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BEJ3G1XOUTBTSSTAREX-IS 1900 Outdoor BTS

LG Electronics USA, Inc.
STAREX-IS 1900 Outdoor BTS - FCC ID BEJ3G1XOUTBTS - LG Electronics USA, Inc.
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Nov 04, 2001
Application Purpose
Original Equipment
Date of Application
Nov 04, 2001
Equipment Note
STAREX-IS 1900 Outdoor BTS
Frequency Range
1931.25000000 - 1988.75000000
Company
LG Electronics USA, Inc.
Country
United States

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Users Manual

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Operational Description

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Parts List/Tune Up Info

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Test Report

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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

STAREX-BSS IS2000 BSM User’s Manual ( STAREX-IS User’s Manual ) STAREX-IS BSM Manual Page:1(877) Issue:1. 0 SMD-011-PMA210 This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designated to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. CAUTION : Do not attempt to modify this product in any way without written authorization from LG Electronics Inc. Unauthorized modification could void the user's authority to operate this product. The responsible party for this device compliance is : Company Name : LGInfoComm U.S.A. Inc. Address : 10225 Willow Creek RD San Diego, CA, 92131, U.S.A. Telephone No. : 858-635-5332 STAREX-IS BSM Manual Page:2(877) Issue:1. 0 SMD-011-PMA210 Contents 1. Introduction to BSM................................................................................................. 36 1.1. Overview........................................................................................................... 36 1.1.1. Configuration Management of System.....................................................................36 1.1.2. Fault Management of System...................................................................................36 1.1.3. Performance Management of System......................................................................38 1.1.4. Security Management of System.............................................................................39 1.1.5. Account Management of System .............................................................................39 1.2. Interoperability and Operation.......................................................................... 39 1.2.1. Configuration Management of System.....................................................................40 1.2.2. Fault Management of System...................................................................................40 1.2.3. Performance Management of System......................................................................40 1.2.4. Security Management of System.............................................................................41 1.2.5. Account Management of System .............................................................................42 1.3. BSM Configuration............................................................................................ 42 1.3.1. S/W System Boundary..............................................................................................42 1.3.2. S/W Architecture......................................................................................................43 2. BSM Environment Setting........................................................................................ 45 2.1. OS Installation................................................................................................... 45 2.1.1. Solaris 2.7 Installation Procedures..........................................................................45 2.1.2. Network Environment Setting Procedures..............................................................63 2.2. DBMS(Informix) Installation.............................................................................. 66 2.2.1. Informix Install.........................................................................................................66 2.2.2. Environment Setting.................................................................................................75 2.2.3. Execution..................................................................................................................81 2.2.4. Others.......................................................................................................................82 2.3. ATM Adaptor Setup.......................................................................................... 85 2.3.1. SunATM Adopter Setup.........................................................................................85 2.3.2. SunATM S/W Installation and Solaris Setup File Modification...............................85 2.3.3. SunATM IPoA Driver Load......................................................................................91 2.3.4. System File Changed by atm_setup Tool................................................................92 2.4. User Environment........................................................................................... 129 3. BSM Package Configuration................................................................................... 129 3.1. Application Configuration................................................................................ 129 4. BSM Command....................................................................................................... 132 4.1. User Interface Command................................................................................ 132 STAREX-IS BSM Manual Page:3(877) Issue:1. 0 SMD-011-PMA210 4.1.1. User Management Command .................................................................................132 4.1.2. Command Management Command.........................................................................139 4.1.3. History Management Command.............................................................................143 4.2. Loading Command........................................................................................... 148 4.2.1. Loading Control Command....................................................................................…

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Users Manual

STAREX-IS BSM Manual Page:318(877) Issue:1. 0 SMD-011-PMA210 4.3.6. Network Parameter Information Change (Change_Parameter_Info_3) 4.3.6.1. CAN INTER BSC AAL2 Setting Information Change • Command CHG-CAN-IUR: BSC=a, [BSC0_AAL2=b], [BSC1_AAL2=c], [BSC2_AAL2=d], [BSC3_AAL2=e], [BSC4_AAL2=f], [BSC5_AAL2=g], [BSC6_AAL2=h], [BSC7_AAL2=i], [BSC8_AAL2=j],[BSC9_AAL2=k],[BSC10_AAL2=l], [BSC11_AAL2=m], [NO_AAL2_VC=n]; • Input CHG-CAN-IUR: BSC=0, BSC0_AAL2=255 • Output STAREX-IS BSM Manual Page:319(877) Issue:1. 0 SMD-011-PMA210 4.3.6.2. CAN INTER BSC AAL5 Setting Information Change • Command CHG-CAN-BSC: [CAN0_START_AAL5=a], [CAN1_START_AAL5=b], [NO_AAL5_VC=0~], a ,b: 0~0xffffff c: 0~ • Input CHG-CAN-BSC: CAN0_START_AAL5=255 • Output STAREX-IS BSM Manual Page:320(877) Issue:1. 0 SMD-011-PMA210 4.3.6.3. CPN INTER DATA AAL5 Setting Information Change • Command CHG-CPN-DATA: [BSC0_AAL5=a], [BSC1_AAL5=b], [BSC2_AAL5=c], [BSC3_AAL5=d], [BSC4_AAL5=e], [BSC5_AAL5=f], [BSC6_AAL5=g], [BSC7_AAL5=h], [BSC8_AAL5=i], [BSC9_AAL5=j], [BSC10_AAL5=k], [BSC11_AAL5=l], [NO_AAL5_VC=m]; a ~n: BSC AAL5 (32~0xffffff) m: 0~32 • Input CHG-CPN-DATA: BSC0_AAL5=255; • Output STAREX-IS BSM Manual Page:321(877) Issue:1. 0 SMD-011-PMA210 4.3.6.4. CPN INTER PCF AAL5 Setting Information Change • Command CHG-CPN-PCF: [PIP0_0_AAL5=a], [PIP0_1_AAL5=b], [PIP1_0_AAL5=c], [PIP1_1_AAL5=d], [PIP2_0_AAL5=e], [PIP2_1_AAL5=f], [PIP3_0_AAL5=g], [PIP3_1_AAL5=h], [PIP4_0_AAL5=i], [PIP4_1_AAL5=j], [PIP5_0_AAL5=k], [PIP5_1_AAL5=l], [PIP6_0_AAL5=m], [PIP6_1_AAL5=n], [PIP7_0_AAL5=o], [PIP7_1_AAL5=p], [PIP8_0_AAL5=q], [PIP8_1_AAL5=r], [PIP9_0_AAL5=s], [PIP9_1_AAL5=t], [PIP10_0_AAL5=u], [PIP10_1_AAL5=v], [NO_AAL5_VC=w] a~v: PIP AAL5 (32~0xffffff) w: 0~480 • Input CHG-CPN-PCF: PIP0_0_AAL5=255 ; • Output STAREX-IS BSM Manual Page:322(877) Issue:1. 0 SMD-011-PMA210 4.3.6.5. BSC INTER BSC AAL2 Setting Information Change • Command CHG-BSC-IUR: BSC=a, [BSC0_AAL2=b], [BSC1_AAL2=c], [BSC2_AAL2=d], [BSC3_AAL2=e], [BSC4_AAL2=f], [BSC5_AAL2=g], [BSC6_AAL2=h], [BSC7_AAL2=i], [BSC8_AAL2=j], [BSC9_AAL2=k], [BSC10_AAL2=l], [BSC11_AAL2=m], [NO_AAL2_VC=n]; a : BSC Number(0~11) b~m: BSC AAL2 (0~0xffffff) n: 0~ • Input CHG-BSC-IUR: BSC=0, BSC0_AAL2=255; • Output STAREX-IS BSM Manual Page:323(877) Issue:1. 0 SMD-011-PMA210 4.3.6.6. BSC INTER BTSC AAL2 Setting Information Change • Command CHG-BSC-IUB: BSC=a, BTS=b, LICA=c, LINK=d, [LINK0_AAL2=e], [LINK1_AAL2=f], [LINK2_AAL2=g], [LINK3_AAL2=h], [LINK4_AAL2=i], [LINK5_AAL2=j], [LINK6_AAL2=k], [LINK7_AAL2=l], [LINK8_AAL2=m], [LINK9_AAL2=n], [LINK10_AAL2=o], [LINK11_AAL2=p], [LINK12_AAL2=q], [LINK13_AAL2=r], [LINK14_AAL2=s], [LINK15_AAL2=t] a : BSC Number(0~11) b : BTS Number(0~47) c : LICA Number(0~2) d : LINK Number(0~15) e~t: 0~0xffffff • Input CHG-BSC-IUB: BSC=0, BTS=0, LICA=0, LINK0_AAL2=255; • Output STAREX-IS BSM Manual Page:324(877) Issue:1. 0 SMD-011-PMA210 4.3.6.7. BSC INTER CAN AAL2/5 Setting Information Change • Command CHG-BSC-CAN: BSC=a, [CAN0_START_AAL5=b], [CAN1_START_AAL5=c], [NO_AAL5_VC=d] a: BSC Number(0~11) b,c: 32~0xffffff d: 0~8160 • Input CHG-BSC-CAN: BSC=0, CAN0_START_AAL5=255; • Output STAREX-IS BSM Manual Page:325(877) Issue:1. 0 SMD-011-PMA210 4.3.6.8. BSC INTER SLB AAL5 Setting Information • Command CHG-BSC-SLB: BSC=a, [SLP0_AAL5=b], [SLP1_AAL5=c], [SLP2_AAL5=d], [SLP3_AAL5=e], [SLP4_AAL5=f], [SLP5_AAL5=g], [SLP6_AAL5=h], [SLP7_AAL5=i], [SLP8_AAL5=j], [SLP9_AAL5=k], [SLP10_AAL5=l], [SLP11_AAL5=m], [SLP12_AAL5=n], [SLP13_AAL5=o], [SLP14_AAL5=p], [SLP15_AAL5=q], [SLP16_AAL5=r], [SLP17_AAL5=s], [NO_AAL5_VC=t] a: BSC Number(0~11) b~s: 40~0xffffff t: 0~984 • Input CHG-BSC-SLB: BSC=0, SLP0_AAL5=255; • Output STAREX-IS BSM Manual Page:326(877) Issue:1. 0 SMD-011-PMA210 4.3.6.9. BSC INTER VCB AAL5 Setting Information Change • Command CHG-BSC-VCB: BSC=a, [VCP0_AAL5=b], [VCP1_AAL5=c], [VCP2_AAL5=d], [VCP3_AAL5=e], [VCP4_AAL5=f], [VCP5_AAL5=g], [VCP6_AAL5=h], [VCP7_AAL5=i], [VCP8_AAL5=j], [VCP9_AAL5=k], [VCP10_AAL5=l], [VCP11_AAL5=m], [VCP12_AAL5=n], [VCP13_AAL5=o], [VCP14_AAL5=p], [VCP15_AAL5=q], [NO_AAL5_VC=r] a: BSC Number(0~11) b~q: 40~0xffffff r: 0~88 • Input CHG-BSC-VCB: BSC=0, VCP0_AAL5=255; • Output STAREX-IS BSM Manual Page:327(877) Issue:1. 0 SMD-011-PMA210 4.3.6.10. BSC INTER ALB AAL5 Setting Information Change • Command CHG-BSC-ALB: BSC=a, [ALMA0_ALP0_0=b], [ALMA0_ALP0_1=c], [ALMA0_ALP1_0=d], [ALMA0_ALP1_1=e], [ALMA0_ALP2_0=f], [ALMA0_ALP2_1=g], [ALMA0_ALP3_0=h], [ALMA0_ALP3_1=i], [ALMA0_ALP4_0=j], [ALMA0_ALP4_1=k], [ALMA1_ALP0_0=l], [ALMA1_ALP0_1=m], [ALMA1_ALP1_0=n], [ALMA1_ALP1_1=o], [ALMA1_ALP2_0=p], [ALMA1_ALP2_1=q], [ALMA1_ALP3_0=r], [ALMA1_ALP3_1=s], [ALMA1_ALP4_0=t], [ALMA1_ALP4_1=u], [NO_AAL5_VC=v] a: BSC Number(0~11) b~u: 32~0xffffff v: 0~2016 • Input CHG-BSC-ALB: BSC=0, ALMA0_ALP0_0=255; • Output STAREX-IS BSM Manual Page:328(877) Issue:1. 0 SMD-011-PMA210 4.3.6.11. BTS INTER RCU AAL5 Setting Information Change • Command CHG-BTS-RCU: BSC=a, BTS=b, RCU=c, [LICA0_AAL5=d], [LICA1_AAL5=e], [LICA2_AAL5=f], [LICA0_NO_VC=g], [LICA1_NO_VC=h], [LICA2_NO_VC=i] a: BSC Number(0~11) b:BTS Number(0~47) c: RCU Number(0~9) d~i: 0~ • Input CHG-BTS-RCU: BSC=0,BTS=0,RCU=0, LICA0_AAL5=255; • Output STAREX-IS BSM Manual Page:329(877) Issue:1. 0 SMD-011-PMA210 4.3.7. Configuration Information Display(Display_Configuration_Data) This section describes the comands that are used to inquire the configuration information which is related to processors, devices, and overhead channels which are currently used in BTS and BSC. Table 4.3-3 Configuration Information Display CRN MMC Description 2101 DIS-BSS-CONF BSS configuration information verification 2103 DIS-SMP-CONF SMP configuration information verification 2105 DIS-VMP-CONF VMP configuration information verification 2112 DIS-BTS-CONF BTS configuration information verification 2115 DIS-CHIP-CONF DBPA CHIP configuration information verification 2125 DIS-OVHD-CONF OVERHEAD CHANNEL configuration information verification 2133 DIS-PDSN-CONF PDSN configuration inform…

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Users Manual

STAREX-IS BSM Manual Page:479(877) Issue:1. 0 SMD-011-PMA210 4.6.2.20. SCCP Local Subsystem State Data Display Function to display State related to Local Exchange Sub-system defined at Local Exchange Signaling Point Command DIS-SCCP-LSS:BSC_ID =a; a = BSC Number ( 00 ~ 16 ) Input DIS-SCCP-LSS:BSC_ID = 0; Output Fig. 4.6-20 SCCP Local Subsystem State Data Display 4.6.2.21. Signaling Link Status Display Function to display a designated Signaling Link Status, Activate Status of Signaling Link, Inhibit Status of Intra switching office Signaling Link, and Inhibit Status of local Switching Office. Command DIS-SLK-STS:BSC_ID = a, SLC = b; a = BSC Number ( 00 ~ 11) b = Signalling Number Code ( 00 ~ 16 ) Input DIS-SLK-STS:BSC_ID = 0, SLC=0; Output STAREX-IS BSM Manual Page:480(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-21 Signaling Link Status Display 4.6.2.22. Signaling Terminal Status Display Function to display Status Information for a specific signaling Tunnel, including the types of data such as SLC, Trunk Number, Signaling Data Link Number, and present Status. Command DIS-ST-STS:BSC_ID=0; a = BSC Number ( 00 ~ 15 ) Input DIS-ST-STS:BSC_ID=0; Output STAREX-IS BSM Manual Page:481(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-22 Signaling Terminal Status Display 4.6.2.23. Signaling Link Set Status Display Function to display all the Signaling Link Status connected to ASS-W to include the status of SLC(Signaling Link Code), sl_avail(Signaling Link Availability/Non- availability), loc_inh(Local Exchange Management Inhibit), rem_inh(Remote Management Inhibit. Command DIS-LKS-STS:BSC_ID=a; a = BSC Number ( 00 ~ 11 ) Input DIS-LKS-STS:BSC_ID = 0; Output Fig. 4.6-23 Signaling Link Set Status Display 4.6.2.24. MTP Level 2 Timer Display It displays Timer Value used for MTP L2 which is presently in operation. Command DIS-MTP2-TMR:BSC_ID = a; a = BSC Number ( 00 ~ 15 ) Input DIS-MTP2-TMR:BSC_ID = 0; Output STAREX-IS BSM Manual Page:482(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-24 MTP Level2 Timer Display 4.6.2.25. MTP Level 2 Timer Change It changes Timer Value used for MTP L2 which is presently in operation. Command CHG-MTP2-TMR:BSC_ID=a, T1=b, T2 =c, T3=d, T4N = e, T4E = f, T5 =g, T6 = h, T7= i; a = BSC Number ( 00 ~ 15 ) b = T1 Timer ( 40000 ~ 50000 ) c = T2 Timer ( 5000 ~ 150000 ) d = T3 Timer ( 1000 ~ 2000 ) e = T4N Timer ( 7500 ~ 9500 ) f = T4E Timer ( 00 ~ 600 ) g = T5 Timer ( 80 ~ 120 ) h = T6 Timer ( 3000 ~ 5000 ) I = T7 Timer ( 500 ~ 2000 ) Input CHG-MTP2-TMR:BSC_ID=0, T5 = 100; Output STAREX-IS BSM Manual Page:483(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-25 MTP Level2 Timer Change 4.6.2.26. MTP Level 3 Timer Diplay It displays Timer Value used for MTP L3 which is presently in operation. Command DIS-MTP3-TMR:BSC_ID =a; a = BSC Number ( 00 ~ 15 ) Input DIS-MTP3-TMR:BSC_ID = 0; Output STAREX-IS BSM Manual Page:484(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-26 MTP Level3 Timer Display 4.6.2.27. MTP Level 3 Timer Change It changes Timer Value used for MTP L3 which is presently in operation. Command CHG-MTP3-TMR:BSC_ID = a, T1 = b, T2 = c, T3 = d, T4 = e, T5 = f, T12 = g, T13= h, T14 = i, T17 = j, T22 = k, T23 = l, SLTM = m; a = BSC Number ( 00 ~ 11 ) b = T1 Timer ( 500 ~ 1200 ) c = T2 Timer ( 700 ~ 2000 ) d = T3 Timer ( 500 ~ 1200 ) e = T4 Timer ( 500 ~ 1200 ) f = T5 Timer ( 500 ~ 1200 ) g = T12 Timer ( 800 ~ 1500 ) h = T13 Timer ( 800 ~ 1500 ) I = T14 Timer ( 2000 ~ 3000 ) j = T17 Timer ( 800 ~ 5000 ) l = T22 Timer ( 180 ~ 360 ) l = T23 Timer ( 180 ~ 360 ) m = SLTM Timer ( 4 ~ 12 ) Input CHG-MTP3-TIMER:BSC_ID=0, SLTM=10; STAREX-IS BSM Manual Page:485(877) Issue:1. 0 SMD-011-PMA210 Output Fig. 4.6-27 MTP Level e 3 Timer Change 4.6.2.28. SCCP Timer Display It changes Timer Value used for SCCP which is presently in operation. Command CHG-SCCP-TMR:BSC_ID=a, T_CONNE_EST = b, T_IAS = c, T_IAR = d, T_REL = e, T_INT =f , T_STAT_INFO = g; a = BSC Number ( 00 ~ 11 ) b = T_CONNE_EST ( 20 ~ 120 ) c = T_IAS ( 300 ~ 600 ) d = T_IAR ( 660 ~ 1320 ) e = T_REL ( 1 ~ 20 ) f = T_INT ( 10 – 60) g = T_STAT_INFO ( 5 ~ 1200 ) Input CHG-SCCP-TMR:BSC_ID=0, T_STAT_INFO=40; Output STAREX-IS BSM Manual Page:486(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-28 SCCP Timer Change 4.6.3. Maintenance Function Command 4.6.3.1. Signaling Link Test Signaling Link Test is performed while Signaling Link is in service when Signaling Link becomes activated or restored and is used to check if both ends of Signaling Link process messages correctly. The status of Signaling Link to be tested should be in the Activate Status. Command TEST-SLK:BSC_ID=a, SLC =b; a = BSC Number ( 0 ~ 11 ) b = Signalling Link Code ( 0 ~ 15 ) Input TEST-SLK:BSC_ID= 0, SLC = 1; Output STAREX-IS BSM Manual Page:487(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-29 Signaling Link Test 4.6.3.2. Signaling Terminal Test Signaling Terminal Test consists of RA Loopback and SELF Loopback, and RA Loopback performs Loopback in Rate Adaptation function, performing an activation of Signaling Link. Depending upon the result, it performs inspection function on the Signaling Terminal and Lookback performs Lookback to STPA receiving terminal, providing inspection function of Status. A test should be successfully conductedto Signaling Terminal where corresponding Signaling Terminal is not allocated to Signaling Link before testing Signaling Terminal, so that normal test result can be reported. Command TEST-ST:BSC_ID=a, STID =b, TYPE=c; a = BSC Number ( 00 ~ 11 ) b = Signalling Terminal ( 1 ~ 16 ) c = TYPE ( SELF, RA ) Input TEST-ST:BSC_ID = 1, STID =2, TYPE=SELF; Output STAREX-IS BSM Manual Page:488(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.6-30 Signaling Terminal Test 4.6.3.3. Test Cycle Display Signaling Terminal Automatic Test is not a test on the request from the operator to Signaling Terminal allocated to Signaling Link, but the test is performed on Signaling Terminal by the Processor cyclically, which displays Test Cycle (default: 30sec) . Command DIS-NO7-CYC:BSC_ID=a; a = BSC Number ( 00 ~ 11 ) Input DIS-…

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Users Manual

STAREX-IS BSM Manual Page:564(877) Issue:1. 0 SMD-011-PMA210 4.9.6.3. Directions for Use The direction is configured with full of drawings. Refer to the STMX, TRMX Block for detailed operation. Press stmGUI among the buttons of Manager. Fig. 4.9-16 stmGUI Start Icon Then the following screen is displayed. Fig. 4.9-17 stmGUI Main Screen STAREX-IS BSM Manual Page:565(877) Issue:1. 0 SMD-011-PMA210 The figure above shows the status that the highest-grade alarm of the BSC0 is the critical alarm and the highest alarm of the BTS0, major alarm, is generated. 4.9.6.3.1. BTS Name Display. Fig. 4.9-18 Display Screen of BTS Name. e.g.) On the figure above, ghjeong is the real name of the BTS and BTS 0 is the BTS ID. 4.9.6.3.2. Main Menu Fig. 4.9-19 Main Menu Hide : It is used when hiding RACK and SHELF simultaneously from the screen. Update : It is used in compulsory loading of initial value upon deletion and extension by MMC. Exit : It ends the program. 4.9.6.3.3. Color by the Alarm Grade Fig. 4.9-20 Alarm Color Red : Critical Orange : Major Green : Minor Azure : Normal STAREX-IS BSM Manual Page:566(877) Issue:1. 0 SMD-011-PMA210 Gray : BTS Is Not Equipped STAREX-IS BSM Manual Page:567(877) Issue:1. 0 SMD-011-PMA210 4.9.6.3.4. Status Color. Fig. 4.9-21 Status Color Tone 4.9.6.3.5. Processor Status Fig. 4.9-22 Processor Status (CAN) Fig. 4.9-23 Processor Status (BSC) NormalA Side Active Dual ProcessorSingle Processor NormalA Side Active Dual ProcessorSingle Processor STAREX-IS BSM Manual Page:568(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.9-24 Processor Status (BTS) 4.9.6.3.6. Rack View To see the shape of BSC/BTS one should press the corresponding button. Select a BSC. Fig. 4.9-25 BSC Selection Select a BTS. Fig. 4.9-26 BTS Selection STAREX-IS BSM Manual Page:569(877) Issue:1. 0 SMD-011-PMA210 . 4.9.6.3.7. Rack Shape Diagram. The following shape appears if CAN, BSC or BTS is chosen. 4.9.6.3.7.1. CAN Rack Fig. 4.9-27 CAN Rack Shape. The color of each slot manifests the alarm information of equipped cards. For example, the yellow color of BCRA, PIPA and FERA in the 4 th shelf of the left side shows that the alarm is generating at Major status. STAREX-IS BSM Manual Page:570(877) Issue:1. 0 SMD-011-PMA210 4.9.6.3.7.2. BSC Rack Fig. 4.9-28 BSC Rack STAREX-IS BSM Manual Page:571(877) Issue:1. 0 SMD-011-PMA210 4.9.6.3.7.3. BTS Rack Fig. 4.9-29 BTS Rack STAREX-IS BSM Manual Page:572(877) Issue:1. 0 SMD-011-PMA210 4.9.6.3.7.4. Slot Shape Diagram. The corresponding dialog box is displayed upon clicking slot in the rack shape diagram. Fig. 4.9-30 card click example. The following dialog box appears upon clicking SLPA card above. Fig. 4.9-31 e.g.)Dialog box- card Information Memo: Stores the edited results temporarily. Edit: Edit button clickclick Alarm정보상태정보 Board name Alarm message 형상위치정보 Time memo AlarmInfo상태정보Status Info Board name Alarm messageAlarm message 형상위치정보 Shape Location Info TimeTime memo STAREX-IS BSM Manual Page:573(877) Issue:1. 0 SMD-011-PMA210 Cancel: End button Save: Stores the edited. 1,2,3,4,5 button: The memo is stored in numerical order. Click numbers in right side(1,2,3,4,5) to see the memo. Fig. 4.9-32 e.g.)Dialog box-Vocoder Element Status For example, the SK_Qcelp type call in the VCE0 of DSP1 is in busy status. Fig. 4.9-33 e.g.)Dialog box-DBPA Chip Status STAREX-IS BSM Manual Page:574(877) Issue:1. 0 SMD-011-PMA210 4.9.6.3.7.5. Status Display Fig 4.9-34 Display Status by Board 4.9.6.3.7.6. Alarm Display Fig. 4.9-35 Alarm Display by Board. 4.9.6.4. Suggestions on Operation. 4.9.6.4.1. Status Management The status and alarm are displayed in turn at 2-minute intervals in managing each board. If there is no Alarm it displays the status color. 4.9.6.4.2. The Order of Priority The stmGUI receives the process results of the status block (STMX) and fault block (TRMX) to reprocess them. Therefore, both of the two blocks should be normally operated for the normal operation. If the initial data setup of STMX has not been done while BSM is running, stmGUI may display undefined values. In this case, press update STAREX-IS BSM Manual Page:575(877) Issue:1. 0 SMD-011-PMA210 button to initialize the value again. STAREX-IS BSM Manual Page:576(877) Issue:1. 0 SMD-011-PMA210 4.9.6.4.3. End Use Exit button in the main screen to end the program. It is undesirable using command kill or xkill. Proper procedure is recommended. 4.9.7. Neighbor Control Window (neighbor) 4.9.7.1. Overview. Graphic neighbor is a tool that helps addition and deletion of the information related to the BTS neighbor. User can view, add and delete the information related to neighbor using the existing MMC but it requires the user to input lots of data. Therefore, graphic neighbor minimize the input amount of user for user’s convenience. 4.9.7.2. Environment Setup. Refer to the environment setup of stmGUI. 4.9.7.3. Directions for Use Most of the directions are constituted of drawings and refer to the CDMX for detailed operation. Press neighbor among the buttons of Manager to start. Fig. 4.9-36 Neighbor Start Icon The following initial screen appears. STAREX-IS BSM Manual Page:577(877) Issue:1. 0 SMD-011-PMA210 Fig. 4.9-36 Neighbor Initial Screen STAREX-IS BSM Manual Page:578(877) Issue:1. 0 SMD-011-PMA210 4.9.7.3.1. Main Menu Fig. 4.9-37 Main Menu Screen User can select a function in this screen. Select : select or change the BTS or sector. For selection, select a BTS first and then select a sector in the BTS. Delete : delete the neighbor in the presently selected sector. Press sector to be deleted after selection. Add : add neighbor into the presently selected sector. Press a sector to be added after selection. NewAdd : add a neighbor of other MSC into the presently selected sector. Input information into the window field appeared after selection. (There is no default value) 4.9.7.3.2. BTS Selection There are two methods for selecting BTS. Surely, the BTS subjected to the MSC of the presently operating system can be selected. 4.9.7.3.…

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Users Manual

STAREX-IS BSM Manual Page:601(877) Issue:1. 0 SMD-011-PMA210 5. BSM On-Line Message 5.1. Fault/Alarm Message 5.1.1. Alarm Message 5.1.1.1. CAN Occurrence Alarm Message 5.1.1.1.1. CAMB 5.1.1.1.1.1. CNP Processor 1) When A-Side of the duplicated CNP is normal and functional problems occur on the B- side board Fig. 5.1-1 CNP Single Function Fail 2) When functional problems occur on the B-Side after functional problems occur on the A-Side of the duplicated CNP, Fig. 5.1-2 CNP Dual Function Fail 3) When A-Side of the duplicated CNP is normal and the B-Side board is removed STAREX-IS BSM Manual Page:602(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-3 CNP Single Board Open Fail 4) When B-Side is removed after A-Side of the duplicated CNP is removed Fig. 5.1-4 CNP Dual Board Open Fail 5.1.1.1.1.2. ASCA Board 1) When A-Side of the duplicated ASCA is normal and functional problems occur on the B-Side board Fig. 5.1-5 CAN ASCA Single Function Fail 2) When functional problems occur on the B-Side after functional problems occur on the A-Side of the duplicated ASCA STAREX-IS BSM Manual Page:603(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-6 CAN ASCA Dual Function Fail 3) When A-Side of the duplicated ASCA is normal and B-Side board is removed Fig. 5.1-7 CAN ASCA Single Board Open Fail 4) When B-Side is removed after A-Side of the duplicated ASCA is removed Fig. 5.1-8 CAN ASCA Dual Open Fail 5.1.1.1.1.3. ASIA Board 1) When A-Side of the duplicated ASIA is normal and functional problems occur on the B-Side board STAREX-IS BSM Manual Page:604(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-9 CAN ASIA Single Function Fail 2) When functional problems occur on the B-Side board after functional problems occur on the A-Side of the duplicated ASIA Fig. 5.1-10 CAN ASIA Dual Function Fail 3) When A-Side of the duplicated ASIA is normal and B-Side board is removed Fig. 5.1-11 CAN ASIA Single Board Open Fail 4) When B-Side board is removed after A-Side of the duplicated ASIA is removed STAREX-IS BSM Manual Page:605(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-12 CAN ASIA Single Board Open Fail 5.1.1.1.1.4. AOTA Board 1) When functional faults occur on AOTA board Fig. 5.1-13 CAN AOTA Function Fail 2) When AOTA board is removed Fig. 5.1-14 CAN AOTA Board Open Fail 5.1.1.1.1.5. ATSA Board 1) When functional faults occur on ATSA board STAREX-IS BSM Manual Page:606(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-15 CAN ATSA Function Fail 2) When ATSA board is removed Fig. 5.1-16 CAN ATSA Board Open Fail 5.1.1.1.1.6. PRI Board 1) When A-Side of the duplicated PRI is normal and functional problems occur on the B-Side board Fig. 5.1-17 CAMB PRI Single Power Fail 2) When functional problems occur on the A-Side after functional problems occur on the B-Side of the duplicated PRI STAREX-IS BSM Manual Page:607(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-18 CAMB PRI Dual Power Fail 3) When A-Side of the duplicated PRI is normal and B-Side board is removed Fig. 5.1-19 CAMB PRI Single Power Open Fail 4) When A-Side is removed after B-Side of the duplicated PRI is removed Fig. 5.1-20 CAMB PRI Dual Power Open Fail 5.1.1.1.1.7. Others 1) When CAMB Alarm Cable is removed STAREX-IS BSM Manual Page:608(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-21 CAN Alarm Cable Open 5.1.1.1.2. CPNB 5.1.1.1.2.1. PNP Processor 1) When A-Side of the duplicated PNP is normal and functional problems occur on the B-Side board Fig. 5.1-22 CAN PNP Single Function Fail 2) When functional problems occur on the A-Side after B-Side of the duplicated PNP has a functional problem Fig. 5.1-23 CAN PNP Dual Function Fail 3) When A-Side of the duplicated PNP is normal and B-Side board is removed STAREX-IS BSM Manual Page:609(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-24 CAN PNP Single Board Open Fail 4) When A-Side is removed after B-Side of the duplicated PNP is removed Fig. 5.1-25 CAN PNP Dual Board Open Fail 5.1.1.1.2.2. ASCA Board 1) When A-Side of the duplicated ASCA is normal and functional problems occur on the B-Side board Fig. 5.1-26 CPNB ASCA Single Function Fail 2) When functional problems occur on the A-Side after B-Side of the duplicated ASCA has a functional problem STAREX-IS BSM Manual Page:610(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-27 CPNB ASCA Dual Function Fail 3) When A-Side of the duplicated ASCA is normal and B-Side board is removed Fig. 5.1-28 CPNB ASCA Single Board Open Fail 4) When A-Side is removed after B-Side of the duplicated ASCA is removed Fig. 5.1-29 CPNB ASCA Dual Board Open Fail 5.1.1.1.2.3. ASIA Board 1) When A-Side of the duplicated ASIA is normal and functional problems occur on the B-Side board STAREX-IS BSM Manual Page:611(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-30 CPNB ASIA Single Function Fail 2) When functional problems occur on the A-Side after B-Side of the duplicated ASIA has a functional problem Fig. 5.1-31 CPNB ASIA Dual Function Fail 3) When A-Side of the duplicated ASIA is normal and B-Side board is removed Fig. 5.1-32 CPNB ASIA Single Board Open Fail 4) When A-Side is removed after B-Side of the duplicated ASIA is removed STAREX-IS BSM Manual Page:612(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-33 CPNB ASIA Dual Board Open Fail 5.1.1.1.2.4. PRI Board 1) When A-Side of the duplicated PRI is normal and functional problems occur on the B-Side board Fig. 5.1-34 CPNB PRI Single Power Fail 2) When functional problems occur on the A-Side after B-Side of the duplicated PRI has a functional problem Fig. 5.1-35 CPNB PRI Dual Power Fail 3) When A-Side of the duplicated PRI is normal and B-Side board is removed STAREX-IS BSM Manual Page:613(877) Issue:1. 0 SMD-011-PMA210 Fig. 5.1-36 CPNB PRI Single Power Open Fail 4) When A-Side is removed after B-Side of the duplicated PRI is removed Fig. 5.1-37 CPNB PRI Dual Power Open Fail 5.1.1.1.2.5. Others 1) CPNB Alarm Cable is removed Fig. 5.1-38 CPNB Alarm Cable Open 5.1.1.1.3. PCFB(PCP) 5.1.1.1.3.1. PCP Processor 1) When A-Side of the duplicated PCP is normal and functional problems occur on the B-Side board STAREX-IS BSM Manual Pag…

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Contact Information

Applicant

David Kim(Team leader, LGEUS NA Policy & Regulatory Affairs)
[email protected]201-470-2696Fax: 201-816-2003

Technical Contact

MET Laboratories, Inc.Liming Xu
[email protected]410-354-3300

914 West Patapsco Ave. · Baltimore, Maryland · United States

Non-Technical Contact

MET Laboratories, Inc.Marianne Bosley
[email protected]410-354-3300

Test Firm

MET Laboratories, Inc.John Mason
[email protected]410-354-3300Fax: 410-354-3313

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
124E1.93 GHz - 1.99 GHz16 W1M30F9W20.0000000000 Hz
Confidentiality
Long Term
Grant Notes
The antenna(s) used for this transmitter must be fixed-mounted on outdoor permanent structures. RF exposure compliance is 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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