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  3. W6U850C700PSD

W6U850C700PSDRDU Module 850C/700PS(D)

SOLiD, Inc.
RDU Module 850C/700PS(D) - FCC ID W6U850C700PSD - SOLiD, Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Feb 11, 2013
Application Purpose
Original Equipment
Date of Application
Feb 11, 2013
Equipment Note
RDU Module 850C/700PS(D)
Frequency Range
769.00000000 - 775.00000000
Company
SOLiD, Inc.
Country
South Korea

Documents & Files

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Users Manual

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Cover Letter(s)

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ID Label/Location Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

 Confidential&Proprietary               SMDR Installation and Operation Manual      Document Reference: Version: DocumentStatus: IssueDate: Author: Department: AuthorizingManager:     onfidential&Proprietary                  1/139 SMDR-NH124 Installation and Operation Manual  V6.0 Release1 May.22,2012 KyungEunHan R&DDivisionTeam3       YoungshinYeo Installation and Operation Manual   Confidential&Proprietary                   2/139 REVISION HISTORY Version Issue Date No. of Pages Initials Details of Revision Changes V1.0Jan.02,2009Original V2.0Oct.23.2009AddRDU(VHF+UHF) V3.0Feb.04.2010AddADDONV/UHFROU V4.0Nov.24.2010AddRDUE9VHF+UHF V5.0 Feb.21,2011 LTEFULLBAND V6.0 May.22,2012 Add700LTEF+850C V7.0 Dec.18,2012 Add850C+700PS(D)      Technical Support SOLiD serial numbers must be available to authorize technical support and/or to establish a returnauthorizationfordefectiveunits.Theserialnumbersarelocatedon the backoftheunit, as well as on the box in which they were delivered. Additional support information may be obtained by accessing the SOLiD Tehcnology, Inc. website at www.st.co.kr or send email at [email protected]   ThismanualisproducedbyGlobalBusinessDivisionBusinessTeam1.PrintedinKorea.  Confidential&Proprietary                   3/139 Contents Section1 Safety & Certification Notice ............................................................... 10 Section2 System Overview .................................................................................. 13 2.1 General overview........................................................................................14 2.2 System overview........................................................................................15 Section3 System Specifications ......................................................................... 17 3.1 System specifications................................................................................18 3.1.1 Physical Specifications........................................................................18 3.1.2 Optic wavelength and Laser power.....................................................19 3.1.3 Environmental specifications..............................................................19 3.1.4 Operating Frequencies range..............................................................19 3.1.5 Specifications Per band.......................................................................20 Section4 System Configuration and Functions ................................................. 25 4.1 BIU (BTS Interface Unit).............................................................................26 4.1.1 Specifications of BIU ............................................................................ 26 4.1.2 Block diagram of BIU ........................................................................... 27 4.1.3 BIU parts ............................................................................................... 27 4.1.4 Function by unit ................................................................................... 29 4.1.5 Front/rear panels of BIU ....................................................................... 34 4.2 ODU (Optic distribution Unit)....................................................................36 4.2.1 Specifications of ODU .......................................................................... 36 4.2.2 Block Diagram of ODU ......................................................................... 37 4.2.3 ODU parts ............................................................................................. 37 4.2.4 Function by unit...................................................................................38 4.2.5 Front/rear panels of ODU ..................................................................... 39 4.2.6 Interface with BIU ................................................................................. 40 4.3 OEU (Optic Expansion Unit)......................................................................42 4.3.1 Specifications of OEU .......................................................................... 42  Confidential&Proprietary                   4/139 4.3.2 Block Diagram of OEU.........................................................................43 4.3.3 OEU parts .............................................................................................. 43 4.3.4 Function by unit ................................................................................... 44 4.3.5 Front/rear panels of OEU.....................................................................48 4.4 ROU (Remote Optic Unit)...........................................................................49 4.4.1 Specifications of ROU..........................................................................49 4.4.2 Block Diagram of ROU.........................................................................50 4.4.3 ROU parts.............................................................................................50 4.4.4 Function by unit...................................................................................52 4.4.5 Bottom of ROU.....................................................................................58 4.5 Add on V/UHF ROU....................................................................................60 4.5.1 Specifications of AOR .......................................................................... 60 4.5.2 Block Diagram of AOR ......................................................................... 61 - VHF+VHF RDU - ...............................................................................................…

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Users Manual

 Confidential&Proprietary               4.1.4 Function by unit 4Main Drive BTS Unit (MDBU) MDBUdeliversTXsignalsofBTSorBDAtorelateddevicesandthendeliversRXsignalsofthe devices to BTS or BDA. This unit can automatically adjusts input ATT. It also has ATT to adjust RX gain. MDBU is varied per frequencybandincludingthefollowing:   No Unit naming 1800PS  2850C  31900P 4AWS91 5800PS+900I+PA 6 850C+700PS 850C+700PS(D) 7850C+700LTEC 8700LTEFSISO 9700LTEFMIMO 10700LTEF+850C    800PS onfidential&Proprietary                  29/139 Main Drive BTS Unit (MDBU) MDBUdeliversTXsignalsofBTSorBDAtorelateddevicesandthendeliversRXsignalsofthe devices to BTS or BDA. This unit canmonitor TX input level. Using input AGC function, it automatically adjusts input ATT. It also has ATT to adjust RX gain. MDBU is varied per frequencybandincludingthefollowing: Description In/out RF Port TX SingleBand2Port SingleBand2Port SingleBand4Port SingleBand4Port DualBand4Port DualBand4Port DualBand4Port DualBand4Port SingleBand2Port SingleBand4Port DualBand4Port 800PS+900I+Paging MDBUdeliversTXsignalsofBTSorBDAtorelateddevicesandthendeliversRXsignalsofthe monitor TX input level. Using input AGC function, it automatically adjusts input ATT. It also has ATT to adjust RX gain. MDBU is varied per In/out RF Port RX 2Port 2Port 4Port 4Port 4Port 4Port 4Port 4Port 2Port 4Port 4Port  800PS+900I+Paging  Confidential&Proprietary               1900PCS 850C onfidential&Proprietary                  30/139      AWS91 850C850C+700PS  850C+700PS  Confidential&Proprietary               700LTEFSISO 850C+700LTEC onfidential&Proprietary                  31/139  Figure 4.3 – MDBU Outer Look 700LTEF+850C 700LTEFSISO700LTEFMIMO 850C+700LTEC  700LTEF+850C 700LTEFMIMO  Confidential&Proprietary               2) Main Com/Div Unit (MCDU) MCDUcombinesTXsignalsthataredeliveredfromMDBUperfrequencybandanddeliversthe signals to four ODUs. This unit adds signals themtoROU.ItalsocombinesRXsignalsfromuptofourODUsandsendsthemtouptofour MDBUs. In this case, the unit extracts signals of FSK modems, which are sent in a combined formwithRXsignals,andthendeliversthesignalstoMCU. TheunithasaporttointerfacewithVHF&UHFsignals.IthasATTforinputmonitoringandinput control. VHF+UHF frequencybandincludingthefollowing:  No Unit naming 1VHF+UHF   3) Main Central Processor Unit (MCPU) MCPUcaninquireandcontrolstateofmodulesthatareinstalledinBIU. ThisunitcaninquireandcontrolstateoffourODUsintotal.Throughcommunication,it inquireandcontrolROUthatisconnectedwithlowerparts. Inaddition,theunithasRS9232Cportforserialcommunicationsothatitcaninquireandcontrol state of devices through PC. On the front panel, it has communication LED indicator to c communication state with ROU. It also has ALM LED indicator to show whether a device gets faulty. onfidential&Proprietary                  32/139 2) Main Com/Div Unit (MCDU) MCDUcombinesTXsignalsthataredeliveredfromMDBUperfrequencybandanddeliversthe signals to four ODUs. This unit adds signalsof FSK modem to the TX signals before sending themtoROU.ItalsocombinesRXsignalsfromuptofourODUsandsendsthemtouptofour MDBUs. In this case, the unit extracts signals of FSK modems, which are sent in a combined endeliversthesignalstoMCU. TheunithasaporttointerfacewithVHF&UHFsignals.IthasATTforinputmonitoringandinput Figure 4.4 – MDBU Outer Look frequencybandincludingthefollowing: Description In/out RF TX DualBand1Port 3) Main Central Processor Unit (MCPU) MCPUcaninquireandcontrolstateofmodulesthatareinstalledinBIU. ThisunitcaninquireandcontrolstateoffourODUsintotal.Throughcommunication,it inquireandcontrolROUthatisconnectedwithlowerparts. 232Cportforserialcommunicationsothatitcaninquireandcontrol state of devices through PC. On the front panel, it has communication LED indicator to c communication state with ROU. It also has ALM LED indicator to show whether a device gets MCDUcombinesTXsignalsthataredeliveredfromMDBUperfrequencybandanddeliversthe of FSK modem to the TX signals before sending themtoROU.ItalsocombinesRXsignalsfromuptofourODUsandsendsthemtouptofour MDBUs. In this case, the unit extracts signals of FSK modems, which are sent in a combined TheunithasaporttointerfacewithVHF&UHFsignals.IthasATTforinputmonitoringandinput  In/out RF Port RX 1Port ThisunitcaninquireandcontrolstateoffourODUsintotal.Throughcommunication,italsocan 232Cportforserialcommunicationsothatitcaninquireandcontrol state of devices through PC. On the front panel, it has communication LED indicator to check communication state with ROU. It also has ALM LED indicator to show whether a device gets  Confidential&Proprietary               Foraccesstouppernetwork,ithasaporttoinsertEthernetportandGSMmodeminit. In the Main Central Processor Unit, a lithium battery is installed for RTC (Real Time Control) function.  CAUTION RISKOFEXPLOSIONIFBATTERYISREPLACEDBYANINCORRECTTYPE DIPOSEOFUSEDBATTERIESACCORDINGTOTHE [INSTRUCTION] Theequipmentandaccessoriesincludinginnerlithiumbatteryaretobedispo…

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Users Manual

 Confidential&Proprietary               4.2.2 Block Diagram of ODU  4.2.3 ODU parts  onfidential&Proprietary                  37/139 Block Diagram of ODU   Figure 4.10 – ODU Inner Look     Confidential&Proprietary               No. Unit 1DOU DOU ConvertTXRFsignals ConvertRXopticalsignalsintoRFsignals; ProvideuptofouropticalportsperDOU 22W 2Way Divider DivideTXRFsignalsintotwo; CombinetwoRXRFsignalsintoone 3DU Distribution Unit Distributepowerandsignalsto 4Shelf19”rack,1U 5Accessories 15PINDSUB,Maletofemale1pcs RFCoaxialCable 4.2.4 Function by unit 1)Donor Optic Unit (DOU) DOUmakeselectronic9opticalconversionofTXsignalsandmakesoptical ofRXsignals. With an optic splitter in it, this unit divides optical signals from Laser Diode into four and then distributes them to each optical port. With a total of four Photo Diodes in RX, DOU makes optical9electronic conversion of signals received from ea equippedwithATTforopticalcompensationmadeincaseofopticalcableloss. WithinternalWDM,itusesonlyoneopticalcabletobeconnectedwithROU. onfidential&Proprietary                  38/139 Description DOU ConvertTXRFsignalsintoopticalsignals; ConvertRXopticalsignalsintoRFsignals; ProvideuptofouropticalportsperDOU 2Way Divider DivideTXRFsignalsintotwo; CombinetwoRXRFsignalsintoone Distribution Unit DistributepowerandsignalstoDOU 19”rack,1U 15PINDSUB,Maletofemale1pcs RFCoaxialCableAssembly2pcs Donor Optic Unit (DOU) opticalconversionofTXsignalsandmakesoptical9electronicconversion With an optic splitter in it, this unit divides optical signals from Laser Diode into four and then distributes them to each optical port. With a total of four Photo Diodes in RX, DOU makes electronic conversion of signals received from each optical port. In addition, the unit is equippedwithATTforopticalcompensationmadeincaseofopticalcableloss. WithinternalWDM,itusesonlyoneopticalcabletobeconnectedwithROU.  Figure 4.11 – MDBU Outer Look Remark Max2ea     electronicconversion With an optic splitter in it, this unit divides optical signals from Laser Diode into four and then distributes them to each optical port. With a total of four Photo Diodes in RX, DOU makes ch optical port. In addition, the unit is equippedwithATTforopticalcompensationmadeincaseofopticalcableloss.    Confidential&Proprietary               2) 2Way Divider (2W) 2Wisequippedwithtwo29 waysplittersinaone signals,respectively. Designed in broadband type, the divider combines and divides 2GHz or higher of signals from FSKmodemsignals.  Figure 4.12 4.2.5 Front/rear panels of 1)Front panel Figure 4.13 Item 1,2LEDindicatortocheckDOUmodulestate onfidential&Proprietary                  39/139 waysplittersinaone9moduleformandthesplittersworkforTX/RX Designed in broadband type, the divider combines and divides 2GHz or higher of signals from  Figure 4.12 – 2Way Divider Outer Look Front/rear panels of ODU Figure 4.13 – ODU front panel Outer Look  Description LEDindicatortocheckDOUmodulestatetoseeifitis moduleformandthesplittersworkforTX/RX Designed in broadband type, the divider combines and divides 2GHz or higher of signals from  toseeifitisabnormal  Confidential&Proprietary               2) Rear panel Figure 4.14 Item 1.OpticPort 2.DCI/OPort 3.RXRFPort 4.TXRFPort  4.2.6 Interface with BIU   Figure 4.15 OnthetopofBIU,uptofourODUscanbestacked. In this case, it is recommended to stack the unitsat least 1U of an interval between BIU, for heatfromBIUmayclimbuptoODU,whichma onfidential&Proprietary                  40/139 Figure 4.14 – ODU Rear panel Outer Look  Description SC/APCopticalconnectorterminal;useoneopticalcableperROU. Terminaltodeliverpowerandstatevalues  RXRFsignalinterfaceterminal TXRFsignalinterfaceterminal  Figure 4.15 – Interface between BIU and ODU OnthetopofBIU,uptofourODUscanbestacked. In this case, it is recommended to stack the unitsat least 1U of an interval between BIU, for heatfromBIUmayclimbuptoODU,whichmaycauseflame.  SC/APCopticalconnectorterminal;useoneopticalcableperROU. In this case, it is recommended to stack the unitsat least 1U of an interval between BIU, for  Confidential&Proprietary               Asseeninthefigurebelow,connectthecoaxialcableforTXandanothercoaxialcableforRX with corresponding ports at the rear of BIU. For power supply and communication, connect 15PinD9SubConnectorcablewithacorrespondingport.               onfidential&Proprietary                  41/139 Asseeninthefigurebelow,connectthecoaxialcableforTXandanothercoaxialcableforRX with corresponding ports at the rear of BIU. For power supply and communication, connect SubConnectorcablewithacorrespondingport.  Asseeninthefigurebelow,connectthecoaxialcableforTXandanothercoaxialcableforRX with corresponding ports at the rear of BIU. For power supply and communication, connect   Confidential&Proprietary               4.3 OEU (Optic Expansion Unit) OEUismainlyusedtoremotelydeliversignalsforCampusclusters.Attheupperpart,thisunit combines with ODU and receives TX optical signals to convert them into RF signals. Then, it regen…

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Users Manual

 Confidential&Proprietary               4.4 ROU (Remote Optic Unit) ROU receives TX optical signals from ODU or OEU and converts them into RF signals. The converted RF signals are amplified through High Power Amp in a corresponding RDU, combinedwithMultiplexermoduleandthenradiatedtot When receiving RX signals through the antenna port, this unit filters out corresponding RDU and sends the results to Remote Optic Module to make electronic conversion of them. After converted, the signals are s ROUcanbeequippedwithuptothreeRDUs(RemoteDriveUnit)andthemoduleiscomposed ofmaximalDualBand. ROUisdesignedinacabinet,andprovidesthefollowingfunctionsand  4.4.1 Specifications of ROU Item Size(mm) Weight Power consumption  onfidential&Proprietary                  49/139 ROU (Remote Optic Unit) ROU receives TX optical signals from ODU or OEU and converts them into RF signals. The converted RF signals are amplified through High Power Amp in a corresponding RDU, combinedwithMultiplexermoduleandthenradiatedtotheantennaport. When receiving RX signals through the antenna port, this unit filters out9of9 corresponding RDU and sends the results to Remote Optic Module to make electronic conversion of them. After converted, the signals are sent to a upper device of ODU or OEU. ROUcanbeequippedwithuptothreeRDUs(RemoteDriveUnit)andthemoduleiscomposed Figure 4.25 – ROU Outer Look ROUisdesignedinacabinet,andprovidesthefollowingfunctionsandfeatures. Specifications of ROU Spec. 482.6(19β€œ)x258x560,IncludingBracket 35.45Kg 265W ROU receives TX optical signals from ODU or OEU and converts them into RF signals. The converted RF signals are amplified through High Power Amp in a corresponding RDU, 9band signals in a corresponding RDU and sends the results to Remote Optic Module to make electronic9optical ent to a upper device of ODU or OEU. ROUcanbeequippedwithuptothreeRDUs(RemoteDriveUnit)andthemoduleiscomposed  features. Remark IncludingBracket FullLoad  Confidential&Proprietary               4.4.2 Block Diagram of ROU 4.4.3 ROU parts  onfidential&Proprietary                  50/139 Block Diagram of ROU Figure 4.26 – ROU Inner Look     Confidential&Proprietary                   51/139 No. Unit Description Remark 1RDU+BPF Remote Drive Unit FilterandhighamplifyTXsignals; FilterandamplifyRXsignals; RemoveothersignalsthroughBPF BPFisexcludefromVHF+UHFmodule  2RPSU Remote Power Supply Unit Inputpower:DC948V,Outputpower:27V,9V,6V For120VinputofAC/DC; For948VinputofDC/DC  3R9OPTIC Remote Optic MakeRFconversionofTXopticalsignals; ConvertRXRFsignalsintoopticalsignals; Compensatesopticalloss CommunicateswithBIU/OEUthoughtheFSKmodem  4RCPU Remote Central Processor Unit Controlssignalofeachunit Monitors BIU/ODU/OEU status through FSK modem communication  5Multiplexer Multiplexer CombineTXsignalsfrom3RDUs; DistributeRXsignalsto3RDUs; Enableyoutouseasingleantennaport  6Enclosure EnclosuretosatisfyNEMA4;  EnableWall/RackMount; Check if the system is normal, through the front panel LED  7SIU System Interface Unit Distributepowerandsignalsofeachmodule         Confidential&Proprietary                   52/139 4.4.4 Function by unit 1)Remote Drive Unit (RDU) WhenreceivingTXsignalsfromeachbandthroughRemoteOptic,RDUfiltersthesignalsand amplifies them with High Power Ampifier. The unit also filters RX signals given through MultiplexerandamplifiesthemtosendthesignalstoRemoteOptic. In the unit, there is ATT to adjust gain. RDU devices are varied for each frequency band, includingthefollowing:  No Unit naming Description BPF TX RX 1RDU800PS Single,ExternalBPFInternalBPF 2RDU850C Single,ExternalBPFExternalBPF 3RDU1900P+AWS91Dual, ExternalBPF(1900P) InternalBPF(AWS91) ExternalBPF(1900P) InternalBPF(AWS91) 4RDU800PS+900I+PADual, ExternalBPF(800PS) InternalBPF(900I+PA) InternalBPF(800PS) ExternalBPF(900I+PA) 5 RDU850C+700PSDual, ExternalBPF(850C) InternalBPF(700PS) ExternalBPF(850C) InternalBPF(700PS) RDU850C+700PS(D)Dual, ExternalBPF(850C) InternalBPF(700PS) ExternalBPF(850C) InternalBPF(700PS) 6RDUVHF+UHFDualInternalBPF(VHF,UHF)InternalBPF(VHF,UHF) 7RDUE9VHF+UHFDualInternalBPF(VHF,UHF)InternalBPF(VHF,UHF) 8RDU850C+700LTECDual, ExternalBPF(850C) InternalBPF(700LTEC) ExternalBPF(850C) InternalBPF(LTEC) 9RDU700LTEFSISOSingle,InternalBPF ExternalBPF(SISO) InternalBPF(MIMO) 10RDU700LTEFMIMOSingle,InternalBPF ExternalBPF(SISO) InternalBPF(MIMO) 11RDU700LTEF+850CDual, ExternalBPF(850C) InternalBPF(700LTEF) ExternalBPF(850C) InternalBPF(LTEF)   Confidential&Proprietary               38 800PS 850C 850C+700LTEC E_VHF+UHF onfidential&Proprietary                  53/139 14 59 800PS+900I+PA 850C+700PS 1900P+AWS91 VHF+UHF      Confidential&Proprietary                              700LTEFSISO 700LTEF+850C onfidential&Proprietary                  54/139 Figure 4.27 – RDU Outer Look 700LTEFMIMO   Confidential&Proprietary               2) Remote Power Supply Unit (RPSU) RPSUreceives948Vofinput.ThisunitisdividedintoDC/DCtypetooutput+6V,+9Vand+27V ofDCpowerandAC/DCtypetoreceive120VofACinputandtooutput+6V,+9Vand+27Vof DCpower. Upon order, either of…

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Users Manual

 Confidential&Proprietary                   65/139 - 700LTEF MIMO RDU -  Figure 4.34 – RDU Outer Look  2) AOR Power Supply Unit (AOR PSU) AORPSUreceives948Vofinput.Thisunit isdivided intoDC/DCtypetooutput +6V, +9Vand +27V of DC power and AC/DC type to receive 110V ofAC input and to output +6V, +9V and +27VofDCpower. Uponyourorder,eitherofthetwotypesshouldbedecided.MSConnector,whichusesportsto receive inputs, is designed to accept any of AC and DC. Only in this case, the input cable is different. RPSUhasacircuitbraketoturnthepowerON/OFFandhasLEDindicatoratthetoptocheckif output  powerisnormallysupplied. 59mm 450mm 140mm  Confidential&Proprietary               3) AOR System Interface Unit(SIU) SIUdistributespowerandsignalstoeachmodule. 4.5.5 Rear of AOR 1) Functions onfidential&Proprietary                  66/139 nterface Unit(SIU) SIUdistributespowerandsignalstoeachmodule.        Confidential&Proprietary                   67/139  Figure 4.35 – AOR Rear Look  Item Description Remark 1.VHF/UHF&700LTEF TXIN TerminalforreceivethesignalofTXfromexistingROU To/From Existing ROU 2.VHF/UHF&700LTEF RXOUT TerminalfortransmitthesignalofRXtoexistingROU 3.PowerPort Terminal for input either AC 110V or DC948V as internal PSUtype  4.VHF/UHFTXOUT   700LTEFMIMOANT TerminalforradiatethesignalofTXtoTXAntenna To/From Antenna 5.VHF/UHFRXIN   700LTEFSISOANT TerminalforreceivethesignalofRXfromRXAntenna 6.ExternalPortPortforcommunicatewithexistingROU  7.GNDLUGPORTTerminalforsystemground  POWER PORT Powerportsareusedforpower9supplyingof948VDCor120VAC,andspecificpower cable should be applied to each different types of ROUpower supply (AC/DC or  Confidential&Proprietary                   68/139 DC/DC).Belowfigureisnamingofthepowersupplybytype.  Exteral PORT External ports are reserved ports for external equipments for future implementation, andusedtomonitorthestatusandcontroltheequipments. Belowfigureisnamingoftheexternalports.     Confidential&Proprietary                   69/139 Section5 System Installation & Operation            5.1BIU Installation 5.2ODU Installation 5.3ROU Installation 5.4OEU Installation 5.5System Operation and Alarm Status 5.6Add on V/UHF ROU Installation                 Confidential&Proprietary               This chapter describes how to install each unit and optical cables, along with method. Indetail,thechapterdescribeshowtoinstallshelvesorenclosuersofeachunit,PowerCabling method and Optic Cabling and RF Interface. Furthermore, by showing power consumption of modulestobeinstalledineachunit,itpresent describes the quantity of components of modules tobe installed in each unit and expansion method.  5.1 BIU Installation 5.1.1 BIU Shelf Installation Generally, BIU is inserted into a 19” Standard Rack.As this unit easymove.Withtwofixingholesateachside,youcantightlyfixtheunitintoa19”rack.   BIUhasthefollowingcomponents: No. Unit CommonPart Shelf MCDU MCPU MPSU PowerCable OptionalPartMDBU Basically,thecommonpartofBIUshouldhaveshelvesanditshouldbeequipped withMCDU onfidential&Proprietary                  70/139 This chapter describes how to install each unit and optical cables, along with Indetail,thechapterdescribeshowtoinstallshelvesorenclosuersofeachunit,PowerCabling method and Optic Cabling and RF Interface. Furthermore, by showing power consumption of modulestobeinstalledineachunit,itpresentsPowerCablingbudgetinasimpleway.Then,it describes the quantity of components of modules tobe installed in each unit and expansion BIU Shelf Installation Generally, BIU is inserted into a 19” Standard Rack.As this unithas handles at each side for easymove.Withtwofixingholesateachside,youcantightlyfixtheunitintoa19”rack. Figure 5.1 – RACK Installation BIUhasthefollowingcomponents: Description IncludingMainBoard,19”,5U 9 WithEthernetPortandRS9232Port Operate948VdcInput  PowerCable948VdcInputwithtwolugterminal  800PS,800PS+900I+Paging,850C,850C+700P S,1900P,AWS91MDBU Basically,thecommonpartofBIUshouldhaveshelvesanditshouldbeequipped withMCDU This chapter describes how to install each unit and optical cables, along withpower cabling Indetail,thechapterdescribeshowtoinstallshelvesorenclosuersofeachunit,PowerCabling method and Optic Cabling and RF Interface. Furthermore, by showing power consumption of sPowerCablingbudgetinasimpleway.Then,it describes the quantity of components of modules tobe installed in each unit and expansion has handles at each side for easymove.Withtwofixingholesateachside,youcantightlyfixtheunitintoa19”rack.   Remark 1EA 1EA 1EA 1EA 1EA 800PS,800PS+900I+Paging,850C,850C+700P Up to 4EA tobe inserted Basically,thecommonpartofBIUshouldhaveshelvesanditshouldbeequipped withMCDU  Confidential&Proprietary               to combine and divide TX/RX signals, MPSU to supply devices with power, MCPU to inquire andcontrolstateofeachmoduleandPowerCabletosupplypower Inaddition,MDBUcanbeinsertedandremovedtoprovideservicesfordesiredband(Optional). 5.1.2 BIU Power Cabling BIUhas948Vofinputpower.ThisunitshouldconnectDCcabl…

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Contact Information

Applicant

Yong Chul Kim(Team Manager)
[email protected]+82-31-627-6292Fax: +82-31-627-6009

Test Firm

ONETECH Corp.Ki Hong Nam
[email protected]82-31-799-9580Fax: 82-31-799-9599

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
49769 MHz - 775 MHz1 WF8WAmp
Confidentiality
Long Term
Grant Notes
Booster. Power output listed is composite conducted. The antenna(s) used for this transmitter are to be fixed-mounted on indoor permanent structures providing a separation distance of at least 20 cm from all persons during normal operation. The maximum radiated output power at each antenna must satisfy the MPE categorical exclusion requirements of § 2.1091. RF exposure compliance may need to be addressed at the time of licensing, as required by the responsible FCC bureau(s), including antenna co-location requirements of §1.1307(b)(3).

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