##1-+*', 1 m  $2-##'&-+*', '&4 m  $2-$##1-+*'4 999 m  $2-!C0EO1-+*'4 997 m  $2-##33-+*'4 3'94 m

    $2-##O1&$-+*'4 1499 m  $2-##O1&(-+*'4 149& m  $2-"O1-+*'4 1 m

      $2-"1O1-+*'4 997 m  $2-%HO1-+*'4 99 m  $2-%H1O1-+*'4 99, m  $2-"'O1-+*'4 99, m  $2-"3O1-+*'4 997 m  $2-%H'O1-+*'4 1 m  $2-%H3O1-+*'4 99 m  $2-!%(O11-+*', 111 m  0'C 2*ae Reision ,

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    PIC escri"tion

    &!$s provide the physical connection to various networ" media types, receiving incomingpac"ets from the networ" and transmitting outgoing pac"ets to the networ". 4uring this

    process, each &!$ performs framing and linespeed signaling for its media type. )eforetransmitting outgoing data pac"ets, the &!$s encapsulate the pac"ets received from the

    (&$s. Each &!$ is euipped with an #S!$ that performs control functions specific to themedia type of that &!$.

    $ommand to chec"%

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis pic 6pc-s*ot 4 pic-s*ot '!C s*ot 4 !0C s*ot ' in6ormation:  T)pe 4; 1?E

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    • &rovides interconnections to all the 4&$s, (&$s, and /&$s within the chassis through

    the switch fabrics integrated into the S$). *Same as $) in /091???+ o" 5es

    The Routing Engine installs directly into a slot on the S$)

    Enhanced '$itch Control oard escri"tion

    The Enhanced /8 Switch $ontrol )oard */8 S$)E+ serves the carrier Ethernet services

    router and carrier Ethernet transport mar"ets that reuire highercapacity traffic supportdemanding greater interface density *slot and capacity scale+, as well as improved services.

    The upgraded S$) is supported on /8AD1, /8CG1, and /89C1 routers. Some "ey attributesof the Enhanced /8 S$) are%

    • 0D1 -bpsIslot bandwidth with redundant fabric support, and improved fabric

    performance by using the netgeneration fabric *8(+ chip

    • # central cloc"ing module and a centraliKed cloc"ing architecture that supports cloc"

    cleanup and distribution. The Stratum : cloc" module performs cloc" monitoring,filtering, and holdover in a centraliKed chassis location

    • (ull performance with fabric redundancy for higher capacity line cards such as

    0D01-E and /&$:

    The Routing Engine installs directly into a slot on the /8 S$)E. !f two /8 S$)Es are

    installed, one /8 S$)E functions as the master /8 S$)E and the other as its bac"up. !f themaster fails or is removed, the bac"up restarts and becomes the master.

    $ommand to chec"%

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis enironment c5C( status:  2tate 8n*ine %aster  Temperature 33 degrees C / 91 degrees

    !ower 11' 1'& m  1'& 1'& m  1& 1&17 m  1 11 m  '& '&' m  33 3319 m  33 2%3 3'93 m  & &7' m  & RE &4, m  1' 1'4 m  1' RE 1191 m  !ower '

    4, 5ias %id!*ane 4&9 m

      113 5ias !E% 11311 m  113 5ias !# 113,9 m  113 5ias !8E 113 m  113 5ias !8E 1 11311 m  (us Reision 43  !?$ Reision C( 1 status:2tate 8n*ine 2tand5)

      Temperature 3' degrees C / 9 degrees

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      !ower 11' 1' m

      1'& 1',, m  1& 1&11 m  1 114 m  '& '&' m  33 333' m  33 2%3 33, m  & &&9 m  & RE &4, m  1' 1'1,' m  1' RE 1'', m  !ower '

    4, 5ias %id!*ane 47' m  113 5ias !E% 113& m  113 5ias !# 11'7' m  113 5ias !8E 11'9' m  113 5ias !8E 1 113,9 m  (us Reision 43  !?$ Reision

    Routing Engine

    Software processes that run on the Routing Engine maintain the routing tables, manage the

    routing protocols used on the router, control the router interfaces, control some chassiscomponents, and provide the interface for system management and user access to the

    router.

    5ou can install one or two Routing Engines in the router. The Routing Engines install into thefront of the chassis in horiKontal slots in the S$)s labeled 1 and 0. !f two Routing Engines

    are installed, one functions as the master and the other acts as the bac"up. !f the master

    Routing Engine fails or is removed, and the bac"up is configured appropriately, the bac"upta"es over as the master. The Routing Engines are hotpluggable.

    $ommand to chec"%

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis enironment routing-engineRouting Engine status:  2tate 8n*ine %aster  Temperature 4 degrees C / 14 degrees C!" Temperature 47 degrees C / 11, degrees

    Routing Engine 1 status:  2tate 8n*ine 2tand5)  Temperature 37 degrees C / 9 degrees C!" Temperature 41 degrees C / 1& degrees

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis routing-engineRouting Engine status:  2*ot :  Current state %aster  E*ection priorit) %aster

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      C!" uti*i+ation:  "ser percent  (ac.ground percent  erne* 3 percent  0nterrupt 1 percent  0d*e 9, percent  %ode* RE-2-'  2eria* 0# 99''1,3  2tart time '13-11-4 1,:&1:1, "TC  "ptime 3 da)s &7 seconds  ast re5oot reason Router re5ooted a6ter a norma* shutdown  oad aerages: 1 minute & minute 1& minute  Routing Engine status:  2*ot 1:  Current state (ac.up  E*ection priorit) (ac.up

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    0tem ersion !art num5er 2eria* num5er #escriptionChassis FG1'9&$( %4%idp*ane RE & 71-17414 $C$(94,& %4 %idp*ane!% (oard RE ' 71-17'&4 C$$T713& ront !ane* #isp*a)!E% ' Re 9 74-'997 HC21'3,"7& !2 14-'&'.IP 9-',4 $C in!E% 3 Re 9 74-'997 HC21'3&"(T !2 14-'&'.IP 9-',4 $C inRouting Engine RE 9 74-13,3 99''1,3 RE-2-'Routing Engine 1 RE 1, 74-13,3 91'',,74 RE-2-'C( RE 14 71-'1&'3 L37 % 2C(C( 1 RE 14 71-'1&'3 $((#&4&7 % 2C(!C RE '4 7&-''3,, C$$C71'4 #!CE '; 1?E D ';1?E R EH  C!"!C 1 RE 17 7&-'1&,, BT1 #!CE 4; 1?E R  C!"!C ' RE '1 7&-''3,, BR144& #!CE '; 1?E D ';1?E R EH  C!"

    !C 3 RE 34 7&-'4,7 C$$,3 %!C 3# 1,; 1?E  C!" RE 11 711-'99 C$$F3'1 $%!C !%(  !0C ("0T0G ("0T0G 4; 1?E

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      !E% 1 $5sent!E% ' 8 3& degrees C / 9& degrees

      !E% 3 8 3& degrees C / 9& degrees   Routing Engine 8 4 degrees C / 14 degrees   Routing Engine C!" 8 47 degrees C / 11, degrees   Routing Engine 1 8 37 degrees C / 9 degrees   Routing Engine 1 C!" 8 41 degrees C / 1& degrees   C( 0nta.e 8 33 degrees C / 91 degrees   C( E;haust $ 8 3& degrees C / 9& degrees   C( E;haust ( 8 3& degrees C / 9& degrees   C( $C(C 8 33 degrees C / 91 degrees   C( 2 $ 8 4' degrees C / 17 degrees   C( 2 ( 8 37 degrees C / 9 degrees   C( 1 0nta.e 8 3' degrees C / 9 degrees   C( 1 E;haust $ 8 34 degrees C / 93 degrees   C( 1 E;haust ( 8 34 degrees C / 93 degrees   C( 1 $C(C 8 3' degrees C / 9 degrees   C( 1 2 $ 8 4' degrees C / 17 degrees   C( 1 2 ( 8 3, degrees C / 9, degrees   !C 0nta.e 8 ' degrees C / ' degrees

      !C E;haust $ 8 '7 degrees C / degrees   !C E;haust ( 8 '9 degrees C / 4 degrees   !C 1 0nta.e 8 ' degrees C / ' degrees   !C 1 E;haust $ 8 ' degrees C / ' degrees   !C 1 E;haust ( 8 '9 degrees C / 4 degrees   !C ' 0nta.e 8 ' degrees C / ' degrees   !C ' E;haust $ 8 '7 degrees C / degrees   !C ' E;haust ( 8 3 degrees C / , degrees   !C 3 0nta.e 8 3 degrees C / 1 degrees   !C 3 E;haust $ 8 4 degrees C / 14 degrees   !C 3 E;haust ( 8 4, degrees C / 114 degrees   !C 3 " T2en 8 4 degrees C / 11 degrees   !C 3 " Chip 8 47 degrees C / 11, degrees   !C 3 " 1 T2en 8 4 degrees C / 11 degrees   !C 3 " 1 Chip 8 &, degrees C / 13' degrees   !C 3 " ' T2en 8 4 degrees C / 11 degrees   !C 3 " ' Chip 8 4 degrees C / 11 degrees   !C 3 " 3 T2en 8 4 degrees C / 11 degrees   !C 3 " 3 Chip 8 & degrees C / 1'' degrees   !C 3 %H T2en 8 44 degrees C / 111 degrees   !C 3 %H Chip 8 47 degrees C / 11, degrees   !C 3 %H 1 T2en 8 44 degrees C / 111 degrees   !C 3 %H 1 Chip 8 4 degrees C / 11 degrees   !C 3 %H ' T2en 8 44 degrees C / 111 degrees   !C 3 %H ' Chip 8 4, degrees C / 114 degrees   !C 3 %H 3 T2en 8 44 degrees C / 111 degrees   !C 3 %H 3 Chip 8 44 degrees C / 111 degrees

      !C 4 0nta.e 8 4 degrees C / 14 degrees   !C 4 E;haust $ 8 41 degrees C / 1& degrees   !C 4 E;haust ( 8 &1 degrees C / 1'3 degrees   !C 4 " T2en 8 &1 degrees C / 1'3 degrees   !C 4 " Chip 8 & degrees C / 1'' degrees   !C 4 " 1 T2en 8 &1 degrees C / 1'3 degrees   !C 4 " 1 Chip 8 &, degrees C / 13' degrees   !C 4 " ' T2en 8 &1 degrees C / 1'3 degrees   !C 4 " ' Chip 8 4 degrees C / 11 degrees   !C 4 " 3 T2en 8 &1 degrees C / 1'3 degrees

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      !C 4 " 3 Chip 8 & degrees C / 1'' degrees   !C 4 %H T2en 8 4, degrees C / 114 degrees   !C 4 %H Chip 8 47 degrees C / 11, degrees   !C 4 %H 1 T2en 8 4, degrees C / 114 degrees   !C 4 %H 1 Chip 8 4 degrees C / 11 degrees   !C 4 %H ' T2en 8 4, degrees C / 114 degrees   !C 4 %H ' Chip 8 43 degrees C / 19 degrees   !C 4 %H 3 T2en 8 4, degrees C / 114 degrees   !C 4 %H 3 Chip 8 44 degrees C / 111 degrees   !C & 0nta.e 8 41 degrees C / 1& degrees   !C & E;haust $ 8 43 degrees C / 19 degrees   !C & E;haust ( 8 49 degrees C / 1' degrees   !C & " T2en 8 & degrees C / 1'' degrees   !C & " Chip 8 49 degrees C / 1' degrees   !C & " 1 T2en 8 & degrees C / 1'' degrees   !C & " 1 Chip 8 &9 degrees C / 13 degrees   !C & " ' T2en 8 & degrees C / 1'' degrees   !C & " ' Chip 8 & degrees C / 1'' degrees   !C & " 3 T2en 8 & degrees C / 1'' degrees   !C & " 3 Chip 8 &' degrees C / 1'& degrees

      !C & %H T2en 8 47 degrees C / 11, degrees   !C & %H Chip 8 &1 degrees C / 1'3 degrees   !C & %H 1 T2en 8 47 degrees C / 11, degrees   !C & %H 1 Chip 8 &' degrees C / 1'& degrees   !C & %H ' T2en 8 47 degrees C / 11, degrees   !C & %H ' Chip 8 4& degrees C / 113 degrees   !C & %H 3 T2en 8 47 degrees C / 11, degrees   !C & %H 3 Chip 8 47 degrees C / 11, degrees ans Top Rear an 8 2pinning at intermediate-speed  (ottom Rear an 8 2pinning at intermediate-speed  Top %idd*e an 8 2pinning at intermediate-speed  (ottom %idd*e an 8 2pinning at intermediate-speed  Top ront an 8 2pinning at intermediate-speed  (ottom ront an 8 2pinning at intermediate-speed

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis enironment 6pm!% status:  2tate 8n*ine  0'C2 Reision 41

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis enironment pem!E% ' status:  2tate 8n*ine  Temperature 8#C 8utput o*tage

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    in. is down on ?E port ' connected to deice: !C'

    in. is good on ?E port 3 connected to deice: !C3  2peed is 1%5  #up*e; is 6u**  $utonegotiate is Ena5*ed  *ow Contro* T is #isa5*ed  *ow Contro* R is #isa5*ed

    in. is good on ?E port 4 connected to deice: !C4  2peed is 1%5  #up*e; is 6u**  $utonegotiate is Ena5*ed  *ow Contro* T is #isa5*ed  *ow Contro* R is #isa5*ed

    in. is good on ?E port & connected to deice: !C&  2peed is 1%5#up*e; is 6u**

      $utonegotiate is Ena5*ed  *ow Contro* T is #isa5*ed  *ow Contro* R is #isa5*ed

    in. is down on ?E port , connected to deice: !C,

    in. is down on ?E port 7 connected to deice: !C7

    in. is down on ?E port connected to deice: !C

    in. is down on ?E port 9 connected to deice: !C9

    in. is down on ?E port 1 connected to deice: !C1

    in. is down on ?E port 11 connected to deice: !C11

    in. is good on ?E port 1' connected to deice: 8ther RE  2peed is 1%5  #up*e; is 6u**  $utonegotiate is Ena5*ed  *ow Contro* T is #isa5*ed  *ow Contro* R is #isa5*ed

    in. is good on ?E port 13 connected to deice: RE-?igE  2peed is 1%5  #up*e; is 6u**  $utonegotiate is Ena5*ed

      *ow Contro* T is #isa5*ed  *ow Contro* R is #isa5*ed

    in. is down on ?E port 14 connected to deice: #e5ug-?igE

    *a5@2!$G#0$G-CR-TC8RE-TCK show chassis 6a5ric destinations no-morea5ric destinations state:  : non-e;istent  ': ena5*ed  3: disa5*ed

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      ,: dest-err and disa5*ed

    !C 3 !E   !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' '''' !E 1  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''

      !*ane 7 '''' '''' '''' !E '  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' '''' !E 3  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' ''''!C 4 !E   !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''

      !*ane , '''' '''' ''''  !*ane 7 '''' '''' '''' !E 1  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''

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      !*ane 7 '''' '''' '''' !E '  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' '''' !E 3  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' ''''!C &

     !E   !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' '''' !E 1  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' '''' !E '  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' ''''

     !E 3  !*ane '''' '''' ''''  !*ane 1 '''' '''' ''''  !*ane ' '''' '''' ''''  !*ane 3 '''' '''' ''''  !*ane 4 '''' '''' ''''  !*ane & '''' '''' ''''  !*ane , '''' '''' ''''  !*ane 7 '''' '''' ''''

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    *a5@2!$G#0$G-CR-TC8RE-TCK show chassis 6a5ric 6pcsa5ric management !C state:!C 3  !E K  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed  !E K1  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed

      !*ane 7: !*ane ena5*ed  !E K'  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed

    !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed  !E K3  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed!C 4  !E K  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed

      !*ane ,: !*ane ena5*ed!*ane 7: !*ane ena5*ed

      !E K1  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed

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      !*ane 7: !*ane ena5*ed  !E K'  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed  !E K3  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed

    !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed!C &

      !E K  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed  !E K1  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed

    !*ane 7: !*ane ena5*ed  !E K'  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed

      !E K3  !*ane : !*ane ena5*ed  !*ane 1: !*ane ena5*ed  !*ane ': !*ane ena5*ed  !*ane 3: !*ane ena5*ed  !*ane 4: !*ane ena5*ed  !*ane &: !*ane ena5*ed  !*ane ,: !*ane ena5*ed  !*ane 7: !*ane ena5*ed

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    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6a5ric map#!C1!E->C(OO #own C(OO->#!C1!E #own#!C1!E1->C(OO1 #own C(OO1->#!C1!E1 #own#!C1!E'->C(OO' #own C(OO'->#!C1!E' #own#!C1!E3->C(OO3 #own C(OO3->#!C1!E3 #own#!C1!E->C(O1O #own C(O1O->#!C1!E #own#!C1!E1->C(O1O1 #own C(O1O1->#!C1!E1 #own#!C1!E'->C(O1O' #own C(O1O'->#!C1!E' #own#!C1!E3->C(O1O3 #own C(O1O3->#!C1!E3 #own#!C3!E->C(O3O "p C(O3O->#!C3!E "p#!C3!E1->C(O3O1 "p C(O3O1->#!C3!E1 "p#!C3!E'->C(O3O' "p C(O3O'->#!C3!E' "p#!C3!E3->C(O3O3 "p C(O3O3->#!C3!E3 "p#!C3!E->C(O&O "p C(O&O->#!C3!E "p#!C3!E1->C(O&O1 "p C(O&O1->#!C3!E1 "p#!C3!E'->C(O&O' "p C(O&O'->#!C3!E' "p#!C3!E3->C(O&O3 "p C(O&O3->#!C3!E3 "p#!C&!E->C(O,O "p C(O,O->#!C&!E "p#!C&!E1->C(O,O1 "p C(O,O1->#!C&!E1 "p#!C&!E'->C(O,O' "p C(O,O'->#!C&!E' "p

    #!C&!E3->C(O,O3 "p C(O,O3->#!C&!E3 "p#!C&!E->C(O7O "p C(O7O->#!C&!E "p#!C&!E1->C(O7O1 "p C(O7O1->#!C&!E1 "p#!C&!E'->C(O7O' "p C(O7O'->#!C&!E' "p#!C&!E3->C(O7O3 "p C(O7O3->#!C&!E3 "p#!C4!E->C(OO "p C(OO->#!C4!E "p#!C4!E1->C(OO1 "p C(OO1->#!C4!E1 "p#!C4!E'->C(OO' "p C(OO'->#!C4!E' "p#!C4!E3->C(OO3 "p C(OO3->#!C4!E3 "p#!C4!E->C(O9O "p C(O9O->#!C4!E "p#!C4!E1->C(O9O1 "p C(O9O1->#!C4!E1 "p#!C4!E'->C(O9O' "p C(O9O'->#!C4!E' "p#!C4!E3->C(O9O3 "p C(O9O3->#!C4!E3 "p#!C'!E->C(O11O #own C(O11O->#!C'!E #own#!C'!E1->C(O11O1 #own C(O11O1->#!C'!E1 #own#!C'!E'->C(O11O' #own C(O11O'->#!C'!E' #own#!C'!E3->C(O11O3 #own C(O11O3->#!C'!E3 #own#!C'!E->C(O13O #own C(O13O->#!C'!E #own#!C'!E1->C(O13O1 #own C(O13O1->#!C'!E1 #own#!C'!E'->C(O13O' #own C(O13O'->#!C'!E' #own#!C'!E3->C(O13O3 #own C(O13O3->#!C'!E3 #own#!C!E->C(O14O #own C(O14O->#!C!E #own#!C!E1->C(O14O1 #own C(O14O1->#!C!E1 #own#!C!E'->C(O14O' #own C(O14O'->#!C!E' #own#!C!E3->C(O14O3 #own C(O14O3->#!C!E3 #own#!C!E->C(O1&O #own C(O1&O->#!C!E #own#!C!E1->C(O1&O1 #own C(O1&O1->#!C!E1 #own

    #!C!E'->C(O1&O' #own C(O1&O'->#!C!E' #own#!C!E3->C(O1&O3 #own C(O1&O3->#!C!E3 #own#!C1!E->C(OO #own C(OO->#!C1!E #own#!C1!E1->C(OO1 #own C(OO1->#!C1!E1 #own#!C1!E'->C(OO' #own C(OO'->#!C1!E' #own#!C1!E3->C(OO3 #own C(OO3->#!C1!E3 #own#!C1!E->C(O1O #own C(O1O->#!C1!E #own#!C1!E1->C(O1O1 #own C(O1O1->#!C1!E1 #own#!C1!E'->C(O1O' #own C(O1O'->#!C1!E' #own#!C1!E3->C(O1O3 #own C(O1O3->#!C1!E3 #own

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    #!C4!E->C(O9O "p C(O9O->#!C4!E "p#!C4!E1->C(O9O1 "p C(O9O1->#!C4!E1 "p#!C4!E'->C(O9O' "p C(O9O'->#!C4!E' "p#!C4!E3->C(O9O3 "p C(O9O3->#!C4!E3 "p#!C'!E->C(O11O #own C(O11O->#!C'!E #own#!C'!E1->C(O11O1 #own C(O11O1->#!C'!E1 #own#!C'!E'->C(O11O' #own C(O11O'->#!C'!E' #own#!C'!E3->C(O11O3 #own C(O11O3->#!C'!E3 #own#!C'!E->C(O13O #own C(O13O->#!C'!E #own#!C'!E1->C(O13O1 #own C(O13O1->#!C'!E1 #own#!C'!E'->C(O13O' #own C(O13O'->#!C'!E' #own#!C'!E3->C(O13O3 #own C(O13O3->#!C'!E3 #own#!C!E->C(O14O #own C(O14O->#!C!E #own#!C!E1->C(O14O1 #own C(O14O1->#!C!E1 #own#!C!E'->C(O14O' #own C(O14O'->#!C!E' #own#!C!E3->C(O14O3 #own C(O14O3->#!C!E3 #own#!C!E->C(O1&O #own C(O1&O->#!C!E #own#!C!E1->C(O1&O1 #own C(O1&O1->#!C!E1 #own#!C!E'->C(O1&O' #own C(O1&O'->#!C!E' #own#!C!E3->C(O1&O3 #own C(O1&O3->#!C!E3 #own#!C1!E->C(1OO #own C(1OO->#!C1!E #own#!C1!E1->C(1OO1 #own C(1OO1->#!C1!E1 #own#!C1!E'->C(1OO' #own C(1OO'->#!C1!E' #own#!C1!E3->C(1OO3 #own C(1OO3->#!C1!E3 #own#!C1!E->C(1O1O #own C(1O1O->#!C1!E #own#!C1!E1->C(1O1O1 #own C(1O1O1->#!C1!E1 #own#!C1!E'->C(1O1O' #own C(1O1O'->#!C1!E' #own

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    #!C!E->C(1O1&O #own C(1O1&O->#!C!E #own#!C!E1->C(1O1&O1 #own C(1O1&O1->#!C!E1 #own#!C!E'->C(1O1&O' #own C(1O1&O'->#!C!E' #own#!C!E3->C(1O1&O3 #own C(1O1&O3->#!C!E3 #own#!C1!E->C(11OO #own C(11OO->#!C1!E #own#!C1!E1->C(11OO1 #own C(11OO1->#!C1!E1 #own#!C1!E'->C(11OO' #own C(11OO'->#!C1!E' #own#!C1!E3->C(11OO3 #own C(11OO3->#!C1!E3 #own#!C1!E->C(11O1O #own C(11O1O->#!C1!E #own#!C1!E1->C(11O1O1 #own C(11O1O1->#!C1!E1 #own#!C1!E'->C(11O1O' #own C(11O1O'->#!C1!E' #own#!C1!E3->C(11O1O3 #own C(11O1O3->#!C1!E3 #own#!C3!E->C(11O3O "p C(11O3O->#!C3!E "p#!C3!E1->C(11O3O1 "p C(11O3O1->#!C3!E1 "p#!C3!E'->C(11O3O' "p C(11O3O'->#!C3!E' "p#!C3!E3->C(11O3O3 "p C(11O3O3->#!C3!E3 "p#!C3!E->C(11O&O "p C(11O&O->#!C3!E "p#!C3!E1->C(11O&O1 "p C(11O&O1->#!C3!E1 "p#!C3!E'->C(11O&O' "p C(11O&O'->#!C3!E' "p#!C3!E3->C(11O&O3 "p C(11O&O3->#!C3!E3 "p

    #!C&!E->C(11O,O "p C(11O,O->#!C&!E "p#!C&!E1->C(11O,O1 "p C(11O,O1->#!C&!E1 "p#!C&!E'->C(11O,O' "p C(11O,O'->#!C&!E' "p#!C&!E3->C(11O,O3 "p C(11O,O3->#!C&!E3 "p#!C&!E->C(11O7O "p C(11O7O->#!C&!E "p#!C&!E1->C(11O7O1 "p C(11O7O1->#!C&!E1 "p#!C&!E'->C(11O7O' "p C(11O7O'->#!C&!E' "p#!C&!E3->C(11O7O3 "p C(11O7O3->#!C&!E3 "p#!C4!E->C(11OO "p C(11OO->#!C4!E "p#!C4!E1->C(11OO1 "p C(11OO1->#!C4!E1 "p#!C4!E'->C(11OO' "p C(11OO'->#!C4!E' "p#!C4!E3->C(11OO3 "p C(11OO3->#!C4!E3 "p#!C4!E->C(11O9O "p C(11O9O->#!C4!E "p#!C4!E1->C(11O9O1 "p C(11O9O1->#!C4!E1 "p#!C4!E'->C(11O9O' "p C(11O9O'->#!C4!E' "p#!C4!E3->C(11O9O3 "p C(11O9O3->#!C4!E3 "p#!C'!E->C(11O11O #own C(11O11O->#!C'!E #own#!C'!E1->C(11O11O1 #own C(11O11O1->#!C'!E1 #own#!C'!E'->C(11O11O' #own C(11O11O'->#!C'!E' #own#!C'!E3->C(11O11O3 #own C(11O11O3->#!C'!E3 #own#!C'!E->C(11O13O #own C(11O13O->#!C'!E #own#!C'!E1->C(11O13O1 #own C(11O13O1->#!C'!E1 #own#!C'!E'->C(11O13O' #own C(11O13O'->#!C'!E' #own#!C'!E3->C(11O13O3 #own C(11O13O3->#!C'!E3 #own#!C!E->C(11O14O #own C(11O14O->#!C!E #own#!C!E1->C(11O14O1 #own C(11O14O1->#!C!E1 #own#!C!E'->C(11O14O' #own C(11O14O'->#!C!E' #own

    #!C!E3->C(11O14O3 #own C(11O14O3->#!C!E3 #own#!C!E->C(11O1&O #own C(11O1&O->#!C!E #own#!C!E1->C(11O1&O1 #own C(11O1&O1->#!C!E1 #own#!C!E'->C(11O1&O' #own C(11O1&O'->#!C!E' #own#!C!E3->C(11O1&O3 #own C(11O1&O3->#!C!E3 #own#!C1!E->C(11OO #own C(11OO->#!C1!E #own#!C1!E1->C(11OO1 #own C(11OO1->#!C1!E1 #own#!C1!E'->C(11OO' #own C(11OO'->#!C1!E' #own#!C1!E3->C(11OO3 #own C(11OO3->#!C1!E3 #own#!C1!E->C(11O1O #own C(11O1O->#!C1!E #own

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    #!C1!E1->C(11O1O1 #own C(11O1O1->#!C1!E1 #own#!C1!E'->C(11O1O' #own C(11O1O'->#!C1!E' #own#!C1!E3->C(11O1O3 #own C(11O1O3->#!C1!E3 #own#!C3!E->C(11O3O "p C(11O3O->#!C3!E "p#!C3!E1->C(11O3O1 "p C(11O3O1->#!C3!E1 "p#!C3!E'->C(11O3O' "p C(11O3O'->#!C3!E' "p#!C3!E3->C(11O3O3 "p C(11O3O3->#!C3!E3 "p#!C3!E->C(11O&O "p C(11O&O->#!C3!E "p#!C3!E1->C(11O&O1 "p C(11O&O1->#!C3!E1 "p#!C3!E'->C(11O&O' "p C(11O&O'->#!C3!E' "p#!C3!E3->C(11O&O3 "p C(11O&O3->#!C3!E3 "p#!C&!E->C(11O,O "p C(11O,O->#!C&!E "p#!C&!E1->C(11O,O1 "p C(11O,O1->#!C&!E1 "p#!C&!E'->C(11O,O' "p C(11O,O'->#!C&!E' "p#!C&!E3->C(11O,O3 "p C(11O,O3->#!C&!E3 "p#!C&!E->C(11O7O "p C(11O7O->#!C&!E "p#!C&!E1->C(11O7O1 "p C(11O7O1->#!C&!E1 "p#!C&!E'->C(11O7O' "p C(11O7O'->#!C&!E' "p#!C&!E3->C(11O7O3 "p C(11O7O3->#!C&!E3 "p#!C4!E->C(11OO "p C(11OO->#!C4!E "p

    #!C4!E1->C(11OO1 "p C(11OO1->#!C4!E1 "p#!C4!E'->C(11OO' "p C(11OO'->#!C4!E' "p#!C4!E3->C(11OO3 "p C(11OO3->#!C4!E3 "p#!C4!E->C(11O9O "p C(11O9O->#!C4!E "p#!C4!E1->C(11O9O1 "p C(11O9O1->#!C4!E1 "p#!C4!E'->C(11O9O' "p C(11O9O'->#!C4!E' "p#!C4!E3->C(11O9O3 "p C(11O9O3->#!C4!E3 "p#!C'!E->C(11O11O #own C(11O11O->#!C'!E #own#!C'!E1->C(11O11O1 #own C(11O11O1->#!C'!E1 #own#!C'!E'->C(11O11O' #own C(11O11O'->#!C'!E' #own#!C'!E3->C(11O11O3 #own C(11O11O3->#!C'!E3 #own#!C'!E->C(11O13O #own C(11O13O->#!C'!E #own#!C'!E1->C(11O13O1 #own C(11O13O1->#!C'!E1 #own#!C'!E'->C(11O13O' #own C(11O13O'->#!C'!E' #own#!C'!E3->C(11O13O3 #own C(11O13O3->#!C'!E3 #own#!C!E->C(11O14O #own C(11O14O->#!C!E #own#!C!E1->C(11O14O1 #own C(11O14O1->#!C!E1 #own#!C!E'->C(11O14O' #own C(11O14O'->#!C!E' #own#!C!E3->C(11O14O3 #own C(11O14O3->#!C!E3 #own#!C!E->C(11O1&O #own C(11O1&O->#!C!E #own#!C!E1->C(11O1&O1 #own C(11O1&O1->#!C!E1 #own#!C!E'->C(11O1&O' #own C(11O1&O'->#!C!E' #own#!C!E3->C(11O1&O3 #own C(11O1&O3->#!C!E3 #own

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6a5ric p*anea5ric management !$GE state!*ane

      !*ane state: $CT0E  !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.

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      !E 3 :in.s o.  !C &  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.!*ane 1  !*ane state: $CT0E  !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.

    !E 3 :in.s o.  !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C &  !E :in.s o.

      !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.!*ane '  !*ane state: $CT0E  !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.

    !C &  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.!*ane 3  !*ane state: $CT0E  !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.

      !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C &  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.

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    !*ane 4!*ane state: $CT0E

      !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C &  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.!*ane &  !*ane state: $CT0E  !C 3

      !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.

    !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C &  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.!*ane ,  !*ane state: $CT0E  !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C &

    !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.!*ane 7  !*ane state: $CT0E  !C 3  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.

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      !E 3 :in.s o.  !C 4  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.  !C &  !E :in.s o.  !E 1 :in.s o.  !E ' :in.s o.  !E 3 :in.s o.

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6a5ric p*ane-*ocation------------a5ric !*ane ocations-------------!*ane Contro* (oard !*ane 1 Contro* (oard !*ane ' Contro* (oard !*ane 3 Contro* (oard !*ane 4 Contro* (oard 1!*ane & Contro* (oard 1

    !*ane , Contro* (oard 1!*ane 7 Contro* (oard 1

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6a5ric reacha5i*it)

    a5ric reacha5i*it) status: Go a5ric degradation detected now

    MeditN*a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6a5ric redundanc)-modea5ric redundanc) mode: 0ncreased (andwidth

    MeditN*a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6a5ric summar)!*ane 2tate "ptime  8n*ine ' da)s '3 hours &4 minutes 1 8n*ine ' da)s '3 hours &3 minutes &9 seconds ' 8n*ine ' da)s '3 hours &4 minutes 3 8n*ine ' da)s '3 hours &3 minutes &9 seconds 4 8n*ine ' da)s '3 hours &3 minutes &9 seconds & 8n*ine ' da)s '3 hours &3 minutes & seconds , 8n*ine ' da)s '3 hours &3 minutes &9 seconds 7 8n*ine ' da)s '3 hours &3 minutes & seconds

    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis 6an0tem 2tatus R!% %easurement

      Top Rear an 8 37 2pinning at intermediate-speed

      (ottom Rear an 8 39, 2pinning at intermediate-speed  Top %idd*e an 8 34 2pinning at intermediate-speed  (ottom %idd*e an 8 37 2pinning at intermediate-speed  Top ront an 8 37 2pinning at intermediate-speed  (ottom ront an 8 39 2pinning at intermediate-speed

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    *a5@2!$G#0$G-CR-TC8RE-TCK run show chassis power seQuenceChassis R" !ower 8n 2eQuence: 1 ' 3 4 &

    MeditN*a5@2!$G#0$G-CR-TC8RE-TCK run show chassis power

    !E% :  2tate: Empt)  0nput: $5sent

    !E% 1:  2tate: Empt)  0nput: $5sent

    !E% ':  2tate: 8n*ine  $C input: 8

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    !C 4 && , 7& ,& 9 9&!C & && , 7& ,& 9 9&

    *a5K run show chassis cra6t-inter6aceGo 7 11:'7:'

    ront !ane* 2)stem E#s:Routing Engine 1--------------------------8 ai* %aster

    ront !ane* $*arm 0ndicators:-----------------------------Red E# Be**ow E# %aor re*a)

    %inor re*a)

    ront !ane* !C E#s:!C 1 ' 3 4 &------------------------------Red ?reen

    C( E#s: C( 1--------------$m5er ?reen

    !2 E#s:  !2 1 ' 3--------------------Red ?reen

    an Tra) E#s:  T ----------Red ?reen

    M289,

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    095,

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    Mid"lane escri"tion

    The TDC1 $ore Router midplane is located in the center of the cha