ZTE R8964S26H User Manual

ZXSDRR8964
TD-LTERemoteRadioUnit
UserManual
Version:V5.00
ZTECORPORATION No.55,Hi-techRoadSouth,ShenZhen,P .R.China Postcode:518057 Tel:+86-755-26771900 Fax:+86-755-26770801 URL:http://support.zte.com.cn E-mail:support@zte.com.cn
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RevisionHistory
RevisionNo.RevisionDateRevisionReason
R1.02013–09–12Firstedition
SerialNumber:SJ-20110921 170448-002
PublishingDate:2013-09-12(R1.0)
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AboutThisManual

Purpose
ThismanualdescribesZXSDRR8964devicedescription,technicalspecications,and maintenance.
IntendedAudience
Thisdocumentisintendedfor:
lCommissioningandmaintenanceengineer lHardwareinstallationandsitetestingengineer
PrerequisiteSkillandKnowledge
Tousethisdocumenteffectively,usersshouldhaveageneralunderstandingofwireless telecommunicationstechnology.FamiliaritywithLTEsystemanditsvariouscomponents ishelpful.
WhatIsinThisManual
Thismanualcontainsthefollowingchapters:
ChapterSummary
Chapter1FCCStatementDescribestheFCCstatementrelatedtothe
device.
Chapter2ProductOverviewDescribesproductfunction,typicalapplication,
networkingmode,technicalindices,etc.
Chapter3T echnicalSpecicationDescribesproductindices.
Chapter4ProductDescriptionDescribesproductinterfaces,indicatorsand
cables.
Chapter5ProductMaintenanceDescribesproductcablereplacement.
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Chapter1
FCCStatement
Note:
ThisequipmenthasbeentestedandfoundtocomplywiththelimitsforaClassAdigital device,pursuanttoPart15oftheFCCRules.Theselimitsaredesignedtoprovide reasonableprotectionagainstharmfulinterferencewhentheequipmentisoperatedin acommercialenvironment.Thisequipmentgenerates,uses,andcanradiateradio frequencyenergyand,ifnotinstalledandusedinaccordancewiththeinstructionmanual, maycauseharmfulinterferencetoradiocommunications.Operationofthisequipment inaresidentialareaislikelytocauseharmfulinterferenceinwhichcasetheuserwillbe requiredtocorrecttheinterferenceathisownexpense.
Cablelossbetweentransmitterandantennais1dB.
Note:
Operationofthisequipmentinaresidentialareaislikelytocauseharmfulinterferencein whichcasetheuserwillberequiredtocorrecttheinterferenceathisownexpense.
Note:
FCCRadiationExposureStatement:ThisequipmentcomplieswithFCCradiation exposurelimitssetforthforanuncontrolledenvironment.Thisequipmentshouldbe installedandoperatedwithminimumdistance7.7mbetweentheradiator&yourbody.
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Chapter2
ProductOverview
TableofContents
ZTEDistributedBaseStationSolution........................................................................2-1
RRULocationinLTEWirelessNetwork......................................................................2-2
RRUTypicalApplication.............................................................................................2-2
DeviceAppearance....................................................................................................
DeviceFunctions........................................................................................................2-4
DeviceFeatures.........................................................................................................
DeviceInstallationScenarios......................................................................................2-5
DeviceNetworking.....................................................................................................2-5
OperationandMaintenanceIntroduction....................................................................

2.1ZTEDistributedBaseStationSolution

2-3
2-4
2-5
Tosupplythecustomerwithmorecompetitivecommunicationequipmentandsolutionin themarket,ZTEdevelopsandpromotesZTESDRBBU(basebandunit)+RRU(remote RFunit)distributedBSsolutiontimely,whichjointlyperformLTEBSservice.
ZTE'sLTEBBU+RRUdistributedBSsolutionhasthefollowingpredominance:
1.ClearerandSimplerNetwork
Insteadofrunninghardwareindependentplatformsforeachtechnology,operatorscan havevariouswirelesstechnologiesimplementedinsoftwareonthesamehardware platform.
2.LowerTCO(T otalCostofOwnership)
Fewerengineersarerequiredsincethereisasingleplatformtomanageandmaintain. Theoperationalexpendituresarekepttominimumcomparedtorunningseveral hardwareplatforms.
TheTCOforamobilenetworkismuchlowerinperformingupgradesforthenew wirelesstechnologyduetomulti-technologydeploymentsupportedbySDR-platform.
3.LowerInvestmentRisk
Sincehardwareplatformscanbereused,thereissignicantlylessinvestmentrisk fordeployinghardware.Wirelesstechnologiesdevelopsofast,andinvestingonone technologyonlymaybringrisktooperators.SDR-basedsolutionswilldecreasethe investmentrisksinceSDRplatformcansupportvarioustechnologies.
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2.2RRULocationinLTEWirelessNetwork

ZXSDRR8964isacompactL TEremoteradiofrequencyunit,whichadoptsthedigital pre-distortiontechnology,high-efciencypowerampliertechnologyandSDRtechnology. ZXSDRR8964andBBUformanintegratedeNodeBtoaccomplishradiotransmission withinitscoverageandcontrolradiochannels.
Figure2-1illustratesthepositionofZXSDRR8964(RRU)innetwork.
Figure2-1DeviceLocationinNetwork

2.3RRUTypicalApplication

Figure2-2illustratesthetypicalapplicationofZXSDRR8964.
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Figure2-2RRUTypicalApplication
Chapter2ProductOverview

2.4DeviceAppearance

TheappearanceofZXSDRR8964isshowninFigure2-3.
Figure2-3DeviceAppearance
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2.5DeviceFunctions

ZXSDRR8964hasfollowingmainfunctions:
lSupportschannelbandwidth:20MHz. lSupportsfrequency.
à2300MHz~2400MHz
à2496MHz~2690MHz
à3400MHz~3600MHzS3500–supportedband
à3650MHz~3700MHzS3600–supportedband
lSupports2x2MIMO,4x4MIMO. lSupportsOpticalinterface. lSupportstimeslotswitchingpointcongurationofuplinkanddownlink. lSupportsmeasurementandcompensationfunctionofthebertoBBU. lSupportspowermeasurementofcarrier. lSupportsversionmanagementfunction. lSupportsperformancemanagementfunction. lSupportsmalfunctionmanagementfunction. lSupportssecuritymanagementfunction. lSupportsoperation&maintenancefunction. lSupportspowermanagementfunction. lSupportstransparentchannelfunction. lSupportsLMT .

2.6DeviceFeatures

ZXSDRR8964isasingle-modeoutdoorRRUbasedonZTESDRplatform,whichcanbe usedwithZTE'sBBUseriesproducttoformadistributedbasestation.
ThemaincharacteristicsofZXSDRR8964aredescribedasfollows:
lUniedPlatform
ZXSDRR8964adoptsuniedSDRplatformtoprotectoperators'investmentand supportsmoothevolution.
lHigherEfciencyforEnergySaving
àMultiplehigh-efciencypowerampliertechnologieswereused,likeCFR,DPD
andDoherty.
àZXSDRR8964adoptsnaturalcoolingdesignwithoutnoise.Atthesametime,it
cansavepowerconsumptioncomparewithtraditionalair-conditionsystem.
àUsing"BBU+RRU"solutiontoreducefeederlossandlowerpowerrequirements
ofP Atorealizegreennetwork.
lCompactDesign,EasyDeployment
àThevolumeofZXSDRR8964is17.1liters.
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àZXSDRR8964canbeinstalledtopoleandmountedonthewall.Theexibility
ofinstallationbenetstoreducecostforoperators.
lMulti-antennaCapability
ZXSDRR8964supportsmultipleMIMOsolution.Itcanimprovedfrequencyefciency greatlyandbringsexcellentuserexperience.

2.7DeviceInstallationScenarios

ZXSDRR8964supportswall-mountedinstallationandpole-mountedinstallation..

2.8DeviceNetworking

ZXSDRR8964isconnectedtoBBUthroughopticalberport.Itsupportsstarnetworking mode.
TheZXSDRR8964typicalstarnetworkingtopologyisshowninFigure2-4.
Chapter2ProductOverview
Figure2-4StartNetworkingMode

2.9OperationandMaintenanceIntroduction

LMTMode
UserscanuseaLMTtoaccomplishtheoperation,maintenanceandmanagementof ZXSDRR8964,asshowninFigure2-5.
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Figure2-5LMTMode
NetworkManagementMode
UserscanuseNetNumen
TM
networkmanagementsystemdevelopedbyZTEto accomplishtheoperation,maintenanceandmanagementofZXSDRR8964.NEsare connectedtothenetworkmanagementsystemthroughTCP/IP,asshowninFigure2-6.
Figure2-6NetworkManagementMode
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Chapter3
TechnicalSpecication
TableofContents
DimensionandWeight...............................................................................................3-1
SystemIndices...........................................................................................................3-1
PowerSupply.............................................................................................................3-2
GroundingIndex.........................................................................................................
PowerConsumption...................................................................................................3-2
Reliability....................................................................................................................
WorkingEnvironment.................................................................................................3-3

3.1DimensionandWeight

Table3-1liststhedimensionandweightofZXSDRR8964.
Table3-1DimensionandWeight
3-2
3-2

3.2SystemIndices

ItemIndex
Dimensions440mmx290mmx134mm(HxWxD)
Weight17kg
Colorlightgray
Table3-2liststhecapacityspecicationofZXSDRR8964.
Table3-2DeviceCapacityIndex
ItemIndex
S3500
l4x15W@DL:UL=2:2
l4x10W@DL:UL=3:1
Maximumoutputpower
S2300/S2600
l4x20W
S3600
l4x10W@DL:UL=3:1
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ItemIndex
Frequencyband
Channelraster100KHz
Channelbandwidth20MHz
PhysicalInterfaces
Antennatype4-antenna
ProtectionIP65
l2300MHz~2400MHz
l2496MHz~2690MHz
l3400MHz~3600MHz(S3500)
l3650MHz~3700MHz(S3600)
l2opticalinterfaces
l4antennainterfaces
l1powerinterface
l1LMTEthernetinterface
l1AISG/drycontactinterface

3.3PowerSupply

ZXSDRR8964supports-48VDC(-57VDC~-37VDC)powerinput.

3.4GroundingIndex

ThegroundingrequirementsofZXSDRR8964shouldbelessthanorequalto5Ω.The groundingresistancecanbelessthan10Ωintheareaswherethenumberofthunderstorm daysislessthan20ayear.

3.5PowerConsumption

ZXSDRR8964S3500TypicalPowerConsumption:
l270W:(4*10W@DLUL=3:1). l240W:(4*15W@DLUL=2:2).
ZXSDRR8964S2300/S2600TypicalPowerConsumption:
l170W:(DL:UL=2:2). l260W:(DL:UL=3:1).
ZXSDRR8964S3600TypicalPowerConsumption:
l260W:(4*10W@DL:UL=3:1)

3.6Reliability

Table3-3liststhereliabilityindexofZXSDRR8964.
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Chapter3T echnicalSpecication
Table3-3DeviceReliability
ItemIndex
MTBF>180,000hours
MTTR<60minutes
Systemserviceinterruptiontime<3minutes/year
Availability99.9994%

3.7WorkingEnvironment

Table3-4describesthetemperatureandhumidityrequirementsofZXSDRR8964.
Table3-4TemperatureandHumidityRequirements
WorkEnvironmentRegularUseinPlacewithoutClimaticProtection
(Outdoor)4K4/4Z5/4Z7/4B1/4C2/4S3/4M5
EnvironmentRequirement4B1
ChemicalEnvironment4C2
Storagetemperature-55to+70
Normaloperationghumidity4%to100%
Storagehumidity10%to100%
LowerTemperature-40
UpperTemperature+50
TemperatureChangerate0.5/min
AirPressure70~106kPa
Solarradiation1120W/m
GelconditionsYes
2
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4.1DeviceInterfaces

Chapter4
ProductDescription
TableofContents
DeviceInterfaces.......................................................................................................4-1
IndicatorDescription...................................................................................................
Cables........................................................................................................................4-4
TheexternalinterfacesofZXSDRR8964areshowninFigure4-1andFigure4-2.
Figure4-1ExternalInterfaces1
4-2
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Figure4-2ExternalInterfaces2

4.2IndicatorDescription

1.AISGstandardinterface
anddrycontactinput
2.Antennainterfaces
3.Opticalinterfaces
4.Localmaintenance interface
ZXSDRR8964cabinetindicatorsareshowninFigure4-3.
4-2
5.–48VDCpowerinterface
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Figure4-3ZXSDRR8964Indicators
Chapter4ProductDescription
IndicatorsdescriptionsareshowninT able4-1.
Table4-1IndicatorDescriptions
IndicatorColorStatus
RUNGreenlOFF:IndicatespoweroffortheRRHisinfaultstate.
lON:IndicatespoweronbuttheRRHisinfaultstate.
lSlowblinking(1.5son,1.5soff):Indicatesthatitisinthe
initializationprocess.
lFastblinking(0.07son,0.07soff):IndicatesthattheRUDP
(TCP)isnotestablished.
lNormalblinking(0.3son,0.3soff):IndicatesthattheRRHis
runningnormally.
ALMRedlOFF:NoAlarm(notincludingVSWR,OPTalarm)
lON:Alarm(notincludingVSWR,OPTalarm)
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IndicatorColorStatus
OPT1~OPT2GreenlOFF:Theopticalmodulehasnotreceivedopticalsignal,or
VSWRRedlOFF:NoVSWRAlarm
ACTGreenlOFF:Cellisnotestablished.

4.3Cables

4.3.1PowerCable

opticalmoduleisnotexistedetc.
lON:Theopticalmodulehasreceivedopticalsignal,but
opticallinkisnotestablished.
lBlinking(0.3son,0.3soff):Theopticallinkisestablished.
lON:VSWRAlarm
lON:Cellisestablished.
ZXSDRR8964adopts–48VDCpowerinput.
TheDCpowersupplycableappearanceisshowninFigure4-4.
Figure4-4DCPowerCableAppearance

4.3.2PECable

ThePEcablesofZXSDRR8964ismadeof16mm thewiresarecrimpedtonakedroundterminals.
PEcableisshowninFigure4-5.
Figure4-5PECable
2
yellow-greenwires.Thetwoendsof

4.3.3OpticalFiber

OpticalberisusedtoconnectBBUandZXSDRR8964,asshowninFigure4-6.
Figure4-6OpticalFiberCable
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4.3.4AntennaJumperCable

AntennajumpercableisusedtoconnectZXSDRR8964andthemainfeeder,themain feederandtheantenna.Whenthemainfeederuses7/8"or5/4"coaxcable,anantenna jumpercableisusedtotransit.
TheappearanceoftheantennajumpercableisshowninFigure4-7.
Figure4-7AppearanceofAntennaJumperCable
Note:
Thelengthofthejumpercableisdecidedaccordingtotheon-sitesituation.
Chapter4ProductDescription

4.3.5AISGCable

AISGisusedtocontroltheelectrical-adjustmentantenna.Figure4-8showsthestructure
ofAISGcable.
Figure4-8AISGCable
Table4-2describesthemeaningofsequencenumberofAISGcable.
Table4-2MeaningofSequenceNumberofAISGControlCable
PinsatendAPinsatEndBNameMeaning
PIN3PIN1RS485B_AISGRS485-
PIN5PIN2RS485A_AISGRS485+
PIN6PIN3,PIN4DC_AISGDCpower
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PinsatendAPinsatEndBNameMeaning
PIN7PIN5,PIN6DC_Return_AISGDCRTN
PIN2PIN7Dry_Node_In1–Drycontactinput,negative
PIN8PIN8Dry_Node_In1+Drycontactinput,positive
Note:
AISGcableisusedonlywhenAISGfunctionisavailable.
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Chapter5
ProductMaintenance
TableofContents
ReplacingPowerCable..............................................................................................5-1
ReplacingPECable...................................................................................................5-2
ReplacingOpticalFiber..............................................................................................5-2
ReplacingAntennaFeederJumper............................................................................

5.1ReplacingPowerCable

Prerequisite
Makesurethatthetypeofthenewpowercableisthesameasthatoftheoriginalpower cable,andtheirlengthsmustbethesame.
Makesuretoturnoffthepowersupplywhenreplacingthepowercable,andtoprevent userservicesfrombeingaffected,commitreplacingprocedureduringappropriateperiod.
5-3
Steps
1.TurnoffthemainswitchfortheZXSDRR8964.
2.CutoffthecabletieofRRUinputpowercable.
3.UnscrewthescrewcapofthepowercablefromRRUpowermoduleandthenremove thecable.
4.UnscrewthescrewcapofthepowercablefromAPM/DPMandthenremovethecable.
5.Takeouttheoldcable.
6.Laythenewpowercableaccordingtothecablingoftheoldpowercable.
7.ConnectthecabletothepowermoduleandAPM/DPM,andthenfastenthebolt.
8.Makecablesneatandthenbundlethecables.
9.Properlyhandlethereplacedpowercable,andcleanuptheeld.
10.Makesurethattheconnectioniscorrectandreliableandthenswitchonthemain switchoftheZXSDRR8964fortest.
–EndofSteps–
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5.2ReplacingPECable

Prerequisite
MakesurethatthelengthofthenewPEcableisthesameasthatoftheoldgrounding cable.
Makesurethatservicesarenotaffectedduringthereplacement.
Context
Thebasicgroundingnetprojectandtowerofthegroundingsystem,thegrounding projectofthebuilding,andconnectionpointsoftheindoor/outdoorcoppergroundbarare constructedbycustomers.Theeldengineeringpersonnelneedtoinstalltheprotection earth(PE)cabletothecabinetshelloftheZXSDRR8964.
Steps
1.LoosenscrewsonthetwoendsofthePEcableandthenremovethecable.
2.CrimpthecopperlugofoneendofthePEcabletotheprotectiongroundingterminal oftheZXSDRR8964cabinet.
3.CrimpthecopperlugoftheotherendofthePEcabletothegroundingbar.
4.Usemultimetertotestthegroundingresistance.Thejointgroundingresistancemust belessthan5ohms.
5.Cleanuptheeld.
–EndofSteps–

5.3ReplacingOpticalFiber

Prerequisite
lPerformfaultobservationandanalysistoconrmthattheopticalbershouldbe
replaced.
lSelecttheopticalberwiththeproperlength,andcheckwhetherthetypeofthenew
opticalberisthesameasthatoftheoldopticalbertobereplaced.
lRecordtheconnectionpositionoftheopticalbertobereplaced,thenewopticalber
shouldbeconnectedattheoriginalposition.
lPreparethemoisture-proofbagandcertainlabelsformarking.
Context
Whenreplacinganopticalber,payattentiontothefollowing:
lDuringoperations,donotdamagetheopticalbercladding. lProtectopticalberconnectorstoavoidcontaminatingthem. lDonotforciblypullouttheoriginalopticalberorforciblybundlethenewopticalber.
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lBendthenewopticalberattheturning.
Steps
1.Aftertheoldopticalberisremoved,puttheprotectivecapontheopticalportsoas toavoidcontaminatingtheopticalport.
2.Cutoffthecabletieoftheoldopticalber,removetheoldopticalber,andthenput thebertothemoisture-proofbag.
3.Laythenewopticalberthesamepathwiththeoldone,fastenberconnector,and thenattachlabelonthenewopticalber.
4.Bundlethenewopticalber.
–EndofSteps–

5.4ReplacingAntennaFeederJumper

Prerequisite
Chapter5ProductMaintenance
Preparenewfeedercablethesamelengthandtypeastheonetobereplaced.
Context
ThejumperoftheantennafeederisusedtoinducttheRFsignaltoRRUandconnectthe feedercableoftheantennafeedersystem.
Steps
1.Switchoffpowersupply.
2.Dismantletheolderjumpertobereplaced.
3.Connectoneendofthefeederjumpertothefeedersystem,andthenconnectthe otherendofthefeederjumpertoantennaportofRRU.
4.Switchonpowersupply .
–EndofSteps–
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Glossary

AISG
-AntennaInterfaceStandardsGroup
APM
-ACProtectionModule
BBU
-BaseBandUnit
DPM
-DCProtectionModule
IP
-InternetProtocol
LMT
-LocalMaintenanceTerminal
LTE
-LongTermEvolution
MIMO
-Multiple-InputMultiple-Output
MTBF
-MeanTimeBetweenFailures
MTTR
-MeanTimeToRepair
NE
-NetworkElement
RF
-RadioFrequency
RRU
-RemoteRadioUnit
SDR
-SoftwareDenedRadio
TCP
-TransmissionControlProtocol
eNodeB
-EvolvedNodeB
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