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Transcript of SSPP88001111 WWCCDDMMAA TTeesstt GGPPIIBB...
SSPP88001111 WWCCDDMMAA TTeesstt
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Beijing Starpoint Technology Co., Ltd. >>SEP, 2014
SP8011 WCDMA Test GPIB Command Manual i
Copyright Notice
Copyright © 2014 Beijing Starpoint Technology Co., Ltd. All Rights Reserved.
No part of this manual may be reproduced in any form, written or otherwise, without the express written
permission of Beijing Starpoint Technology Co., Ltd
Beijing Starpoint Technology Co., Ltd. >>SEP, 2014
SP8011 WCDMA Test GPIB Command Manual ii
Contents
Copyright Notice............................................................................................................................. i
Contents ......................................................................................................................................... ii
1. Call Control GPIB Commands ............................................................................................... 7
1.1 Call Control ....................................................................................................................... 7
1.1.1 CALL[:CELL]:OPERating:MODE:FDD ................................................................... 7
1.1.2 CALL:ORIGinate:FDD ............................................................................................ 7
1.1.3 CALL:END:FDD...................................................................................................... 8
1.1.4 CALL:REGister[:STATe]:FD .................................................................................... 8
1.1.5 CALL:CONNected[:STATe]:FDD ............................................................................ 8
1.1.6 CALL[:CELL]:DTX:STATe:FDD .............................................................................. 9
1.1.7 CALL[:CELL]:ULDTx:SBGP:FDD ........................................................................... 9
1.1.8 CALL:SERVice:FDD ............................................................................................. 10
1.1.9 FETCh:SYNChronise:STATus:FDD ..................................................................... 10
1.2 Call Parameters ................................................................................................................. 11
1.2.1 CALL[:CELL]:MCCode:FDD .................................................................................. 11
1.2.2 CALL[:CELL]:MNCode:FDD .................................................................................. 11
1.2.3 CALL[:CELL]:PSDomain:FDD .............................................................................. 12
1.2.4 CALL[:CELL]:LACode:FDD .................................................................................. 12
1.2.5 CALL[:CELL]:RACode:FDD ................................................................................. 12
1.2.6 CALL[:CELL]:ATTFlag:FDD ................................................................................. 13
1.2.7 CALL[:CELL]:DRX:CLENgth:CNCS:FDD ............................................................ 13
1.2.8 CALL[:CELL]:DRX:CLENgth:CNPS:FDD............................................................. 14
1.2.9 CALL[:CELL]:DRX:CLENgth:UTRAN:FDD .......................................................... 14
1.2.10 CALL[:CELL]:NMO:STATe:FDD ........................................................................... 15
1.2.11 CALL[:CELL]:BCCHannel:N313:FDD .................................................................. 15
1.2.12 CALL[:CELL]:BCCHannel:T313:FDD................................................................... 16
1.2.13 CALL[:CELL]:IDENtity:FDD .................................................................................. 16
1.2.14 CALL:UPLink:TXPower:LEVel:MAXimum:FDD ................................................... 17
1.2.15 CALL:PCPich:TXPower:LEVel:CVAlue:FDD........................................................ 17
1.2.16 CALL:UPLink:TXPower:LEVel:CVAlue:FDD ........................................................ 17
1.2.17 CALL:UPLink:PRAChannel:RAMP:STEP:FDD ................................................... 18
1.2.18 CALL:UPLink:PRAChannel:PREambles:NUMBer:FDD ...................................... 18
1.2.19 CALL:UPLink:PRAChannel:PREambles:MMAX:FDD ......................................... 19
1.2.20 CALL:UPLink:PRAChannel:SIGNature:FDD ....................................................... 19
1.2.21 CALL:UPLink:PRAChannel:ASUBchannels:FDD ................................................ 20
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1.2.22 CALL:UPLink:PRAChannel:SCODe:FDD ............................................................ 20
1.2.23 CALL:UPLink:PRAChannel:BETA:AUTO:FDD .................................................... 21
1.2.24 CALL:UPLink:PRAChannel[:MANual]:CBETa:FDD ............................................. 21
1.2.25 CALL:UPLink:PRAChannel[:MANual]:DBETa:FDD ............................................. 22
1.2.26 CALL:UPLink:DPCHannel[:MANual]:HBETa:FDD ............................................... 22
1.2.27 CALL:AICHannel:CCODe:FDD ............................................................................ 22
1.2.28 CALL:CCPChannel:SECondary:OVSF[:SELected]:FDD..................................... 23
1.2.29 CALL:CCPChannel:SECondary:KSPS960:CCODe:FDD .................................... 23
1.2.30 CALL:CCPChannel:SECondary:KSPS480:CCODe:FDD .................................... 24
1.2.31 CALL:CCPChannel:SECondary:KSPS240:CCODe:FDD .................................... 24
1.2.32 CALL:CCPChannel:SECondary:KSPS120:CCODe:FDD .................................... 25
1.2.33 CALL:CCPChannel:SECondary:KSPS60:CCODe:FDD ...................................... 25
1.2.34 CALL:CCPChannel:SECondary:KSPS30:CCODe:FDD ...................................... 26
1.2.35 CALL:CCPChannel:SECondary:KSPS15:CCODe:FDD ...................................... 26
1.2.36 CALL:PICHannel:CCODe:FDD ............................................................................ 27
1.2.37 CALL[:CELL]:UINTerference:FDD ........................................................................ 27
1.2.38 CALL:LTRacer:TTCN: FDD .................................................................................. 27
1.2.39 CALL[:CELL]:SCODe:PRIMary:FDD ................................................................... 28
1.2.40 CALL:SRBService:TYPE:FDD ............................................................................. 28
1.2.41 CALL:DPCHannel:OVSF[:SELected]:FDD .......................................................... 29
1.2.42 CALL:DPCHannel:KSPS960:CCODe:FDD ......................................................... 29
1.2.43 CALL:DPCHannel:KSPS480:CCODe:FDD ......................................................... 30
1.2.44 CALL:DPCHannel:KSPS240:CCODe:FDD ......................................................... 30
1.2.45 CALL:DPCHannel:KSPS120:CCODe:FDD ......................................................... 31
1.2.46 CALL:DPCHannel:KSPS60:CCODe:FDD ........................................................... 31
1.2.47 CALL:DPCHannel:KSPS30:CCODe:FDD ........................................................... 32
1.2.48 CALL:DPCHannel:KSPS15:CCODe:FDD ........................................................... 32
1.2.49 CALL:DPCHannel:KSPS7:CCODe:FDD.............................................................. 33
1.2.50 CALL:DPCHannel:TFCI:FDD ............................................................................... 33
1.2.51 (Void)CALL:UPLink:DPCHannel:TFCIndicator:EXIStence:FDD .......................... 34
1.2.52 CALL:UPLink:DPCHannel:BETA:AUTO:FDD ...................................................... 34
1.2.53 CALL:UPLink:DPCHannel[:MANual]:CBETa:FDD ............................................... 35
1.2.54 CALL:UPLink:DPCHannel[:MANual]:DBETa:FDD ............................................... 35
1.2.55 CALL:DPCHannel:DOFFset:FDD ........................................................................ 35
1.2.56 CALL:MS:LOOPback:TYPE:FDD ........................................................................ 36
1.2.57 CALL:UPLink:DPCHannel:SCODe:FDD .............................................................. 36
1.2.58 CALL:UPLink:DPCHannel:BETA:AUTO:FDD ...................................................... 37
1.2.59 CALL:UPLink:DPCHannel:MANual:CBETa:FDD ................................................. 37
1.2.60 CALL:UPLink:DPCHannel:MANual:DBETa:FDD ................................................. 38
1.2.61 CALL:UPLink:PRAChannel:MANual:SIGNature:FDD ......................................... 38
1.2.62 CALL:UPLink:PRAChannel:MANual:SCRamble:GROup:FDD ........................... 39
1.2.63 CALL:UPLink:PRAChannel:MANual:SCRamble:OFFSet:FDD ........................... 39
1.2.64 CALL:SCHannel:NUMBer:FDD ............................................................................ 40
1.2.65 CALL:DTCHannel:DATA:FDD .............................................................................. 40
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1.3 Security & Authentication Parameters ................................................................................ 41
1.3.1 CALL:SECurity:OPERation .................................................................................. 41
1.3.2 CALL:SECurity:AUTHenticate:ALGorithm:FDD ................................................... 41
1.3.3 CALL:SECurity:INTegrity:ALGorithm:FDD ........................................................... 42
1.3.4 CALL:SECurity:AUTHenticate:RANDom:FDD ..................................................... 42
1.3.5 CALL:SECurity:AUTHenticate:KEY:FDD ............................................................. 43
1.3.6 CALL:SECurity:AUTHenticate:AMF:FDD............................................................. 43
1.3.7 CALL:SECurity:AUTHenticate:OPVariant:PTYPe:FDD ....................................... 44
1.3.8 CALL:SECurity:AUTHenticate:OPVariant:PVALue:FDD...................................... 44
1.4 Power Control .................................................................................................................. 45
1.4.1 RFGenerator:MANual:TRANsmit:POWer:FDD .................................................... 45
1.4.2 RFANalyzer:MANual:POWer:LEVel:FDD............................................................. 45
1.4.3 CALL:MS:POWer:TARGet[:AMPLitude]:FDD ...................................................... 46
1.4.4 FETCh:UPLink:TPOWer:ACTual:FDD ................................................................. 46
1.4.5 CALL[:CELL]:CLPControl:UPLink:MODE:FDD.................................................... 47
1.4.6 CALL[:CELL]:CLPControl:UPLink:ALGorithm:FDD ............................................. 47
1.4.7 CALL[:CELL]:CLPControl:UPLink:STEP:FDD ..................................................... 48
1.4.8 RFANalyzer:UPLink:WIRE:LOSS:FDD ................................................................ 48
1.4.9 CALL:CHANnel:LEVel:MODE:FDD...................................................................... 49
1.4.10 CALL:CPIChannel:LEVel:FDD ............................................................................. 49
1.4.11 CALL:CCPChannel:PRIMary:LEVel:FDD ............................................................ 49
1.4.12 CALL:SCHannel:PRIMary:LEVel:FDD ................................................................. 50
1.4.13 CALL:SCHannel:SECondary:LEVel:FDD ............................................................ 50
1.4.14 CALL:AICHannel:LEVel:FDD ............................................................................... 51
1.4.15 CALL:PICHannel:LEVel:FDD ............................................................................... 51
1.4.16 CALL:CCPChannel:SECondary:LEVel:FDD ........................................................ 52
1.4.17 CALL:DPCHannel:LEVel:FDD.............................................................................. 52
1.4.18 RFANalyzer:CONTrol:MEASurement:TTHReshold:FDD..................................... 53
1.4.19 RFANalyzer:MANual:MEASurement:TTHReshold:FDD ...................................... 53
1.5 Frequency Control ............................................................................................................ 54
1.5.1 CALL:DOWNlink:MEASurement:CHANnel:FDD ................................................. 54
1.5.2 CALL:UPLink:MEASurement:CHANnel:FDD ....................................................... 55
1.5.3 CALL:UPLink:CHANnel:CONTrol:AUTO:FDD ..................................................... 56
1.5.4 CALL:FBINdicator:STATus:FDD........................................................................... 57
1.5.5 RFGenerator:MANual:MEASurement:FREQuency:FDD..................................... 57
1.5.6 RFANalyzer:MANual:MEASurement:FREQuency:FDD ...................................... 58
1.6 Others.............................................................................................................................. 58
1.6.1 SETup:DOWNlink:ARB:FDD ................................................................................ 58
1.6.2 FETCh:DOWNlink:ARB:FDD ............................................................................... 59
2. UE measurement Command ................................................................................................ 59
2.1 FDD Parallet Test (PT)...................................................................................................... 59
2.1.1 INITiate:PTESt:FDD ............................................................................................. 59
2.1.2 ABORt:PTESt:FDD ............................................................................................... 60
2.1.3 Get results of FDD Parallet Test ........................................................................... 60
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2.1.4 Measeurement Config of FDD Parallet Test......................................................... 79
2.2 FDD Inner Loop Power Control (ILPC) ............................................................................. 83
2.2.1 INITiate:ILPControl:FDD....................................................................................... 83
2.2.2 ABORt:ILPControl:FDD ........................................................................................ 83
2.2.3 Get results of FDD Inner Loop Power Control (ILPC) .......................................... 84
2.2.4 Measeurement Config of FDD Inner Loop Power Control ................................... 88
2.3 Channel Power (CPOW) ................................................................................................. 108
2.3.1 INITiate:CPOWer:FDD ....................................................................................... 108
2.3.2 ABORt:CPOWer:FDD......................................................................................... 108
2.3.3 Get results of Channel Power ............................................................................ 108
2.3.4 Measeurement Config of CPOW ......................................................................... 110
2.4 PRACH ON/OFF Power .................................................................................................. 113
2.4.1 INITiate:TOOMask:FDD ...................................................................................... 113
2.4.2 ABORt:TOOMask:FDD........................................................................................ 113
2.4.3 Get results of PRACH ON/OFF Power ............................................................... 114
2.4.4 Measeurement Config of PRACH ON/OFF Power ............................................. 116
2.5 WCDMA MS Report ...................................................................................................... 120
2.5.1 INITiate:MREPort:FDD ....................................................................................... 120
2.5.2 ABORt:MREPort:FDD ........................................................................................ 120
2.5.3 Get results of WCDMA MS Report ..................................................................... 121
2.5.4 Measeurement Config of WCDMA MS Report................................................... 121
2.6 FDD Bit Error Ratio (WBER) ......................................................................................... 123
2.6.1 INITiate:WBERror ............................................................................................... 123
2.6.2 ABORt:WBERror ................................................................................................ 123
2.6.3 Get results of FDD Bit Error Ratio ...................................................................... 123
2.6.4 Measeurement Config of FDD Bit Error Ratio.................................................... 125
2.7 Continuous Wave (CW) .................................................................................................. 128
2.7.1 INITiate:CW:FDD ................................................................................................ 128
2.7.2 ABORt:CW:FDD ................................................................................................. 129
2.7.3 Get results of Coutinuous Wave ......................................................................... 129
2.7.4 Measeurement Config of CW ............................................................................. 130
2.8 FDD Burst Frequency Calibration (AFC) ......................................................................... 131
2.8.1 INITiate:AFCalibrate:FDD................................................................................... 131
2.8.2 ABORt:AFCalibrate:FDD .................................................................................... 131
2.8.3 Get results of FDD Burst Frequency Calibration (AFC) ..................................... 131
2.8.4 Measeurement Config of FDD Burst Frequency Calibration ............................. 132
2.9 FDD Dynamic Power (DPOW) ....................................................................................... 134
2.9.1 INITiate:DPOWer:FDD ....................................................................................... 134
2.9.2 ABORt:DPOWer:FDD......................................................................................... 134
2.9.3 Get results of FDD Dynamic Power measurement ............................................ 134
2.9.4 Measeurement Config of DPOW ........................................................................ 135
2.10 FDD Fast Power Calibration (FPC) .................................................................................. 139
2.10.1 INITiate:FPCalibrate:FDD................................................................................... 139
2.10.2 ABORt:FPCalibrate:FDD .................................................................................... 139
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2.10.3 Get results of FDD Fast Power Calibration ........................................................ 139
2.10.4 Measeurement Config of FDD Fast Power Calibration ...................................... 140
2.11 Get Measurement Implement State ................................................................................ 142
2.11.1 INITiate:DONE .................................................................................................... 142
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1. Call Control GPIB Commands
1.1 Call Control
1.1.1 CALL[:CELL]:OPERating:MODE:FDD
Command CALL[:CELL]:OPERating:MODE:FDD
Function Set or query the operation mode of the test set in the WCDMA pattern. Can been set and
queried.
Setting Type:string
Range: ON / OFF / CW/UECal
Unit:None
Query Type:string
Range:ON/ OFF / CW/UEcal
Unit:None
Default UECal
*RST Setting UECal
Programming
Example
// Set the operation mode of the test set in the WCDMA pattern as “Cell Off”.
SendGpibCmd(“CALL:OPERating:MODE:FDD OFF”);
//Query the current operation mode of the test set.
SendGpibCmd(“CALL:OPERating:MODE:FDD?”);
GetData(DT_CHAR, DataLen, CallOperateMode);
1.1.2 CALL:ORIGinate:FDD
Command CALL:ORIGinate:FDD
Function Start a MT call to the WCDMA UE. If connection established fail, the test set will return
to the last status, that maybe IDLE.Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting None
Programming
Example SendGpibCmd(“CALL:ORIGinate:FDD”);
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1.1.3 CALL:END:FDD
Command CALL:END:FDD
Function End the RMC12.2 or AMR12.2Kbps connection between the UE and the test set. Control
Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting None
Programming
Example SendGpibCmd(“CALL:END:FDD”);
1.1.4 CALL:REGister[:STATe]:FD
Command CALL:REGister[:STATe]:FDD
Function Query the status of the register process. Queried only.
Setting None
Query
Type:int
Range:1(has already finished registering)/ 0(the register does not been finished)
Unit:None
Default 0
*RST Setting 0
Programming
Example
SendGpibCmd(“CALL:REGister:FDD?”);
GetData(DT_INT, DataLen, &CallRegisterState);
1.1.5 CALL:CONNected[:STATe]:FDD
Command CALL:CONNected[:STATe]:FDD
Function Query the status of the connecting process. Queried only.
Setting None
Query
Type:int
Range:1(the call has been connected)/ 0(the connection has not been established)
Unit:None
Default 0
*RST Setting 0
Programming
Example
SendGpibCmd(“CALL:CONNected:FDD?”);
GetData(DT_INT, DataLen, &CallConState);
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1.1.6 CALL[:CELL]:DTX:STATe:FDD
Command CALL[:CELL]:DTX:STATe:FDD
Function Set or Querythe status of the DL DTX mode. Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set DL DTX mode ON.
SendGpibCmd(“CALL:DTX:STATe:FDD ON”);
// Query the current DL DTX status.
SendGpibCmd(“CALL:DTX:STATe:FDD?”);
GetData(DT_INT, DataLen, &CallDtxState);
1.1.7 CALL[:CELL]:ULDTx:SBGP:FDD
Command CALL[:CELL]:ULDTx:SBGP:FDD
Function Set or Query the period of specialtime slot SBGP. Can been set and queried.
Setting
Type:int
Range:0 / 1 / 2 / 3 / 4 / 5 / 6 / 7
Unit:None
Query
Type:int
Range:0 / 1 / 2 / 3 / 4 / 5 / 6 / 7
Unit:None
Default 2
*RST Setting 2
Programming
Example
//Set SBGP to 1.
SendGpibCmd(“CALL:ULDTx:SBGP:FDD 1”)
//Query the current SBGP value.
SendGpibCmd(“CALL:ULDTx:SBGP:FDD?”);
GetData(DT_INT, DataLen, &CallConState);
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1.1.8 CALL:SERVice:FDD
Command CALL:SERVice:FDD
Function Set or Query the service type. Can been set and queried.
Setting
Type:string
Range:RMC12/0,AMR12/2
Unit:None
Query
Type:string
Range:RMC12/0,AMR12/2
Unit:None
Default RMC12
*RST Setting RMC12
Programming
Example
// Set the service type as RMC12.2Kbps.
SendGpibCmd(“CALL:SERVice:FDD RMC12”);
// Query the current service type.
SendGpibCmd(“CALL:SERVice:FDD?”);
GetData(DT_CHAR, DataLen, CallCellMode);
1.1.9 FETCh:SYNChronise:STATus:FDD
Command FETCh:SYNChronise:STATus:FDD
Function
Query whether the UE has synchronized with the test set, this command is used after the
call connection established to check whether the UE and test set were out of synchronized.
Query only.
Setting None
Query
Type:string
Range:TRUE / FALSE
Unit:None
Default FALSE
*RST Setting FALSE
Programmin
g Example
SendGpibCmd(“FETCh:SYNChronise:STATus:FDD?”);
GetData(DT_CHAR, DataLen, SynchStatus);
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1.2 Call Parameters
1.2.1 CALL[:CELL]:MCCode:FDD
Command CALL[:CELL]:MCCode:FDD
Function Set or Query the Mobile Country Code (MCC). Can been set and queried.
Setting
Type:int
Range:0 ~ 999
Unit:None
Query
Type:int
Range:0 ~ 999
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the MCC to 1.
SendGpibCmd(“CALL:MCCode:FDD 1”);
// Query the current MCC value.
SendGpibCmd(“CALL:MCCode:FDD?”);
GetData(DT_INT, DataLen, &CellMcc);
1.2.2 CALL[:CELL]:MNCode:FDD
Command CALL[:CELL]:MNCode:FDD
Function Set or Query the Mobile Network Code (MNC). Can been set and queried.
Setting
Type:int
Range:0 ~ 99
Unit:None
Query
Type:int
Range:0 ~ 99
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the MNC to 99.
SendGpibCmd(“CALL:MNCode:FDD 99”);
// Query the current MNC.
SendGpibCmd(“CALL:MNCode:FDD?”);
GetData(DT_INT, DataLen, &CellMnc);
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1.2.3 CALL[:CELL]:PSDomain:FDD
Command CALL[:CELL]:PSDomain:FDD
Function Set or Query PS Domain Information. Can been set and queried.
Setting
Type:string
Range:ABSent / PRESent
Unit:None
Query
Type:string
Range:ABS / PRES
Unit:None
Default ABSent
*RST Setting ABSent
Programming
Example
// Set the PS Domain Information status as ABSent.
SendGpibCmd(“CALL:PSDomain:FDD ABSent”);
// Query the PS Domain Information status.
SendGpibCmd(“CALL:PSDomain:FDD?”);
GetData(DT_CHAR, DataLen, CellPsDomain);
1.2.4 CALL[:CELL]:LACode:FDD
Command CALL[:CELL]:LACode:FDD
Function Set or Query the Local Area Code. Can been set and queried.
Setting
Type:string
Range:0 ~ 65535
Unit:None
Query
Type:string
Range:0 ~ 65535
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the Local Area Code to “7681”
SendGpibCmd(“CALL:LACode:FDD 7681”);
// Query the current Local Area Code.
SendGpibCmd(“CALL:LACode:FDD?”);
GetData(PT_STRING, DataLen, &CellLac);
1.2.5 CALL[:CELL]:RACode:FDD
Command CALL[:CELL]:RACode:FDDD
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Function Set or Query the Routing Area Code. Can been set and queried.
Setting
Type:int
Range:0 ~ 255
Unit:None
Query
Type:int
Range:0 ~ 255
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the Routing Area Code to 255.
SendGpibCmd(“CALL:RACode:FDD 255”);
// Query the current Routing Area Code.
SendGpibCmd(“CALL:RACode:FDD?”);
GetData(DT_INT, DataLen, &CellRac);
1.2.6 CALL[:CELL]:ATTFlag:FDD
Command CALL[:CELL]:ATTFlag:FDD
Function Set or Query the ATT Flag State of the cell. Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Default ON
*RST Setting ON
Programming
Example
// Set the ATT Flag State as “OFF”
SendGpibCmd(“CALL:ATTFlag:FDD OFF”);
// Query the current mode of ATT Flag State.
SendGpibCmd(“CALL:ATTFlag:FDD?”);
GetData(DT_INT, DataLen, &CellAttFlag);
1.2.7 CALL[:CELL]:DRX:CLENgth:CNCS:FDD
Command CALL[:CELL]:DRX:CLENgth:CNCS:FDD
Function Set or Query the DRX Cycle Length (CS). Can been set and queried.
Setting
Type:choice
Range:”64”/6, “128”/7, “256”/8, “512”/9
Unit:None
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Query
Type:choice
Range:”64”/6, “128”/7, “256”/8, “512”/9
Unit:None
Default 128
*RST Setting 128
Programming
Example
// Set the Set the DRX Cycle Length to 256.
SendGpibCmd(“CALL:CELL:DRX:CLENgth:CNCS:FDD 256”);
// Query the current DRX Cycle Length value.
SendGpibCmd(“CALL:CELL:DRX:CLENgth:CNCS:FDD?”);
GetData(DT_INT, DataLen, &DrxClengthCNCS);
1.2.8 CALL[:CELL]:DRX:CLENgth:CNPS:FDD
Command CALL[:CELL]:DRX:CLENgth:CNPS:FDD
Function Set or Query the DRX Cycle Length (PS). Can been set and queried.
Setting
Type:choice
Range:”64”/6, “128”/7, “256”/8, “512”/9
Unit:None
Query
Type:choice
Range:”64”/6, “128”/7, “256”/8, “512”/9
Unit:None
Default 128
*RST Setting 128
Programming
Example
// Set the Set the DRX Cycle Length to 256.
SendGpibCmd(“CALL:CELL:DRX:CLENgth:CNPS:FDD 256”);
//Query the current DRX Cycle Length
SendGpibCmd(“CALL:CELL:DRX:CLENgth:CNPS:FDD?”);
GetData(DT_INT, DataLen, &DrxClengthCNPS);
1.2.9 CALL[:CELL]:DRX:CLENgth:UTRAN:FDD
Command CALL[:CELL]:DRX:CLENgth:UTRAN:FDD
Function Set or Query the DRX Cycle Length(uTRAN). Can been set and queried.
Setting
Type:choice
Range:”8”/3, “16”/4, “32”/5, ”64”/6, “128”/7, “256”/8, “512”/9
Unit:None
Query
Type:choice
Range:”8”/3, “16”/4, “32”/5, ”64”/6, “128”/7, “256”/8, “512”/9
Unit:None
Default 512
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*RST Setting 512
Programming
Example
//Set the DRX Cycle Length to 256.
SendGpibCmd(“CALL:CELL:DRX:CLENgth:UTRAN:FDD 256”);
//Query the current DRX Cycle Length value.
SendGpibCmd(“CALL:CELL:DRX:CLENgth:UTRAN:FDD?”);
GetData(DT_INT, DataLen, &DrxClengthUTRAN);
1.2.10 CALL[:CELL]:NMO:STATe:FDD
Command CALL[:CELL]:NMO:STATe:FDD
Function Set or Query the NMO. Can been set and queried.
Setting
Type:choice
Range:NMOI/0, NMOII/1
Unit:None
Query
Type:choice
Range:NMOI/0, NMOII/1
Unit:None
Default NMOI
*RST Setting NMOI
Programming
Example
//Set the ATT Flag State as ”NMOII”
SendGpibCmd(“CALL:CELL:NMO:STATe:FDD NMOII”);
//Query the current ATT Flag State.
SendGpibCmd(“CALL:CELL:NMO:STATe:FDD?”);
GetData(DT_INT, DataLen, &NMOIState);
1.2.11 CALL[:CELL]:BCCHannel:N313:FDD
Command CALL[:CELL]:BCCHannel:N313:FDD
Function Set or Query the N313 (UE Out-Of- Sync Counter). Can been set and queried.
Setting
Type:choice
Range:Omit/0, S1/1, S2/2, S4/3, S10/4, S20/5, S50/6, S100/7, S200/8
Unit:None
Query
Type:int
Range:Omit/0, S1/1, S2/2, S4/3, S10/4, S20/5, S50/6, S100/7, S200/8
Unit:None
Default Omit/0
*RST Setting Omit/o
Programming
Example
// Set the N313as “S10”
SendGpibCmd(“CALL:BCCHannel:N313:FDD S10”);
// Query the current N313.
SendGpibCmd(“CALL:BCCHannel:N313:FDD?”);
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GetData(DT_INT, DataLen, &CellBcchN313);
1.2.12 CALL[:CELL]:BCCHannel:T313:FDD
Command CALL[:CELL]:BCCHannel:T313:FDD
Function Set or Query the T313(UE Link Reestablishment Timer). Can been set and queried.
Setting
Type:choice
Range:Omit/0, “1”/2, “2”/3, ”3”/4, ”4”/5, ”5”/6, ”7”/8, ”8”/9, ”9”/10,
”10”/11, ”11”/12, ”12”/13, ”13”/14, ”14”/15, ”15”/16
Unit:None
Query
Type:choice
Range:Omit/0, “1”/2, “2”/3, ”3”/4, ”4”/5, ”5”/6, ”7”/8, ”8”/9, ”9”/10,
”10”/11, ”11”/12, ”12”/13, ”13”/14, ”14”/15, ”15”/16
Unit:None
Default Omit
*RST Setting Omit
Programming
Example
// Set the T313 to 9.
SendGpibCmd(“CALL:BCCHannel:T313:FDD 9”);
// Query the current value of T313.
SendGpibCmd(“CALL:BCCHannel:T313:FDD?”);
GetData(DT_INT, DataLen, &CellBcchT313);
1.2.13 CALL[:CELL]:IDENtity:FDD
Command CALL[:CELL]:IDENtity:FDD
Function Set or Query the Cell Identity. Can been set and queried.
Setting
Type:int
Range:0 ~ 268435455
Unit:None
Query
Type:int
Range:0 ~ 268435455
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the Cell Identity to 721126.
SendGpibCmd(“CALL:IDENtity:FDD 721126”);
// Query the current Cell Identity.
SendGpibCmd(“CALL:IDENtity:FDD?”);
GetData(DT_INT, DataLen, &CellCellId);
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1.2.14 CALL:UPLink:TXPower:LEVel:MAXimum:FDD
Command CALL:UPLink:TXPower:LEVel:MAXimum:FDD
Function Set or Query the UE max output power. Can been set and queried.
Setting
Type:int
Range:-70 ~ 33
Unit:dBm
Query
Type:int
Range:-70 ~ 33
Unit:dBm
Default 33
*RST Setting 33
Programming
Example
// Set the UE max output power to 20 dBm
SendGpibCmd(“CALL:UPLink:TXPower:LEVel:MAXimum:FDD 20”);
// Query the current UE max output power.
SendGpibCmd(“CALL:UPLink:TXPower:LEVel:MAXimum:FDD?”);
GetData(DT_INT, DataLen, &UeUlMaxPower);
1.2.15 CALL:PCPich:TXPower:LEVel:CVAlue:FDD
Command CALL:PCPich:TXPower:LEVel:CVAlue:FDD
Function Set or Query the PCPICH Tx power. Can been set and queried.
Setting
Type:int
Range:-10~ 50
Unit:dBm
Query
Type:int
Range:-10 ~ 50
Unit:dBm
Default 19
*RST Setting 19
Programming
Example
// Set the Set the PCPICH Tx power to 20 dBm.
SendGpibCmd(“CALL:PCPich:TXPower:LEVel:CVAlue:FDD 20”);
// Query the current PCPICH Tx power setting.
SendGpibCmd(“CALL:PCPich:TXPower:LEVel:CVAlue:FDD?”);
GetData(DT_INT, DataLen, &PCPichTxPower);
1.2.16 CALL:UPLink:TXPower:LEVel:CVAlue:FDD
Command CALL:UPLink:TXPower:LEVel:CVAlue:FDD
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Function Set or Query the UL OLPC constant value in SIB5. Can been set and queried.
Setting
Type:int
Range:-35~ -10
Unit:dB
Query
Type:int
Range:-35 ~ -10
Unit:dB
Default -10
*RST Setting -10
Programming
Example
// Set the UL OLPC constant value -20 dB
SendGpibCmd(“CALL:UPLink:TXPower:LEVel:CVAlue:FDD -20”);
// Query the current UL OLPC constant value.
SendGpibCmd(“CALL:UPLink:TXPower:LEVel:CVAlue:FDD?”);
GetData(DT_INT, DataLen, &PCPichTxPower);
1.2.17 CALL:UPLink:PRAChannel:RAMP:STEP:FDD
Command CALL:UPLink:PRAChannel:RAMP:STEP:FDD
Function Set or Query the PRACH RAMP step size. Can been set and queried.
Setting
Type:int
Range:1~ 8
Unit:dB
Query
Type:int
Range:1 ~ 8
Unit:dB
Default 3
*RST Setting 3
Programming
Example
// Set the PRACH RAMP step size to 6 dB.
SendGpibCmd(“CALL:UPLink:PRAChannel:RAMP:STEP:FDD 6”);
// Query the current PRACH RAMP step size.
SendGpibCmd(“CALL:UPLink:PRAChannel:RAMP:STEP:FDD?”);
GetData(DT_INT, DataLen, &PRAChannelRAMP);
1.2.18 CALL:UPLink:PRAChannel:PREambles:NUMBer:FDD
Command CALL:UPLink:PRAChannel:PREambles:NUMBer:FDD
Function Set or Query the times of the PRACH RAMP process. Can been set and queried.
Setting
Type:int
Range:1~ 64
Unit:None
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Query
Type:int
Range:1 ~ 64
Unit:None
Default 64
*RST Setting 64
Programming
Example
// Set the times of the PRACH RAMP process to 6.
SendGpibCmd(“CALL:UPLink:PRAChannel:PREambles:NUMBer:FDD 6”);
// Query the number of the PRACH RAMP times setting.
SendGpibCmd(“CALL:UPLink:PRAChannel:PREambles:NUMBer:FDD?”);
GetData(DT_INT, DataLen, &PRAChannelPreamber);
1.2.19 CALL:UPLink:PRAChannel:PREambles:MMAX:FDD
Command CALL:UPLink:PRAChannel:PREambles:MMAX:FDD
Function Set or Query the PRACH Ramping Cycles (MMAX). Can been set and queried.
Setting
Type:int
Range:1~ 32
Unit:None
Query
Type:int
Range:1 ~ 32
Unit:None
Default 64
*RST Setting 64
Programming
Example
//Set the PRACH Ramping Cycles(MMAX) to 6
SendGpibCmd(“CALL:UPLink:PRAChannel:PREambles:MMAX:FDD 6”);
//Query the current PRACH Ramping Cycles (MMAX).
SendGpibCmd(“CALL:UPLink:PRAChannel:PREambles:MMAX:FDD?”);
GetData(DT_INT, DataLen, &PRAChannelPreamber);
1.2.20 CALL:UPLink:PRAChannel:SIGNature:FDD
Command CALL:UPLink:PRAChannel:SIGNature:FDD
Function Set or Query the PRACH Signatures.Can been set and queried.
Setting
Type:int
Range:0 ~ 65535
Unit:None
Query
Type:int
Range:0 ~ 65535
Unit:None
Default 255
*RST Setting 255
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Programming
Example
//Set the PRACH Signatures to 256.
SendGpibCmd(“CALL:UPLink:PRAChannel:SIGNature:FDD 256”);
//Query the current PRACH Signatures setting.
SendGpibCmd(“CALL:UPLink:PRAChannel:SIGNature:FDD?”);
GetData(DT_INT, DataLen, &PRAChannelSignature);
1.2.21 CALL:UPLink:PRAChannel:ASUBchannels:FDD
Command CALL:UPLink:PRAChannel:ASUBchannels:FDD
Function Set or Query the PRACH available sub-channel. Can been set and queried.
Setting
Type:int
Range:0 ~ 4095
Unit:None
Query
Type:int
Range:0 ~4095
Unit:None
Default 4095
*RST Setting 4095
Programming
Example
// Set the PRACH available sub-channel to 1232.
SendGpibCmd(“CALL:UPLink:PRAChannel:ASUBchannels:FDD 1232”);
// Query the current PRACH available sub-channel.
SendGpibCmd(“CALL:UPLink:PRAChannel:ASUBchannels:FDD?”);
GetData(DT_INT, DataLen, &PRAChannelSignature);
1.2.22 CALL:UPLink:PRAChannel:SCODe:FDD
Command CALL:UPLink:PRAChannel:SCODe:FDD
Function Set or Query the scramble code of the PRACH. Can been set and queried.
Setting
Type:int
Range:0 ~ 15
Unit:None
Query
Type:int
Range:0 ~ 15
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the the scramble code of the PRACH to 5
SendGpibCmd(“CALL:UPLink:PRAChannel:SCODe:FDD 5”);
// Query the current scramble code of the PRACH.
SendGpibCmd(“CALL:UPLink:PRAChannel:SCODe:FDD?”);
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GetData(DT_INT, DataLen, &PRAchannelScode );
1.2.23 CALL:UPLink:PRAChannel:BETA:AUTO:FDD
Command CALL:UPLink:PRAChannel:BETA:AUTO:FDD
Function Set or Query PRACH Bc/Bd Control mode. Can been set and queried.
Setting
Type:choice
Range:AUTO/0, MANual/1
Unit:None
Query
Type:choice
Range:AUTO/0, MANual/1
Unit:None
Default AUTO/0
*RST Setting AUTO/0
Programming
Example
// Set the PRACH Bc/Bd Control as “MANual”.
SendGpibCmd(“CALL:UPLink:PRAChannel:BETA:AUTO:FDD MANual”);
// Query the current mode of PRACH Bc/Bd Control.
SendGpibCmd(“CALL:UPLink:PRAChannel:BETA:AUTO:FDD?”);
GetData(DT_CHAR DataLen, &PRAchannelScode );
1.2.24 CALL:UPLink:PRAChannel[:MANual]:CBETa:FDD
Command CALL:UPLink:PRAChannel[:MANual]:CBETa:FDD
Function Set or Query the Bc of DPCCH. Can been set and queried.
Setting
Type:int
Range:2 ~ 15
Unit:None
Query
Type:int
Range:2 ~ 15
Unit:None
Default 11
*RST Setting 11
Programming
Example
// Set the Bc of DPCCH to 12.
SendGpibCmd(“CALL:UPLink:PRAChannel:CBETa:FDD 12”);
// Query the current DPCCH Bc.
SendGpibCmd(“CALL:UPLink:PRAChannel:CBETa:FDD?”);
GetData(DT_INT, DataLen, &PRAchannelCbeta);
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1.2.25 CALL:UPLink:PRAChannel[:MANual]:DBETa:FDD
Command CALL:UPLink:PRAChannel[:MANual]:DBETa:FDD
Function Set or Query the Bd of DPDCHs. Can been set and queried.
Setting
Type:int
Range:2 ~ 15
Unit:None
Query
Type:int
Range:2 ~ 15
Unit:None
Default 15
*RST Setting 15
Programming
Example
// Set the Bc of DPCCHs to 11.
SendGpibCmd(“CALL:UPLink:PRAChannel:DBETa:FDD 11”);
// Query the current DPDCH Bd.
SendGpibCmd(“CALL:UPLink:PRAChannel:DBETa:FDD?”);
GetData(DT_INT, DataLen, &PRAchannelDbeta);
1.2.26 CALL:UPLink:DPCHannel[:MANual]:HBETa:FDD
Command CALL:UPLink:DPCHannel[:MANual]:HBETa:FDD
Function Set or Query Bhs of HS-DPCCHs. Can been set and queried.
Setting
Type:int
Range:0 ~ 30
Unit:None
Query
Type:int
Range:0 ~ 30
Unit:None
Default 30
*RST Setting 30
Programming
Example
// Set the Bhs of HS-DPCCHs to 11.
SendGpibCmd(“CALL:UPLink:DPCHannel[:MANual]:HBETa:FDD 11”);
// Query the current HS-DPCCH Bhs.
SendGpibCmd(“CALL:UPLink:DPCHannel[:MANual]:HBETa:FDD?”);
GetData(DT_INT, DataLen, &AICHannelCcode);
1.2.27 CALL:AICHannel:CCODe:FDD
Command CALL:AICHannel:CCODe:FDD
Function Set or Query the channelized code of AICH. Can been set and queried.
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Setting
Type:int
Range:2 ~ 255
Unit:None
Query
Type:int
Range:2 ~ 255
Unit:None
Default 3
*RST Setting 3
Programming
Example
// Set the channelized code of AICH to 11.
SendGpibCmd(“CALL:AICHannel:CCODe:FDD 11”);
// Query the current AICH channelized code.
SendGpibCmd(“CALL:AICHannel:CCODe:FDD?”);
GetData(DT_INT, DataLen, &AICHannelCcode);
1.2.28 CALL:CCPChannel:SECondary:OVSF[:SELected]:FDD
Command CALL:CCPChannel:SECondary:OVSF[:SELected]:FDD
Function Set or Query the OVSF spreading factor (SF) of S-CCPCH. Can been set and queried.
Setting
Type:choice
Range:Sf4/0, Sf8/1, Sf16/2, Sf32/3, Sf64/4, Sf128/5,Sf256/6
Unit:None
Query
Type:choice
Range:Sf4/0, Sf8/1, Sf16/2, Sf32/3, Sf64/4, Sf128/5,Sf256/6
Unit:None
Default Sf64
*RST Setting Sf64
Programming
Example
// Set the SF of S-CCPCH to 32
SendGpibCmd(“CALL:CCPChannel:SECondary:OVSF[:SELected]:FDD Sf32);
// Query the current SF of S-CCPCH
SendGpibCmd(“CALL:CCPChannel:SECondary:OVSF[:SELected]:FDD?”);
GetData(DT_INT, DataLen, &AICHannelCcode);
1.2.29 CALL:CCPChannel:SECondary:KSPS960:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS960:CCODe:FDD
Function Set or Query the code channel of S-CCPCH with 960ksps (SF=4). Can been set and
queried.
Setting
Type:int
Range:0 ~ 3
Unit:None
Query Type:int
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Range:0 ~ 3
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the code channel of S-CCPCH with 960ksps (SF=4) to 2
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS960:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 960ksps (SF=4).
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS960:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS960);
1.2.30 CALL:CCPChannel:SECondary:KSPS480:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS480:CCODe:FDD
Function Set or Query the code channel of S-CCPCH with 480ksps (SF=8). Can been set and
queried.
Setting
Type:int
Range:0 ~ 7
Unit:None
Query
Type:int
Range:0 ~ 7
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the code channel of S-CCPCH with 480ksps (SF=8) to 2.
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS480:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 480ksps (SF=8).
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS480:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS480);
1.2.31 CALL:CCPChannel:SECondary:KSPS240:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS240:CCODe:FDD
Function Set or Query the code channel of S-CCPCH with 240ksps (SF=16). Can been set and
queried.
Setting
Type:int
Range:0 ~15
Unit:None
Query
Type:int
Range:0 ~15
Unit:None
Default 1
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*RST Setting 1
Programming
Example
// Set the code channel of S-CCPCH with 240ksps (SF=16) to 2.
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS240:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 240ksps (SF=16).
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS240:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS240);
1.2.32 CALL:CCPChannel:SECondary:KSPS120:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS120:CCODe:FDD
Function Set or Query the current code channel of S-CCPCH with 120ksps (SF=32). Can been set
and queried.
Setting
Type:int
Range:0 ~31
Unit:None
Query
Type:int
Range:0 ~31
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the current code channel of S-CCPCH with 120ksps (SF=32) to 2.
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS120:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 120ksps (SF=32).
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS120:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS120);
1.2.33 CALL:CCPChannel:SECondary:KSPS60:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS60:CCODe:FDD
Function Set or Query the code channel of S-CCPCH with 60ksps (SF=64). Can been set and
queried.
Setting
Type:int
Range:0 ~63
Unit:None
Query
Type:int
Range:0 ~63
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the code channel of S-CCPCH with 60ksps (SF=64) to 2.
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS60:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 60ksps (SF=64).
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SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS60:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS60);
1.2.34 CALL:CCPChannel:SECondary:KSPS30:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS30:CCODe:FDD
Function Set or Query the code channel of S-CCPCH with 30ksps (SF=64). Can been set and
queried.
Setting
Type:int
Range:0 ~127
Unit:None
Query
Type:int
Range:0 ~127
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the code channel of S-CCPCH with 30ksps (SF=64) to 2.
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS30:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 30ksps (SF=64).
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS30:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS30);
1.2.35 CALL:CCPChannel:SECondary:KSPS15:CCODe:FDD
Command CALL:CCPChannel:SECondary:KSPS15:CCODe:FDD
Function Set or Query the code channel of S-CCPCH with 15ksps (SF=128). Can been set and
queried.
Setting
Type:int
Range:0 ~255
Unit:None
Query
Type:int
Range:0 ~255
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the code channel of S-CCPCH with 15ksps (SF=128) to 2.
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS15:CCODe:FDD 2”);
// Query the current code channel of S-CCPCH with 15ksps (SF=128).
SendGpibCmd(“CALL:CCPChannel:SECondary:KSPS15:CCODe:FDD?”);
GetData(DT_INT, DataLen, &CCPChannelSecondayKSPS15);
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1.2.36 CALL:PICHannel:CCODe:FDD
Command CALL:PICHannel:CCODe:FDD
Function Set or Query the code channel of PICH. Can been set and queried.
Setting
Type:int
Range:0 ~ 255
Unit:None
Query
Type:int
Range:0 ~ 255
Unit:None
Default 2
*RST Setting 2
Programming
Example
// Set the code channel of PICH to 3.
SendGpibCmd(“CALL:PICHannel:CCODe:FDD 3”);
// Query the current code channel of PICH.
SendGpibCmd(“CALL:PICHannel:CCODe:FDD?”);
GetData(DT_INT, DataLen, PichChanCode);
1.2.37 CALL[:CELL]:UINTerference:FDD
Command CALL[:CELL]:UINTerference:FDD
Function Set or Query the Uplink Interference (RTWP) in SIB7。Can been set and queried.
Setting
Type:int
Range:-110 ~ -70
Unit:dBm
Query
Type:int
Range:-110 ~ -70
Unit:dBm
Default -110
*RST Setting -110
Programming
Example
// Set the Uplink Interference (RTWP) to -90dBm.
SendGpibCmd(“CALL:UINTerference:FDD -90”);
// Query the current setting of he Uplink Interference (RTWP).
SendGpibCmd(“CALL:UINTerference:FDD?”);
GetData(DT_INT, DataLen, UINTerference);
1.2.38 CALL:LTRacer:TTCN: FDD
Command CALL:LTRacer:TTCN:FDD
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Function Set or Query whether active the TTCN log or not. Can been set and queried.
Setting
Type:choice
Range:On/0, Off/1
Unit:None
Query
Type:int
Range:On/1, Off/0
Unit:None
Default Off
*RST Setting Off
Programming
Example
// Active the TTCN log.
SendGpibCmd(“CALL:LTRacer:TTCN: FDD Off”);
// Query whether the TTCN log been enable or not
SendGpibCmd(“CALL:LTRacer:TTCN:TFDD?”);
GetData(DT_INT, DataLen, &LtracerTTcn);
1.2.39 CALL[:CELL]:SCODe:PRIMary:FDD
Command CALL[:CELL]:SCODe:PRIMary:FDD
Function Set or Query the Primary Scrambling Code number. Can been set and queried.
Setting
Type:int
Range:0 ~ 511
Unit:None
Query
Type:int
Range:0 ~ 511
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the Primary Scrambling Code number to 120.
SendGpibCmd(“CALL:CELL:SCODe:PRIMary:FDD 120”);
// Query the current Primary Scrambling Code number.
SendGpibCmd(“CALL:CELL:SCODe:PRIMary:FDD?”);
GetData(DT_INT, DataLen, &SCODePrimary );
1.2.40 CALL:SRBService:TYPE:FDD
Command CALL:SRBService:TYPE:FDD
Function Set or Query the SRB service type. Can been set and queried.
Setting
Type:choice
Range:”2.2kbps”/0, “3.4kbps”/1
Unit:None
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Query
Type:choice
Range:”2.2kbps”/0, “3.4kbps”/1
Unit:None
Default 2.2kbps
*RST Setting 2.2kbps
Programming
Example
// Set the SRB service type as “3.4kbps”.
SendGpibCmd(“CALL:SRBService:TYPE:FDD 3.4kbps”);
// Query the current SRB service type.
SendGpibCmd(“CALL:SRBService:TYPE:FDD?”);
GetData(DT_CHAR, DataLen, SRBserviceType );
1.2.41 CALL:DPCHannel:OVSF[:SELected]:FDD
Command CALL:DPCHannel:OVSF[:SELected]:FDD
Function Set or Query the OVSF spreading factor (SF) of DPCH. Can been set and queried.
Setting
Type:choice
Range:Sf4/0, Sf8/1, Sf16/2, Sf32/3, Sf64/4, Sf128/5, Sf256/6, Sf512/7
Unit:None
Query
Type:choice
Range:Sf4/0, Sf8/1, Sf16/2, Sf32/3, Sf64/4, Sf128/5, Sf256/6, Sf512/7
Unit:None
Default Sf128
*RST Setting Sf128
Programming
Example
// Set the OVSF spreading factor (SF) of DPCH to 16.
SendGpibCmd(“CALL:DPCHannel:OVSF:FDD Sf16”);
// Query the current spreading factor (SF) of DPCH.
SendGpibCmd(“CALL:DPCHannel:OVSF:FDD?”);
GetData(DT_CHAR, DataLen, DPCHannelOvsf”);
1.2.42 CALL:DPCHannel:KSPS960:CCODe:FDD
Command CALL:DPCHannel:KSPS960:CCODe:FDD
Function Set or Query the code channel of DPCH with 960ksps (SF=4). Can been set and queried.
Setting
Type:int
Range:0 ~ 3
Unit:None
Query
Type:int
Range:0 ~ 3
Unit:None
Default 1
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*RST Setting 1
Programming
Example
// Set the code channel of DPCH with 960ksps (SF=4) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS960:CCODe:FDD 2”);
// Query the current code channel of DPCH with 960ksps (SF=4).
SendGpibCmd(“CALL:DPCHannel:KSPS960:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DPCHannelKSPS960);
1.2.43 CALL:DPCHannel:KSPS480:CCODe:FDD
Command CALL:DPCHannel:KSPS480:CCODe:FDD
Function Set or Query the code channel of DPCH with 480ksps (SF=8). Can been set and queried.
Setting
Type:int
Range:0 ~ 7
Unit:None
Query
Type:int
Range:0 ~ 7
Unit:None
Default 6
*RST Setting 6
Programming
Example
// Set the code channel of DPCH with 480ksps (SF=8) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS480:CCODe:FDD 2”);
// Query the current code channel of DPCH with 480ksps (SF=8).
SendGpibCmd(“CALL:DPCHannel:KSPS480:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DPCHannelKSPS480);
1.2.44 CALL:DPCHannel:KSPS240:CCODe:FDD
Command CALL:DPCHannel:KSPS240:CCODe:FDD
Function Set or Query the code channel of DPCH with 240ksps (SF=16). Can been set and
queried.
Setting
Type:int
Range:0 ~15
Unit:None
Query
Type:int
Range:0 ~15
Unit:None
Default 12
*RST Setting 12
Programming
Example
// Set the code channel of DPCH with 240ksps (SF=16) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS240:CCODe:FDD 2”);
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// Query the current code channel used of DPCH with 240ksps (SF=16).
SendGpibCmd(“CALL:DPCHannel:KSPS240:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DPCHannelKSPS240);
1.2.45 CALL:DPCHannel:KSPS120:CCODe:FDD
Command CALL:DPCHannel:KSPS120:CCODe:FDD
Function Set or Query the code channel used of DPCH with 120ksps (SF=32).Can been set and
queried.
Setting
Type:int
Range:0 ~31
Unit:None
Query
Type:int
Range:0 ~31
Unit:None
Default 6
*RST Setting 6
Programming
Example
// Set the code channel used of DPCH with 120ksps (SF=32) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS120:CCODe:FDD 2”);
// Query the current code channel used of DPCH with 120ksps (SF=32).
SendGpibCmd(“CALL:DPCHannel:KSPS120:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DPCHannelKSPS120);
1.2.46 CALL:DPCHannel:KSPS60:CCODe:FDD
Command CALL:DPCHannel:KSPS60:CCODe:FDD
Function Set or Query the code channel used of DPCH with 60ksps (SF=64). Can been set and
queried.
Setting
Type:int
Range:0 ~63
Unit:None
Query
Type:int
Range:0 ~63
Unit:None
Default 54
*RST Setting 54
Programming
Example
// Set the code channel used of DPCH with 60ksps (SF=64) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS60:CCODe:FDD 2”);
// Query the current code channel used of DPCH with 60ksps (SF=64).
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SendGpibCmd(“CALL:DPCHannel:KSPS60:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DPCHannelKSPS60);
1.2.47 CALL:DPCHannel:KSPS30:CCODe:FDD
Command CALL:DPCHannel:KSPS30:CCODe:FDD
Function Set or Query the code channel used of DPCH with 30ksps (SF=128). Can been set and
queried.
Setting
Type:int
Range:0 ~127
Unit:None
Query
Type:int
Range:0 ~127
Unit:None
Default 9
*RST Setting 9
Programming
Example
// Set the code channel used of DPCH with 30ksps (SF=128) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS30:CCODe:FDD 2”);
// Query the current code channel used of DPCH with 30ksps (SF=128).
SendGpibCmd(“CALL:DPCHannel:KSPS30:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DPCHannelKSPS30);
1.2.48 CALL:DPCHannel:KSPS15:CCODe:FDD
Command CALL:DPCHannel:KSPS15:CCODe:FDD
Function Set or Query the code channel used of DPCH with 15ksps (SF=256). Can been set and
queried.
Setting
Type:int
Range:0 ~255
Unit:None
Query
Type:int
Range:0 ~255
Unit:None
Default 12
*RST Setting 12
Programming
Example
// Set the code channel used of DPCH with 15ksps (SF=256) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS15:CCODe:FDD 2”);
// Query the current code channel used of DPCH with 15ksps (SF=256).
SendGpibCmd(“CALL:DPCHannel:KSPS15:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DOCHannelKSPS15);
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1.2.49 CALL:DPCHannel:KSPS7:CCODe:FDD
Command CALL:DPCHannel:KSPS7:CCODe:FDD
Function Set or Query the code channel used of DPCH with 7ksps (SF=512). Can been set and
queried.
Setting
Type:int
Range:0 ~511
Unit:None
Query
Type:int
Range:0 ~511
Unit:None
Default 12
*RST Setting 12
Programming
Example
// Set the code channel used of DPCH with 7ksps (SF=512) to 2.
SendGpibCmd(“CALL:DPCHannel:KSPS7:CCODe:FDD 2”);
// Query the current code channel used of DPCH with 7ksps (SF=512).
SendGpibCmd(“CALL:DPCHannel:KSPS7:CCODe:FDD?”);
GetData(DT_INT, DataLen, &DOCHannelKSPS7);
1.2.50 CALL:DPCHannel:TFCI:FDD
Command CALL:DPCHannel:TFCI:FDD
Function Set or Query the TFCI of DPCH. Can been set and queried.
Setting
Type:choice
Range:”1”/1, “3”/3
Unit:None
Query
Type:choice
Range:”1”/1, “3”/3
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the TFCI of DPCH to 3.
SendGpibCmd(“CALL:DPCHannel:TFCI:FDD 3”);
//Query the TFCI of DPCH.
SendGpibCmd(“CALL:DPCHannel:TFCI:FDD?”);
GetData(DT_CHAR, DataLen, DPCHannelTFCI);
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1.2.51 (Void)CALL:UPLink:DPCHannel:TFCIndicator:EXIStence
:FDD
Command CALL:UPLink:DPCHannel:TFCIndicator:EXIStence:FDD
Function Set or Query whether TFCI would be sent or not in DPCH. Can been set and queried.
Setting
Type:choice
Range:true/0, false/1
Unit:None
Query
Type:choice
Range:true/0, false/1
Unit:None
Default true
*RST Setting true
Programming
Example
//Set that TFCI would not be sent.
SendGpibCmd(“CALL:UPLink:DPCHannel:TFCIndicator:EXIStence:FDD false”);
//Query whether TFCI would be sent or not in DPCH.
SendGpibCmd(“CALL:UPLink:DPCHannel:TFCIndicator:EXIStence:FDD?”);
GetData(DT_CHAR, DataLen, DPCHannelTFCIndicatorExistence );
1.2.52 CALL:UPLink:DPCHannel:BETA:AUTO:FDD
Command CALL:UPLink:DPCHannel:BETA:AUTO:FDD
Function Set or Query the operation mode of UL DPCH parameter BETA. Can been set and
queried.
Setting
Type:choice
Range:AUTO/0, MANual/1
Unit:None
Query
Type:choice
Range:AUTO/0, MANual/1
Unit:None
Default AUTO
*RST Setting AUTO
Programming
Example
// Set the operation mode of UL DPCH parameter BETA as “ MANual”.
SendGpibCmd(“CALL:UPLink:DPCHannel:BETA:AUTO:FDD MANual”);
// Query the current operation mode of UL DPCH parameter BETA.
SendGpibCmd(“CALL:UPLink:DPCHannel:BETA:AUTO:FDD?”);
GetData(DT_CHAR, DataLen, DPCHannelBetaAuto);
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1.2.53 CALL:UPLink:DPCHannel[:MANual]:CBETa:FDD
Command CALL:UPLink:DPCHannel[:MANual]:CBETa:FDD
Function Set or Query UL DPCH parameter Bc value for TFC. Can been set and queried.
Setting
Type:int
Range:0 ~ 15
Unit:None
Query
Type:int
Range:0 ~ 15
Unit:None
Default 8
*RST Setting 8
Programming
Example
// Set the UL DPCH parameter Bc to 5.
SendGpibCmd(“CALL:UPLink:DPCHannel:CBETa:FDD 5”);
// Query the current Uplink DPCH Bc.
SendGpibCmd(“CALL:UPLink:DPCHannel:CBETa:FDD?”);
GetData(DT_CHAR, DataLen, &UPlinkDpchannelCbeta );
1.2.54 CALL:UPLink:DPCHannel[:MANual]:DBETa:FDD
Command CALL:UPLink:DPCHannel[:MANual]:DBETa:FDD
Function Set or Query the UL DPCH parameter Bd value. Can been set and queried.
Setting
Type:int
Range:0 ~ 15
Unit:None
Query
Type:int
Range:0 ~ 15
Unit:None
Default 15
*RST Setting 15
Programming
Example
// Set the UL DPCH parameter Bd to 5.
SendGpibCmd(“CALL:UPLink:DPCHannel:DBETa:FDDD 5”);
// Query the current value of UL DPCH parameter Bd.
SendGpibCmd(“CALL:UPLink:DPCHannel:DBETa:FDD?”);
GetData(DT_CHAR, DataLen, &UPlinkDpchannelDbeta );
1.2.55 CALL:DPCHannel:DOFFset:FDD
Command CALL:DPCHannel:DOFFset:FDD
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Function Set the time domain frame offset between DPCH and P-CCPCH. Can been set and
queried.
Setting
Type:int
Range:0 ~ 599
Unit:None
Query
Type:int
Range:0 ~ 599
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the frame offset between DPCH and P-CCPCH to 5.
SendGpibCmd(“CALL:DPCHannel:DOFFset:FDD 5”);
// Query the current frame offset between DPCH and P-CCPCH.
SendGpibCmd(“CALL:DPCHannel:DOFFset:FDD?”);
GetData(DT_CHAR, DataLen, &DPCHannelDoffset)
1.2.56 CALL:MS:LOOPback:TYPE:FDD
Command CALL:MS:LOOPback:TYPE:FDD
Function Set or Query the loopback type between UE and the test set. Can been set and queried.
Setting
Type:choice
Range:TYPE1/0, TYPE2/1
Unit:None
Query
Type:choice
Range:TYPE1/0, TYPE2/1
Unit:None
Default TYPE1
*RST Setting TYPE1
Programming
Example
// Set the the loopback type as “TYPE2”.
SendGpibCmd(“CALL:MS:LOOPback:TYPE:FDD TYPE2”);
// Query the current loopback type between UE and the test set.
SendGpibCmd(“CALL:MS:LOOPback:TYPE:FDD?”);
GetData(DT_CHAR, DataLen, MSLoopback );
1.2.57 CALL:UPLink:DPCHannel:SCODe:FDD
Command CALL:UPLink:DPCHannel:SCODe:FDD
Function Set or Query the scrambling code of UL DPCH. Can been set and queried.
Setting Type:int
Range:0~16777215
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Unit:None
Query
Type:int
Range:0~ 16777215
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the the scrambling code of UL DPCH to 1.
SendGpibCmd(“CALL:UPLink:DPCHannel:SCODe:FDD 1”);
// Query the current the scrambling code of UL DPCH.
SendGpibCmd(“CALL:UPLink:DPCHannel:SCODe:FDD?”);
GetData(DT_INT, DataLen, &ScrambCode);
1.2.58 CALL:UPLink:DPCHannel:BETA:AUTO:FDD
Command CALL:UPLink:DPCHannel:BETA:AUTO:FDD
Function
Set or Query the config mode of gain Bc and Bd of UL DPCH. Can been set and queried.
IF “AUTO” been set, Bc and Bd will be decided by the current service, for example, if
the serive is RMC12.2, then Bc fiexd to 8, Bd fixed to 15.
Setting
Type:choice
Range:AUTO / MANUAL
Unit:None
Query
Type:choice
Range:AUTO / MANUAL
Unit:None
Default AUTO
*RST Setting AUTO
Programming
Example
// Set the config mode of gain Bc and Bd of UL DPCH as “MANUAL”
SendGpibCmd(“CALL:UPLink:DPCHannel:BETA:AUTO:FDD MANUAL”);
// Query the current mode of gain Bc and Bd of UL DPCH.
SendGpibCmd(“CALL:UPLink:DPCHannel:BETA:AUTO:FDD?”);
GetData(DT_INT, DataLen, &GainControlMode);
1.2.59 CALL:UPLink:DPCHannel:MANual:CBETa:FDD
Command CALL:UPLink:DPCHannel:MANual:CBETa:FDD
Function Set or Query the UL DPCCH Bc. Can been set and queried.
Setting
Type:int
Range:1~15
Unit:None
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Query
Type:int
Range:1~15
Unit:None
Default 8
*RST Setting 8
Programming
Example
// Set the UL DPCCH Bc to 11.
SendGpibCmd(“CALL:UPLink:DPCHannel:MANual:CBETa:FDD 11”);
// Query the current UL DPCCH Bc.
SendGpibCmd(“CALL:UPLink:DPCHannel:MANual:CBETa:FDD?”);
GetData(DT_INT, DataLen, &DPCCHGain);
1.2.60 CALL:UPLink:DPCHannel:MANual:DBETa:FDD
Command CALL:UPLink:DPCHannel:MANual:DBETa:FDD
Function Set or Query the UL DPDCH Bd. Can been set and queried.
Setting
Type:int
Range:0~15
Unit:None
Query
Type:int
Range:0~15
Unit:None
Default 15
*RST Setting 15
Programming
Example
// Set the UL DPDCH Bd to11
SendGpibCmd(“CALL:UPLink:DPCHannel:MANual:DBETa:FDD 11”);
// Query the current UL DPDCH Bd.
SendGpibCmd(“CALL:UPLink:DPCHannel:MANual:DBETa:FDD?”);
GetData(DT_INT, DataLen, &DPDCHGain);
1.2.61 CALL:UPLink:PRAChannel:MANual:SIGNature:FDD
Command CALL:UPLink:PRAChannel:MANual:SIGNature:FDD
Function Set or Query the signature index of the PRACH. Can been set and queried.
Setting
Type:int
Range:0 ~ 65535
Unit:None
Query
Type:int
Range:0 ~ 65535
Unit:None
Default 255
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*RST Setting 255
Programming
Example
// Set the the signature index of the PRACH to 256.
SendGpibCmd(“CALL:UPLink:PRAChannel:MANual:SIGNature:FDD 256”);
// Query the current ignature index of the PRACH.
SendGpibCmd(“CALL:UPLink:PRAChannel:MANual:SIGNature:FDD?”);
GetData(DT_INT, DataLen, &DPDCHGain);
1.2.62 CALL:UPLink:PRAChannel:MANual:SCRamble:GROup:
FDD
Command CALL:UPLink:PRAChannel:MANual:SCRamble:GROup:FDD
Function Set or Query the scrambling code group number of PRACH. Can been set and queried.
Setting
Type:int
Range:0 ~ 511
Unit:None
Query
Type:int
Range:0 ~ 511
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the scrambling code group number of PRACH to 111.
SendGpibCmd(“CALL:UPLink:PRAChannel:MANual:SCRamble:GROup:FDD 111”);
// Query the current scrambling code group number of PRACH.
SendGpibCmd(“CALL:UPLink:PRAChannel:MANual:SCRamble:GROup:FDD?”);
GetData(DT_INT, DataLen, &DPDCHGain);
1.2.63 CALL:UPLink:PRAChannel:MANual:SCRamble:OFFSet:
FDD
Command CALL:UPLink:PRAChannel:MANual:SCRamble:OFFSet:FDD
Function Set or Query the scrambling code offset in the scrambling code group used of PRACH.
Can been set and queried.
Setting
Type:int
Range:0 ~ 15
Unit:None
Query
Type:int
Range:0 ~ 15
Unit:None
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Default 0
*RST Setting 0
Programming
Example
// Set the scrambling code offset of PRACH to 11.
SendGpibCmd(“CALL:UPLink:PRAChannel:MANual:SCRamble:OFFSet:FDD 11”);
// Query the current scrambling code offset of PRACH.
SendGpibCmd(“CALL:UPLink:PRAChannel:MANual:SCRamble:OFFSet:FDD?”);
GetData(DT_INT, DataLen, &DPDCHGain);
1.2.64 CALL:SCHannel:NUMBer:FDD
Command CALL:SCHannel:NUMBer:FDD
Function Set or Query the sub-channel number of SCH. Can been set and queried.
Setting
Type:int
Range:0 ~ 11
Unit:None
Query
Type:int
Range:0 ~ 11
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the sub-channel number of SCH to 10.
SendGpibCmd(“CALL:SCHannel:NUMBer:FDD 10”);
// Query the current sub-channel number of SCH.
SendGpibCmd(“CALL:SCHannel:NUMBer:FDD?”);
GetData(DT_INT, DataLen, &DPDCHGain);
1.2.65 CALL:DTCHannel:DATA:FDD
Command CALL:DTCHannel:DATA:FDD
Function Set or Query the Data type beared on DL DTCH. Can been set and queried.
Setting
Type:choice
Range: ZERos/0, ONES/1, PRBS23/2, PRBS15/3, SPN9/4
Unit:None
Query
Type:choice
Range:ZERos/0, ONES/1, PRBS23/2, PRBS15/3, SPN9/4
Unit:None
Default ZERos/0
*RST Setting ZERos/0
Programming //Set the DL DTCH Data type as “ZERos”.
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Example SendGpibCmd(“CALL:DTCHannel:DATA:FDD ZERos”);
//Query the current DL DTCH Data type.
SendGpibCmd(“CALL:DTCHannel:DATA:FDD?”);
GetData(DT_INT, DataLen, &DPDCHGain);
1.3 Security & Authentication Parameters
1.3.1 CALL:SECurity:OPERation
Command CALL:SECurity:OPERation
Function Set or Query the mode of Security Operaion. Can been set and queried.
Setting
Type:choice
Range:NULL/0, Auth_INT/1, Auth_ONLY/2
Unit:None
Query
Type:choice
Range:NULL/0, Auth_INT/1, Auth_ONLY/2
Unit:None
Default Auth_INT/1
*RST Setting Auth_INT/1
Programming
Example
//Set the Security Operaion mode as “Auth_ONLY”
(“CALL:SECurity:OPERation Auth_ONLY”);
//Query the current Security Operaion mode.
SendGpibCmd(“CALL:SECurity:OPERation?”);
GetData(DT_FLOAT, DataLen,SECurityOperation);
1.3.2 CALL:SECurity:AUTHenticate:ALGorithm:FDD
Command CALL:SECurity:AUTHenticate:ALGorithm:FDD
Function Set or Query the Authentication Algorithm. Can been set and queried.
Setting
Type:choice
Range:Dummy/0, Milenage/1
Unit:None
Query
Type:choice
Range:Dummy/0, Milenage/1
Unit:None
Default Milenage/1
*RST Setting Milenage/1
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Programming
Example
// Set the the Authentication Algorithm as “Dummy”.
SendGpibCmd(“CALL:SECurity:AUTHenticate:ALGorithm:FDD Dummy”);
//Query the current Authentication Algorithm setting.
SendGpibCmd(“CALL:SECurity:AUTHenticate:ALGorithm:FDD?”);
GetData(DT_FLOAT, DataLen,SECurityAuthenticateAlgorithm);
1.3.3 CALL:SECurity:INTegrity:ALGorithm:FDD
Command CALL:SECurity:INTegrity:ALGorithm:FDD
Function Set or Query the Integrity Algorithm. Can been set and queried.
Setting
Type:choice
Range:Kasumi/0, Snow3G/1
Unit:None
Query
Type:choice
Range:Kasumi/0, Snow3G/1
Unit:None
Default Kasumi /0
*RST Setting Kasumi /0
Programming
Example
//Set the Integrity Algorithm as “Snow3G”.
SendGpibCmd(“CALL:SECurity:INTegrity:ALGorithm:FDD Snow3G”);
//Query the current Integrity Algorithm setting.
SendGpibCmd(“CALL:SECurity:INTegrity:ALGorithm:FDD?”);
GetData(DT_FLOAT, DataLen,SECurityIntegrityAlgorithm);
1.3.4 CALL:SECurity:AUTHenticate:RANDom:FDD
Command CALL:SECurity:AUTHenticate:RANDom:FDD
Function Set or Query the Authenticate Random Value. Can been set and queried.
Setting
Type:string
Range:00000000:00000000:00000000:00000000 ~
FFFFFFFF:FFFFFFFF:FFFFFFFF:FFFFFFFF
Unit:None
Query
Type:string
Range:00000000:00000000:00000000:00000000 ~
FFFFFFFF:FFFFFFFF:FFFFFFFF:FFFFFFFF
Unit:None
Default A3DE0C6D:363E30C3:64A4078F:1BF8D577
*RST Setting A3DE0C6D:363E30C3:64A4078F:1BF8D577
Programmin
g Example
// Set the Random Value as “00000000:00FF0000:00000100:0000FF4F”.
SendGpibCmd(“CALL:SECurity:AUTHenticate:RANDom:FDD
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00000000:00FF0000:00000100:0000FF4F”);
// Query the current Random Value setting.
SendGpibCmd(“CALL:SECurity:AUTHenticate:RANDom:FDD?”);
GetData(DT_CHAR, DataLen, SecurityAuthRandom);
1.3.5 CALL:SECurity:AUTHenticate:KEY:FDD
Command CALL:SECurity:AUTHenticate:KEY:FDD
Function Set or Query the Authenticate Key value. Can been set and queried.
Setting
Type:string
Range:00000000:00000000:00000000:00000000 ~
FFFFFFFF:FFFFFFFF:FFFFFFFF:FFFFFFFF
Unit:None
Query
Type:string
Range:00000000:00000000:00000000:00000000 ~
FFFFFFFF:FFFFFFFF:FFFFFFFF:FFFFFFFF
Unit:None
Default 00010203:04050607:08090A0B:0C0D0E0F
*RST Setting 00010203:04050607:08090A0B:0C0D0E0F
Programmin
g Example
// Set the Authenticate Key value as “00000000:00FF0000:00000100:0000FF4F”
SendGpibCmd(“CALL:SECurity:AUTHenticate:KEY:FDD
00000000:00FF0000:00000100:0000FF4F”);
// Query the current Authenticate Key.
SendGpibCmd(“CALL:SECurity:AUTHenticate:KEY:FDD?”);
GetData(DT_CHAR, DataLen, SecurityAuthKey);
1.3.6 CALL:SECurity:AUTHenticate:AMF:FDD
Command CALL:SECurity:AUTHenticate:AMF:FDD
Function Set or Query the Authenticate AMF Value。Can been set and queried.
Setting
Type:string,length = 4
Range:0x0000 ~ 0xFFFF
Unit:None
Query
Type:string,length = 4
Range:0x0000 ~ 0xFFFF
Unit:None
Default AAAB
*RST Setting AAAB
Programmin
g Example
// Set the Authenticate AMF value as “B9B9”.
SendGpibCmd(“CALL:SECurity:AUTHenticate:AMF:FDD B9B9”);
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// Query the current Authenticate AMF value.
SendGpibCmd(“CALL:SECurity:AUTHenticate:AMF:FDD?”);
GetData(DT_CHAR, DataLen, SecurityAuthAmf);
1.3.7 CALL:SECurity:AUTHenticate:OPVariant:PTYPe:FDD
Command CALL:SECurity:AUTHenticate:OPVariant:PTYPe:FDD
Function Set or Query the Authenticate OP or OPC variant type. Can been set and queried.
Setting
Type:choice
Range:OP/0, OPC/1
Unit:None
Query
Type:choice
Range:OP/0, OPC/1
Unit:None
Default OPC/1
*RST Setting OPC/1
Programming
Example
// Set the Authenticate variant Type as “OP”
SendGpibCmd(“CALL:SECurity:AUTHenticate:OPVariant:PTYPe:FDD OP”);
//Query the current Authenticate OP variant Type.
SendGpibCmd(“CALL:SECurity:AUTHenticate:OPVariant:PTYPe:FDD?”);
GetData(DT_CHAR, DataLen, &SERCurityAuthOpvarinant );
1.3.8 CALL:SECurity:AUTHenticate:OPVariant:PVALue:FDD
Command CALL:SECurity:AUTHenticate:OPVariant:PVALue:FDD
Function Set or Query the Authenticate OPV value. Can been set and queried.
Setting
Type:string
Range:00000000:00000000:00000000:00000000 ~
FFFFFFFF:FFFFFFFF:FFFFFFFF:FFFFFFFF
Unit:None
Query
Type:string
Range:00000000:00000000:00000000:00000000 ~
FFFFFFFF:FFFFFFFF:FFFFFFFF:FFFFFFFF
Unit:None
Default C6A13B37:878F5B82:6F4F8162:A1C8D879
*RST Setting C6A13B37:878F5B82:6F4F8162:A1C8D879
Programmin
g Example
// Set the Authenticate OPV value as “00000000:00FF0000:00000100:0000FF4F”.
SendGpibCmd(“CALL:SECurity:AUTHenticate:OPVariant:PVALue:FDD
00000000:00FF0000:00000100:0000FF4F”);
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// Query the Authenticate OPV value.
SendGpibCmd(“CALL:SECurity:AUTHenticate:OPVariant:PVALue:FDD?”);
GetData(DT_CHAR, DataLen, SecurityAuthOpvariantPvalue);
1.4 Power Control
1.4.1 RFGenerator:MANual:TRANsmit:POWer:FDD
Command RFGenerator:MANual:TRANsmit:POWer:FDD
Function
Set or Query the cell power of the test set in WCDMA pattern. Can been set and queried.
Note:the value range of the software is -120 ~ 5dBm. But because of the different
capacity of each test set RF apartment, 5dBm maybe not be reached. When this happens,
the value wll be set to the max output power of this test set.
Setting
Type:float
Range:-120 ~ 5
Unit:dBm
Query
Type:float
Range:-120 ~ 5
Unit:dBm
Default -70
*RST Setting -70
Programming
Example
//Set the cell power of the test set in WCDMA pattern to -30dbm.
SendGpibCmd(“RFGenerator:MANual:TRANsmit:POWer:FDD -30”);
//Query the current cell power of the test set.
SendGpibCmd(“RFGenerator:MANual:TRANsmit:POWer:FDD?”);
GetData(DT_CHAR, DataLen, RFgeneratorTransmitPower);
1.4.2 RFANalyzer:MANual:POWer:LEVel:FDD
Command RFANalyzer:MANual:POWer:LEVel:FDD
Function Set or Query the receiver reference level of the test set. Can been set and queried.
Setting
Type:int
Range:-45 ~ 30
Unit: dB
Query
Type:int
Range:-45 ~ 30
Unit:dB
Default 30
*RST Setting 30
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Programming
Example
// Set the receiver reference level of the test set to 20dB.
SendGpibCmd(“RFANalyzer:MANual:POWer:LEVel:FDD 20”);
// Query the current receiver reference level.
SendGpibCmd(“RFANalyzer:MANual:POWer:LEVel:FDD?”);
GetData(DT_INT, DataLen, &RfMeaRefLevel);
1.4.3 CALL:MS:POWer:TARGet[:AMPLitude]:FDD
Command CALL:MS:POWer:TARGet[:AMPLitude]:FDD
Function Set or Query the UE output power expected (target power). Can been set and queried.
Setting
Type:int
Range:-61 ~ 28
Unit:dBm
Query
Type:int
Range:-61 ~ 28
Unit:dBm
Default -5
*RST Setting -5
Programming
Example
// Set the UE Target Power to -22dBm.
SendGpibCmd(“CALL:MS:POWer:TARGet: FDD -22”);
// Query the current UE Target Power setting.
SendGpibCmd(“CALL:MS:POWer:TARGet:FDD?”);
GetData(DT_INT, DataLen, &MSpowerTarget );
1.4.4 FETCh:UPLink:TPOWer:ACTual:FDD
Command FETCh:UPLink:TPOWer:ACTual:FDD
Function Query the UE output power to check whether the UE target power set has been reached.
Query only
Setting None
Query
Type:int
Range:-61 ~ 28
Unit:dBm
Default -120
*RST Setting -120
Programming
Example
Query the current UE output power.
SendGpibCmd(“FETCh:UPLink:TPOWer:ACTual:FDD?”);
GetData(PT_STRING, DataLen, &WaveFile);
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1.4.5 CALL[:CELL]:CLPControl:UPLink:MODE:FDD
Command CALL[:CELL]:CLPControl:UPLink:MODE:FDD
Function Set or Query how the TPC would be sent for the ILPC process. Can been set and queried.
Setting
Type:choice
Range:TPOWer /0, U P /1, DOWN/2, HOLD /3
Unit:None
Query
Type:choice
Range:TPOWer /0, U P /1, DOWN/2, HOLD /3
Unit:None
Default UP
*RST Setting UP
Programming
Example
// Set the TPC sent as always “DOWN”.
SendGpibCmd(“CALL[:CELL]:CLPControl:UPLink:MODE:FDD DOWN”);
// Query the current TPC sent type.
SendGpibCmd(“CALL[:CELL]:CLPControl:UPLink:MODE:FDD DOWN?”);
GetData(DT_INT, DataLen, &C:PControlMode);
1.4.6 CALL[:CELL]:CLPControl:UPLink:ALGorithm:FDD
Command CALL[:CELL]:CLPControl:UPLink:ALGorithm:FDD
Function Set or Query the algorithm used in the inner loop power control (ILPC) process. Can
been set and queried.
Setting
Type:choice
Range:”ALG1”/0, “ALG2”/1
Unit:None
Query
Type:choice
Range:”ALG1”/0, “ALG2”/1
Unit:None
Default ALG1
*RST Setting ALG1
Programming
Example
// Set the ILPC algorithm as “ALG2”.
SendGpibCmd(“CALL:CLPControl:UPLink:ALGorithm:FDD ALG2”);
// Query the current algorithm used in ILPC process.
SendGpibCmd(“CALL:CLPControl:UPLink:ALGorithm:FDD?”);
GetData(DT_CHAR, DataLen, CLPControlAlgorithm );
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1.4.7 CALL[:CELL]:CLPControl:UPLink:STEP:FDD
Command CALL[:CELL]:CLPControl:UPLink:STEP:FDD
Function Set or Query the step size of ILPC. Can been set and queried.
Setting
Type:choice
Range:”1”/1, “2”/2
Unit:dB
Query
Type:choice
Range:”1”/1, “2”/2
Unit:dB
Default 1
*RST Setting 1
Programming
Example
// Set the ILPC step size to 2dB
SendGpibCmd(“CALL:CLPControl:UPLink:STEP:FDD 2”);
// Query the current ILPC step size.
SendGpibCmd(“CALL:CLPControl:UPLink:STEP:FDD?”);
GetData(DT_CHAR, DataLen, CLPControlUPlinkStep );
1.4.8 RFANalyzer:UPLink:WIRE:LOSS:FDD
Command RFANalyzer:UPLink:WIRE:LOSS:FDD
Function Set or Query the uplink lineloss between UE and the test set. Can been set and queried.
Setting
Type:float
Range:-20.00 ~ 60.00
Unit:dB
Query
Type:float
Range:-20.00 ~ 60.00
Unit:dB
Default 0.00
*RST Setting 0.00
Programming
Example
// Set the uplink lineloss to 1.00 dB
SendGpibCmd(“RFANalyzer:UPLink:WIRE:LOSS:FDD 1.00”);
// Query the current uplink lineloss.
SendGpibCmd(“RFANalyzer:UPLink:WIRE:LOSS:FDD?”);
GetData(DT_FLOAT, DataLen, &RfUplinkLoss);
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1.4.9 CALL:CHANnel:LEVel:MODE:FDD
Command CALL:CHANnel:LEVel:MODE:FDD
Function Set or Query the OCNS power type in the WCDMA NS (None signaling) mode. Can
been set and queried.
Setting
Type:choice
Range:NONE/1,RSL/2,FER/3,MIL/4
Unit:None
Query
Type:choice
Range:NONE/1,RSL/2,FER/3,MIL/4
Unit:None
Default NONE
*RST Setting NONE
Programming
Example
// Set the OCNS power type as “RSL”.
SendGpibCmd(“CALL:CHANnel:LEVel:MODE:FDD RSL);
// Query the current OCNS power type.
SendGpibCmd(“CALL:CHANnel:LEVel:MODE:FDD?”);
GetData(DT_INT, DataLen, &ChannelLevel);
1.4.10 CALL:CPIChannel:LEVel:FDD
Command CALL:CPIChannel:LEVel:FDD / CALL:CPIChannel:LEVel:OFFSet:FDD
Function Set or Query the power offset between CPICH and Cell power。Can been set and queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -3.3
*RST Setting -3.3
Programming
Example
// Set the CPICH power offset between CPICH and Cell power to -20dB.
SendGpibCmd(“CALL:CPIChannel:LEVel:FDD -20”);
// Query the current power offset between CPICH and Cell power.
SendGpibCmd(“CALL:CPIChannel:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen, CPIChannelLevel);
1.4.11 CALL:CCPChannel:PRIMary:LEVel:FDD
Command CALL:CCPChannel:PRIMary:LEVel:FDD
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Function Set or Query the power offset between P-CCPCH and Cell Power. Can been set and
queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -5.5
*RST Setting -5.5
Programming
Example
// Set the power offset between P-CCPCH and Cell Power to -20dB.
SendGpibCmd(“CALL:CCPChannel:PRIMary:LEVel:FDD -20”);
// Query the current power offset between P-CCPCH and Cell Power.
SendGpibCmd(“CALL:CCPChannel:PRIMary:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,CCPChannelPrimary);
1.4.12 CALL:SCHannel:PRIMary:LEVel:FDD
Command CALL:SCHannel:PRIMary:LEVel:FDD
Function Set or Query the power offset between P-SCH and Cell Power. Can been set and queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -5
*RST Setting -5
Programming
Example
// Set the power offset between P-SCH and Cell Power to -20.
SendGpibCmd(“CALL:SCHannel:PRIMary:LEVel:FDD -20”);
// Query the current power offset between P-SCH and Cell Power.
SendGpibCmd(“CALL:SCHannel:PRIMary:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,SCHannelPrimary);
1.4.13 CALL:SCHannel:SECondary:LEVel:FDD
Command CALL:SCHannel:SECondary:LEVel:FDD
Function Set or Query the power offset between S-SCH and Cell Power. Can been set and queried.
Setting Type:float
Range:-40 ~ 0
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Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -5.0
*RST Setting -5.0
Programming
Example
// Set the power offset between S-SCH and Cell Power to -20.0dB.
SendGpibCmd(“CALL:SCHannel:SECondary:LEVel:FDD -20.0”);
// Query the current power offset between S-SCH and Cell Power.
SendGpibCmd(“CALL:SCHannel:SECondary:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,SCHannelSecondary);
1.4.14 CALL:AICHannel:LEVel:FDD
Command CALL:AICHannel:LEVel:FDD
Function Set or Query the power offset between AICH and Cell power. Can been set and queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -9.9
*RST Setting -9.9
Programming
Example
// Set the power offset between AICH and Cell power to -20dB.
SendGpibCmd(“CALL:AICHannel:LEVel:FDD -20”);
// Query the current power offset between AICH and Cell power.
SendGpibCmd(“CALL:AICHannel:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,AICHannelLevel);
1.4.15 CALL:PICHannel:LEVel:FDD
Command CALL:PICHannel:LEVel:FDD
Function Set the power offset between PICH and Cell power. Can been set and queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
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Default -8.3
*RST Setting -8.3
Programming
Example
// Set the power offset between PICH and Cell power to -20dB.
SendGpibCmd(“CALL:PICHannel:LEVel:FDD -20”);
// Query the current power offset between PICH and Cell power.
SendGpibCmd(“CALL:PICHannel:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,PICHannelLevel);
1.4.16 CALL:CCPChannel:SECondary:LEVel:FDD
Command CALL:CCPChannel:SECondary:LEVel:FDD
Function Set or Query the power offset between S-CCPCH and Cell power. Can been set and
queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -10.3
*RST Setting -10.3
Programming
Example
// Set the power offset between S-CCPCH and Cell power to -20dB.
SendGpibCmd(“CALL:CCPChannel:SECondary:LEVel:FDD -20”);
// Query the current power offset between S-CCPCH and Cell power.
SendGpibCmd(“CALL:CCPChannel:SECondary:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,CCOChannelSecondary);
1.4.17 CALL:DPCHannel:LEVel:FDD
Command CALL:DPCHannel:LEVel:FDD
Function Set or Query the power offset between DPCH and Cell power. Can been set and queried.
Setting
Type:float
Range:-40 ~ 0
Unit:dB
Query
Type:float
Range:-40 ~ 0
Unit:dB
Default -10.3
*RST Setting -10.3
Programming // Set the power offset between DPCH and Cell power to -20dB.
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Example SendGpibCmd(“CALL:DPCHannel:LEVel:FDD -20”);
// Query the current power offset between DPCH and Cell power.
SendGpibCmd(“CALL:DPCHannel:LEVel:FDD?”);
GetData(DT_FLOAT, DataLen,DPCHannelLevel);
1.4.18 RFANalyzer:CONTrol:MEASurement:TTHReshold:FDD
Command RFANalyzer:CONTrol:MEASurement:TTHReshold:FDD
Function
Set or Query the trigger mode of power measurement. Can been set and queried. IF
“OFF” been set, a power level threshold needs to be set. IF “ON” been set, test set will
automatically start the power measurement according to the power level and noise floor.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the trigger mode of power measurement as “OFF”
SendGpibCmd(“RFANalyzer:CONTrol:MEASurement:TTHReshold:FDD 0”);
// Query the current trigger mode of power measurement.
SendGpibCmd(“RFANalyzer:CONTrol:MEASurement:TTHReshold:FDD?”);
GetData(DT_INT, DataLen, &RfMeaFreqType);
1.4.19 RFANalyzer:MANual:MEASurement:TTHReshold:FDD
Command RFANalyzer:MANual:MEASurement:TTHReshold:FDD
Function Set or Query the level threshold of measurement trigger. When trigger mode of power
measurement set as “OFF”,this parameter can been set and queried.
Setting
Type:int
Range:-63 ~ 0
Unit:dBm
Query
Type:int
Range:-63 ~ 0
Unit:dBm
Default -63
*RST Setting -63
Programming // Set the trigger level to -50 dBm.
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Example SendGpibCmd(“RFANalyzer:MANual:MEASurement:TTHReshold:FDD -50”);
// Query the current trigger level.
SendGpibCmd(“RFANalyzer:MANual:MEASurement:TTHReshold:FDD?”);
GetData(DT_INT, DataLen, &RfMeaThreshold);
1.5 Frequency Control
1.5.1 CALL:DOWNlink:MEASurement:CHANnel:FDD
Command CALL:DOWNlink:MEASurement:CHANnel:FDD
Function Set or Query the working UARFCN used for downlink in WCDMA pattern. Can been set
and queried.
Setting
Type:int
Range:
412, 437, 462, 487, 512, 537, 562, 587, 612, 637, 662, 687
712 to 763
787, 812, 837
862 to 912
1007, 1012, 1032, 1037, 1062, 1087
1162 - 1513, resolution = 1
1537 - 1738, resolution = 1
1887, 1912, 1937, 1962, 1987, 2012, 2037, 2062, 2087
2237 - 2563, resolution = 1
2587, 2612, 2637, 2662, 2687, 2712, 2737, 2762, 2787, 2812, 2837, 2862, 2887,
2912
2937 - 3088, resolution = 1
3112 - 3388, resolution = 1
3412, 3437, 3462, 3487, 3512, 3537, 3562, 3587, 3612, 3637, 3662, 3687
3837 - 3903, resolution = 1
3927, 3932, 3957, 3962, 3987, 3992
4017 - 4043, resolution = 1
4067, 4092
4117 - 4143, resolution = 1
4167, 4192
4357 - 4458, resolution = 1
4512 to 4638
9237 - 9387, resolution = 1
9662 - 9938, resolution = 1
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10562 - 10838, resolution = 1
Unit:None
Query
Type:int
Range:same as Setting range above
Unit:None
Default 10700
*RST Setting 10700
Programming
Example
// Set the downlink UARFCN to 10562.
SendGpibCmd(“CALL: DOWNlink:MEASurement:CHANnel:FDD 10562”);
// Query the current downlink UARFCN.
SendGpibCmd(“CALL: DOWNlink:MEASurement:CHANnel:FDD?”);
GetData(DT_INT, DataLen, &DLMeasurementChannel);
1.5.2 CALL:UPLink:MEASurement:CHANnel:FDD
Command CALL:UPLink:MEASurement:CHANnel:FDD
Function Set or Query the working UARFCN used for uplink in WCDMA pattern. Can been set
and queried.
Setting
Type:int
Range:
12, 37, 62, 87, 112, 137, 162, 187, 212, 237, 262, 287
312 to 363
387, 412, 437
462 to 512
782, 787, 807, 812, 837, 862
937 - 1288, resolution = 1
1312 - 1513, resolution = 1
1662, 1687, 1712, 1737, 1762, 1787, 1812, 1837, 1862
2012 - 2338, resolution = 1
2362, 2387, 2412, 2437, 2462, 2487, 2512, 2537, 2562, 2587, 2612, 2637, 2662,
2687
2712 - 2863, resolution = 1
2887 - 3163, resolution = 1
3187, 3212, 3237, 3262, 3287, 3312, 3337, 3362, 3387, 3412, 3437, 3462
3487 - 3587, resolution = 1
3612 - 3678, resolution = 1
3702, 3707, 3732, 3737, 3762, 3767
3792 - 3818, resolution = 1
3842, 3867
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3892 - 3918, resolution = 1
3942, 3967
4132 - 4233, resolution = 1
4287 to 4413
8762 - 8912, resolution = 1
9262 - 9538, resolution = 1
9612 - 9888, resolution = 1
Unit:None
Query
Type:int
Range:same as Setting range above
Unit:None
Default 9750
*RST Setting 9750
Programming
Example
// Set the uplink UARFCN to 9750.
SendGpibCmd(“CALL:UPLink:MEASurement:CHANnel:FDD 9750”);
// Query the current uplink UARFCN.
SendGpibCmd(“CALL:UPLink:MEASurement:CHANnel:FDD?”);
GetData(DT_INT, DataLen, &UlMeasurementChannel);
1.5.3 CALL:UPLink:CHANnel:CONTrol:AUTO:FDD
Command CALL:UPLink:CHANnel:CONTrol:AUTO:FDD
Function
Set or Query the config mode of the Uplink UARFCN. Can been set and queried. If
“ON” been set, Uplink UARFCN will be set automatically according to the DL
UARFCN and frequency offset between UL and DL of the Band used. IF “OFF” been
set, the UL UARFCN can be set independently.
Setting
Type:choice
Range:1 / 0 | ON / OFF
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 1
*RST Setting 1
Programming
Example
//Set the automatical config mode of the Uplink UARFCN as “ON”.
SendGpibCmd(“CALL:UPLink:CHANnel:CONTrol:AUTO:FDD ON”);
// Query the current config mode of the Uplink UARFCN.
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SendGpibCmd(“CALL:UPLink:CHANnel:CONTrol:AUTO:FDD?”);
GetData(DT_INT, DataLen, & UlMeasurementChannelType);
1.5.4 CALL:FBINdicator:STATus:FDD
Command CALL:FBINdicator:STATus:FDD
Function Query the working Band Index. Query only.
Setting None
Query
Type:string
Range:
Band I | Band II | Band III | Band IV | Band V | Band VII | BANDIX | BANDX |
BANDXI | BANDXII | BANDXIII | BANDXIV| | BANDXIX | BANDXX | BANDXXI |
BANDXXII | BANDXXV | BANDXXVI
Unit:None
Default BANDI
*RST Setting BANDI
Programming
Example
// Query the current working Band Index.
SendGpibCmd(“CALL:FBINdicator:STATus:FDD?”);
GetData(DT_INT, DataLen, &BandIndicator);
1.5.5 RFGenerator:MANual:MEASurement:FREQuency:FDD
Command RFGenerator:MANual:MEASurement:FREQuency:FDD
Function Set or Query the test set transmitter working frequency in the CW mode. Can been set
and queried.
Setting
Type:float
Range:400000000 ~ 2800000000(For : SP801x);
460000000 ~ 2500000000(For : SP6010)
Unit:Hz
Query
Type:float
Range:400000000 ~ 2800000000(For : SP801x);
460000000 ~ 2500000000(For : SP6010)
Unit:Hz
Default 1950000000
*RST Setting 1950000000
Programming
Example
// Set the transmitter working frequency in the CW mode to 1.5 GHz
SendGpibCmd(“RFGenerator:MANual:MEASurement:FREQuency:FDD
1500000000”);
// Query the current ransmitter working frequency in the CW mode.
SendGpibCmd(“RFGenerator:MANual:MEASurement:FREQuency:FDD?”);
GetData(DT_INT, DataLen, &RfgeneratorFrq);
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1.5.6 RFANalyzer:MANual:MEASurement:FREQuency:FDD
Command RFANalyzer:MANual:MEASurement:FREQuency:FDD
Function Set or Query the test set receiver working frequency in the CW mode. Can been set and
queried.
Setting
Type:float
Range:400000000.00 ~ 2800000000.00(For : SP801x);
460000000.00 ~ 2500000000.00(For : SP6010)
Unit:Hz
Query
Type:float
Range:400000000.00 ~ 2800000000.00(For : SP801x);
460000000.00 ~ 2500000000.00(For : SP6060)
Unit:Hz
Default 1950000000
*RST Setting 1950000000
Programming
Example
// Set the eceiver working frequency in the CW mode to 1.5 GHz.
SendGpibCmd(“RFANalyzer:MANual:MEASurement:FREQuency:FDD 1500000000”);
// Query the current eceiver working frequency in the CW mode.
SendGpibCmd(“RFANalyzer:MANual:MEASurement:FREQuency:FDD?”);
GetData(DT_FLOAT, DataLen, &RfanalyzeFreq);
1.6 Others
1.6.1 SETup:DOWNlink:ARB:FDD
Command SETup:DOWNlink:ARB:FDD
Function Set or Query the DL waveform to be used in ARB mode. Can been set and queried.
Setting
Type:string
Range:ARB file names stored in “Bin_WCDMAPS\DownWaveFile”
Unit:None
Query
Type:string
Range:working ARB file name
Unit:None
Default Default
*RST Setting Default
Programming
Example
// Set the DL waveform to be loaded as “IPCT”
SendGpibCmd(“SETup:DOWNlink:ARB:FDD IPCT”);
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// Query the current the ARB file name of the working DL waveform.
SendGpibCmd(“SETup:DOWNlink:ARB:FDD?”);
GetData(PT_STRING, DataLen, &WaveFile);
1.6.2 FETCh:DOWNlink:ARB:FDD
Command FETCh:DOWNlink:ARB:FDD
Function Query all available DL ARB waveform names. Query only.
Setting NONE
Query
Type:string
Range:ARB file names stored in “Bin_WCDMAPS\DownWaveFile”
Unit:None
Default Default
*RST Setting Default
Programming
Example
// Query all available DL ARB waveform names.
SendGpibCmd(“FETCh:DOWNlink:ARB:FDD?”);
GetData(PT_STRING, DataLen, &WaveFile);
2. UE measurement Command
2.1 FDD Parallet Test (PT)
2.1.1 INITiate:PTESt:FDD
Command INITiate:PTESt:FDD
Function Start FDD Parallet Test to measeure UE TX RF parameters, such as ACLR, OBW, SEM
and Modulation parameters. Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example SendGpibCmd(“INITiate:PTESt:FDD”);
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2.1.2 ABORt:PTESt:FDD
Command ABORt:PTESt:FDD
Function Stop and quit the FDD Parallet Test. Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:PTESt:FDD”);
2.1.3 Get results of FDD Parallet Test
2.1.3.1 FETCh:PTESt:ALL:FDD
Command FETCh:PTESt:ALL:FDD
Function
Get all the results of FDD Parallet Test.
Query Only. (there is 18 results, separated each other with “,”. 1st: string “ACLR”,
indicates the measurement name. 2nd
: 1/0, indicates ACLR PASS/Fail. From 3rd
to 7th: the
second left adjacent channel, the first left channel, in-channel, the first right channel, the
second right channel mean power of the UE. 8th
: string “OBW”. 9st: 1/0, indicates OBW
PASS/Fail. 10th
: OBW value. 11st: string “SEM”. 12th: 1/0, indicates SEM Pass/Fail.
13th: string “EVM”. 14
th: 1/0, indicates EVM PASS/Fail. 15
th: RMS EVM value. 16
th:
string “PCDE”. 17th
: 1/0, indicates PCDE PASS/Fail. 18th: PCDE value)
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ALL:FDD?”);
GetData(DT_CHAR, DataLen, PtestAll);
2.1.3.2 FETCh:PTESt:ACLeakage:PASS:FDD
Command FETCh:PTESt:ACLeakage:PASS:FDD
Function Get the result indicates the PASS/Fail of ACLR measurement in PT.
Query Only.
Setting None
Query
Type:int
Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
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Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:PASS:FDD?”);
GetData(DT_INT, DataLen, &PtestsAclPass);
2.1.3.3 FETCh:PTESt:ACLeakage:POWer[:ALL]:FDD
Command FETCh:PTESt:ACLeakage:POWer[:ALL]:FDD
Function
Get last ACLR measurement mean power results. Query Only. (there is 5 results,
separated each other with “,”. From 1st
to 5th
: the second left adjacent channel, the first
left channel, in-channel, the first right channel, the second right channel mean power of
the UE.)
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:POWer:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclp);
2.1.3.4 FETCh:PTESt:ACLeakage:POWer:MAXimum:FDD
Command FETCh:PTESt:ACLeakage:POWer:MAXimum:FDD
Function
Get ACLR measurement max mean power results of multi times PT measurements.
Query Only. (there is 5 results, separated each other with “,”. From 1st
to 5th
: the second
left adjacent channel, the first left channel, in-channel, the first right channel, the second
right channel max mean power of the UE.)
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:POWer:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclp);
2.1.3.5 FETCh:PTESt:ACLeakage:POWer:MINimum:FDD
Command FETCh:PTESt:ACLeakage:POWer:MINimum:FDD
Function
Get ACLR measurement min mean power results of multi times PT measurements.
Query Only. (there is 5 results, separated each other with “,”. From 1st
to 5th
: the second
left adjacent channel, the first left channel, in-channel, the first right channel, the second
right channel min mean power of the UE.)
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Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:POWer:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclp);
2.1.3.6 FETCh:PTESt:ACLeakage:POWer:AVERage:FDD
Command FETCh:PTESt:ACLeakage:POWer:AVERage:FDD
Function
Get ACLR measurement average mean power results of multi times PT measurements.
Query Only. (there is 5 results, separated each other with “,”. From 1st
to 5th
: the second
left adjacent channel, the first left channel, in-channel, the first right channel, the second
right channel average mean power of the UE.)
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:POWer:AVERage:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclp);
2.1.3.7 FETCh:PTESt:ACLeakage:RATio[:ALL]:FDD
Command FETCh:PTESt:ACLeakage:RATio:ALL:FDD
Function
Get last ACLR measurement power ratio with in-channel power results. Query Only.
(there is 5 results, separated each other with “,”. From 1st
to 5th
: the second left adjacent
channel, the first left channel, in-channel, the first right channel, the second right channel
power ratio of the UE.)
Setting None
Query
Type:float
Range:None
Unit:dBc
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:RATio:ALL:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclr);
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2.1.3.8 FETCh:PTESt:ACLeakage:RATio:MAXimum:FDD
Command FETCh:PTESt:ACLeakage:RATio:MAXimum:FDD
Function
Get ACLR measurement max power ratio with in-channel power results of multi times
PT measurements. Query Only. (there is 5 results, separated each other with “,”. From 1st
to 5th
: the second left adjacent channel, the first left channel, in-channel, the first right
channel, the second right channel max power ratio of the UE.)
Setting None
Query
Type:float
Range:None
Unit:dBc
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:RATio:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclr);
2.1.3.9 FETCh:PTESt:ACLeakage:RATio:MINimum:FDD
Command FETCh:PTESt:ACLeakage:RATio:MINimum:FDD
Function
Get ACLR measurement min power ratio with in-channel power results of multi times
PT measurements. Query Only. (there is 5 results, separated each other with “,”. From 1st
to 5th
: the second left adjacent channel, the first left channel, in-channel, the first right
channel, the second right channel min power ratio of the UE.)
Setting None
Query
Type:float
Range:None
Unit:dBc
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:RATio:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclr);
2.1.3.10 FETCh:PTESt:ACLeakage:RATio:AVERage:FDD
Command FETCh:PTESt:ACLeakage:RATio:AVERage:FDD
Function
Get ACLR measurement average power ratio with in-channel power results of multi
times PT measurements. Query Only. (there is 5 results, separated each other with “,”.
From 1st
to 5th: the second left adjacent channel, the first left channel, in-channel, the first
right channel, the second right channel average power ratio of the UE.)
Setting None
Query
Type:float
Range:None
Unit:DBc
Default None
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*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:ACLeakage:RATio:AVERage:FDD?”);
GetData(DT_FLOAT, DataLen, AclrAclr);
2.1.3.11 FETCh:PTESt:FREQuency:FDD
Command FETCh:PTESt:FREQuency:FDD
Function Get the current UE UL central frequency. Query Only.
Setting None
Query
Type:double
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:FREQuency:FDD?”);
GetData(DT_DOUBLE, DataLen, &CwFrequency);
2.1.3.12 FETCh:PTESt:OBWidth:PASS:FDD
Command FETCh:PTESt:OBWidth:PASS:FDD
Function Get the result indicates the PASS/Fail of OBW measurement in PT.
Query Only.
Setting None
Query
Type:int
Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:OBWidth:PASS:FDD?”);
GetData(DT_INT, DataLen, &PtestsObwPass);
2.1.3.13 FETCh:PTESt:OBWidth:FREQuency:BANDwidth:FDD
Command FETCh:PTESt:OBWidth:FREQuency:BANDwidth:FDD
Function Get OBW numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programming SendGpibCmd(“FETCh:PTESt:OBWidth:FREQuency:BANDwidth:FDD?”);
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Example GetData(DT_FLOAT, DataLen, OBWidth);
2.1.3.14 FETCh:PTESt:OBWidth:FREQuency:BANDwidth:MAXimum
:FDD
Command FETCh:PTESt:OBWidth:FREQuency:BANDwidth:MAXimum:FDD
Function Get OBW max numerical value result of the multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:OBWidth:FREQuency:BANDwidth:MAXimum:FDD?”)
GetData(DT_FLOAT, DataLen, OBWidth);
2.1.3.15 FETCh:PTESt:OBWidth:FREQuency:BANDwidth:MINimum:
FDD
Command FETCh:PTESt:OBWidth:FREQuency:BANDwidth:MINimum:FDD
Function Get OBW min numerical value result of the multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:OBWidth:FREQuency:BANDwidth:MINimum:FDD?”)
GetData(DT_FLOAT, DataLen, OBWidth);
2.1.3.16 FETCh:PTESt:OBWidth:FREQuency:BANDwidth:AVERage:
FDD
Command FETCh:PTESt:OBWidth:FREQuency:BANDwidth:AVERage:FDD
Function Get OBW average numerical value result of the multi times PT measeurements.
Query Only.
Setting None
Query Type:float
Range:None
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Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:OBWidth:FREQuency:BANDwidth:AVERage:FDD?”)
GetData(DT_FLOAT, DataLen, OBWidth);
2.1.3.17 FETCh:PTESt:WQUality:EVM:FDD
Command FETCh:PTESt:WQUality:EVM:FDD
Function Get RMS EVM numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:%
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:FDD?”);
GetData(DT_FLOAT, DataLen, &EVM);
2.1.3.18 FETCh:PTESt:WQUality:EVM:MAXimum:FDD
Command FETCh:PTESt:WQUality:EVM:MAXimum:FDD
Function Get RMS EVM max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:%
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, &EVM);
2.1.3.19 FETCh:PTESt:WQUality:EVM:MINimum:FDD
Command FETCh:PTESt:WQUality:EVM:MINimum:FDD
Function Get RMS EVM min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:%
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Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, &EVM);
2.1.3.20 FETCh:PTESt:WQUality:EVM:PEAK:FDD
Command FETCh:PTESt:WQUality:EVM:PEAK:FDD
Function Get Peak EVM numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:PEAK:FDD”);
GetData(DT_ FLOAT, DataLen, WQualityPeak);
2.1.3.21 FETCh:PTESt:WQUality:EVM:PEAK:MAXimum:FDD
Command FETCh:PTESt:WQUality:EVM:PEAK:MAXimum:FDD
Function Get Peak EVM max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:PEAK:MAXimum:FDD”);
GetData(DT_ FLOAT, DataLen, WQualityPeak);
2.1.3.22 FETCh:PTESt:WQUality:EVM:PEAK:MINimum:FDD
Command FETCh:PTESt:WQUality:EVM:PEAK:MINimum:FDD
Function Get Peak EVM min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
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Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:PEAK:MINimum:FDD”);
GetData(DT_CHAR, DataLen, WQualityPeak);
2.1.3.23 FETCh:PTESt:WQUality:PCDE:PASS:FDD
Command FETCh:PTESt:WQUality:PCDE:PASS:FDD
Function Get the result indicates the PASS/Fail of PCDE measurement in PT.
Query Only.
Setting None
Query Type:int
Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PCDE:PASS:FDD?”);
GetData(DT_INT, DataLen, &PtestsWqPCDEPass);
2.1.3.24 FETCh:PTESt:WQUality:PCDE:FDD
Command FETCh:PTESt:WQUality:PCDE:FDD
Function Get PCDE numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:PCDE:FDD?”);
GetData(DT_FLOAT, DataLen, &PCDE);
2.1.3.25 FETCh:PTESt:WQUality:PCDE:MAXimum:FDD
Command FETCh:PTESt:WQUality:PCDE:MAXimum:FDD
Function Get PCDE max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query Type:float
Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
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Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PCDE:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, &PtestsWqPCDEPass);
2.1.3.26 FETCh:PTESt:WQUality:PCDE:MINimum:FDD
Command FETCh:PTESt:WQUality:PCDE:MINimum:FDD
Function Get PCDE min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query Type:float
Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PCDE:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, &PtestsWqPCDEPass);
2.1.3.27 FETCh:PTESt:WQUality:IQImbalance:FDD
Command FETCh:PTESt:WQUality:IQImbalance:FDD
Function Get IQ Imbalance numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:IQImbalance:FDD?”);
GetData(DT_FLOAT, DataLen, &IQImbalance);
2.1.3.28 FETCh:PTESt:WQUality:IQImbalance:MAXimum:FDD
Command FETCh:PTESt:WQUality:IQImbalance:MAXimum:FDD
Function Get IQ Imbalance max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:IQImbalance:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, &IQImbalance);
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2.1.3.29 FETCh:PTESt:WQUality:IQImbalance:MINimum:FDD
Command FETCh:PTESt:WQUality:IQImbalance:MINimum:FDD
Function Get IQ Imbalance min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:IQImbalance:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, &IQImbalance);
2.1.3.30 FETCh:PTESt:WQUality:IQOffset:FDD
Command FETCh:PTESt:WQUality:IQOffset:FDD
Function Get IQ Offset numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:IQOffset:FDD?”);
GetData(DT_FLOAT, DataLen, & IQOffset);
2.1.3.31 FETCh:PTESt:WQUality:IQOffset:MAXimum:FDD
Command FETCh:PTESt:WQUality:IQOffset:MAXimum:FDD
Function Get IQ Offset max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:IQOffset:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, & IQOffset);
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2.1.3.32 FETCh:PTESt:WQUality:IQOffset:MINimum:FDD
Command FETCh:PTESt:WQUality:IQOffset:MINimum:FDD
Function Get IQ Offset min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:IQOffset:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, & IQOffset);
2.1.3.33 FETCh:PTESt:WQUality:FERRor:FDD
Command FETCh:PTESt:WQUality:FERRor:FDD
Function Get Frequency Error numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:FERRor:FDD?”);
GetData(DT_INT, DataLen, & FER);
2.1.3.34 FETCh:PTESt:WQUality:FERRor:MAXimum:FDD
Command FETCh:PTESt:WQUality:FERRor:MAXimum:FDD
Function Get Frequency Error max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:FERRor:MAXimum:FDD?”);
GetData(DT_INT, DataLen, & FER);
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2.1.3.35 FETCh:PTESt:WQUality:FERRor:MINimum:FDD
Command FETCh:PTESt:WQUality:FERRor:MINimum:FDD
Function Get Frequency Error min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:FERRor:MINimum:FDD?”);
GetData(DT_INT, DataLen, & FER);
2.1.3.36 FETCh:PTESt:WQUality:TERRor:FDD
Command FETCh:PTESt:WQUality:TERRor:FDD
Function Get Timing Error numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:chip
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:TERRor:FDD?”);
GetData(DT_ FLOAT, DataLen, & TERR);
2.1.3.37 FETCh:PTESt:WQUality:TERRor:MAXimum:FDD
Command FETCh:PTESt:WQUality:TERRor:MAXimum:FDD
Function Get Timing Error max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:TERRor:MAXimum:FDD?”);
GetData(DT_ FLOAT, DataLen, & TERR);
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2.1.3.38 FETCh:PTESt:WQUality:TERRor:MINimum:FDD
Command FETCh:PTESt:WQUality:TERRor:MINimum:FDD
Function Get Timing Error min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:Hz
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:PTESt:WQUality:TERRor:MINimum:FDD?”);
GetData(DT_ FLOAT, DataLen, & TERR);
2.1.3.39 FETCh:PTESt:SEMask:PASS:FDD
Command FETCh:PTESt:SEMask:PASS:FDD
Function Get the result indicates the PASS/Fail of SEM measurement in PT.
Query Only.
Setting None
Query
Type:int
Range:0 / 1(0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:SEMask:PASS:FDD?”);
GetData(DT_INT, DataLen, &SEMpass);
2.1.3.40 FETCh:PTESt:SEMask:RANGe[:ALL]:FDD
Command FETCh:PTESt:SEMask:RANGe[:ALL]:FDD
Function
Get the four results indicate the margin between test threshold and max power detected
by each RBW defined in 3GPP 34.121.
Query Only.
(there is 4 results, separated each other with “,”. From 1st
to 4th: 4 results in the 4 test
frequency ranges defined in 3GPP 34.121, from large absolute frequency offset value
with central frequency to small.)
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
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Programming
Example
SendGpibCmd(“FETCh:PTESt:SEMask:RANGe[:ALL]:FDD?”);
GetData(DT_FLOAT, DataLen, &SEMRange);
2.1.3.41 FETCh:PTESt:SEMask:RANGe:EIGHt:FDD
Command FETCh:PTESt:SEMask:RANGe:EIGHt:FDD
Function
Get the eight results indicate the margin between test threshold and max power detected
by each RBW defined in 3GPP 34.121.
Query Only.
(there is 8 results, separated each other with “,”. From 1st
to 8th: 8 results in the 4 test
frequency ranges defined in 3GPP 34.121, from small frequency offset value with central
frequency to large.)
Setting None
Query
Type:float
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:SEMask:RANGe:EIGHt:FDD?”);
GetData(DT_FLOAT, DataLen, &SEMRangeEight);
2.1.3.42 FETCh:PTESt:WQUality:EVM:PASS:FDD
Command FETCh:PTESt:WQUality:EVM:PASS:FDD
Function Get the result indicates the PASS/Fail of RMS EVM measurement in PT.
Query Only.
Setting None
Query Type:int
Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:EVM:PASS:FDD?”);
GetData(DT_INT, DataLen, &PtestsWqEvmPass);
2.1.3.43 FETCh:PTESt:WQUality:FERRor:PASS:FDD
Command FETCh:PTESt:WQUality:FERRor:PASS:FDD
Function Get the result indicates the PASS/Fail of Frequeny Error measurement in PT.
Query Only.
Setting None
Query Type:int
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Range:1 / 0 (0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:FERRor:PASS:FDD?”);
GetData(DT_INT, DataLen, &PtestsAclPass);
2.1.3.44 FETCh:PTESt:WQUality:PERRor:RMS:FDD
Command FETCh:PTESt:WQUality:PERRor:RMS:FDD
Function Get RMS Phase Error numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PERRor:RMS:FDD?”);
GetData(DT_FLOAT, DataLen, WQualityRms);
2.1.3.45 FETCh:PTESt:WQUality:PERRor:RMS:MAXimum:FDD
Command FETCh:PTESt:WQUality:PERRor:RMS:MAXimum:FDD
Function Get RMS Phase Error max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PERRor:RMS:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, WQualityRms);
2.1.3.46 FETCh:PTESt:WQUality:PERRor:RMS:MINimum:FDD
Command FETCh:PTESt:WQUality:PERRor:RMS:MINimum:FDD
Function Get RMS Phase Error min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
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Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PERRor:RMS:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, WQualityRms);
2.1.3.47 FETCh:PTESt:WQUality:PERRor:PEAK:FDD
Command FETCh:PTESt:WQUality:PERRor:PEAK:FDD
Function Get PEAK Phase Error numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PERRor:PEAK:FDD”);
GetData(DT_FLOAT, DataLen, WQualityPeak);
2.1.3.48 FETCh:PTESt:WQUality:PERRor:PEAK:MAXimum:FDD
Command FETCh:PTESt:WQUality:PERRor:PEAK:MAXimum:FDD
Function Get PEAK Phase Error max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PERRor:PEAK:MAXimum:FDD”);
GetData(DT_FLOAT, DataLen, WQualityPeak);
2.1.3.49 FETCh:PTESt:WQUality:PERRor:PEAK:MINimum:FDD
Command FETCh:PTESt:WQUality:PERRor:PEAK:MINimum:FDD
Function Get Peak Phase Error min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
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*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:PERRor:PEAK:MINimum:FDD”);
GetData(DT_FLOAT, DataLen, WQualityPeak);
2.1.3.50 FETCh:PTESt:WQUality:MERRor:RMS:FDD
Command FETCh:PTESt:WQUality:MERRor:RMS:FDD
Function Get RMS Magnitude Error numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:MERRor:RMS:FDD”);
GetData(DT_FLOAT, DataLen, WQualityMePeak);
2.1.3.51 FETCh:PTESt:WQUality:MERRor:RMS:MAXimum:FDD
Command FETCh:PTESt:WQUality:MERRor:RMS:MAXimum:FDD
Function Get RMS Magnitude Error max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:MERRor:RMS:MAXimum:FDD”);
GetData(DT_FLOAT, DataLen, WQualityMePeak);
2.1.3.52 FETCh:PTESt:WQUality:MERRor:RMS:MINimum:FDD
Command FETCh:PTESt:WQUality:MERRor:RMS:MINimum:FDD
Function Get RMS Magnitude Error min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
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Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:MERRor:RMS:MINimum:FDD”);
GetData(DT_FLOAT, DataLen, WQualityMePeak);
2.1.3.53 FETCh:PTESt:WQUality:MERRor:PEAK:FDD
Command FETCh:PTESt:WQUality:MERRor:PEAK:FDD
Function Get Peak Magnitude Error numerical value result of the last PT measeurement.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:MERRor:PEAK:FDD”);
GetData(DT_ FLOAT, DataLen, WQualityPeak);
2.1.3.54 FETCh:PTESt:WQUality:MERRor:PEAK:MAXimum:FDD
Command FETCh:PTESt:WQUality:MERRor:PEAK:MAXimum:FDD
Function Get Peak Magnitude Error max numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:PTESt:WQUality:MERRor:PEAK:MAXimum:FDD”);
GetData(DT_FLOAT, DataLen, WQualityPeak);
2.1.3.55 FETCh:PTESt:WQUality:MERRor:PEAK:MINimum:FDD
Command FETCh:PTESt:WQUality:MERRor:PEAK:MINimum:FDD
Function Get Peak Magnitude Error min numerical value result of multi times PT measeurements.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming SendGpibCmd(“FETCh:PTESt:WQUality:MERRor:PEAK:MINimum:FDD”);
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Example GetData(DT_FLOAT, DataLen, WQualityPeak);
2.1.4 Measeurement Config of FDD Parallet Test
2.1.4.1 SETup:PTESt:CONTinuous:FDD
Command SETup:PTESt:CONTinuous:FDD
Function Set or Query the trigger arm of PT.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 1
*RST Setting 0
Programming
Example
// Set the PT to be executed only once.
SendGpibCmd(“SETup:PTESt:CONTinuous:FDD OFF”);
// Query the current trigger arm of PT.
SendGpibCmd(“SETup:PTESt:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &PTContinuous);
2.1.4.2 SETup:PTESt:AVERage:COUNt:FDD
Command SETup:PTESt:AVERage:COUNt:FDD
Function
Set or Query the number of PT measurement times to get statistical results, such as max,
min, average and so on.
Can been set and queried.
Setting
Type:int
Range:1 ~ 999
Unit:None
Query
Type:int
Range:1 ~ 999
Unit:None
Default 1
*RST Setting 1
Programming
Example
//Set the average number of PT to 50.
SendGpibCmd(“SETup:PTESt:AVERage:COUNt:FDD 50”);
//Query the current PT average number of PT.
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SendGpibCmd(“SETup:PTESt:AVERage:COUNt:FDD?”);
GetData(DT_INT, DataLen, & m_iAverNum);
2.1.4.3 SETup:PTESt:TSLot:FDD
Command SETup:PTESt:TSLot:FDD
Function Set or Query the measurement Time Slot of PT. Can been set and queried.
Setting
Type:int
Range:0 ~ 14
Unit:None
Query
Type:int
Range:0 ~ 14
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the measurement Time Slot of PT to 2.
SendGpibCmd(“SETup:PTESt:TSLot:FDD 2”);
// Query the current measurement Time Slot of PT.
SendGpibCmd(“SETup:PTESt:TSLot:FDD?”);
GetData(DT_INT, DataLen, &PTEStTimeSlot);
2.1.4.4 SETup:PTESt:TIMeout:FDD
Command SETup:PTESt:TIMeout:FDD
Function Set or Query the time interval of the PT timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the PT time interval of the PT timeout to10s.
SendGpibCmd(“SETup:PTESt:TIMeout:FDD 10”);
// Query the current ime interval of the PT timeout.
SendGpibCmd(“SETup:PTESt:TIMeoutFDD?”);
GetData(DT_INT, DataLen, &PTESt);
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2.1.4.5 SETup:PTESt:MODE:FDD
Command SETup:PTESt:MODE:FDD
Function Set or Query the average mode of multi times PT measurements.
Can been set and queried.
Setting
Type:choice
Range:REPeat/1, EXPonential/0
Unit:None
Query
Type:choice
Range:REPeat/1, EXPonential/0
Unit:None
Default REP
*RST Setting REP
Programming
Example
/ Set the average mode of multi times PT measurements as “EXP”.
SendGpibCmd(“SETup:PTESt:MODE:FDD EXP”);
// Query the current average mode of multi times PT measurements.
SendGpibCmd(“SETup:PTESt:MODE:FDD?”);
GetData(DT_CHAR, DataLen, PTMode);
2.1.4.6 SETup:PTESt:ACLeakage:SWITching:FDD
Command SETup:PTESt:ACLeakage:SWITching:FDD
Function Set or Query the ACLR measurement to be executed or not in PT.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Default ON
*RST Setting ON
Programming
Example
//Set the ACLR measurement not to be executed in PT.
SendGpibCmd(“SETup:PTESt:ACLeakage:SWITching:FDD OFF”);
//Query the ACLR measurement to be executed or not in PT.
SendGpibCmd(“SETup:PTESt:ACLeakage:SWITching:FDD?”);
GetData(DT_INT, DataLen, &PTSwitch);
2.1.4.7 SETup:PTESt:OBWidth:SWITching:FDD
Command SETup:PTESt:OBWidth:SWITching:FDD
Function Set or Query the OBW measurement to be executed or not in PT.
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Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Default ON
*RST Setting ON
Programming
Example
//Set the OBW measurement not to be executed in PT.
SendGpibCmd(“SETup:PTESt:OBWidth:SWITching:FDD OFF”);
// Query the OBW measurement to be executed or not in PT.
SendGpibCmd(“SETup:PTESt:OBWidth:SWITching:FDD?”);
GetData(DT_INT, DataLen, &PTSwitch);
2.1.4.8 SETup:PTESt:SEMask:SWITching:FDD
Command SETup:PTESt:SEMask:SWITching:FDD
Function Set or Query the SEM measurement to be executed or not in PT.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Default ON
*RST Setting ON
Programming
Example
//Set the SEM measurement not to be executed in PT.
SendGpibCmd(“SETup:PTESt:SEMask:SWITching:FDD OFF”);
// Query the SEM measurement to be executed or not in PT.
SendGpibCmd(“SETup:PTESt:SEMask:SWITching:FDD?”);
GetData(DT_INT, DataLen, &PTSwitch);
2.1.4.9 SETup:PTESt:WQUality:SWITching:FDD
Command SETup:PTESt:WQUality:SWITching:FDD
Function Set or Query the Modulation quality measurements to be executed or not in PT.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
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Query
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Default ON
*RST Setting ON
Programming
Example
// Set the Modulation quality measurements not to be executed in PT.
SendGpibCmd(“SETup:PTESt:WQUality:SWITching:FDD OFF”);
// Query the Modulation quality measurements to be executed or not in PT.
SendGpibCmd(“SETup:PTESt:WQUality:SWITching:FDD?”);
GetData(DT_INT, DataLen, &PTSwitch);
2.2 FDD Inner Loop Power Control (ILPC)
2.2.1 INITiate:ILPControl:FDD
Command INITiate:ILPControl:FDD
Function Start a FDD Inner Loop Power Control measurement in the WCDMA pattern.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:ILPControl:FDD”);
2.2.2 ABORt:ILPControl:FDD
Command ABORt:ILPControl:FDD
Function Stop and quit the FDD Inner Loop Power Control measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:ILPControl:FDD”);
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2.2.3 Get results of FDD Inner Loop Power Control (ILPC)
2.2.3.1 FETCh:ILPControl:POWer:PASS:FDD
Command FETCh:ILPControl:POWer:PASS:FDD
Function Get the result indicates the PASS/Fail of ILPC measurement.
Query Only.
Setting None
Query
Type:int
Range:2 / 1 / 0 / -1 / -2( “2”: measurement running, “1”: Pass, “0”: one step and 10
steps Fail both, “ -1”: one step Fail, “-2”: ten steps Fail).
Unit:None
Default None
*RST Setting 2
Programming
Example
SendGpibCmd(“FETCh:ILPControl:POWer:PASS:FDD?”);
GetData(DT_INT, DataLen, &PctrlPass);
2.2.3.2 FETCh:ILPControl:MARKer:Y:FDD
Command FETCh:ILPControl:MARKer:Y:FDD
Function Get the power result of the Marker position on the power trace.
Query Only.
Setting None
Query
Type:float
Range:1
Unit:dBm
Default 1
*RST Setting 1
Programming
Example
SendGpibCmd(“FETCh:ILPControl:MARKer:Y:FDD?”);
GetData(DT_CHAR, DataLen, ILPControlMarkerY);
2.2.3.3 FETCh:ILPControl:NSLOts:FDD
Command FETCh:ILPControl:NSLOts:FDD
Function Get the trace length of the ILPC (number of time slots to be tested).
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting None
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Programming
Example
SendGpibCmd(“FETCh:ILPControl:NSLOts:FDD?”);
GetData(DT_CHAR, DataLen, ILPControlNslots);
2.2.3.4 FETCh:ILPControl:ALL:FDD
Command FETCh:ILPControl:ALL:FDD
Function
Get the one step worst case and ten step worst case (which the relative power has the
minimum magin with metric defined in 3GPP 34.121 chapter 5.4.2) result of the ILPC
measurement.
Query Only.
Setting None
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting None
Programming
Example
SendGpibCmd(“FETCh:ILPControl:ALL:FDD?”);
GetData(DT_CHAR, DataLen, ILPControlAll);
2.2.3.5 FETCh:ILPControl:DOWN[:ALL]:FDD
Command FETCh:ILPControl:DOWN[:ALL]:FDD
Function
Get power falling trace (Mask E, defined in 3GPP 34.121 chapter 5.4.2) result of the
ILPC measurement.
Query Only.
Setting
Type:string
Range:None
Unit:None
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:DOWN:ALL:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlDown);
2.2.3.6 FETCh:ILPControl:UP[:ALL]:FDD
Command FETCh:ILPControl:UP[:ALL]:FDD
Function
Get power raising trace (Mask F, defined in 3GPP 34.121 chapter 5.4.2) result of the
ILPC measurement.
Query Only.
Setting Type:string
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Range:None
Unit:None
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:UP:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlup);
2.2.3.7 FETCh:ILPControl:TRACe:FDD
Command FETCh:ILPControl:TRACe:FDD
Function
Get the power trace result of the ILPC measurement. There are 284*2 numerical value,
the first 248 numerical figure indicate time slot tested index, the last 248 numerical
figure show the UE power of the time slots tested
Query Only.
Setting None
Query
Type:float,size 284*2
Range:None
Unit:index,dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:TRACe:FDD?”);
GetData(DT_FLOAT, DataLen, &xyPctrlTrace);
2.2.3.8 FETCh:ILPControl:TRACe:RELative:FDD
Command FETCh:ILPControl:TRACe:RELative:FDD
Function Get the one step relative power trace result of the ILPC measurement.
Query Only.
Setting
Type:double
Range:None
Unit:None
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:TRACe:RELative:FDD?”);
GetData(DT_Double, DataLen,ILPControlup);
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2.2.3.9 FETCh:ILPControl:TRACe:REL10TPC:FDD
Command FETCh:ILPControl:TRACe:REL10TPC:FDD
Function Get the ten step relative power trace result of the ILPC measurement.
Query Only.
Setting
Type:double
Range:None
Unit:None
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:TRACe:REL10TPC:FDD?”);
GetData(DT_ Double, DataLen,ILPControlup);
2.2.3.10 FETCh:ILPControl:POWer:MAXimum:PASS:FDD
Command FETCh:ILPControl:POWer:MAXimum:PASS:FDD
Function Get the result indicates the PASS/Fail of UE Max Output Power measurement in ILPC.
Query Only.
Setting None
Query
Type:int
Range:0 / 1 / 2(”0”: Fail, “1”: Pass, “2”: measurement running)
Unit:None
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:ILPControl:POWer:MAXimum:PASS:FDD?”);
GetData(DT_INT, DataLen, &PctrlMaxPowPass);
2.2.3.11 FETCh:ILPControl:POWer:MAXimum[:LEVel]:FDD
Command FETCh:ILPControl:POWer:MAXimum[:LEVel]:FDD
Function Get the UE max output power result in ILPC preoess.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:POWer:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, &PctrlMaxPower);
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2.2.3.12 FETCh:ILPControl:POWer:MINimum:PASS:FDD
Command FETCh:ILPControl:POWer:MINimum:PASS:FDD
Function
Get the result indicates the PASS/Fail of UE Minimum Output Power measurement in
ILPC preoess.
Query Only.
Setting None
Query
Type:int
Range:0 / 1 / 2( “0”: Fail, “1”: Pass, “2”: measurement running)
Unit:None
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:ILPControl:POWer:MINimum:PASS:FDD?”);
GetData(DT_INT, DataLen, &PctrlMinPowPass);
2.2.3.13 FETCh:ILPControl:POWer:MINimum[:LEVel]:FDD
Command FETCh:ILPControl:POWer:MINimum[:LEVel]:FDD
Function Get the UE min output power result in ILPC preoess.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:ILPControl:POWer:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, &PctrlMinPower);
2.2.4 Measeurement Config of FDD Inner Loop Power Control
2.2.4.1 SETup:ILPControl:CONTinuous:FDD
Command SETup:ILPControl:CONTinuous:FDD
Function Set or Query the trigger arm of ILPC.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default OFF
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*RST Setting OFF
Programming
Example
// Set the ILPC to be executed only once.
SendGpibCmd(“SETup:ILPControl:CONTinuous:FDD OFF”);
// Query the current trigger arm of ILPC.
SendGpibCmd(“SETup:ILPControl:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &PcontrContinuous);
2.2.4.2 SETup:ILPControl:AVERage:COUNt:FDD
Command SETup:ILPControl:AVERage:COUNt:FDD
Function Set or Query the number of ILPC measurement times to be executed.
Can been set and queried.
Setting
Type:int
Range:1 ~ 999
Unit:None
Query
Type:int
Range:1 ~ 999
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the average number of ILPC to 10.
SendGpibCmd(“SETup:ILPControl:AVERage:COUNt:FDD 10”);
// Query the current ILPC average number of ILPC.
SendGpibCmd(“SETup:ILPControl:AVERage:COUNt:FDD?”);
GetData(DT_INT, DataLen, &ILPControlAverageCount);
2.2.4.3 SETup:ILPControl:TIMeout:FDD
Command SETup:ILPControl:TIMeout:FDD
Function Set or Query the time interval of the ILPC timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the ILPC time interval of the ILPC timeout to10s.
SendGpibCmd(“SETup:ILPControl:TIMeout:FDD 10”);
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// Query the current ILPC time interval of the ILPC timeout.
SendGpibCmd(“SETup:ILPControl:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &PctrlTimeout);
2.2.4.4 SETup:ILPControl:STATe:FDD
Command SETup:ILPControl:STATe:FDD
Function Set or Query the swith of sending the UL TPC mask is on or off.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 1
*RST Setting 1
Programming
Example
//do not to send the UL TPC mask.
SendGpibCmd(“SETup:ILPControl:STATe:FDD OFF”);
// Query the current config of the swith of sending the UL TPC mask.
SendGpibCmd(“SETup:ILPControl:STATe:FDD?”);
GetData(DT_INT, DataLen, &PctrlClpcState);
2.2.4.5 SETup:ILPControl:ALGorithm:FDD
Command SETup:ILPControl:ALGorithm:FDD
Function
Set or Query the algorithm used in the inner loop power control (ILPC) measurement
process.
Can been set and queried.
Setting
Type:string
Range:ALG1/ ALG2
Unit:None
Query
Type:string
Range:ALG1/ ALG2
Unit:None
Default ALG1
*RST Setting ALG2
Programming
Example
// Set the algorithm used in ILPC measurement process as “ALG1”.
SendGpibCmd(“SETup:ILPControl:ALGorithm:FDD ALG1”);
// Query the current algorithm used in ILPC measurement process.
SendGpibCmd(“SETup:ILPControl:ALGorithm:FDD?”);
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GetData(DT_CHAR, DataLen, PctrlAlgorithmtype);
2.2.4.6 SETup:ILPControl:PCLass:FDD
Command SETup:ILPControl:PCLass:FDD
Function Set or Query the power class of the DUT (UE).
Can been set and queried.
Setting
Type:int
Range:1 ~ 4
Unit:None
Query
Type:int
Range:1 ~ 4
Unit:None
Default 3
*RST Setting 3
Programming
Example
// Set the power class of the DUT to 3.
SendGpibCmd(“SETup:ILPControl:PCLass:FDD 3”);
// Query the current power class of the DUT used in ILPC measurement.
SendGpibCmd(“SETup:ILPControl:PCLass:FDD?”);
GetData(DT_INT, DataLen, &PctrlPowClass);
2.2.4.7 SETup:ILPControl:STEP:FDD
Command SETup:ILPControl:STEP:FDD
Function Set or Query the step size used in ILPC measurement process.
Can been set and queried.
Setting
Type:string
Range:1 / 2
Unit:dB
Query
Type:string
Range:1 / 2
Unit:dB
Default 1
*RST Setting 1
Programming
Example
// Set the step size used in ILPC measurement to 2dB
SendGpibCmd(“SETup:ILPControl:STEP:FDD 2”);
// Query the current step size used in ILPC measurement.
SendGpibCmd(“SETup:ILPControl:STEP:FDD?”);
GetData(DT_INT, DataLen, &PctrlPowStep);
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2.2.4.8 SETup:ILPControl:MARKer:STATe:FDD
Command SETup:ILPControl:MARKer:STATe:FDD
Function Set or Query the state of the marker function is ON or OFF.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:ON/OFF
Unit:None
Default OFF
*RST Setting OFF
Programming
Example
// Set the Marker function to be ON in ILPC measurement.
SendGpibCmd(“SETup:ILPControl:MARKer:STATe:FDD ON”);
// Query the current state of the marker function in ILPC measurement.
SendGpibCmd(“SETup:ILPControl:MARKer:STATe:FDD?”);
GetData(DT_INT, DataLen, &PctrlMarkerState);
2.2.4.9 SETup:ILPControl:MARKer:X:FDD
Command SETup:ILPControl:MARKer:X:FDD
Function
Set or Query the marker position (time slot tested index) of a trace in ILPC measurement
process.
Can been set and queried.
Setting
Type:int
Range:0 ~ 284
Unit:None
Query
Type:int
Range:0 ~ 284
Unit:None
Default 0
Programming
Example
// Set the marker position (time slot tested index) to “2”
SendGpibCmd(“SETup:ILPControl:MARKer:X:FDD 2”);
// Query the current marker position (time slot tested index).
SendGpibCmd(“SETup:ILPControl:MARKer:X:FDD?”);
GetData(DT_INT, DataLen, &PctrlMarkerXaxis);
2.2.4.10 SETup:ILPControl:SEGMent:FDD
Command SETup:ILPControl:SEGMent:FDD
Function Set or Query which UL TPC mask (defined in 3GPP 34.121 chapter 5.4.2) used in ILPC
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measurement proess.
Can been set and queried.
Setting
Type:choice
Range:Manual/0, A/1, B/2, C/3, E/4, F/5, G/6, H/7, E+F/8
Unit:None
Query
Type:choice
Range:Manual/0, A/1, B/2, C/3, E/4, F/5, G/6, H/7, E+F/8
Unit:None
Default E+F
Programming
Example
// Set the TPC mask “H” to be used in ILPC measurement.
SendGpibCmd(“SETup:ILPControl:SEGMent:FDD H”);
// Query the current TPC mask used in ILPC measurement.
SendGpibCmd(“SETup:ILPControl:SEGMent:FDD?”);
GetData(DT_CHAR, DataLen, &PctrlMarkerYaxis);
2.2.4.11 SETup:ILPControl:TPC:MODE:FDD
Command SETup:ILPControl:TPC:MODE:FDD
Function Set or Query the TPC type on DL DPCH.
Can been set and queried.
Setting
Type:choice
Range:UP/DOWN 0/1
Unit:None
Query
Type:choice
Range:UP/DOWN 0/1
Unit:None
Default E+F
Programming
Example
// Set all the TPC type on DL DPCH as “DOWN”.
SendGpibCmd(“SETup:ILPControl:TPC:MODE:FDD DOWN”);
// Query the current TPC type on DL DPCH.
SendGpibCmd(“SETup:ILPControl:TPC:MODE:FDD?”);
GetData(DT_CHAR, DataLen, &PctrlMarkerYaxis);
2.2.4.12 SETup:ILPControl:TPC:COUNt:FDD
Command SETup:ILPControl:TPC:COUNt:FDD
Function Set or Query the number of TPC to be sent on DL DPCH.
Can been set and queried.
Setting
Type:int
Range:0 ~ 57
Unit:None
Query Type:int
Range:0 ~ 57
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Unit:None
Default 0
*RST Setting 0
Programming
Example
// Send 22 TPCs on DL DPCH.
SendGpibCmd(“SETup:ILPControl:TPC:COUNt:FDD 22”);
// Query the current number of TPC to be sent on DL DPCH.
SendGpibCmd(“SETup:ILPControl:TPC:COUNt:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlStart );
2.2.4.13 SETup:ILPControl:NSLOts:FDD
Command SETup:ILPControl:NSLOts:FDD
Function Set or Query the number of time slots to be test in ILPC.
Can been set and queried.
Setting
Type:choice
Range:”15”/0, “30”/1, “45”/2, “60”/3
Unit:None
Query
Type:float
Range:”15”/0, “30”/1, “45”/2, “60”/3
Unit:None
Default 15
*RST Setting 15
Programming
Example
// Set the number of time slots to be test in ILPC to 45
SendGpibCmd(“SETup:ILPControl:NSLOts:FDD 45”);
// Query the current number of time slots to be test in ILPC.
SendGpibCmd(“SETup:ILPControl:NSLOts:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlNslots);
2.2.4.14 SETup:ILPControl:OSTep:UP1:ULIMit:FDD
Command SETup:ILPControl:OSTep:UP1:ULIMit:FDD
Function Set or Query the upper limit of Mask F one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:1.0 ~ 2.0
Unit:dB
Query
Type:float
Range:1.0 ~ 2.0
Unit:dB
Default 1.6
*RST Setting 1.6
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Programming
Example
// Set the upper limit of F Mask test metic user-self defined to 1.0dB.
SendGpibCmd(“SSETup:ILPControl:OSTep:UP1:ULIMit:FDD 1)
// Query the current upper limit of F Mask test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:OSTep:UP1:ULIMit:FDD?”);
GetData(DT_FLOAT, DataLen,ILPControlOstepUlimit);
2.2.4.15 SETup:ILPControl:OSTep:UP1:LLIMit:FDD
Command SETup:ILPControl:OSTep:UP1:LLIMit:FDD
Function Set or Query the lower limit of Mask F one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:0.0 ~ 1.0
Unit:dB
Query
Type:float
Range:0.0 ~ 1
Unit:dB
Default 0.4
*RST Setting 0.4
Programming
Example
// Set the lower limit of Mask F test metic user-self defined to 1.0dB.
SendGpibCmd(“SETup:ILPControl:OSTep:UP1:LLIMit:FDD 1)
// Query the current lower limit of Mask F test metic user-self defined.
SendGpibCmd(“SETup: SETup:ILPControl:OSTep:UP1:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepLimit);
2.2.4.16 SETup:ILPControl:OSTep:UP2:ULIMit:FDD
Command SETup:ILPControl:OSTep:UP2:ULIMit:FDD
Function Set or Query the upper limit of Mask H one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:2.0 ~ 4.0
Unit:dB
Query
Type:float
Range:2.0 ~ 4.0
Unit:dB
Default 3.15
*RST Setting 3.15
Programming
Example
// Set the upper limit of Mask H test metic user-self defined to 2.0dB.
SendGpibCmd(“SSETup:ILPControl:OSTep:UP2:ULIMit:FDD 2)
// Query the current upper limit of Mask H test metic user-self defined.
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SendGpibCmd(“SETup:ILPControl:OSTep:UP2:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepUP2Ulimit);
2.2.4.17 SETup:ILPControl:OSTep:UP2:LLIMit:FDD
Command SETup:ILPControl:OSTep:UP2:LLIMit:FDD
Function Set or Query the lower limit of Mask H one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:0.0 ~ 2.0
Unit:dB
Query
Type:float
Range:0.0 ~ 2.0
Unit:dB
Default 0.85
*RST Setting 0.85
Programming
Example
// Set the lower limit of Mask H test metic user-self defined to 1.0dB.
SendGpibCmd(“SETup:ILPControl:OSTep:UP2:LLIMit:FDD 1)
// Query the current lower limit of Mask H test metic user-self defined.
SendGpibCmd(“SETup: SETup:ILPControl:OSTep:UP2:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepUP2Limit);
2.2.4.18 SETup:ILPControl:OSTep:DOWN1:ULIMit:FDD
Command SETup:ILPControl:OSTep:DOWN1:ULIMit:FDD
Function Set or Query the upper limit of Mask E one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-2.0 ~ -1.0
Unit:dB
Query
Type:float
Range:-2.0 ~ -1.0
Unit:dB
Default -1.6
*RST Setting -1.6
Programming
Example
// Set the upper limit of Mask E test metic user-self defined to -1.0dB.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN1:ULIMit:FDD -1)
// Query the current upper limit of Mask E test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN1:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepDown1ULimit);
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2.2.4.19 SETup:ILPControl:OSTep:DOWN1:LLIMit:FDD
Command SETup:ILPControl:OSTep:DOWN1:LLIMit:FDD
Function Set or Query the lower limit of Mask E one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-1.0 ~ 0.0
Unit:dB
Query
Type:float
Range:-1.0 ~ 0.0
Unit:dB
Default -0.4
*RST Setting -0.4
Programming
Example
// Set the lower limit of Mask E test metic user-self defined to -1.0dB
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN1:LLIMit:FDD -1)
// Query the current lower limit of Mask E test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN1:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepDown1LLimit);
2.2.4.20 SETup:ILPControl:OSTep:DOWN2:ULIMit:FDD
Command SETup:ILPControl:OSTep:DOWN2:ULIMit:FDD
Function Set or Query the upper limit of Mask G one step test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-4.0 ~ -2.0
Unit:dB
Query
Type:float
Range:-4.0 ~ -2.0
Unit:dB
Default -3.5
*RST Setting -3.5
Programming
Example
// Set the upper limit of Mask G test metic user-self defined to -2.0dB.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN2:ULIMit:FDD -2)
// Query the current upper limit of Mask G test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN2:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepDown2ULimit);
2.2.4.21 SETup:ILPControl:OSTep:DOWN2:LLIMit:FDD
Command SETup:ILPControl:OSTep:DOWN2:LLIMit:FDD
Function Set or Query the lower limit of Mask G one step test metic user-self defined.
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Can been set and queried.
Setting
Type:float
Range:-2.0 ~ 0.0
Unit:dB
Query
Type:float
Range:-2.0 ~ 0.0
Unit:dB
Default -0.85
*RST Setting -0.85
Programming
Example
// Set the lower limit of Mask G test metic user-self defined to 0.0dB.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN2:LLIMit:FDD 0)
// Query the current lower limit of Mask G test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:OSTep:DOWN2:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlOstepDown2LLimit);
2.2.4.22 SETup:ILPControl:TSTep:ALGorithm1:UP1:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:UP1:ULIMit:FDD
Function Set or Query the upper limit of Mask F ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:10.0 ~ 14.0
Unit:dB
Query
Type:float
Range:10.0 ~ 14.0
Unit:dB
Default 10.3
*RST Setting 10.3
Programming
Example
// Set the upper limit of Mask F test metic user-self defined to 11.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP1:ULIMit:FDD 11)
// Query the current upper limit of Mask F test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP1:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1UP1ULimit);
2.2.4.23 SETup:ILPControl:TSTep:ALGorithm1:UP1:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:UP1:LLIMit:FDD
Function Set or Query the lower limit of Mask F test ten steps metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:6.0 ~ 10.0
Unit:dB
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Query
Type:float
Range:6.0 ~ 10.0
Unit:dB
Default 7.7
*RST Setting 7.7
Programming
Example
// Set the lower limit of Mask F test metic user-self defined to 7dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP1:LLIMit:FDD 7)
// Query the current lower limit of Mask F test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP1:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1UP1LLimit);
2.2.4.24 SETup:ILPControl:TSTep:ALGorithm1:UP2:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:UP2:ULIMit:FDD
Function Set or Query the upper limit of Mask H ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:20.0 ~ 28.0
Unit:dB
Query
Type:float
Range: 20.0 ~ 28.0
Unit:dB
Default 24.3
*RST Setting 24.3
Programming
Example
// Set the upper limit of Mask H test metic user-self defined to 20.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP2:ULIMit:FDD 20)
// Query the current upper limit of Mask H test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP2:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstepAlgorthmlUp2Limit);
2.2.4.25 SETup:ILPControl:TSTep:ALGorithm1:UP2:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:UP2:LLIMit:FDD
Function Set or Query the lower limit of Mask H ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:12.0 ~ 20.0
Unit:dB
Query
Type:float
Range:12.0 ~ 20.0
Unit:dB
Default 15.7
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*RST Setting 15.7
Programming
Example
// Set the lower limit of Mask H test metic user-self defined to 16.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP2:LLIMit:FDD 16)
// Query the current lower limit of Mask H test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:UP2:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1UP2LLimit);
2.2.4.26 SETup:ILPControl:TSTep:ALGorithm1:DOWN1:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:DOWN1:ULIMit:FDD
Function Set or Query the upper limit of Mask E ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-14.0 ~ -10.0
Unit:dB
Query
Type:float
Range: -14.0 ~ -10.0
Unit:dB
Default -12.3
*RST Setting -12.3
Programming
Example
// Set the upper limit of Mask E ten steps test metic user-self defined to -12.0dB
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN1:ULIMit:FDD -12)
// Query the current upper limit of Mask E ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN1:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstepAlgorthmlDown1ULimit);
2.2.4.27 SETup:ILPControl:TSTep:ALGorithm1:DOWN1:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:DOWN1:LLIMit:FDD
Function Set or Query the lower limit of Mask E ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-10.0 ~ -6.0
Unit:dB
Query
Type:float
Range:-10.0 ~ -6.0
Unit:dB
Default -7.7
*RST Setting -7.7
Programming
Example
// Set the lower limit of Mask E ten steps test metic user-self defined to -6.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN1:LLIMit:FDD -6)
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// Query the current lower limit of Mask E ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN1:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1Down1LLimit);
2.2.4.28 SETup:ILPControl:TSTep:ALGorithm1:DOWN2:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:DOWN2:ULIMit:FDD
Function Set or Query the upper limit of Mask G ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-28.0 ~ -20.0
Unit:dB
Query
Type:float
Range: -28.0 ~ -20.0
Unit:dB
Default -24.3
*RST Setting -24.3
Programming
Example
// Set the upper limit of Mask G ten steps test metic user-self defined to -20.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN2:ULIMit:FDD -20)
// Query the current upper limit of Mask G ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN2:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm2Down2ULimit);
2.2.4.29 SETup:ILPControl:TSTep:ALGorithm1:DOWN2:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm1:DOWN2:LLIMit:FDD
Function Set or Query the lower limit of Mask G ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-20.0 ~ -12.0
Unit:dB
Query
Type:float
Range:-20.0 ~ -12.0
Unit:dB
Default -15.7
*RST Setting -15.7
Programming
Example
// Set the lower limit of Mask G ten steps test metic user-self defined to -12.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN2:LLIMit:FDD -12)
// Query the current lower limit of Mask G ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm1:DOWN2:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1Down2LLimit);
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2.2.4.30 SETup:ILPControl:TSTep:ALGorithm2:UP1:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm2:UP1:ULIMit:FDD
Function Set or Query the upper limit of Mask B ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:10.0 ~ 18.0
Unit:dB
Query
Type:float
Range:10.0 ~ 18.0
Unit:dB
Default 14.3
*RST Setting 14.3
Programming
Example
// Set the upper limit of Mask B ten steps test metic user-self defined to 15.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:UP1:ULIMit:FDD 15)
// Query the current upper limit of Mask B ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:UP1:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstepAlgorthmlUp1ULimit);
2.2.4.31 SETup:ILPControl:TSTep:ALGorithm2:UP1:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm2:UP1:LLIMit:FDD
Function Set or Query the lower limit of Mask B ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:2.0 ~ 10.0
Unit:dB
Query
Type:float
Range:2.0 ~ 10.0
Unit:dB
Default 5.7
*RST Setting 5.7
Programming
Example
// Set the lower limit of Mask B ten steps test metic user-self defined to 3.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:UP1:LLIMit:FDD 3)
// Query the current lower limit of Mask B ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:UP1:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1Up1LLimit);
2.2.4.32 SETup:ILPControl:TSTep:ALGorithm2:NONE:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm2:NONE:ULIMit:FDD
Function Set or Query the upper limit of Mask A ten steps test metic user-self defined.
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Can been set and queried.
Setting
Type:float
Range:0.0 ~ 2.0
Unit:dB
Query
Type:float
Range:0.0 ~ 2.0
Unit:dB
Default 1.1
*RST Setting 1.1
Programming
Example
// Set the upper limit of Mask A ten steps test metic user-self defined to 2.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:NONE:ULIMit:FDD 2)
// Query the current upper limit of Mask A ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:NONE:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm2NoneULimit);
2.2.4.33 SETup:ILPControl:TSTep:ALGorithm2:NONE:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm2:NONE:LLIMit:FDD
Function Set or Query the lower limit of Mask A ten steps test metic user-self defined.
Can been set and queried..
Setting
Type:float
Range:-2.0 ~ 0.0
Unit:dB
Query
Type:float
Range:-2.0 ~ 0.0
Unit:dB
Default -1.1
*RST Setting -1.1
Programming
Example
// Set the lower limit of Mask A ten steps test metic user-self defined to 0.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:NONE:LLIMit:FDD 0)
// Query the current lower limit of Mask A ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:NONE:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1NoneLLimit);
2.2.4.34 SETup:ILPControl:TSTep:ALGorithm2:DOWN1:ULIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm2:DOWN1:ULIMit:FDD
Function Set or Query the upper limit of Mask C ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-18.0 ~ -10.0
Unit:dB
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Query
Type:float
Range:-18.0 ~ -10.0
Unit:dB
Default -14.3
*RST Setting -14.3
Programming
Example
// Set the upper limit of Mask C ten steps test metic user-self defined to -12.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:DOWN1:ULIMit:FDD -12)
// Query the current upper limit of Mask C ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:DOWN1:ULIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm2Down1ULimit);
2.2.4.35 SETup:ILPControl:TSTep:ALGorithm2:DOWN1:LLIMit:FDD
Command SETup:ILPControl:TSTep:ALGorithm2:DOWN1:LLIMit:FDD
Function Set or Query the lower limit of Mask C ten steps test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-10.0 ~ -2.0
Unit:dB
Query
Type:float
Range:-10.0 ~ -2.0
Unit:dB
Default -5.7
*RST Setting -5.7
Programming
Example
// Set the lower limit of Mask C ten steps test metic user-self defined to -2.0dB.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:DOWN1:LLIMit:FDD -2)
// Query the current lower limit of Mask C ten steps test metic user-self defined.
SendGpibCmd(“SETup:ILPControl:TSTep:ALGorithm2:DOWN1:LLIMit:FDD?”);
GetData(DT_ FLOAT, DataLen,ILPControlTstep ALGorithm1Down1LLimit);
2.2.4.36 SETup:ILPControl:MAXimum:POWer:THReshold:AUTO:FD
D
Command SETup:ILPControl:MAXimum:POWer:THReshold:AUTO:FDD
Function
Set or Query the swith of the UE max output power test metric to be ON or OFF. IF set
“ON”, the test metric used is defined in 3GPP 34.121 chapter 5.2. IF set “OFF”, the test
metric needs to be defined by the user.
Can been set and queried.
Setting
Type:choice
Range:Auto/0, Manual/1
Unit:None
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Query
Type:choice
Range:A/0, M/1
Unit:None
Default Auto
*RST Setting Auto
Programming
Example
// Set the UE max output power test metric as defined in 3GPP 34.121 chapter 5.2.
SendGpibCmd(“SETup:ILPControl:MAXimum:POWer:THReshold:AUTO:FDD 0)
// Query the current mode of the UE max output power test metric used.
SendGpibCmd(“SETup:ILPControl:MAXimum:POWer:THReshold:AUTO:FDD?”);
GetData(DT_ INT, DataLen,ILPControlTstepMaxPower);
2.2.4.37 SETup:ILPControl:MAXimum:POWer:THReshold:MANual:F
DD
Command SETup:ILPControl:MAXimum:POWer:THReshold:MANual:FDD
Function Set or Query the UE max output power test metric user-self defined.
Can been set and queried.
Setting
Type:float
Range:-61 ~ 33
Unit:dBm
Query
Type:float
Range:-61 ~ 33
Unit:dBm
Default 21
*RST Setting 21
Programming
Example
// Set the UE max output power test metric user-self defined to 22dBm.
SendGpibCmd(“SETup:ILPControl:MAXimum:POWer:THReshold:MANual:FDD 22)
// Query the current UE max output power test metric user-self defined.
SendGpibCmd(“SETup:ILPControl:MAXimum:POWer:THReshold:MANual:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlMaxPowerThresManual);
2.2.4.38 SETup:ILPControl:MAXimum:OUTPut:POWer:TOLerance:F
DD
Command SETup:ILPControl:MAXimum:OUTPut:POWer:TOLerance:FDD
Function Set or Query the measurement tolerance of UE max output power measurement in ILPC.
Can been set and queried.
Setting Type:float
Range:0 ~ 2
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Unit:dB
Query
Type:float
Range:0 ~ 2
Unit:dB
Default 0.7
*RST Setting 0.7
Programming
Example
// Set the measurement tolerance of UE max output power measurement to 1.0dB.
SendGpibCmd(“SETup:ILPControl:MAXimum:OUTPut:POWer:TOLerance:FDD 1)
// Query the current measurement tolerance of UE max output power measurement.
SendGpibCmd(“SETup:ILPControl:MAXimum:OUTPut:POWer:TOLerance:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlMaxoutPutPowerTTolerancel);
2.2.4.39 SETup:ILPControl:Minimum:POWer:THReshold:AUTO:FDD
Command SETup:ILPControl:Minimum:POWer:THReshold:AUTO:FDD
Function
Set or Query the swith of the minimum output power test metric to be ON or OFF. IF set
“ON”, the test metric used is defined in 3GPP 34.121 chapter 5.4.3. IF set “OFF”, the
test metric needs to be defined by the user.
Can been set and queried.
Setting
Type:choice
Range:Auto/0, Manual/1
Unit:None
Query
Type:choice
Range:A/0, Ml/1
Unit:None
Default Auto
*RST Setting Auto
Programming
Example
// Set the UE max output power test metric as defined in 3GPP 34.121 chapter 5.4.3.
SendGpibCmd(“SETup:ILPControl:Minimum:POWer:THReshold:AUTO:FDD 0)
// Query the current mode of the UE max output power test metric used.
SendGpibCmd(“SETup:ILPControl:Minimum:POWer:THReshold:AUTO:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlTstepMinPoweAutor);
2.2.4.40 SETup:ILPControl:Minimum:POWer:THReshold:MANual:FD
D
Command SETup:ILPControl:Minimum:POWer:THReshold:MANual:FDD
Function Set or Query the minimum output power test metric user-self defined.
Can been set and queried.
Setting Type:float
Range:-61 ~ 33
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Unit:dBm
Query
Type:float
Range:-61 ~ 33
Unit:dBm
Default -49
*RST Setting -49
Programming
Example
// Set the minimum output power test metric user-self defined to 22dBm.
SendGpibCmd(“SETup:ILPControl:Minimum:POWer:THReshold:MANual:FDD 22)
// Query the current minimum output power test metric user-self defined.
SendGpibCmd(“SETup:ILPControl:Minimum:POWer:THReshold:MANual:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlMinPowerThresManual);
2.2.4.41 SETup:ILPControl:Minimum:OUTPut:POWer:TOLerance:FD
D
Command SETup:ILPControl:Minimum:OUTPut:POWer:TOLerance:FDD
Function
Set or Query the measurement tolerance of minimum output power measurement in
ILPC.
Can been set and queried.
Setting
Type:float
Range:0 ~ 2
Unit:dB
Query
Type:float
Range:0 ~ 2
Unit:dB
Default 1
*RST Setting 1
Programming
Example
// Set the measurement tolerance of minimum output power measurement to 2dB.
SendGpibCmd(“SETup:ILPControl:Minimum:OUTPut:POWer:TOLerance:FDD 1)
// Query the current measurement tolerance of minimum output power measurement.
SendGpibCmd(“SETup:ILPControl:Minimum:OUTPut:POWer:TOLerance:FDD?”);
GetData(DT_CHAR, DataLen,ILPControlMinoutPutPowerTTolerancel);
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2.3 Channel Power (CPOW)
2.3.1 INITiate:CPOWer:FDD
Command IINITiate:CPOWer:FDD
Function Start a Channel Power measurement to get the UE TX burst power in WCDMA pattern.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:CPOWer:FDD”);
2.3.2 ABORt:CPOWer:FDD
Command ABORt:CPOWer:FDD
Function Stop and quit the FDD Burst Frequency Calibration measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:CPOWer:FDD”);
2.3.3 Get results of Channel Power
2.3.3.1 FETCh:CPOWer:POWer[:AVERage]:FDD
Command FETCh:CPOWer:POWer[:AVERage]:FDD
Function Get the average UE mean power results of multi times CPOW measurements.
Query Only.
Setting None
Query
Type:float,
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programmin SendGpibCmd(“FETCh:CPOWer:POWer:AVERage:FDD?”);
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g Example GetData(DT_FLOAT, DataLen, &CPOWer power);
2.3.3.2 FETCh:CPOWer:POWer:MAXimum:FDD
Command FETCh:CPOWer:POWer:MAXimum:FDD
Function Get the max UE mean power results of multi times CPOW measurements.
Query Only.
Setting None
Query
Type:float,
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:CPOWer:POWer:MAXimum:FDD?”);
GetData(DT_FLOAT, DataLen, &MaxCPOWer power);
2.3.3.3 FETCh:CPOWer:POWer:MINimum:FDD
Command FETCh:CPOWer:POWer:MINimum:FDD
Function Get the min UE mean power results of multi times CPOW measurements.
Query Only.
Setting None
Query
Type:float,
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:CPOWer:POWer:MINimum:FDD?”);
GetData(DT_FLOAT, DataLen, &MinCPOWer power);
2.3.3.4 FETCh:CPOWer:POWer:SDEViation:FDD
Command FETCh:CPOWer:POWer:SDEViation:FDD
Function Get the standard deviation of multi times CPOW UE mean power results.
Query Only.
Setting None
Query
Type:float,
Range:None
Unit:dB
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:CPOWer:POWer:SDEViation:FDD?”);
GetData(DT_FLOAT, DataLen, POWerAverSdeviation);
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2.3.3.5 FETCh:CPOWer:POWer:CURRent:FDD
Command FETCh:CPOWer:POWer:CURRent:FDD
Function Get the UE mean power result of the last CPOW measurements.
Query Only.。
Setting None
Query
Type:float,
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:CPOWer:POWer:CURRent:FDD?”);
GetData(DT_FLOAT, DataLen, POWerPowerCurrent);
2.3.3.6 FETCh:CPOWer:POWer:ALL:FDD
Command FETCh:CPOWer:POWer:ALL:FDD
Function
Get all the numerical value results of CPOW.
Query Only. (there is 4 results, separated each other with “,”. 1st: max UE mean power.
2nd
: min UE mean power. 3rd
: average UE mean power. 4st: standard deviation of multi
times CPOW UE mean power results.)
Setting None
Query
Type:string
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:CPOWer:POWer:ALL:FDD?”);
GetData(DT_CHAR, DataLen, &AllCPOWer power);
2.3.4 Measeurement Config of CPOW
2.3.4.1 SETup:CPOWer:CONTinuous:FDD
Command SETup:CPOWer:CONTinuous:FDD
Function Set or Query the trigger arm of CPOW.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query Type:choice
Range:1 / 0
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Unit:None
Default 1
*RST Setting 0
Programming
Example
// Set the CPOW to be executed only once.
SendGpibCmd(“SETup:CPOWer:CONTinuous:FDD 1”);
// Query the current trigger arm of CPOW.
SendGpibCmd(“SETup:CPOWer:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &powContinuous);
2.3.4.2 SETup:CPOWer:TIMeout:FDD
Command SETup:CPOWer:TIMeout:FDD
Function Set or Query the time interval of the CPOW timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the CPOW time interval of the CPOW timeout to10s.
SendGpibCmd(“SETup:CPOWer:TIMeout:FDD 10”);
// Query the current time interval of the CPOW timeout
SendGpibCmd(“SETup:CPOWer:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &powTimeout);
2.3.4.3 SETup:CPOWer:AVERage:COUNt:FDD
Command SETup:CPOWer:AVERage:COUNt:FDD
Function
Set or Query the number of CPOW measurement times to get statistical results, such as
max, min, average and so on.
Can been set and queried.
Setting
Type:int
Range:1 ~ 999
Unit:None
Query
Type:int
Range:1 ~ 999
Unit:None
Default 1
*RST Setting 1
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Programming
Example
// Set the CPOW implementation times number to 50.
SendGpibCmd(“SETup:CPOWer:AVERage:COUNt:FDD 50”);
//Query the current CPOW implementation times number.
SendGpibCmd(“SETup:CPOWer:AVERage:COUNt:FDD?”);
GetData(DT_INT, DataLen, & m_iAverNum);
2.3.4.4 SETup:CPOWer:TSLot:FDD
Command SETup:CPOWer:TSLot:FDD
Function Set or Query the measurement Time Slot of CPOW.
Can been set and queried.
Setting
Type:int
Range:1 ~ 6
Unit:None
Query
Type:int
Range:1 ~ 6
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the measurement Time Slot of CPOW to 2
SendGpibCmd(“SETup:CPOWer:TSLot:FDD 2”);
// Query the current measurement Time Slot of CPOW.
SendGpibCmd(“SETup:CPOWer:TSLot:FDD?”);
GetData(DT_INT, DataLen, &POWStTimeSlot);
2.3.4.5 SETup:CPOWer:INTerval:FDD
Command SETup:CPOWer:INTerval:FDD
Function Set or Query 当前测试的数据计算长度。Can been set and queried.
Setting
Type:int
Range:1 ~ 18
Unit:None
Query
Type:int
Range:1 ~ 18
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the 当前测试的数据计算长度是 2
SendGpibCmd(“SETup:CPOWer:INTerval:FDD 2”);
// Query the current 当前测试的数据计算长度
SendGpibCmd(“SETup:CPOWer:INTerval:FDD?”);
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GetData(DT_INT, DataLen, &POWInterval);
2.3.4.6 SETup:CPOWer:FILTer:FDD
Command SETup:CPOWer:FILTer:FDD
Function Set or Query whether the test data of CPOW passed through a RRC filter (a =0.22) or not.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default OFF
*RST Setting OFF
Programming
Example
// Set the test data of CPOW will pass through a RRC filter (a =0.22).
SendGpibCmd(“SETup:CPOWer:FILTer:FDD ON”);
// Query whether the test data of CPOW passed through a RRC filter (a =0.22) or not.
SendGpibCmd(“SETup:CPOWer:FILTer:FDD?”);
GetData(DT_INT, DataLen, &powFilter);
2.4 PRACH ON/OFF Power
2.4.1 INITiate:TOOMask:FDD
Command INITiate:TOOMask:FDD
Function Start a PRACH ON/OFF Power measurement in WCDMA pattern.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:TOOMask:FDD”);
2.4.2 ABORt:TOOMask:FDD
Command ABORt:TOOMask:FDD
Function Stop and quit the PRACH ON/OFF Power measurement.
Control Command, neither been set or queried.
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Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:TOOMask:FDD”);
2.4.3 Get results of PRACH ON/OFF Power
2.4.3.1 FETCh:TOOMask:POWer:ON:FDD
Command FETCh:TOOMask:POWer:ON:FDD
Function Get the UE transmitter ON power.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:TOOMask:POWer:ON:FDD?”);
GetData(DT_FLOAT, DataLen, &FetchPowerOn);
2.4.3.2 FETCh:TOOMask:POWer:OFF:PREVious:FDD
Command FETCh:TOOMask:POWer:OFF:PREVious:FDD
Function
Get the UE transmitter OFF power measured from the test interval before the power
rising moment.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:TOOMask:POWer:OFF:PREVious:FDD?”);
GetData(DT_FLOAT, DataLen, & FetchPowerOff);
2.4.3.3 FETCh:TOOMask:POWer:OFF:PREVious:PASS:FDD
Command FETCh:TOOMask:POWer:OFF:PREVious:PASS:FDD
Function Get the result indicates the PASS/Fail of UE transmitter OFF power measured from the
test interval before the power rising moment.decided by the metric defined in 3GPP
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34.121 the chapter 5.5.1.
Query Only.
Setting None
Query
Type:int
Range:0 / 1 (”0”: Fail, “1”: Pass)
Unit:None
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:TOOMask:POWer:OFF:PREVious:PASS:FDD?”);
GetData(DT_INT, DataLen, & FetchPREVious);
2.4.3.4 FETCh:TOOMask:POWer:OFF:POST:FDD
Command FETCh:TOOMask:POWer:OFF:POST:FDD
Function
Get the UE transmitter OFF power measured from the test interval after the power falling
moment.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:TOOMask:POWer:OFF:POST:FDD?”);
GetData(DT_FLOAT, DataLen, & FetchPost);
2.4.3.5 FETCh:TOOMask:POWer:OFF:POST:PASS:FDD
Command FETCh:TOOMask:POWer:OFF:POST:PASS:FDD
Function
Get the result indicates the PASS/Fail of UE transmitter OFF power measured from the
test interval after the power falling moment.decided by the metric defined in 3GPP
34.121 the chapter 5.5.1.
Query Only.
Setting None
Query
Type:int
Range:0 / 1 (”0”: Fail, “1”: Pass)
Unit:None
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:TOOMask:POWer:OFF:POST:PASS:FDD?”);
GetData(DT_INT, DataLen, & FetchPostPass);
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2.4.3.6 FETCh:TOOMask:OLPControl:ACCUrancy:FDD
Command FETCh:TOOMask:OLPControl:ACCUrancy:FDD
Function Get the UE output power of PRACH.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:TOOMask:OLPControl:ACCUrancy:FDD?”);
GetData(DT_FLOAT, DataLen, & FetchACCUrancy);
2.4.3.7 FETCh:TOOMask:OLPControl:ACCUrancy:PASS:FDD
Command FETCh:TOOMask:OLPControl:ACCUrancy:PASS:FDD
Function
Get the result indicates the PASS/Fail of UE Open Loop accuracy measurement decided
by the metric defined in 3GPP 34.121 the chapter 5.4.1 or user-self limit.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:TOOMask:OLPControl:ACCUrancy:PASS:FDD?”);
GetData(DT_INT, DataLen, &Fetch ACCUrancyPass);
2.4.4 Measeurement Config of PRACH ON/OFF Power
2.4.4.1 SETup:TOOMask:CONTinuous:FDD
Command SETup:TOOMask:CONTinuous:FDD
Function Set or Query the trigger arm of PRACH ON/OFF Power.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 0
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*RST Setting 0
Programming
Example
//Set the PRACH ON/OFF Power measurement to be executed only once.
SendGpibCmd(“SETup:TOOMask:CONTinuous:FDD 1”);
// Query the current trigger arm of PRACH ON/OFF Power measurement.
SendGpibCmd(“SETup:TOOMask:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &PVTContinuous);
2.4.4.2 SETup:TOOMask:TIMeout:FDD
Command SETup:TOOMask:TIMeout:FDD
Function Set or Query the time interval of the PRACH ON/OFF Power measurement timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the PRACH ON/OFF Power measurement timeout interval to 10s.
SendGpibCmd(“SETup:TOOMask:TIMeout:FDD 10”);
// Query the time interval of the PRACH ON/OFF Power measurement timeout.
SendGpibCmd(“SETup:TOOMask:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &PVTTimeout);
2.4.4.3 SETup:TOOMask:AVERage:COUNt:FDD
Command SETup:TOOMask:AVERage:COUNt:FDD
Function
Set or Query the number of PRACH ON/OFF Power measurement times to be executed
to get statistical average results.
Can been set and queried.
Setting
Type:int
Range:1 ~ 999
Unit:None
Query
Type:int
Range:1 ~ 999
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the PRACH ON/OFF power measurement implementation number to 5050
SendGpibCmd(“SETup:TOOMask:AVERage:COUNt:FDD 50”);
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//Query the current PRACH ON/OFF power measurement implementation number.
SendGpibCmd(“SETup:TOOMask:AVERage:COUNt:FDD?”);
GetData(DT_INT, DataLen, & m_iAverNum);
2.4.4.4 SETup:TOOMask:TSLot:FDD
Command SETup:TOOMask:TSLot:FDD
Function Set or Query the measurement Time Slot of PRACH ON/OFF Power.
Can been set and queried.
Setting
Type:int
Range:1 ~ 6
Unit:None
Query
Type:int
Range:1 ~ 6
Unit:None
Default 1
*RST Setting 1
Programming
Example
// Set the measurement Time Slot of PRACH ON/OFF Power to 2.
SendGpibCmd(“SETup:TOOMask:TSLot:FDD 2”);
// Query the current measurement Time Slot of PRACH ON/OFF Power.
SendGpibCmd(“SETup:TOOMask:TSLot:FDD?”);
GetData(DT_INT, DataLen, &TOOMaskTimeSlot);
2.4.4.5 SETup:TOOMask:POWer:OFF:LIMit:FDD
Command SETup:TOOMask:POWer:OFF:LIMit:FDD
Function Set or Query the test limit of UE transmitter OFF power test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:-100 ~ 0
Unit:dBm
Query
Type:float
Range:-100 ~ 0
Unit:dBm
Default -55
Programming
Example
// Set the test limit of UE transmitter OFF power test to -80.0dBm
SendGpibCmd(“SETup:TOOMask:POWer:OFF:LIMit:FDD -80”);
// Query the current test limit of UE transmitter OFF power test.
SendGpibCmd(“SETup:TOOMask:POWer:OFF:LIMit:FDD?”);
GetData(DT_FLOAT, DataLen, &PowerOffLimit);
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2.4.4.6 SETup:TOOMask:OLPControl:UPPer:LIMit:FDD
Command SETup:TOOMask:OLPControl:UPPer:LIMit:FDD
Function Set or Query the upper limit of Open Loop accuracy test metic user-self defined.
Can been set and queried.
Setting
Type:float
Range:0 ~ 15
Unit:dB
Query
Type:float
Range:0 ~ 15
Unit:dB
Default 9
*RST 9
Programming
Example
// Set the user-self defined upper limit of Open Loop accuracy test metic to 10dB
SendGpibCmd(“SETup:TOOMask:OLPControl:UPPer:LIMit:FDD 10”);
// Query the current user-self defined upper limit of Open Loop accuracy test metic.
SendGpibCmd(“SETup:TOOMask:OLPControl:UPPer:LIMit:FDD?”);
GetData(DT_FLOAT, DataLen, &UpLimit);
2.4.4.7 SETup:TOOMask:OLPControl:LOWer:LIMit:FDD
Command SETup:TOOMask:OLPControl:LOWer:LIMit:FDD
Function Set or Query the user-self defined lower limit of Open Loop accuracy test metic.
Can been set and queried.
Setting
Type:float
Range:-15 ~ 0
Unit:dB
Query
Type:float
Range:-15 ~ 0
Unit:dB
Default -9
*RST Setting -9
Programming
Example
// Set the user-self defined lower limit of Open Loop accuracy test metic to -10.0dB
SendGpibCmd(“SETup:TOOMask:OLPControl:LOWer:LIMit:FDD -10”);
// Query the current user-self defined lower limit of Open Loop accuracy test metic.
SendGpibCmd(“SETup:TOOMask:OLPControl:LOWer:LIMit:FDD?”);
GetData(DT_FLOAT, DataLen, &LowerLimit);
2.4.4.8 SETup:TOOMask:OLPControl:PCLass:FDD
Command SETup:TOOMask:OLPControl:PCLass:FDD
Function Set or Query the power class of the DUT (UE) used in this measurement.
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Can been set and queried.
Setting
Type:int
Range:1 ~ 4
Unit:None
Query
Type:int
Range:1~ 4
Unit:None
Default 3
Programming
Example
// Set the power class of the DUT (UE) to 2.
SendGpibCmd(“SETup:TOOMask:OLPControl:PCLass:FDD 2”);
// Query the current power class of the DUT (UE).
SendGpibCmd(“SETup:TOOMask:OLPControl:PCLass:FDD?”);
GetData(DT_INT, DataLen, & OlpcontrolPclass);
2.5 WCDMA MS Report
2.5.1 INITiate:MREPort:FDD
Command INITiate:MREPort:FDD
Function Start a WCDMA MS Report measurement in WCDMA pattern.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:MREPort:FDD”);
2.5.2 ABORt:MREPort:FDD
Command ABORt:MREPort:FDD
Function Stop and quit the WCDMA MS Report measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:MREPort:FDD”);
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2.5.3 Get results of WCDMA MS Report
2.5.3.1 FETCh:MREPort:RSCP:FDD
Command FETCh:MREPort:RSCP:FDD
Function Get the RSCP reported by the DUT (UE).
Query Only.
Setting None
Query
Type:INT
Range:None
Unit:None
Default None
*RST Setting 0
Programmin
g Example
SendGpibCmd(“FETCh:MREPort:RSCP:FDD?”);
GetData(DT_FLOAT, DataLen, &FetchRSCP);
2.5.4 Measeurement Config of WCDMA MS Report
2.5.4.1 SETup:MREPort:CONTinuous:FDD
Command SETup:MREPort:CONTinuous:FDD
Function Set or Query the trigger arm of WCDMA MS Report measurement.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the WCDMA MS report measurement to be executed only once.
SendGpibCmd(“SETup:MREPort:CONTinuous:FDD ON”);
// Query the current trigger arm of WCDMA MS report measurement.
SendGpibCmd(“SETup:MREPort:CONTinuous:FDD”);
GetData(DT_INT, DataLen, &BerContinuous);
2.5.4.2 SETup:MREPort:TIMeout:FDD
Command SETup:MREPort:TIMeout:FDD
Function Set or Query the time interval of the WCDMA MS Report measurement timeout.
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Can been set and queried.
Setting
Type:int
Range:1 ~ 200
Unit:None
Query
Type:int
Range:1 ~ 200
Unit:None
Default 20
*RST Setting 20
Programming
Example
//Set the interval of the WCDMA MS Report measurement timeout to 10s.
SendGpibCmd(“SETup:MREPort:TIMeout:FDD 10”);
// Query the current interval of the WCDMA MS Report measurement timeout.
SendGpibCmd(“SETup:MREPort:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &LowerLimit);
2.5.4.3 SETup:MREPort:PERiodtime:FDD
Command SETup:MREPort:PERiodtime:FDD
Function Set or Query the period of UE measurement report.
Can been set and queried.
Setting
Type:int
Range:250 / 500 / 1000 / 2000 / 3000 / 4000 / 6000 / 8000 / 12000 / 16000 / 20000 /
24000 / 28000 / 32000 / 64000
Unit:ms
Query
Type:int
Range:250 / 500 / 1000 / 2000 / 3000 / 4000 / 6000 / 8000 / 12000 / 16000 / 20000 /
24000 / 28000 / 32000 / 64000
Unit:ms
Default 250
*RST Setting None
Programming
Example
// Set the period of UE measurement report to 500ms.
SendGpibCmd(“SETup:MREPort:PERiodtime:FDD 500”);
// Query the current period of UE measurement report.
SendGpibCmd(“SETup:MREPort:PERiodtime:FDD?”);
GetData(DT_INT, DataLen, &MeasctrlPeriod);
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2.6 FDD Bit Error Ratio (WBER)
2.6.1 INITiate:WBERror
Command INITiate:WBERror
Function Start a FDD Bit Error Ratio measurement in WCDMA pattern.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:WBERror”);
2.6.2 ABORt:WBERror
Command ABORt:WBERror
Function Stop and quit the FDD Bit Error Ratio measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:WBERror”);
2.6.3 Get results of FDD Bit Error Ratio
2.6.3.1 FETCh:BERRor:RATio:FDD
Command FETCh:BERRor:RATio:FDD
Function Get the BER result.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:100%
Default None
*RST Setting Set all value results to 0;
Programmin SendGpibCmd(“FETCh:BERRor:RATio:FDD?”);
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g Example GetData(DT_FLOAT, DataLen, &BERRorRatio);
2.6.3.2 FETCh:BERRor:COUNt:FDD
Command FETCh:BERRor:COUNt:FDD
Function Get the error bit number of WBER measurement.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting 0
Programmin
g Example
SendGpibCmd(“FETCh:BERRor:COUNt:FDD?”);
GetData(DT_INT, DataLen, &BERRorCountn);
2.6.3.3 FETCh:BERRor:BITS:FDD
Command FETCh:BERRor:BITS:FDD
Function Get the total bit tested number of WBER measurement.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting 0
Programmin
g Example
SendGpibCmd(“FETCh:BERRor:BITS:FDD?”);
GetData(DT_INT, DataLen, &BERRORBits);
2.6.3.4 FETCh:BERRor:MBLocks:FDD
Command FETCh:BERRor:MBLocks:FDD
Function Get the UL missing block number of WBER measurement process.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting 0
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Programmin
g Example
SendGpibCmd(“FETCh:BERRor:MBLocks:FDD?”);
GetData(DT_INT, DataLen, &BERRORMBlocks);
2.6.3.5 FETCh:BERRor:CRCerrors:FDD
Command FETCh:BERRor:CRCerrors:FDD
Function Get the UL CRC error block number of WBER measurement process.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting 0
Programmin
g Example
SendGpibCmd(“FETCh:BERRor:CRCerrors:FDD?”);
GetData(DT_INT, DataLen, &BERRorCrcerrors);
2.6.3.6 FETCh:BERRor:PASS:FDD
Command FETCh:BERRor:PASS:FDD
Function
Get the result indicates the PASS/Fail of WBER measurement decided by the test metric set
by user.
Query Only.
Setting None
Query
Type:int
Range:1/0(0:Fail, 1: Pass)
Unit:None
Default None
*RST Setting 0
Programmin
g Example
SendGpibCmd(“FETCh:BERRor:PASS:FDD?”);
GetData(DT_INT, DataLen, &BERRorPass);
2.6.4 Measeurement Config of FDD Bit Error Ratio
2.6.4.1 SETup:WBERror:CONTinuous
Command SETup:WBERror:CONTinuous
Function Set or Query the trigger arm of WBER measurement.
Can been set and queried.
Setting Type:choice
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Range:ON/1,OFF/0
Unit:None
Query
Type:choice
Range:ON/1,OFF/0
Unit:None
Default ON/1
*RST Setting ON/1
Programming
Example
// Set the WBER to be executed only once.
SendGpibCmd(“SETup:WBERror:CONTinuous ON”);
// Query the current trigger arm of WBER.
SendGpibCmd(“SETup:WBERror:CONTinuous?”);
GetData(DT_CHOICE, DataLen, &LowerLimit);
2.6.4.2 SETup:WBERror:TIMeout[:STIMe]
Command SETup:WBERror:TIMeout[:STIMe]
Function Set or Query the time interval of the WBER timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 200
Unit:s
Query
Type:int
Range:1 ~ 200
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the WBER time interval of the WBER timeout to10s.
SendGpibCmd(“SETup:WBERror:TIMeout 10”);
// Query the current WBER time interval of the WBER timeout.
SendGpibCmd(“SETup:WBERror:TIMeout?”);
GetData(DT_INT, DataLen, &LowerLimit);
2.6.4.3 SETup:BERRor:SOURce:TYPE:FDD
Command SETup:BERRor:SOURce:TYPE:FDD
Function Set or Query the data source type carried by DL DCH.
Can been set and queried.
Setting
Type:choice
Range:ZERos / ONES / PN9 / PN15 / PN23
Unit:None
Query Type:choice
Range:ZERos / ONES / PN9 / PN15 / PN23
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Unit:None
Default PN9
*RST Setting PN9
Programming
Example
// Set the data source type carried by DL DCH as “PN15”.
SendGpibCmd(“SETup:BERRor:SOURce:TYPE:FDD PN15”);
// Query the current data source type carried by DL DCH.
SendGpibCmd(“SETup:BERRor:SOURce:TYPE:FDD”);
GetData(DT_INT, DataLen, &BERSourcetype);
2.6.4.4 SETup:WBERror:UELoopback:TYPE
Command SETup:WBERror:UELoopback:TYPE
Function Set or Query 超时状态。Can been set and queried.
Setting
Type:choice
Range:Type1/0, Type2/1
Unit:None
Query
Type:choice
Range:Type1/0, Typ2/1
Unit:None
Default Type1/0
*RST Setting Type2/0
Programming
Example
//Set the 超时状态为 Type2
SendGpibCmd(“SETup:WBERror:UELoopback:TYPE Type2”);
// Query the current 超时状态
SendGpibCmd(“SETup:WBERror:UELoopback:TYPE?”);
GetData(DT_CHOICE, DataLen, &UELoopback);
2.6.4.5 SETup:BERRor:REQuirement:FDD
Command SETup:BERRor:REQuirement:FDD
Function Set or Query the WBER measurement test metric.
Can been set and queried.
Setting
Type:float
Range:0 ~ 1
Unit:None
Query
Type:float
Range:0 ~ 1
Unit:None
Default 1e-3f
*RST 1e-3f
Programming
Example
//Set the WBER measurement test metric to 0.01
SendGpibCmd(“SETup:BERRor:REQuirement:FDD 0.01”);
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// Query the current WBER measurement test metric.
SendGpibCmd(“SSETup:BERRor:REQuirement:FDD?”);
GetData(DT_FLOAT, DataLen, &REQuirement);
2.6.4.6 SETup:BERRor:COUNt:FDD
Command SETup:BERRor:COUNt:FDD
Function Set or Query the total bit number to be tested in WBER process.
Can been set and queried.
Setting
Type:int
Range:1 ~ 999999999
Unit:None
Query
Type:int
Range:1 ~ 999999999
Unit:None
Default 100000
*RST Setting 100000
Programming
Example
//Set the total bit number to be tested in WBER process to 10000.
SendGpibCmd(“SSETup:BERRor:COUNt:FDD 10000”);
// Query the current total bit number to be tested in WBER process.
SendGpibCmd(“SETup:BERRor:COUNt:FDD?”);
GetData(DT_INT, DataLen, &LowerLimit);
2.7 Continuous Wave (CW)
2.7.1 INITiate:CW:FDD
Command INITiate:CW:FDD
Function Start a CW measurement to get the CW frequency and power in CW mode.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:CW:FDD”);
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2.7.2 ABORt:CW:FDD
Command ABORt:CW:FDD
Function Stop and quit the CW measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:CW:FDD”);
2.7.3 Get results of Coutinuous Wave
2.7.3.1 FETCh:CW:PFRequency:FDD
Command FETCh:CW:PFRequency:FDD
Function Get the CW frequency measurement result.
Query Only.
Setting None
Query
Type:double
Range:None
Unit:Hz
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:CW:PFRequency:FDD?”);
GetData(DT_DOUBLE, DataLen, &CwFrequency);
2.7.3.2 FETCh:CW:PPOWer:FDD
Command FETCh:CW:PPOwer:FDD
Function Get the CW power measurement result.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:dBm
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:CW:PPOwer:FDD?”);
GetData(DT_FLOAT, DataLen, &CwPpower);
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2.7.4 Measeurement Config of CW
2.7.4.1 SETup:CW:CONTinuous:FDD
Command SETup:CW:CONTinuous:FDD
Function Set or Query the trigger arm of CW.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 1
*RST Setting 0
Programming
Example
// Set the CW to be executed only once.
SendGpibCmd(“SETup:CW:CONTinuous:FDD ON”);
// Query the current trigger arm of CW.
SendGpibCmd(“SETup:CW:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &CwContinuous);
2.7.4.2 SETup:CW:TIMeout:FDD
Command SETup:CW:TIMeout:FDD
Function Set or Query the time interval of the CW measurement timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the CW time interval of the CW measurement timeout to5s.
SendGpibCmd(“SETup:CW:TIMeout:FDD 5”);
// Query the current CW time interval of the CW measurement timeout.
SendGpibCmd(“SETup:CW:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &CwTimeout);
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2.8 FDD Burst Frequency Calibration (AFC)
2.8.1 INITiate:AFCalibrate:FDD
Command INITiate:AFCalibrate:FDD
Function
Start a FDD Burst Frequency Calibration measurement to get the UE TX burst frequeny
offset with the central frequency result in WCDMA UE calibration scenario.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:AFCalibrate:FDD”);
2.8.2 ABORt:AFCalibrate:FDD
Command ABORt:AFCalibrate:FDD
Function Stop and quit the FDD Burst Frequency Calibration measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:AFCalibrate:FDD”);
2.8.3 Get results of FDD Burst Frequency Calibration (AFC)
2.8.3.1 FETCh:AFCalibrate:FOFFset:FDD
Command FETCh:AFCalibrate:FOFFset:FDD
Function Get the UE Tx burst frequency offset with the central frequency.
Query Only.
Setting None
Query
Type:float
Range:None
Unit:Hz
Default None
*RST Setting 0
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Programming
Example
SendGpibCmd(“FETCh:AFCalibrate:FOFFset:FDD?”);
GetData(DT_FLOAT, DataLen, &AfcFreqOffset);
2.8.3.2 FETCh:AFCalibrate:ICOunt:FDD
2.8.4 Measeurement Config of FDD Burst Frequency
Calibration
2.8.4.1 SETup:AFCalibrate:CONTinuous:FDD
Command SETup:AFCalibrate:CONTinuous:FDD
Function Set or Query the trigger arm of AFC.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default ON
*RST Setting OFF
Programming
Example
// Set the AFC to be executed only once.
SendGpibCmd(“SETup:AFCalibrate:CONTinuous OFF”);
// Query the current trigger arm of AFC.
SendGpibCmd(“SETup:AFCalibrate:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &AfcContinuous);
Command FETCh:AFCalibrate:ICOunt:FDD
Function Get the measurement executed times number of multi times AFC measurements process.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting 0
Programming
Example
SendGpibCmd(“FETCh:AFCalibrate:ICOunt:FDD?”);
GetData(DT_INT, DataLen, &AfcTestCount);
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2.8.4.2 SETup:AFCalibrate:AVERage:COUNt:FDD
2.8.4.3 SETup:AFCalibrate:TIMeout:FDD
Command SETup:AFCalibrate:TIMeout:FDD
Function Set or Query the time interval of the AFC timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming
Example
// Set the AFC time interval of the AFC timeout to10s.
SendGpibCmd(“SETup:AFCalibrate:TIMeout:FDD 10”);
// Query the current AFC time interval of the AFC timeout
SendGpibCmd(“SETup:AFCalibrate:TIMeoutFDD?”);
GetData(DT_INT, DataLen, &AFCTimeout);
Command SETup:AFCalibrate:AVERage:COUNt:FDD
Function
Set or Query the number of AFC measurement times to be executed to get statistical
results, such as max, min, average value and so on.
Can been set and queried.
Setting
Type:int
Range:1 ~ 999
Unit:None
Query
Type:int
Range:1 ~ 999
Unit:None
Default 1
*RST Setting 1
Programming
Example
//Set the average number of AFC to 2.
SendGpibCmd(“SETup:AFCalibrate:AVERage:COUNt:FDD 2”);
// Query the current AFC average number of AFC.
SendGpibCmd(“SETup:AFCalibrate:AVERage:COUNt:FDD?”);
GetData(DT_INT, DataLen, &AfcAverageCount);
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2.9 FDD Dynamic Power (DPOW)
2.9.1 INITiate:DPOWer:FDD
Command INITiate:DPOWer:FDD
Function
Start a FDD Dynamic Power measurement to get the UE TX burst power trace in
WCDMA UE calibration scenario.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:DPOWer:FDD”);
2.9.2 ABORt:DPOWer:FDD
Command ABORt:DPOWer:FDD
Function Stop and quit the FDD Dynamic Power measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:DPOWer:FDD”);
2.9.3 Get results of FDD Dynamic Power measurement
2.9.3.1 FETCh:DPOWer:TRACe:FDD
Command FETCh:DPOWer:TRACe:FDD
Function
Get the power trace result of the DPOW measurement. There are 1200*2 numerical
value, the first 1200 numerical figure indicate time slot tested index, the last 1200
numerical figure show the UE power of the time slots tested
Query Only.
Setting None
Query Type:double,size 1200*2
Range:None
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Unit:index,dBm
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:DPOWer:TRACe:FDD?”);
GetData(DT_FLOAT, DataLen, &DPower);
2.9.4 Measeurement Config of DPOW
2.9.4.1 SETup:DPOWer:CONTinuous:FDD
Command SETup:DPOWer:CONTinuous:FDD
Function Set or Query the trigger arm of DPOW.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 1
*RST Setting 0
Programming
Example
// Set the DPOW to be executed only once.
SendGpibCmd(“SETup:DPOWer:CONTinuous:FDD 1”);
// Query the current trigger arm of DPOW.
SendGpibCmd(“SETup:DPOWer:CONTinuous:FDD?”);
GetData(DT_INT, DataLen, &DpowContinuous);
2.9.4.2 SETup:DPOWer:TIMeout:FDD
Command SETup:DPOWer:TIMeout:FDD
Function Set or Query the time interval of the DPOW timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST Setting 20
Programming // Set the DPOW time interval of the DPOW timeout to10s.
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Example SendGpibCmd(“SETup:DPOWer:TIMeout:FDD 10”);
// Query the current DPOW time interval of the DPOW timeout
SendGpibCmd(“SETup:DPOWer:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &DpowTimeout);
2.9.4.3 SETup:DPOWer:STEPs:FDD
Command SETup:DPOWer:STEPs:FDD
Function
Set or Query the total test data length (total number of successional bursts/time slots
tested) of DPOW measurement.
Can been set and queried.
Setting
Type:int
Range:1~1200
Unit:burst/time slot
Query
Type:int
Range:1~1200
Unit:burst/time slot
Default 15
*RST Setting 15
Programming
Example
// Set the DPOW total test data length to 150bursts.
SendGpibCmd(“SETup:DPOWer:STEPs:FDD 150”);
// Query the current DPOW total test data length to be measured
SendGpibCmd(“SETup:DPOWer:STEPs:FDD?”);
GetData(DT_INT, DataLen, &DpowStepNum);
2.9.4.4 SETup:DPOWer:INTerval:FDD
Command SETup:DPOWer:INTerval:FDD
Function
Set or Query the length of test data every power result calculated by in DPOW. The value
set should not be larger than the value set by “SETup:DPOWer:STEPs:FDD”.
Can been set and queried.
Setting
Type:int
Range:1~ STEPs
Unit:burst(slot)
Query
Type:int
Range:1~ STEPs
Unit:burst(slot)
Default 1
*RST Setting 1
Programming
Example
// Set the length of test data every power result calculated by to 2bursts
SendGpibCmd(“SETup:DPOWer:INTerval:FDD 2”);
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// Query the current length of test data every power result calculated by.
SendGpibCmd(“SETup:DPOWer:INTerval:FDD?”);
GetData(DT_INT, DataLen, &DpowMeasureLength);
2.9.4.5 SETup:DPOWer:SLENgth:FDD
Command SETup:DPOWer:SLENgth:FDD
Function
Set or Query DPOW 测试,每个 step 的长度。Can been set and queried.长度不可超过
INTerval
的值
Setting
Type:int
Range:1~ INTerval
Unit:burst(slot)
Query
Type:int
Range:1~ INTerval
Unit:burst(slot)
Default 1
*RST Setting 1
Programming
Example
// Set the DPOW 测试 Step 的长度为 3bursts
SendGpibCmd(“SETup:DPOWer:SLENgth:FDD 3”);
// Query the current DPOW 测试 Step 的长度
SendGpibCmd(“SETup:DPOWer:SLENgth:FDD?”);
GetData(DT_INT, DataLen, &DpowStepLength);
2.9.4.6 SETup:DPOWer:FILTer:FDD
Command SETup:DPOWer:FILTer:FDD
Function
Set or Query whether the test data of DPOW passed through a RRC filter (a =0.22) or
not.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Default OFF
*RST Setting OFF
Programming
Example
// Set the test data of DPOW will pass through a RRC filter (a =0.22)
SendGpibCmd(“SETup:DPOWer:FILTer:FDD ON”);
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// Query whether the test data of DPOW passed through a RRC filter (a =0.22) or not.
SendGpibCmd(“SETup:DPOWer:FILTer:FDD?”);
GetData(DT_INT, DataLen, &DpowRRCSwitch);
2.9.4.7 SETup:DPOWer:MARKer:STATe:FDD
Command SETup:DPOWer:MARKer:STATe:FDD
Function Set or Query the state of the marker function in DPOW is ON or OFF.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the the state of the marker function in DPOW as “ON”.
SendGpibCmd(“SETup:DPOWer:MARKer:STATe:FDD ON”);
// Query the current the state of the marker function in DPOW.
SendGpibCmd(“SETup:DPOWer:MARKer:STATe:FDD?”);
GetData(DT_INT, DataLen, &DpowMarkerState);
2.9.4.8 SETup:DPOWer:MARKer:X:FDD
Command SETup:DPOWer:MARKer:X:FDD
Function
Set or Query the marker position (time slot tested index) of a trace in DPOW
measurement process.
Can been set and queried.
Setting
Type:int
Range:0 ~ value set by “SETup:DPOWer:STEPs:FDD”
Unit:None
Query
Type:int
Range:0 ~ value set by “SETup:DPOWer:STEPs:FDD”
Unit:None
Default 0
Programming
Example
// Set the marker position (time slot tested index) to “2”
SendGpibCmd(“SETup:DPOWer:MARKer:X:FDD 2”);
// Query the current marker position (time slot tested index).
SendGpibCmd(“SETup: DPOWer:MARKer:X:FDD?”);
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GetData(DT_INT, DataLen, &DpowMarkerXaxis);
2.10 FDD Fast Power Calibration (FPC)
2.10.1 INITiate:FPCalibrate:FDD
Command INITiate:FPCalibrate:FDD
Function
Start a FDD Fast Power Calibration measurement to get the UE TX burst power trace in
WCDMA UE calibration scenario using RF list feature of the test set.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“INITiate:FPCalibrate:FDD”);
2.10.2 ABORt:FPCalibrate:FDD
Command ABORt:FPCalibrate:FDD
Function Stop and quit the FPC measurement.
Control Command, neither been set or queried.
Setting None
Query None
Default None
*RST Setting Quit this meassurement
Programming
Example
SendGpibCmd(“ABORt:FPCalibrate:FDD”);
2.10.3 Get results of FDD Fast Power Calibration
2.10.3.1 FETCh:FPCalibrate:TRACe:FDD
Command FETCh:FPCalibrate:TRACe:FDD
Function
Get the power trace result of the FPC measurement. There are 1000*2 numerical value, the
first 1000 numerical figure indicate time slot tested index, the last 1000 numerical figure
show the UE power of the time slots tested
Query Only.
Setting None
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Query
Type:float,size: 1000*2
Range:None
Unit:subframe,dBm
Default None
*RST Setting Set all value results to 0;
Programmin
g Example
SendGpibCmd(“FETCh:FPCalibrate:TRACe:FDD?”);
GetData(DT_FLOAT, DataLen, &FetchApcTrace);
2.10.3.2 FETCh:FPCalibrate:BURSt:COUNt:FDD
Command FETCh:FPCalibrate:BURSt:COUNt:FDD
Function Get the number of the bursts tested.
Query Only.
Setting None
Query
Type:int
Range:None
Unit:None
Default None
*RST Setting Set all value results to 0;
Programming
Example
SendGpibCmd(“FETCh:FPCalibrate:BURSt:COUNt:FDD?”);
GetData(DT_INT, DataLen, &FpcBurstCount);
2.10.4 Measeurement Config of FDD Fast Power Calibration
2.10.4.1 SETup:FPCalibrate:TIMeout:FDD
Command SETup:FPCalibrate:TIMeout:FDD
Function Set or Query the time interval of the FPC measurement timeout.
Can been set and queried.
Setting
Type:int
Range:1 ~ 20
Unit:s
Query
Type:int
Range:1 ~ 20
Unit:s
Default 20
*RST 20
Programming
Example
// Set the FPC time interval of the FPC measurement timeout to 10s.
SendGpibCmd(“SETup:FPCalibrate:TIMeout 10”);
// Query the current FPC time interval of the FPC measurement timeout.
SendGpibCmd(“SETup:FPCalibrate:TIMeout:FDD?”);
GetData(DT_INT, DataLen, &ApcTimeout);
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2.10.4.2 SETup:FPCalibrate:MARKer:STATe:FDD
Command SETup:FPCalibrate:MARKer:STATe:FDD
Function Set or Query the state of the marker function in FPC is ON or OFF.
Can been set and queried.
Setting
Type:choice
Range:ON / OFF | 1 / 0
Unit:None
Query
Type:choice
Range:1 / 0
Unit:None
Default 0
*RST Setting 0
Programming
Example
// Set the state of the marker function in FPC as “ON”.
SendGpibCmd(“SETup:FPCalibrate:MARKer:STATe:FDD ON”);
// Query the current the state of the marker function in FPC.
SendGpibCmd(“SETup:FPCalibrate:MARKer:STATe:FDD?”);
GetData(DT_INT, DataLen, &FPCMarkerState);
2.10.4.3 SETup:FPCalibrate:MARKer:X:FDD
Command SETup:FPCalibrate:MARKer:X:FDD
Function
Set or Query the marker position (burst/time slot tested index) of a trace in FPC
measurement process.
Can been set and queried.
Setting
Type:int
Range:0 ~ 1499
Unit:None
Query
Type:int
Range:0 ~ 1499
Unit:None
Default 0
Programming
Example
// Set the the marker position (burst/time slot tested index) to “2”
SendGpibCmd(“SETup:FPCalibrate:MARKer:X:FDD 2”);
// Query the current marker position (time slot tested index).
SendGpibCmd(“SETup:FPCalibrate:MARKer:X:FDD?”);
GetData(DT_INT, DataLen, &FPCMarkerXaxis);
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2.11 Get Measurement Implement State
2.11.1 INITiate:DONE
Command INITiate:DONE
Function
Query the current measurement implement state. If a “WAIT” has returned, it indicates the
measurement is running. IF the string returned is the current measurement name, it
indicates the measurement is finished. IF a “TIMEOUT” returned, it indicates the
measurement is timeout.
Query Only.
Setting None
Query
Type:string
Range:DPOW / ILPC/ WFPC / WPTS / WCW / WPVT / WBER / TIMEOUT / WAIT
Unit:None
Default None
*RST Setting NONE
Programming
Example
SendGpibCmd(“INITiate:DONE?”);
GetData(DT_CHAR, DataLen, InitDone);
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