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LAB MANUAL FOR JNCIA Version 1.0
CONTENTS:
1. About Juniper Routers
. C!"ssi#i$"tion o# Juniper Routers
.1. %i##eren$e bet&een J' M' T' E "n( M) series o# *uniper routers
+. Juniper Router Ar$,ite$ture
+.1. Routin- En-ine+. . "$/et For&"r(in- En-ine
+. .1. S&it$,in- Contro! Bo"r(+. . . F C+. .+. IC
+.+. Routin- En-ine "r(&"re Co ponents+.2. Router Boot Met,o(s
2. J3Series Router O4er4ie&
2.1. J + 0 Router Front "ne! "n( its $o ponents2. . Re"r "ne! o# J + 0 router2.+. J3Series Router Con#i-ur"tion2.2. IM Mo(u!es #or J3Series2.5. IM "n( VOI Mo(u!e O4er4ie&
2.5.1. 6i-"bit Et,ernet u IMs2.5. . %u"!3 ort Seri"! IM2.5.+. %u"!3 ort T1 or E1 IM
2.7. Brie# O4er4ie& o# J + 0' J +50' J2+50' J7+50 Routers
5. M3Series Router O4er4ie&
5.1. M8i Front "ne! "n( its Co ponents5. . M8i Re"r "ne!5.+. Brie# O4er4ie& o# M8i' M10i' M20e' M1 0 "n( M+ 0 Routers
7. JUNOS Co "n( Line Inter#"$e
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8. Router Inter#"$es
8.1. er "nent Inter#"$es8. . Tr"nsient Inter#"$es
=. Inter#"$e Represent"tion
=.1. On J3Series Routers=. . On M3Series "n( T3Series Routers=.+. On M)3Series Routers
>. Routin- Fun(" ent"! L"bs
>.1. L"b E. L"b E : Set inter#"$e (es$ription>.10. L"b E.18. L"b E.1=. L"b E
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1 . RI Con#i-ur"tion L"bs
1 .1. L"b E. Conne$tin- "n( Con#i-urin- "n E) Series S&it$,
0. F) Series S&it$, 3 F)+500 S&it$, O4er4ie&
1. B"si$ S&it$, L"bs
1.1. L"b E
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1. . L"b E
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7.5. Ans&er /e9s #or ob*e$ti4e test 57.7. Ans&er /e9s #or ob*e$ti4e test 77.8. Ans&er /e9s #or ob*e$ti4e test 87.=. Ans&er /e9s #or ob*e$ti4e test #in"! e
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1. About Juniper Routers
Main products offered by Juniper include T-Series, M-Series, E-Series, MX-Series, J-Series routers,EX-Series Ethernet switches and SRX-Series Security products. JUN S is the operatin! syste" thatruns on "ost of the #uniper$s networ%in! e&uip"ent.
. C!"ssi#i$"tion o# Juniper Routers:
The routers are classified in to M-series, J-series, T-series, E-series, and MX-series based on thefunctionality. So"e fre&uently used "odels are !i'en below(
M3Series: M)i, M*+i, M +e, M* +, M +J3Series: J +, J /+, J /+, J0 /+T3Series: T +, T0 +, T*0++, TX Matri1, TX Matri1 2lusE3Series: E* +, E +, ERX *+, ERX)+/, ERX)*+, ERX* *+, ERX* +M)3Series: MX3+, MX +, MX 3+, MX40+
.1 %i##eren$es bet&een (i##erent series o# *uniper routers "re
1. Juniper J3Series routers are a series of enterprise routers called as "odularrouters for enterprises runnin! des%tops, ser'ers, 5o62 etc applications andthese %ind of routers are typically deployed at re"ote offices or branchlocations.
. Juniper M3Series routers are called Multiser'ice Ed!e routers desi!ned forenterprise and ser'ice pro'ider networ%s.
+. Juniper T3Series routers are a series of core routers desi!ned for hi!h-endand core networ%s with throu!hput fro" + 7bit8s to /.0 Tbit8s with a "a1forwardin! rate of +.) billion pps.
2. Juniper E3Series routers are a series of broadband ser'ices routers or ed!erouters which pro'ides "ultiple ser'ices includin! broadband re"ote accessser'er, broadband 'ideo ser'ices, security ser'ices, N9T etc on a sin!le
platfor".
5. Juniper M)3Series routers are a fa"ily of hi!h-perfor"ance EthernetSer'ices routers with powerful switchin! features and are desi!ned for hi!h-
perfor"ance ser'ice pro'iders and enterprises.
Note: :owe'er, please note that we will be discussin! only the J-series and so"e M-seriesrouters in this "anual. ther products are beyond the scope of this "anual.
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+. Juniper Routers Ar$,ite$ture
The central principle of the Juniper Networ%s platfor" centers on a separation of the control andforwardin! planes within the router. These are Routin! En!ine and 2ac%et ;orwardin! En!ine asshown below.
+.1. Routin- En-ine
The Routin! En!ine is the central location for control of the syste" in a #uniper networ%srouter and it consists of an 6ntel-based 2
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and accesses the forwardin! table for route loo%ups.
+. . . F!e
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co"pact flash located on the syste" board.
+.2. Router Boot Met,o(s
J + and J /+ router can boot fro" the followin! !i'en three de'ices.
i. 6nternal
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The co"ponents are e1plained below(
,9si$"! Inter#"$e Mo(u!e ? IM@
26Ms pro'ide the physical connection to 'arious networ% "edia types. The 26M recei'esinco"in! pac%ets fro" the networ% and trans"its out!oin! pac%ets to the networ%.
o&er Button "n( o&er LE%
The power button can be used to power the ser'ice router on and off. The power BE@located at the upper left of the BE@ dashboard is !reen color when on and it can be in twostates. i. n steadily state which "eans power is functionin! correctly ii. =lin%in! statewhich "eans power button has been pressed and &uic%ly released and the router is shuttin!down.
St"tus LE%
Status BE@ chan!es fro" off to blin%in! !reen when the syste" is powered on. 6t can be inthe followin! states(
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Co!or St"te %es$ription
7reen
=lin%in!
n steadily
Router is startin! up or perfor"in! dia!nostics
Router is operatin!
nor"al
Red =lin%in! Error has been detected
A!"r LE%
The alar" BE@ li!hts can be either yellow or red. 6f yellow, indicates a "inor conditionthat re&uires "onitorin! or "aintenance. 6f red, indicates "a#or condition that can result ina syste" shutdown.
A LE%
The :i!h a'ailability >:9? BE@ li!hts when the router starts but otherwise re"ains unlitand this is "ostly for future use.
Reset Con#i- Button
This button is used to return the router to either the rescue confi!uration or the factorydefault confi!uration.
Conso!e ort
Throu!h the console port, a RJ- / serial cable can be used to connect to the routin! en!ineand the router can be confi!ured usin!
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2. . Re"r "ne! o# J + 0 router
2.+. J3Series Router Con#i-ur"tion
There are two user interfaces to "onitor, confi!ure, troubleshoot and "ana!e a ser'icerouter. They are JUN S
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5.+. . J3 eb Inter#"$e
J-Aeb is a web-based 7U6 that allows operatin! a router without co""ands. 6tallows to "onitor, confi!ure, troubleshoot, and "ana!e the router on a client by"eans of a web browser with :TT2 >:yper Test Transfer 2rotocol? or :TT2S>:TT2 o'er Secure Soc%ets Bayer? enabled. Duic% confi!uration wiCardssi"plify basic confi!uration and "ini"iCes the ris% of error.
2.2. IM Mo(u!es #or J3Series26Ms supported for J-Series are cate!oriCed into u26M, e26M.
2.2.1 IM
26M >2hysical 6nterface Module? is a networ% interface card that is installed ona J-series Ser'ices Router, to pro'ide physical connections to a B9N or a A9N
2.2. u IM ?Uni4ers"! S&it$,in- IM@
u26M is a particular type of 26M, such as the 7i!abit Ethernet u26M, which can be uni'ersally inserted in any slot on a J +, J /+, J /+, or J0 /+ Ser'icesRouter.
The difference is e26M slots has 2
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2.5.1. 6i-"bit Et,ernet u IMs
7i!abit Ethernet u26Ms are a'ailable in four 'ersions i.e, *-2ort, -2ort, 3-2ort,*0-2ort and are supported on J +, J /+, J /+ and J0 /+ ser'ice routers.
13 ort 6i-"bit Et,ernet u IM
These ha'e s"all for"-factor plu!!able >S;2? transcei'ers which allows
different connectors. S;2 is as shown in the fi!ure below
9 *-port 7i!abit Ethernet u26M is as shown
7i!abit Ethernet u26M can be inserted in any slot on J +, J /+, J /+ andJ0 /+ ser'ice routers. :i!h-speed slots are slots and 0 on the J /+ router,
and slots , , /, and 0 on the J0 /+ router.
7i!abit Ethernet u26Ms features are
The "ultiport u26Ms can be used as switches in the access layer Bin% speed for 3-port and *0-port 7i!abit Ethernet u26Ms is
confi!urable to *+, *++, or *+++ Mbps, and trans"ission "ode isconfi!urable to half or full duple1. The *-port and 0-port S;2 7i!abit
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Ethernet u26Ms cannot be "anually confi!ured-they are set at *+++Mbps and full duple1.
*-port and 0-port 7i!abit Ethernet u26Ms use S;2 transcei'ers to allowdifferent connectors to be used on u26M ports. These S;2 7i!abitEthernet u26Ms support *+++=ase-SX, *+++=ase-BX, and *+++=ase-TS;2s. They do not support *+++=ase-B: S;2s.
3-port and *0-port 7i!abit Ethernet u26Ms-and S;2s on the *-port and0-port u26Ms-support *+++=ase-T RJ- / connectors. The li"itations are
that 7i!abit Ethernet u26Ms do not support SNM2 and the interfacescan be confi!ured up to a "a1 MTU siCe of 4+* bytes.
2.5. . %u"!3 ort Seri"! IM
The @ual-2ort Serial 26M pro'ides a physical connection to serial networ%"edia types throu!h two serial interface ports.
The %ey features of dual-port serial 26M are
nboard networ% processor 9uto selection of operation "odes based on data ter"inal e&uip"ent
>@TE? or data co""unication e&uip"ent >@T1? cloc% and recei'e >R1?
cloc%
2.5.+. %u"!3 ort T1 or E1 IM
The @ual-2ort T* 26M and @ual-2ort E* 26M pro'ide a physical connection toT* or E* networ% "edia types. Each 26M has two physical T* or E* ports withan inte!rated channel ser'ice unit >
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@ual-port E* 26M is shown below
Their %ey features include
nboard networ% processor 6nte!rated
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+. J2+50
The J /+ Ser'ices Router is desi!ned pri"arily for re!ional and branchoffices. The J /+ enterprise router !i'es up to *7bps in perfor"ance. Theyare usually used for @S , E , and Metro Ethernet interfaces with inte!ratedser'ices. 6t has si1 26M slots. Two of these slots are enhanced-perfor"anceslots that pro'ide additional perfor"ance to "ultiple 7i!abit Ethernetconfi!urations.
Fi
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9d'anced routin! features supported include M2BS, "ulticast, DoS, and hi!h a'ailability. Ser'icessupported include a broad array of 52Ns, networ%-based security, real-ti"e 'oice and 'ideo,
bandwidth on de"and, rich "ulticast of pre"iu" content, 62'0 ser'ices, !ranular accountin! and "uch"ore.
5.1 M8i Front "ne! "n( its Co ponents
The co"ponents are e1plained below
IC
9 26< >2hysical 6nterface ;le1ible 26
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;6< Recei'es inco"in! pac%ets and trans"its out!oin! pac%ets to the networ%, displaysalar" status, and ta%es 26Electrostatic dischar!e point? located at the front of the chassis "ini"iCesthe ris% of electrical dischar!e in potentially haCardous en'iron"ents.
Routin- En-ine
Routin! En!ine "aintains the routin! tables, "ana!es the routin! protocols, controls theinterfaces, controls so"e chassis co"ponents, and pro'ides the interface for syste""ana!e"ent and user access.
5. M8i Re"r "ne!
So"e of the co"ponents are e1plained below
CFEB
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5.+ Brie# o4er4ie& o# M8i' M10i' M20e' M1 0 "n( M+ 0 Routers
1. M8i
The M)i Multiser'ice Ed!e Router is ./ inches >3.4 c"? in hei!ht and supports)I 7bps throu!hput. The M)i is ideal as an 628M2BS pro'ider ed!e router ins"all 2o2s or as an enterprise routin! solution for 6nternet !ateway or brancha!!re!ation.
The M)i router supports 'arious 26
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2. M1 0
M* + router is the newest addition to M-Series, capable of supportin! M2BSser'ices at Bayers and , includin! Bayer 52Ns, the M* + is desi!ned todeli'er superior redundancy and facilitate the transport of le!acy ;ra"e Relayand 9TM traffic o'er hi!h-bandwidth Ethernet lin%s.
The router supports 'arious 26
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7. JUNOS Co "n( Line Inter#"$e
The operatin! syste" software that powers the Juniper routers is called JUN S. The software is"odular and standards based. 9nother i"portant feature of JUN S is that the software is platfor"independent >within Juniper hardware syste"s, not to be confused with other 'endor hardware?, thusdeli'erin! the sa"e scalability and security across se'eral hardware platfor"s.
JUN S or features? of the router. 9n e1a"ple state"ent hierarchy is !i'en
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below(
userD,ost $on#i-ureEnterin- $on#i-ur"tion o(eGe(itH3333Top !e4e!userD,ost e(it proto$o!s osp# Ge(it proto$o!s osp#H 3333proto$o!s osp# ,ier"r$,9 !e4e!userD,ost
FsetF co""ands are used to confi!ure specific leaf state"ents.
E
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=. Inter#"$e Represent"tion
=.1. On J3Series routers
n the J-series routin! platfor", when infor"ation about an interface is displayed, theinterface type, the slot in which the 2hysical 6nterface Module >26M? is installed, +, and theconfi!ured port nu"ber is specified.
6n the physical part of the interface na"e, a hyphen >-? separates the "edia type fro" the26M nu"ber, and a slash >8? separates the 26M, +, and port nu"bers. 9nd the synta1 is(
t9pe3pi 0 port
Each of the ter"s are e1plained below(
t9pe: is the one that uni&uely identifies the type of physical interface. 6t is a two-characterword and can be one of the followin!(
"e -9!!re!ated Ethernet interface
"t -9TM interfacee1 -E* interface >includin! channeliCed STM-* interfaces?e+-E interface#e-;ast Ethernet interface#
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Each of the ter"s are e1plained below(
t9pe: is the one that uni&uely identifies the type of physical interface. 6t is a two-characterword as stated abo'e.#p$: is the physical slot nu"ber in the chassis where the interface is located.pi$: is the slot nu"ber on the ;2< where the interface is located.port: is the location on the 26< where the interface port >to which the interface isconnected? is located.
;or e1a"ple, M)i router will ha'e one fi1ed ;2< >;2
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>. ROUTIN6 FUN%AMENTAL LABS
The followin! labs can be perfor"ed usin!
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Not a'ailable in de"o 'ersion
>.8 : L"b E
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Not a'ailable in de"o 'ersion
>.1= : L"b E
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9. fa"ily ip=. fa"ily ip0
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10. STATIC ROUTIN6 LABS
10.1 : L"b E
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10.5 : Ob*e$ti4e Test : Ans&er t,e #o!!o&in- Kuestions
Not a'ailable in de"o 'ersion
11. OLICIES CONFI6URATION LABS
11.1 : L"b E
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11. : L"b E
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1 . : Ob*e$ti4e Test 2 : Ans&er t,e #o!!o&in- Kuestions
Not a'ailable in de"o 'ersion
1+. % NAMIC ROUTIN6 LABS
1+.1 : L"b E
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%e4i$e Inter#"$e I A((ress M"s/
R1So-+8+8+So-+8+8*
*4 .*03. .**4 .*03.*.*
//. //. //.+//. //. //.+
RSo-+8+8+So-+8+8*
*4 .*03.*.*4 .*03. .*
//. //. //.+//. //. //.+
R+So-+8+8+So-+8+8*
*4 .*03. .*4 .*03. .
//. //. //.+//. //. //.+
.Enable R62 routin! on all the de'ices
.Specify the policy to accept the rip routes on all the de'ices
.9pply an i"port policy and an e1port policy >policy created abo'e? on all the de'ices./.;ro" R* issue a pin! co""and to R and R
On R1:
userDR1 $on#i-ureGe(itHuserDR1 e(it inter#"$es so30 0 0 unit 0 #" i!9 inetGe(it inter#"$es so30 0 0 unit 0 #" i!9 inetHuserDR1 set "((ress 1> .17=.+.1 2Ge(it inter#"$es so30 0 0 unit 0 #" i!9 inetHuserDR1 e
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Ge(it po!i$93options po!i$93st"te ent R po! ter R ter t,enHuserDR e .17=.+. 2Ge(it inter#"$es so30 0 0 unit 0 #" i!9 inetHuserDR+ e
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userDR+ e
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12. S O COMMAN% LAB
12.1 : L"b E
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=ac%
15. : L"b E
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. Mo'e to interfaces hierarchy
.
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EX ++- 2- 7 7i!abit Ethernet 9ll ports
EX ++- 3T- 7 3 7i!abit Ethernet -
EX ++- 32- 7 3 7i!abit Ethernet 9ll 3 ports
1=.1.1. E) 00 Front "ne!
The front panel of an EX ++ switch consists of the followin! co"ponents(
Networ% ports dependin! on the switch "odel, either of(
or 3 *+8*++8*+++=ase-T 7i!abit Ethernet ports, with 2ower o'erEthernet >2oE? not a'ailable in EX ++- T and EX ++- 3T
or 3 *+8*++8*+++=ase-T 7i!abit Ethernet ports, with 2ower o'erEthernet >2oE? a'ailable in EX ++- 2 and EX ++- 32
built-in S;2 uplin% ports
chassis status BE@s
port status "ode BE@s
Mode button
1=.1. . C,"ssis LE%s
The front panel of an EX ++ switch has two chassis status BE@s labeled S S and9BM on the far ri!ht side of the panel, abo'e the uplin% ports.
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Serial nu"ber 6@ label
9< power cord inlet
1=. . E) 500 S&it$,
The EX /++ line of ethernet switches deli'ers a co"pact, ener!y efficient ethernet solution for*+ !i!abit Ethernet 7bE top-of-rac% data center access deploy"ents where hi!h perfor"ance,low latency and hi!h a'ailabilty are %ey re&uire"ents.
The EX /++ switch has S;2I ports, "ana!e"ent ports, and * console port. >The EX /++switch contains *+-!i!abit S"all ;or"-;actor 2lu!!able 2lus >S;2I? ports and *-!i!abit"ana!e"ent ports. The *+-!i!abit S;2I ports can accept *+-!i!abit optical transcei'ers or @irect9ttach @9
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1=.+. E)+ 00 S&it$,
The EX ++ line of Ethernet switches offers a si"ple, cost-effecti'e solution for low-density branch and re!ional offices.
EX ++ switches are a'ailable in "odels with either or 3 ports and with either all ports
e&uipped for 2ower o'er Ethernet >2oE? or only 3 ports e&uipped for 2oE. EX ++ switches witha @< power supply installed do not pro'ide 2oE. 9ll "odels pro'ide ports that ha'e*+8*++8*+++=ase-T 7i!abit Ethernet connectors and optional *-!i!abit s"all for"-factor
plu!!able >S;2? transcei'ers, *+-!i!abit s"all for"-factor plu!!able >S;2I? transcei'ers, or *+-!i!abit s"all for"-factor plu!!able >X;2? transcei'ers for use with fiber connections.
Mo(e! A$$ess orts No o# oE en"b!e( ports
EX ++- T 7i!abit Ethernet ;irst 3 ports
EX ++- 3T 3 7i!abit Ethernet ;irst 3 ports
EX ++- 2 7i!abit Ethernet 9ll ports
EX ++- 32 3 7i!abit Ethernet 9ll 3 ports
EX ++- T-@< 7i!abit Ethernet -
EX ++- 3T-@< 3 7i!abit Ethernet -
1=.2. E)2 00 S&it$,
Juniper Networ%s EX ++ Ethernet Switches pro'ide connecti'ity for "ediu"- and hi!h-densityen'iron"ents and scalability for !rowin! networ%s.
EX ++ switches are a'ailable in "odels with or 3 ports and with either all ports e&uippedfor 2ower o'er Ethernet >2oE? or only 3 ports e&uipped for 2oE. 9ll "odels pro'ide ports thatha'e *+8*++8*+++=ase-T 7i!abit Ethernet connectors and optional *-!i!abit s"all for"-factor
plu!!able >S;2? transcei'ers, *+-!i!abit s"all for"-factor plu!!able >S;2I? transcei'ers, or *+-!i!abit s"all for"-factor plu!!able >X;2? transcei'ers for use with fiber connections.
9dditionally, a -port "odel pro'ides *++=ase-;X8*+++=ase-X S;2 ports. This "odel istypically used as a s"all distribution switch.
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Mo(e! orts oE en"b!e( ports
EX ++- T 7i!abit Ethernet ;irst 3 ports
EX ++- 3T 3 7i!abit Ethernet ;irst 3 ports
EX ++- 2 7i!abit Ethernet 9ll ports
EX ++- 32 3 7i!abit Ethernet 9ll 3 ports
EX ++- ; 7i!abit Ethernet
EX ++- T-@< 7i!abit Ethernet
EX ++- 3T-@< 3 7i!abit Ethernet
EX ++- ;-@< 7i!abit Ethernet
1=.5. E)2500 S&it$,
EX /++ switches pro'ide connecti'ity for hi!h-density *+-7i!abit Ethernet data center top-of-rac% and a!!re!ation deploy"ents. Typically, EX /++ switches are used in data centers where
they can be positioned as the top de'ice in a rac% to pro'ide connecti'ity for all de'ices in therac%.
Mo(e! A$$ess ort Con#i-ur"tion
EX /++- +;-;= +-port 7bE8*+7bE S;28S;2I
EX /++- +;-=; +-port 7bE8*+7bE S;28S;2I
EX /++- +;-;=-< +-port 7bE8*+7bE S;28S;2I
EX /++- +;-=;-< +-port 7bE8*+7bE S;28S;2I
EX /++- +;-@
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Et,ernet Line C"r( Spe$i#i$"tions
EX3 ++-3T8EX3 ++-3T-ES
EX3 ++-3;8EX3 ++-3;-ES
EX3 ++-3XS8EX3 ++-3XS-ES
EX3 ++- +XS EX3 ++-32B8EX3 ++
- 3TB
EX3 ++- XS-28EX3 ++-
XS- T
ortKu"ntit9"n( t9pe
3 RJ- / 3 S;2 3 S;2I + S;28S;2I 3 RJ- / + RJ- / 8 S;28 S;2I
oE oE ports
+ + + + 38* > 32Bonly?
+8* > +2 onl
ortspee(
*+8*++8*+++Mbps
*++8*+++ Mbps *+ 7bps * 7bps8*+ 7bps *+8*++8*+++Mbps
*+8*++8*+++MbpsH *++8*++MbpsH *+ 7bps
1>. Conne$tin- "n( Con#i-urin- "n E) Series S&it$, ?CLI ro$e(ure@Set the followin! para"eter 'alues in the console ser'er or 2RE? "odule in slot RE+in an EX3 *0 switch.
. 9t the Junos S shell pro"pt rootV, type e setup .
. Enter the hostna"e. This is optional.
. Enter the root password you plan to use for this de'ice. ou are pro"pted to re-enter the root password.
Note( The initial lo!in na"e and password on EX-series switches(
login: rootpassword:
Version 1.0 Cop9ri-,t 00 ; 01 CertE
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The de'ice is shipped with no passwordH si"ply press the enter %ey. Note( ;or security reasons, create a password for the Root 6@.
/. Enter 9es to enable ser'ices li%e Telnet and SS:. =y default, Telnet is not enabled and SS: isenabled.
0. Use the Mana!e"ent ptions pa!e to select the "ana!e"ent scenario(
;or EX /++ switches only? Enter the reKuest $,"ssis pi$3 o(e intr"$onne$t operational "ode
co""and to set the 26< "ode to intraconnect.
ou can now lo! in with the
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throu!h / and ports throu!h ).
Up to 0 of the access ports can be used for S;2 transcei'ers. 7i!abit Ethernet S;2 transcei'ers can be used in ports 0 - *.
SF Up!in/ orts
The D;X /++ switch has four uplin% ports >D+-D ? that support up to four +-7bps &uad s"all for"-factor
plu!!able plus >DS;2I? transcei'ers.
Note: !e"se re#er to t,e be!o& net&or/ (i"-r" #or t,e s&it$, e
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. 7et bac% to the operational "ode
userDS 1 $on#i-ureGe(itHuserDS 1 e
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Ge(it inter#"$es -e30 0 0HuserDS 1 e
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userDS 1 set 4!"ns "r/etin- 4!"n3i( 10Ge(itHuserDS 1 set 4!"ns support 4!"n3i( 0Ge(itHuserDS 1 $o itGe(itHuserDS 1 e
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+. L"b E
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+.2 : L"b E
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Ge(itHuserDS s,o&userDS s,o& poe inter#"$e
Note:
6u"r(3b"n(: Reser'e a specified a"ount of power out of the 2oE power bud!et in case of aspi%e in 2oE consu"ption.
M"
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/. @
0.