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PDF AFBR-5905Z Data sheet ( Hoja de datos )

Número de pieza AFBR-5905Z
Descripción ATM Multimode Fiber Transceivers in 2 x 5 Package Style
Fabricantes AVAGO TECHNOLOGIES LIMITED 
Logotipo AVAGO TECHNOLOGIES LIMITED Logotipo



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No Preview Available ! AFBR-5905Z Hoja de datos, Descripción, Manual

AFBR-5905Z/5905AZ
ATM Multimode Fiber Transceivers
in 2 x 5 Package Style
Agilent AFBR-5905Z/5905AZ
ATM MultimodewFwwib.DeatraShTereat4Un.csomceivers
in 2 x 5 Package Style
Data Sheet
Data Sheet
Features
• Multisourced 2 x 5 pack
with MT-RJ receptacle
Description
Transmitter Sections
• Single +3.3 V power sup
• Wave solder and aqueo
The AFBR-5905Z family of
The transmitter section of the
process compatibility
transceivers from Agilent
AFBR-5905Z utilizes a 1300
• Full compliance with AT
Description
provide the system designer Featurensm InGaAsP LED. This LED is
UNI SONET OC-3 multim
with products to implement a
The AFBR-5905Z family of trraannsgceeiovef rssoflruomtioAnvsagfoorpro-
vide the system designer wmithulptriomdoudctes ftiobeimr pSleOmNeEnTt aOC-3
rSt2arTaxnMng5s-ec1De)oIiPpfveshsotryyslsuliaectriaweolnialtaslhlyfsaeourrMpsmpTfo-luiRrelJtdAifmT(fTsiibonSMuhoerDptderhapeAsHcneeolTfdiinnSebtMenorTdewaetrMahnciSninet-nsOo1rdcdtrN)seuhieoEnipservTttthvhreeniOyyrcreefsesCsrawits-ccaa.3senaTrei.(hedlnrSevaDdlaasriuHdlecylseetsrr.sy•••
ATM 2 km Backbone Links
standard 2 x 5 DIP style with
a MT-RJ fiber connector
Mreucelpsttpruiasatbocanuakcslrsaemcsgeeeidmtdt2ebixrnly5stepphcaoetcrikotoaipnogt.neiIcstoatfylisltehdweriitvheMnT-R••J
physical layer specifica
RoHS compliant
Receiver output squelch
Singblye +a3c.3uVstpoomwesrisliucpopnlyIC which
enabled
WFmuaullvlcl(itceonsoiomghtsnmoioiovcflpddetasleereniiadtrgfsni)aanbcnndeatedoiralwfsplaf,aoeihqtEgrhyu+esCe3LAinocL.TEt3auMilDrsaVlealFwdfyoPseaerrusrEurihevpmsCnpeppLceUrloecyNcid,fIeicSsasOtciNooEnmA•TppOpaMlCiltnii-ucbk3lasitlitimitoyondse fiber ATM ba
RoHcSucroremnptl.iant
• Multimode fiber ATM w
The AFBR-5905Z is a 1300 nminptreordfauccet.with optical perfor-
mance compliant with the SONET STS-3c (OC-3) Physical
RecReievceerivoeurtpSuetctsiqouneslch function enabled
closet to desktop links
Layer Interface SpecificationA. TThMis2pkhmysiBcaacl klabyoenreisLdinekfisned ApplicaTthioensreceiver section of the
Ordering Information
ifTk1wapTTnirrmh12ceiaetaE5ertnht1hstmstihpMo.ermt2auehenBnilcAestFtdVpsitTiDfmAmeeieMePDrrFcoidshtSBiIdiftFyeoiPRfecoeoscnM-rairtrcfusi5tDi3oauieb9mo.lnsc0es0nesttL.r3iaUaofTiZbnnoysnhaderefitcaosrrahtk-mfhrNidibdstneieoho.l4tTpptPSlF(TAytcdeenahUBwperhohhuNreoey/AeofrNermoiyet5faeSsfFldaucrsBiIcSoFreIBnkiAiui)meldDrOfncsRekTiciFmoISatsDns-cnNiot15s.UcBplcarItafTdE9EuweeoestLTRbnht0feirm1dceTrheieaocf-e5afti.rea5ersyeni2Zenfhe-SdctAni9eNns.enicuTcTsnecr0oiptTacemoMtpeStd5p(heitteIhrmUlie-pwiivnyZstrez3i1iocNiesflpstenfectao0ciinrieIechsflmac)0ssrpiriarte(ealkaVcfSwhhleeOMaaanp1eAlfnnyehIaoCcbtt3re1nNtscyiirees/0Acc-ioe3ewtSs3cidhi20esrn--0oTIa)irn0tMltffhhaon3ce••OTtf rmi.ie hco0rdeen.MMAAesAFForuuaiBBFrnnllAIctIotTtqtdttRRBirnhhCgdiiopuhoemm--RFaeGe55u.IrtaniA-nBnssoo99i5panIurfcfs00tRdd9itioAelPtathis55n0eehmir-cilrIszZAm55dasooecNffepsiiZ9ZlriuPo=abbp/rutive0tgz1puee=Ipo0baedie5NI3hrroupr°rCca-adZ0anCAAe4.ltlksn0pshTTeaD0swtcauceMMhmde°oneiugCetshommAsi+tpesbwtilrtthpvto7dicoliaobpbioiazar0rhcfdl+rgeuiamei°piyknoniCesto8apbiogdocr5pmnrosCdaurtuoogsicnhoCncepllsorvoewtmie.lfttcsimiiooliodsefpoionrimrtbeaoenlnkdtvistnrosnaheowaidenlfai-edtbseFlkei.etTppAODAA+oflod8prrhfFigFrf5sooSielBiBptli°ddacnerrRRClAeuuoieknsb--.cscsFdt55uttauOB99iCtncoifo0R0so--dnr55-mas5AZAov9pwZrua0o=dtoi5nhelraZeor0=lbsdnr°1li-tCezt43wheF00ftdirio°d0ooe
nm InGaAsP LED. This LED istphaeckdaegteadilsinothf ethoeptiincatlesrufabc- e for logic output and the Signal
assembly portion of the tran2smkimttemr sueclttiiomno. Idteis fdirbiveern by
Detect function. The Data
a custom silicon IC which cobnavcekrtbsodnifefelriennktsia.l PECL logic
output is differential. The
signals, ECL referenced (shiftTedh)etoAaT+M3.310V0suMppbl/ys, -in1t2o5anMBd
Signal Detect output is single-
analog LED drive current. Physical Layer interface is best ended. Both Data and Signal
implemented with the AFBR- Detect outputs are PECL
5903Z family of FDDI
compatible, ECL referenced
Transceivers which are
(shifted) to a 3.3 V power
specified for use in this 4B/5B supply. The receiver outputs,
encoded physical layer per the Data Out and Data Out Bar,
FDDI PMD standard.

1 page




AFBR-5905Z pdf
Application Information
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eivers. You caTrnancsocneitvaecrtOtphtiecmal PoweArgBiuledngtetLvEerDsutseLcihnknoLelonggythhas
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ansceiver OptictraalnPsocweievrerBuspdegceitfied inTthheis data sheet at the Beginning
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Standard per SP-2840.
ersus Link Lengothf Life (BOL). These cur1ve3s0r0epnrmeseAngt itlheenatttLeEnDuastiaorneand
12
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he available otphtei6ca2.l5p/1o2w5eµrmfaonrd 50t/h1a2n5 µ1mdfBibeorfcabgilensgoonlvye. Trhneoaremaal
fiber optic liunnkdetor the curves represceonmtsmtheerrceimalaeinqinugipOmPeBnatt amniyslsiniokn
ccommodate fleibnegrthc, awbhleichloisssaevsailablilefefopreorvioerdcso.mCinogntnaocntfiyboeur rcable
lus losses dureeltaoteidnl-olsinsees. Avago LEADgitleecnhtnoslaolgeys hraespprerosdeuncteadti1v3e0f0or
onnectors, spnlimceLsE, Dopdteivciacel s with lowadedr aitgiionngaclhdareatcatielsri.stics than nor-
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ansceiver specified in this
ANSI T1E1.2. These optical
ata sheet at the Beginning of parameters are reflected in the
ife (BOL). These curves
guaranteed performance of the
epresent the attenuation and transceiver specifications in
hromatic plus modal
this data sheet. This same
ispersion losses associated
model has been used
HFBR-5905, 62.5/125 µm
10
8
HFBR-5905
6 50/125 µm
4
2
0
0.
3 0.5
1.0
1.5
2.0
2.5
FIBER OPTIC CABLE LENGTH (km)
Figure 4. Typical Optical Power Budget at BOL
versus Fiber Optic Cable Length.
ith the 62.5/125 µm and 50/


5 Page





AFBR-5905Z arduino
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Recommended Operating Conditions
Parameter
Symbol
Minimum Typical Maximum Unit
Reference
Ambient Operating Temperature
Supply Voltage
AFBR-5905
AFBR-5905A
TA
TA
VCC
0
-40
3.135
+70
+85
3.465
°C
°C
V
Note A
Note B
Data Input Voltage - Low
Data Input Voltage - High
Data and Signal Detect Output Load
Differential Input Voltage (p-p)
VIL - VCC
VIH - VCC
RL
VD
-1.810
-1.165
50
0.800
-1.475
-0.880
V
V
V
Note 2
Notes:
A. Ambient Operating Temperature corresponds to transceiver case temperature of 0 °C mininum to +85 °C maximum with necessary airflow applied.
Recommanded case temperature measurement point can be found in Figure 2.
B. Ambient Operating Temperature corresponds to transceiver case temperature of -40 °C mininum to +100 °C maximum with necessary airflow
applied. Recommanded case temperature measurement point can be found in Figure 2.
Transmitter Electrical Characteristics
AFBR-5905Z (TA= 0°C to +70°C, VCC=3.135V to 3.465V)
AFBR-5905AZ (TA= -40°C to +85°C, VCC= 3.135V to 3.465V)
Parameter
Symbol
Supply Current
ICC
Power Dissipation
PDISS
Data Input Current - Low
IIL
Data Input Current - High
IIH
Minimum Typical
133
0.45
-350 -2
18
Maximum Unit
175 mA
0.60 W
µA
350 µA
Reference
Note 3
Note 5a
Receiver Electrical Characteristics
AFBR-5905Z (TA= 0°C to +70°C, VCC= 3.135V to 3.465V)
AFBR-5905AZ(TA= -40°C to +85°C, VCC= 3.135V to 3.465V)
Parameter
Symbol
Supply Current
ICC
Power Dissipation
PDISS
Data Output Voltage - Low
VOL - VCC
Data Output Voltage - High
VOH - VCC
Data Output Rise Time
tr
Data Output Fall Time
tf
Signal Detect Output Voltage - Low
VOL - VCC
Signal Detect Output Voltage - High
VOH - VCC
Signal Detect Output Rise Time
tr
Signal Detect Output Fall Time
tf
Power Supply Noise Rejection
PSNR
Minimum Typical
65
0.225
-1.83
-1.085
0.35
0.35
-1.83
-1.085
0.35
0.35
50
Maximum Unit
120 mA
0.415
W
-1.55 V
-0.88 V
2.2 ns
2.2 ns
-1.55 V
-0.88 V
2.2 ns
2.2 ns
mV
Reference
Note 4
Note 5b
Note 6
Note 6
Note 7
Note 7
Note 6
Note 6
Note 7
Note 7
1111

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