8960综测仪 E5515C作业指导书
CDM测试方法指导ilentEC

C D M测试方法指导i l e n t E CThe latest revision on November 22, 2020技术文件技术文件名称:CDMA 1X移动台技术要求及测试方法指导(Agilent8960E5515C版)技术文件编号:版本:共 33 页(包括封面)拟制审核会签标准化批准目录1前言本文论述的测试仪器如无特指,默认为Agilent 8960系列的E5515C综合测试仪;所测试的手机如无特指,默认为cdma2000 1x;手机的频段类别为0,扩展速率集(SR)为1。
在后面所谈到的各个测试项,如无特别说明,则其起始环境为默认设置(启动或重起的设置)+频段选择,通过shift+Preset按键可以恢复默认设置。
进入默认设置的界面后,更改Cell Band为US Cellular(对应频段类别0),选择channel(测试呼叫信道)为283或384。
如果手机支持的话,还可以更改为其它的呼叫信道。
2移动台测试条件2.1标准环境测试条件常温测试应在下列条件的任意组合条件下进行温度:+15 至+35相对湿度:45%至75%大气压:86kPa 至106kPa2.2测试模式前向业务信道的验证通过调用基本信道测试模式、专用控制信道测试模式、补充码信道测试模式和补充信道测试模式来实现。
反向业务信道的验证通过调用基本信道测试模式、专用控制信道测试模式和补充信道测试模式来实现。
表1列出9种测试模式以及相应的无线配置。
表1应用环回业务选择(业务选择2或55)或Markov业务选择(业务选择54)建立呼叫可进入基本信道测试模式1。
应用环回业务选择(业务选择9或55)或Markov业务选择(业务选择54)建立呼叫可进入基本信道测试模式2。
应用环回业务选择(业务选择55) Markov业务选择(业务选择54)或测试数据业务选择(业务选择32)建立呼叫可进入基本信道测试模式3至9。
应用测试数据业务选择(业务选择32)建立呼叫可进入专用控制信道测试模式3至9以及补充信道测试模式3至9。
8960综测仪操作规程培训

图一 Originate Call
图二 GSM.4 Paging IMSI 手机与8960连接上后,会自识别出该手机的IMSI号
Paging IMSI
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04 操作规程
4.4.5 Handover Setup Handover Setup中可直接设置呼叫参数,包括GSM Handover Setup和GPRS Handover Setup,如图一所示 GSM Handover Setup:可直接设置GSM测量中TCH参数,效果同在TCH中逐项设置 Traffic Band,Traffic Channel,MS TX Level,Timeslot等参数效果是一样的,如图二所示。只是,在这里设置后按Handover Execute键 后直接一次执行。
8960综测仪操作规 程培训
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为正确使用和维护通信综合测试仪,规范通信综合测试仪的操 作,避免误操作和读数不正确等错误
02 检适验用的范范围围
适用于通信综合测试仪8960操作与管理
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本规程由工程部制定,由设备管理员监督,操作人员实施
Cell Band
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4.3.2设置业务信道参数(TCH Parameters) 测量GSM的时候才需要设置TCH Parameters,测量GPRS的时候只需设置PDTCH Parameters。如图4.5所示为设置业 务信道的界面的第1页。 Traffic Band:可选择PGSM, EGSM, DCS, PCS等常用频段,如图一所示。其中,DCS和PCS两频段之间不能直接进 行切换,需要在Handover setup中进行切换,其它频段之间可切换。 Traffic Channel:选择所用频带范围内的Channel。 MS TX Level:选择所用频带范围内的功率等级。 1 of 2:可切换到下一页,如图二所示为设置业务信道界面的第2页。 Timeslot:可选择0-7中任意一个时隙。 Timing Advance:可设置时间提前值,如果没有定时提前,位于小区边沿的用户突发脉冲信号将较晚到达基站并 破坏紧邻基站用户的信号。 Mobile Loopback:共有四个选项Off, TypeA, TypeB, TypeC,如图二所示。 Speech Setup:其中,Speech Source项如选择Echo,在测量时手机会发出嗡嗡的回声;选择None可去掉回声。 Speech Echo Loopback Delay可设置环回延迟时间,,如图三所示。
安捷伦综测仪E5515C 8960 使用手册 校准手册 Agilent 8960 E5515C

To perform the 8960 Operational Verification tests requires that the 10 MHztimebases be connected together. Connect the 10 MHz Reference Output of the 8960to the 10 MHz Ref In of the ESG E4433B. Connect the 10 MHz Ref Out of the ESG E4433B to the 10 MHz Ref In of the VSA E4406A with BNC cables.The RF In/Out Connector of the 8960 will be alternately connected to either the RF Out of the ESG E4433B (RX Test) or the RF Input of the VSA E4406A (TX Test) with a low loss Type-N cable.Agilent Technologies 8960Operational Verification (ManualProcedure)Test Equipment SetupUse the following procedure to manually test an 8960 that is running anE1960A GSM Test Application. A test record is included to assist incollecting test data. Make a copy of the test record to use.The test equipment required for 8960 Operational Verification is:ESG E4433B Digital Signal GeneratorVSA E4406A Transmitter Tester Manual Verification10 MHz Ref In10 MHzRef Out 10 MHzRef In 10 MHzRef OutRF In/OutESGE4433BVSA E4406A8960Audio InHi LF Out RF Out(RX Test)RF In (TX Test)Test Data Record for 8960 with E1960A GSM Test ApplicationFunctional Verification Expected Limit (Note 1)Pass Fail Analog Generator Level Accy ± 2.0 dBAnalog Generator Spectral PurityHarmonics ≤ -25 dBcSub-Harmonics ≤-40 dBcAnalog Audio Generator Accuracy ± 0.03VGSM GeneratorAmplitude Flatness ±.6 dBmPeak Phase Error (PGSM/EGSM) < ± 4 Deg(DCS/PCS) < ± 6 DegRMS Phase Error < ±2 Deg.Frequency Error (18 Hz) < ± .04 ppmAnalog Audio Analyzer Accuracy ± 0.04VAnalog Analyzer RF Power Meter ±1.6 dBmGSM Analyzer Frequency Measurement Accy. < ± 24 HzGSM Analyzer Residual Phase ErrorRMS Error < ±2 DegPeak Error < ± 8 DegGSM Analyzer PVT Accy Expected Limit (Note 1)Pass Fail PVT Offset 0usec and 542.8usec (0 dB) ± 2 dBPVT Offset -10usec ≤ 8 dBPVT Offset 552.8usec ≤ 8 dBGSM Analyzer ORFS Measurement Expected Limit (Note 1)Pass Fail ORFS Offset ± 100 kHz ≤-6 dBORFS Offset ± 200 kHz ≤ -33 dBORFS Offset ± 250 kHz ≤-38 dBORFS Offset ± 400 kHz≤ -67 dBORFS Offset ± 600 kHz ≤ -76 dBORFS Offset ± 800 kHz ≤-78 dBORFS Offset ± 1000 kHz ≤ -78 dBORFS Offset ± 1200 kHz ≤ -79 dBNote 1 - Expected test limit levels may vary according to test instrument source used. Expected limits listed may require modification.8960 Operational VerificationTest Record Manual Verification8960 Operational VerificationAnalog Generator Level Accuracy Analog Generator Level Accuracy is a test to insure that the 8960 can set a basic level and then step in 10 dB increments accurately.The expected limit is:RF Generator Output Level, RF In/Out (2 sources) - ± 2.0 dBThe current operating firmware in the 8960 does not allow manual operation ofamplitude or frequency using incremental steps for either Signal Generator 1 or 2; a PC with controlling software is required.Connect the 8960 RF In/Out Connector to the E4406A RF Input.On the 8960 press the ‘Local’ button and the ‘System Configure’ button .The GPIB address must be set to: 14Manual VerificationAnalog Generator Level Accuracy, cont.On the 8960 perform the following set up functions:1. Press the blue ‘SHIFT’ button and the ‘PRESET’button (frontpanel buttons not shown above).2. Press the display ‘Operating Mode’ button and set mode toTest using the knob.3. Press the display ‘Test Function’ button and set function toCW using the knob.4. Press the ‘RF Gen Freq’button and set frequency to 939 MHzusing the number keypad and the knob.5. Press the ‘RF Gen Power’button and set power to -10 dBmusing the number keypad and the knob.On the E4406A, press the ‘Preset’System button, the ‘MODE’Control button and set to ‘Basic’Mode .On the E4406A, press the ‘FREQUENCY’Control button and set the Center Frequency to 939 MHz.On the E4406A, press the ‘ZOOM’button, the ‘Marker’button, and the ‘Search’button. Select the ‘TRACE’screen button and set the trace to Spectrum Average.On the E4406A, press the ‘MEASURE’Control button.Step the 8960 down in amplitude in 10 dB increments to -80 dBm. Insure that each level step is accurate within ± 2 dB.On the 8960 perform the following set up functions:1. Press the ‘RF Gen Freq’button and set frequency to 1805.2 MHz.8960 Operational VerificationAnalog Generator Level Accuracy, cont.On the E4406A set Center Frequency to 1.8052 GHz. Step the 8960 down in amplitude in 10 dB increments to -80 dBm. Insure that each level step isaccurate within ± 2 dB.Manual Verification On the 8960 perform the following set up functions:1. Press the ‘RF Gen Freq’ button and set frequency to 1930.2 MHz .Analog Generator Level Accuracy, cont.On the E4406Aset Center Frequency to 1.9302 GHz. Step the 8960 down in amplitude in 10 dB increments to -80 dBm. Insure that each level step is accurate within ± 2 dB.Important Note:The 8960 contains 2 complete signal generator sources (these are very similar to the E4432/33B Signal Generator).The operating firmware of the 8960 only provides for operation of 1 source using the manual user interface (front panel) in the analog mode. It is not possible to test the second source in a analog mode using any manual method.However….the second source can be tested manually in a GSM transmit mode. See the test titled “GSM Generator Amplitude Flatness. Peak Phase Error, RMS Phase Error, and Frequency Error --- Source 2”in this section.Testing source 2 in an analog mode requires using the Verification Automated Software.Analog Generator Spectral PurityAnalog Generator Spectral Purity is a test to insure that the 8960 has harmonics and spurious signals within specification.The test is run by setting the 8960 to a carrier frequency of 300 MHz and power level of -10 dBm. Harmonics and spurious are checked at 450MHz, 600 MHz, 750 MHz, and 900 MHz. The expected limits are:Spectral Purity Harmonics - ≤ -25 dBcSub-Harmonics - ≤ -40 dBcNon-Harmonics - ≤ -55 dBc <1500 kHz≤ -68 dBc >1500 kHzThe current operating firmware in the 8960 does not allow manual operation of amplitude or frequency using incremental steps for either Signal Generator 1 or 2, a PC with controlling software is required.Connect the 8960 RF In/Out Connector to the E4406A RF Input.On the 8960 perform the following set up functions:1. Press the blue ‘SHIFT’ button and the ‘PRESET’button (front panel buttons notshown above).2. Press the display ‘Operating Mode’ button and set mode to Test using theknob. 3. Press the display ‘Test Function’ button and set function to CW using the knob. 4. Press the ‘RF Gen Freq’button and set frequency to 300 MHz using the number keypad and the knob.5. Press the ‘RF Gen Power’button and set power to -10 dBm using the number8960 Operational Verification Analog Generator Spectral PurityOn the E4406A, press the ‘Preset ’ System button, press the ‘Mode’ Control button and set to ‘Basic’ Mode.ManualVerification ON the E4406A make the following settings: Center Freq: 300 MHz Span: 10kHzPress the ‘ZOOM’ button, the ‘Marker’ button, and the ‘Search’ button. Select the ‘TRACE’ screen button and set the trace to Spectrum Average. The 8960On the E4406A set the center frequency to 450 MHz. Press the‘AMPLITUDE’button and set Ref Value to -50 dBm. The Sub-Harmonic expected limit is: ≤ -50 dBm.On the E4406A set Center Frequency to 600 MHz. The Harmonic expected limit is: ≤ -35 dBmOn the E4406A set the Center Frequency to 750 MHz. The Sub-Harmonic expected limit is: ≤ -50 dBmOn the E4406A set the Center Frequency to 900 MHz. The Harmonic expected limit is: ≤ -35 dBm .The Audio Generator test checks to insure that the 8960 has an audio sourcesignal with reasonable performance of accuracy.The test is run by setting the 8960 in the audio generator mode and looping anaudio signal from the Audio Out BNC connector to the Audio In Hi BNCconnector to measure level accuracy of the audio output. The audio generatorexpected limits are:Level Accuracy - ± 0.03VConnect the 8960 Audio Out Connector to the Audio In Hi Connector with a BNC cable.8960 Operational VerificationAudio Generator AccuracyBegin the test procedure by pressing the blue ‘SHIFT ’ button and RESET.ManualVerificationPress the Instrument Select button. Press the knob and activate theAudio Generator screen8960 Operational VerificationAudio Generator Accuracy,cont.Set audio amplitude to 1.414 V. Set audio frequency to 1 kHz.ManualVerificationThe Analog Audio measurement screen should appear. The8960 Operational VerificationAudio Generator Accuracy,cont.Manual VerificationPress the ‘Measurement Selection’ button. Use the knob and selectAnalog Audio, push the knob to start selection.8960 Operational Verification GSM Generator Amplitude Flatness, Peak Phase Error,RMS Phase Error, and Frequency ErrorSource 1GSM Generator tests check to insure that the 8960 has a GSM Digital signal within a reasonable specification.The test is run by setting the 8960 to a traffic channel of 30 and power level of -10 dBm. The E4406A is then set in a digital measurement mode and checks the 8960 GSM signal for Amplitude Flatness (PVT), Peak Phase Error, RMS Phase Error, and Frequency Error. The expected limits are:Amplitude Flatness - < ± .6 dBmPeak Phase Error - < ± 8 degrees in PGSM & EGSM Bands< ± 12 degrees in DCS and PCS BandsRMS Phase Error - < ± 2 degree in PGSM and EGSM BandsFrequency Error - < ± .04 ppm + TBManualVerificationOn the 8960 perform the following set up functions: 1. Press the blue ‘SHIFT’ button and the ‘PRESET’ button (front panel buttons not shown above).2. Press the display ‘Operating Mode’ button and set mode to Test using the knob.3. Press the display ‘Test Function’ button and set function to BCH + TCH using the knob.4. Press the ‘Broadcast Chan’ button and set the channel to 1 using the number keypad and the knob.Go to Screen 2 of 3. Set the Traffic Channel to 124 .8960 Operational VerificationGSM Generator Amplitude Flatness, Peak Phase Error,RMS Phase Error, and Frequency Error, Source 1 cont.ManualVerificationOn the E4406A set the Center Frequency to 959.8 MHz (channel 124). The Burst RF Spectrum should appear.On the E4406A, press the ‘MODE’Control button and set Mode field to GSM.On the E4406A, press the ‘AMPLITUDE’ Control button. Set ‘Scale/Div’ field to be .3 dB and the ‘Ref Value’ field to be -9 dBm. The display shown above should appear. The expected PVT limits are: <± .6 dB flatnessOn the E4406A, press the PVTbutton.8960 Operational VerificationGSM Generator Amplitude Flatness, Peak Phase Error,RMS Phase Error, and Frequency Error, Source 1 cont.On the E4406A, press the ‘Phase & Freq’ button. The display shown above should appear. The expected limits for Phase & Frequency are: Peak Phase Error - <± 4 Degrees in PGSM & EGSM Bands<± 6 Degrees in DCS and PCS BandsRMS Phase Error - <± 2 Degrees in PGSM & EGSM BandsFrequency Error - <± .04 ppm (18 Hz)ManualVerification8960 Operational VerificationGSM Generator Amplitude Flatness, Peak Phase Error,RMS Phase Error, and Frequency ErrorSource 2GSM Generator tests check to insure that the 8960 has a GSM Digital signal within a reasonable specification.The test is run by setting the 8960 to a traffic channel of 30 and power level of -10 dBm. The E4406A is then set in a digital measurement mode and checks the 8960 GSM signal for Amplitude Flatness (PVT), Peak Phase Error, RMS Phase Error, and Frequency Error. The expected limits are:Amplitude Flatness - < ± .6 dBmPeak Phase Error - < ± 8 degrees in PGSM & EGSM Bands< ± 12 degrees in DCS and PCS BandsRMS Phase Error - < ± 2 degree in PGSM and EGSM BandsFrequency Error - < ± .04 ppm + TBManual VerificationOn the 8960 perform the following set up functions:1. Press the blue ‘SHIFT’ button and the ‘PRESET’ button (front panel buttons not shown above).2. Press the display ‘Operating Mode’ button and set mode to Test using the knob.3. Press the display ‘Test Function’ button and set function to BCH+TCH using the knob.4. Press the ‘ Cell Power’ button and set power to -10 dBm using the number keypad and the knob.5. Press the ‘Cell Band’ button and set the cell band type to DCS using the knob.6. Press the ‘Broadcast Chan’ button and set the channel to 512 using the numberkeypad and the knob.Go to Screen 2 of 3. Set the Traffic Band to PGSM and the Traffic Channel to 124.Go to Screen 3 of 3. Set the expected burst to TSC0.On the E4406A set the Center Frequency to 959.8 MHz (channel 124). The Burst RF Spectrum should appear.On the E4406A, press the ‘MODE’ Control button and set Mode field to GSM.On the E4406A, press the ‘AMPLITUDE’ Control button. Set ‘Scale/Div’ field to be .3 dB and the ‘Ref Value’ field to be -9 dBm. The display shown above should appear. The expected PVT limits are: <± .6 dB flatnessOn the E4406A, press the PVTbutton.On the E4406A, press the ‘Phase & Freq’ button. The display shown above should appear. The expected limits for Phase & Frequency are:Peak Phase Error - <± 4 Degrees in PGSM & EGSM Bands<± 6 Degrees in DCS and PCS BandsRMS Phase Error - <± 2 Degrees in PGSM & EGSM BandsFrequency Error - <± .04 ppm (18 Hz)Begin the test procedure by pressing the blue ‘SHIFT ’button and RESET.8960 Operational Verification Analog Audio AnalyzerThe Analog Audio Analyzer is tested to insure that the 8960 can accurately measure an audio signal within a reasonable limit.The test is run by setting the 8960 into the Audio Analyzer measurementmode. The E4433B is then set to output an Audio signal on the LF Out connector at 1.414 Vp at a frequency of 1 kHz. The Analog Audio Measurement Accuracy expected limit is:Levels 10mv to 20V Peak - ± 0.04VFrequency 200 Hz to 8 kHzConnect a BNC cable between the E4433B LF Out connector and the 8960 Audio In Hi connector.Manual VerificationPress the ‘Measurement Selection’button. Use the knob and select Analog Audio, push the knob to start selection.The 8960 Analog Audio screen should display a voltage level measurement of the audio signal from the E4433B .The Analog Audio measurement expected limit is ± 0.04V8960 Operational VerificationAnalog Audio Analyzer, cont.Manual VerificationThe Analog Analyzer RF Power Meter is tested to insure that the 8960 can accurately measure an RF signal within a reasonable limit.The test is run by setting the 8960 into a manual measurement mode. The E4433B is then set to output a CW RF signal at various levels andfrequencies. The Analog RF Power Meter Accuracy expected limits are: Levels ≥ -20 to +43 dBM - < ± 1.60 dBFrequency 810 to 960 MHz8960 Operational Verification Analog Analyzer RF Power MeterManual VerificationBegin by connecting a cable between the RF Out port of the E4433B and the RF In/Out port of the 8960.939.000 000 0013.00FREQUENCY AMPLITUDE dBmEXT REF MHz RF ON ONMODSet the E4433B to output a signal at a frequency of 939 MHz,amplitude +13 dBm8960 Operational Verification Analog Analyzer RF Power Meter, cont.Manual VerificationOn the 8960 perform the following set up functions:1. Press the blue ‘SHIFT’ button and the ‘PRESET’button (front panel buttons notshown above).2. Press the display ‘Operating Mode’ button and set mode to Test using theknob.3. Press the display ‘Test Function’ button and set function to CW using the knob.Press ‘Measurement Selection’button and select ‘Transmit Power’asPress ‘Transmit Power Setup’button and set Trigger Source to ‘Immediate’.On screen 2 of 2 set Expected Power to +13.00 dBm. RF Power measurement Specification is < ± 1.63 dB.8960 Operational VerificationGSM Analyzer The GSM Analyzer is tested to insure that the 8960 can accurately measure a GSM burst signal within a reasonable limit.The test is run by setting the 8960 into GSM Analyzer manual measurementmode. The ESG E4433B is then set to output a GSM burst signal at +15 dBmamplitude. The GSM Analyzer Measurement Accuracy expected limits are:Frequency ErrorMeasurement Accy. - < ± 24 Hz + Time BaseResidual Phase ErrorMeasurement Accy RMS - < ± 2 DegreeMeasurement Accy. Peak - < ± 8 DegreesPower versus TimeRel. Measurement Accy at Time Offset - ± 2 dBORFSRel. Measurement Accy Freq. Offset - ± 3 dBBegin by connecting a cable between the RF Out port of the E4433B and the RF In/Out port of the8960. Set the E4433B to output a signal at a frequency of 939MHz, GSM On, Burst On or Framed Data, and amplitude +13 dBmManual Verification939.000 000 0013.00FREQUENCY AMPLITUDE dBm EXT REF MHz GSM ENVLP I /Q RF ON ON MOD GSMOff OnFramedData FormatPattern Configure TimeslotsData(N/A)Frame RepeatSingle ContFrame Trigger (N/A)More(1 of 2)GSM On Data Format: Framed Mod Type: MSK GSM: STANDARD Nxt Frame: Primary Data: PN23Repeat: Cont0Pol: NormalDiff Encode: On GSM Timeslot Pattern 12345670Bits/Symbol: 1SymRate: 270.8333ksps Filter: 0.300 Gaussian Chan: P-GSMBase 1I/Q Scaling: 100%CustomCustom Custom Custom Custom Custom Custom Off Off Off Off Off Off OffOn NormalGSM AnalyzerOn the 8960 perform the following set up functions:1. Press the blue ‘SHIFT’ button and the ‘PRESET’button (front panel buttons notshown above).2. Press the display ‘Operating Mode’ button and set mode to Test using theknob.Select screen 3 of 3. Set ‘Receiver Control’field to Manual. Set ‘Manual Freq’Press ‘Measurement Selection’button and select ‘Transmit Power’asthe Operating Mode. Transmit Power window should display a readingof approximately +13 dBmPress ‘Measurement Selection’button and select ‘Phase & Frequency Error’as the Operating Mode. Press ‘Phase & Frequency Setup’button. Select Multi-Measurement Count value to be 10. Close Menu to turn off the Setup window.The Phase and Frequency Error window should appear and displayaverage readings of Peak and RMSPphase error and Frequency error.The expected measurement limits are:Peak error is <± 8 Deg, RMS error is <±2 Deg, Frequency error is <±24 Hz.Press ‘Measurement Selection’button and select ‘Power vs. Time’as the Operating Mode. Press the ‘Power vs. Time Setup’button and then the‘Measurement Setup’button, set the Multi-Measurement Count value to be 10.Press ‘Return to PvT Control’button then press the ‘Change View’button.Press the ‘Numeric 1 of 2’button. The Power vs Time Numeric Screen 1 should appear. The expected limits are:0usec - 0dBc ±2dBc -10 usec - ≤ 8dBc8960 OperationalVerification GSM Analyzer, cont.Manual VerificationPress the ‘Numeric 2 of 2’button. The Power vs Time Numeric Screen 2 should appear. The expected limits are: 542.8usec - 0dBc ±2dBc 552.8usec - ≤ 8 dBc Note on measured values: Power versus Time measurements are depend on the accuracy of the source being measured. In the example above the E4433B had performance of -14 dBc at a 552.8 usec offset on the burst. Variation in burst timing can vary the offset in dBc greatly. This measurement is meant to show consistency between 8960 units using the same identical source for each unit tested.Press ‘Measurement Selection’button and select ‘Output RF Spectrum’as the Operating Mode. Press the ‘ORFS Setup’and then the ‘Measurement Setup’41Press ‘Return to ORFS Control’ button. Press ‘Change View’ button and select which modulation numeric screens to view by pressing either the ‘Modulation Numeric 1 of 3’ or the ’Modulation Numeric 2 of 3’ buttons..8960 Operational VerificationGSM Analyzer, cont.The ORFS measurement screen must be configured for offset frequency values to make a measurement. Press the ‘Modulation Frequencies’ button. Load the default frequencies into each offset by rotating the knob to each offset andpressing the ‘ON’ button. Load frequencies 100 kHz to 1200 kHz. Close the menu.Manual Verification42The expected ORFS measurement limits are: (example)ORFS Offsets ± 100 kHz - ≤ -6 dBORFS Offsets ± 200 kHz - ≤ -33 dBORFS Offsets ± 250 kHz - ≤ -38 dBORFS Offsets ± 400 kHz - ≤ -67 dBORFS Offsets ± 600 kHz - ≤ -76 dBORFS Offsets ± 800 kHz - ≤ -78 dBORFS Offsets ± 1000 kHz - ≤ -78 dBORFS Offsets ± 1200 kHz - ≤ -79 dBORFS Offsets > 1200 kHz - ≤ -80 dBNote: A measured value (example: -79 dB at 600 kHz) is dependent on theperformance of the source being measured. In this example a typical E4433B may have ORFS performance of -79 dB at 600 kHz from the carrier. The values may change however according to the source. The measured accuracy of a source should be consistent for every 8960 unit. The measurement done for this test ismeant to show test consistency between 8960 units using the same identical source for each unit tested.8960 Operational VerificationGSM Analyzer, cont.ManualVerification。
安捷伦8960综测仪操作指导

一,选择GSM或CDMA开机后进入主界面,选择“SYSTEM CONFIG”按钮,选择F3(Application Selection)后,选择F1(Application Switch),调节仪器上的旋转按钮,光标停留在需设置的项目上,按下旋转按钮,即选中项目,例如选择GSM。
图1. 选择“SYSTEM CONFIG”按钮图2.选择F3图3.选择F2 图4.选择CDMA或GSM一,GSM测试设置线路损耗补偿打开综测仪开关,进入到主界面,选择“SYSTEM CONFIG”按钮,选择“F5(RF IN/out Amptd offset)”,选择“F2(RF IN/OUT Amptd Offset)”,调节仪器上的旋转按钮,光标停留在需设置的项目上,按下旋转按钮,即选中项目,用仪器上的数字键设置数值,设置完成后,再次按下旋转按钮即完成设置。
例如:设置900MHz,1800MHz,1900MHz三个频点的传输损耗分别为-25dBm、-30 dBm、 -20 dBm图5.主界面图6. 选择“SYSTEM CONFIG”按钮图7. 选择F5按钮图8.选择F2按钮图9.旋转按钮图10.设置损耗值图11设置损耗值图12.按旋转按钮二,GSM连接设置按下仪器上“CALL SETUP”按键,然后按下按键“F 7(BCH)”,Cell power设为-60dBm,cell bard为EGSM(测试EGSM和DCS都可选择EGSM,测试PCS要选择PCS),按F12返回。
按下按键“F8(TCH)”,Traffic Band设为测试频带(EGSM,DCS,PCS),选择Traffic channel为所测试相关信道信号(EGSM为62,DCS为699,PCS为660)设置Ms Tx level(EGSM设为5,DCS,PCS 设为0)按F12返回图13.按“CALL SETUP”按键图14.连接设置三,GSM连接综测仪操作把终端放置到综测仪指定位置,打开终端TF测试卡内phone(GSM)软件,按下仪器上“CALL SETUP”按键,按左侧按键“F3 (Originate Call)”,综测仪向机器发出呼叫,仪器出现“Alerting”时,点击终端软件上“接听”选项,终端显示“已接听”,此时综测仪显示“Connected”,证明终端已经连接上综测仪。
安捷伦8960

E5515C仪器操作介绍及GSM手机测试相关操作8960是用于手机测试的综合测试仪,在统一的硬件平台E5515A/B/C上可以根据安装的软件不同,进行各种不同制式手机的综合测试。
在这一章里会介绍8960仪器操作的界面,按键,以及进行GSM手机测上图是E5515C的前面板。
按键F1到F6以及F7到F12是所谓的“软键“,它们分别在屏幕的两边,按下这些“软键”之后,就会执行按键位置对应的屏幕上所显示的内容,随着屏幕显示的不同,同一”软“键所对应的功能也不同,这就是为什么称之为”软“键的原因。
屏幕的中间将会显示我们所选择要显示的内容,目前的屏幕叫做”Call在E5515C的右侧是所谓的“硬”按键,它们都有自己的功能,这些功能标示在按键上。
在这些按键里,有三个按键的颜色略深,是“MEASUREMENT”(测试),“CALL SETUP”(呼叫设置),“SYSTEM CONFIG”(系统配置)。
按下之后将会同现E5515C的三种主屏幕。
在显示屏幕的下方还有一个硬按键,“measurement selection”(测试选手动操作用户界面–三个主要屏幕测试呼叫设置系统配置操作E5515C时主要是在三个屏幕里进行的,在测试屏幕里进行测试结系统配置按下SYSTEM CONFIG键之后就会出现系统配置界面,在这个界面里可以进行仪器的配置,测试软件的选择,输出口的选择,尤为重要的是,在这个界面里进行测试电缆、耦合器或是夹具的衰减补偿。
RF IN/OUT Amptd Offset Setup键,就会弹出一个幅度偏移设置菜单,可以在不同频率上对测试电缆、耦合器或是夹具产生的的衰减进行补测试应用(TA)是在E5515A/B/C平台上的软件,不同的TA针对不同制式的手机,一台E5515C上面可以有很多的TA,一旦需要对不同制式的手机测试时,就需要按Application Switch键,在弹出菜单里进行不同的TA上图介绍了如何快速地在不同制式手机测试软件里进行切换。
005绝缘电阻测试仪作业指导书

1 目的确保操作员正确、规范的使用1550C绝缘电阻测试仪的各项功能。
2 范围适用于本公司仪器设备操作员。
3 职责3.1 操作员能正确使用1550C绝缘电阻测试仪并能正确读出数据。
3.2 操作员会1550C绝缘电阻测试仪的一般保养。
3.3 操作员应了解1550C绝缘电阻测试仪的技术指标及准确度指标。
4 工作程序4.1 进行绝缘测试:1. 在打开测试机的情况下,设置可用测量参数以符合您的测试需求。
这些需求包括:• 测试电压- 设置范围:250 V 到10,000 V(50 V/100 V 步进)• 斜坡测试- 切换开关状态• 时间限制- 无限制或1 到99 分钟之间。
2. 将探头连接至被测电路3. 按住T 1 秒来启动绝缘测试。
测试机将在测试开始时嘟三次,并且X 将在显示屏上闪现,以指示测试端子上可能出现了危险电压。
显示屏将指示电路稳定后测量的绝缘电阻。
长条图将此数值持续(实时)地显示为趋势走向,请见图1550C绝缘电阻测试仪作业指导书发布日期:2014年9月15日操作注意事项连接电源时,请先连接通用测试导线,然后再连接通电测试导线;切断电源时,先切断通电测试导线,然后再切断通用测试导线。
• 测试完毕后,在端子的测试电压归零之前,请勿断开测试导线。
这样可以确保将任何充电的电容完全放电。
• 在测量电阻或电容之前,请断开电路电源并对所有高压电容放电。
• 请勿在潮湿环境中使用。
• 检查测试导线的绝缘是否损坏或导线金属是否裸露在外。
检查测试导线的连通性。
更换损坏的导线。
请勿使用看起来已损坏的测试机。
• 在以下电压值附近时请小心:> 30 V ac rms、42 V ac峰值或60 V dc。
这些电压有导致触电的危险。
• 请将手指握在探针护指装置的后面。
手机综测仪自校准作业指导书

目录1目的 (2)2适用范围 (2)3执行人员 (2)4自校准记录 (2)5综测仪校准内容 (2)5.1 综测仪E5515C的校准 (2)5.1.1 注意事项 (2)5.1.2 校准项及正常情况下自校准周期 (2)5.1.3 校准步骤 (3)5.2 综测仪CMU200自校准 (4)5.2.1 注意事项: (4)5.2.2 自校准周期 (4)5.2.3 自检方法及步骤: (4)5.3 综测仪MT8820 自校准 (5)5.3.1 注意事项 (5)5.3.2 自校准周期 (5)5.3.3 自校准步骤 (5)1目的确保ZTE 终端产品的生产稳定、有序进行,规范生产线操作,维护测试站的正常测试进程,为设备的管理,维护,操作提供依据,为生产线测试站的可靠性提供保障2适用范围本说明适用于手机产品体系主要移动电话机生产线测试站综合测试仪(E5515C/CMU200/MT88203执行人员由手机产品体系制造一、二部及康讯部件生产部手机测试车间技术员按照此说明操作或在技术员指导下的生产部测试站作业员执行此操作。
4自校准记录综测仪校准成功后,做好记录,注明操作人、时间,以备维护和下次自校准。
5综测仪校准内容5.1 综测仪E5515C的校准5.1.1注意事项1)校准前必须取下测试仪所有射频接口上RF线缆和转接头等;2)校准前要至少开机运行30 分钟以上;3)确认仪器是否需要校准,一般根据各自周期按时校准,如特殊情况,如有环境改变,增加新模块,维修过等情况,在使用前需要校准;4)温度变化超过10 度时需进行自校准。
5.1.2校准项及正常情况下自校准周期5.1.3校准步骤5.1.3.1 IQ 校准步骤:在WCDMA/ Cdma2000/IS-95/AMPS/1xEV-DO模块下,按SYSTEMCONFIG – More (1 of 2)-- Service (F7),先后选择“Cal. First IQModulator”和“Cal. Second IQ Modulator”校准。
安捷伦8960(E5515C)产品功能简要说明书

8960 Series 10 Wireless Communications Test Set – Mainframe, Applications, and Software
To accelerate the testing of wireless devices throughout design and manufacturing, use the Keysight Technologies, Inc. 8960 Series 10 wireless communications test set. The building blocks of the 8960 are an E5515 test set mainframe and mobile test applications (TAs) or lab applications (LAs). Test applications provide RF parametric measurements and base station emulation capabilities for all major 2G/3G/3.5G cellular technologies. Lab applications add a wide range of IP data test capabilities and support real-world testing of today’s hot applications such as data throughput, SMS/MMS, AGPS, simultaneous services, and more. Wireless Test Manager is a family of easy-to-use software which automates parametric measurements and basic call processing tests on the 8960. Wireless Test Manager runs on a Windows PC. Interactive functional test software automates real-world data application test on the 8960. Interactive functional test software runs on a Windows PC. This configuration guide describes how to configure a new 8960 test set for single or multiple wireless formats and lists the upgrades available for existing 8960 test sets.
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Q/ZX M 09-02.13.0106-2005检验文件检验文件名称:E5515C作业指导书检验文件编号:Q/ZX M 09-02.13.0106-2005版本:V1.0共 6 页(包括封面)拟制审核会签批准通讯股份有限公司手机事业部发布目次目次 (I)1开机 (1)1.1呼叫界面 (1)1.2选择测量项目 (1)1.3如何为测试系统配置测试仪配置仪器信息及设置 (2)1.3.1线损设置 (2)1.4终止呼叫 (2)1.5如何关闭一个测量项目 (3)1.6如何切换测试仪应用程序选择测试仪应用程序 (3)1.6.1切换测试仪应用程序 (4)2GSM篇 (5)2.1选择_Digital Transmit Power 数字发射功率测量: (5)2.2帧错误率测量: (5)2.3GSM Transmit Power 发射功率测量: (7)2.4调制开关谱: (9)2.5测量相位与频率误差 (11)2.6比特误码率测试: (13)3CDMA篇 (14)3.1测量波形质量 (16)3.2测量数字平均功率 (17)3.3测量信道功率 (18)3.4测量访问探测器功率 (18)3.5Waveform Quality波形质量 (19)3.6开环功率控制的时间响应 (19)3.7测量帧错误率(FER) (22)4附录A (23)4.1 A W G N 条件下前向业务信道性能要求 (23)4.1.1测试参数 (23)4.1.2性能要求 (25)5注意事项 (27)6维护保养 (28)7记录保存 (28)8校验周期 (28)修改记录E5515C作业指导书1开机1.1 呼叫界面1.2 选择测量项目灰色的方框表明正在进行测量但未显示结果黑色的方框表明邻近信道功率测量结果已经显示在下方的测量窗口中而频率调制测量结果显示在上方的测量窗1.3 如何为测试系统配置测试仪配置仪器信息及设置系统设置键(蓝色键)1.3.1线损设置1.4 终止呼叫Q/ZX M 09-02.13.0106-20051.5 如何关闭一个测量项目选择需取消的测试项目按30键(close)1.6 如何切换测试仪应用程序选择测试仪应用程序1.按下SYSTEM CONFIG(系统配置)键2.按下_Test Application (测试仪应用程序)F3键3.按下Test Application Switch (测试仪应用程序切换)F1键,等待出现Test Application (测试仪应用程序)、Revision (修订版本)、License (许可信息)菜单等信息。
显示该菜单前,会有短暂的停顿。
4.旋转旋钮突出显示某个测试仪应用程序的名称,并按下旋钮选择TA。
1.6.1切换测试仪应用程序1.旋转旋钮以突出显示Switch Now (立即切换)菜单中的YES2.按下旋钮以切换测试仪应用程序。
3.等待测试仪在新的测试仪应用程序中重起。
2GSM篇2.1 选择_Digital Transmit Power 数字发射功率测量:若要查看向移动台发送改变功率电平命令所造成的影响请按下_Dig MS TX Level调制准确度测量__ 按下_Modulation Accuracy Setup 调制准确度设置键按照测量情况的需要设定测量参数包括:Multi-Measurement Count = 20采用多次测量时的典型调制准确度结果如上所示。
多次测量计数非必需测试。
2.2 帧错误率测量:按下_Frame Error Rate Setup 帧错误率设置按下Graph (图形)F2键,访问峰相位误差图形。
2.3 GSM Transmit Power 发射功率测量:按下_Graph 显示图形功率及其对应时间图形菜单(一个上行链路脉冲串)2.4 调制开关谱:按下Switching Numeric显示数字开关谱按_Graph显示图形选项:表各个偏移量的条形以黄色显示中心频率以红色竖线表示按下_Switching 切换电平和偏移频率标记指示器由切换图形生成的典型如上所示。
在显示屏上代表各个偏移量的条形以蓝色显示,中心频率以红色竖线表示。
移动台测量输出调制开关谱图图形菜单2.5 测量相位与频率误差(测量项目选择)键选择_Phase & Frequency Error (相位与频率误差)测量_按下_Phase & Freq. Setup 相位与频率设置按照测量情况的需要设定测量参数包括:Measurement Timeout = 10 s典型的相位与频率误差测量结果如上所示按下_Change View 更改视图按下_Graph (图形)键访问峰相位误差图形典型的峰相位误差图形如上所示可通过按_Graph Control相位与频率误差图形菜单2.6 比特误码率测试:连接移动台打开移动台并等待_Active Cell:(活动信元)域中出现_Attached已连接注意对于不自动执行连接的移动台请将其设置为数据模式按下_Start Data Connection 开始数据连接并等待_Active Cell:(活动信元)域变为_Transferring正在传输按下(测量项目选择)键选择_Bit Error 误码测量。
按下_Bit Error Setup(误码设置)键按照测量情况的需要设定测量参数,包括Cell Power ; Cell Band ; Broadcast Chan。
3CDMA篇频率要求:频段类别0 的移动台的信道号和频率之间的关系见表1和表2。
用于频段类别0 的首选CDMA 频率集见表4,支持扩展速率集1 频段类别0 操作的移动台应在表2 所示的有效和有条件有效的信道上支持CDMA 操作。
一些指配的信道为无效信道而其它信道为有条件有效,如果邻近信道分配给相同的被许可人或已获得其它有效的授权则可使用有条件有效的信道。
公共信道项目设置业务信道项目设置1.Rvs Power ctrl项选择Active bits项2.Cell power 默认在-55dBm/1.23MHz3.Cell Band 选择手机制式如:CDMA2000选用us cellular 4.Channel 选择要测量的信道3.1 测量波形质量1.选择Waveform Quality/Code Domain (波形质量/代码域)测量Q/ZX M 09-02.13.0106-20053.2 测量数字平均功率1.选择Digital Average Power (数字平均功率)测量按下_Digital Average Power Setup (数字平均功率设置)键测量最大发射功率时CELL POWER 设为-104dBm ; Rvs Power ctrl项选择All up bits选项参数设置:3.3 测量信道功率测试最小受控功率时,CELL POWER 设为-25dBm , Rvs Power ctrl项选择All Down bits 参数设置:3.4 测量访问探测器功率1.按下CALL SETUP (呼叫设置)键。
2.按下End Call (终止呼叫)F3键。
3.选择Access Probe Power (访问探测器功率)测量。
、4.按下Register Mobile (注册移动台)键F6。
5.按照测量情况的需要设定测量参数6.按下Call Control (呼叫控制)显示屏左下侧的More 键,直至显示“2 of 2”为止。
按下Cell Info 信元信息 F2键,然后再按下Registration Parameters (寄存参数)键。
7.将Timer Based Registration State (基于定时器的寄存状态)设置为关闭。
红色的条显示的是功率电平黄色的条显示的是噪音级别3.5 Waveform Quality波形质量3.6 开环功率控制的时间响应定义:平均输入功率每变化一步,移动台的平均输出功率也将由于开环功率控制而发生变化。
本测试测量开环功率控制相对于平均输入功率每一步变化的响应时间。
测试方法1按照表70 设置测试参数,其中(Pilot Ec)/Ior和(Traffic Ec)/Ior的设置在Generator Info -> Code Channel Parameters中。
2如果移动台支持RC(无线配置)1、2、3、4 或5 的解调,根据测试选择Radio Config 为RC1或RC3。
3使用基本信道283或384建立呼叫,然后更改channel到测试信道。
4按照表70 设置测试参数,其中(Pilot Ec)/Ior和(Traffic Ec)/Ior的设置在Generator Info -> Code Channel Parameters中。
5选择Rvs Power Ctrl为Alternating bits。
6选择测试项Time Response of Open Loop Power Control。
7提高输入功率20dB,并测量输出功率,此输出功率作为该步输入功率变化后100ms时间的函数。
8降低输入功率20dB 并测量输出功率作为该步输入功率变化后100ms时间的函数。
9降低输入功率20dB 并测量输出功率作为该步输入功率变化后100ms时间的函数。
10提高输入功率20dB 并测量输出功率作为该步输入功率变化后100ms时间的函数。
指标平均输入功率每步变化∆Pin 之后,移动台的平均输出功率将向相反的方向发生变化,变化范围在下列限值之间,定义如下:(a)上限:对于0<t<24ms: max[1.2⨯ |∆Pin| ⨯ (t/24],|∆Pin|⨯ (t/24]+2.0dB]+1.5dB,对于t≥24ms: max[1.2⨯ |∆Pin|, |∆Pin| +0.5dB]+1.5dB(b)下限:对于t>0: max[0.8⨯ |∆Pin|⨯ [1-(exp(1.25-t))/36]-2.0dB,0]-1dB其中t 以毫秒为单位,∆Pin 以dB 为单位,max[x,y]为x 和y 中的最大值,图1 为∆Pin=20dB 时的上下限开环功率控制引起的平均输出功率变化的绝对值,应为时间的单调增加函数。
如果平均输出功率的变化是由离散增量组成开环功率控制引起的单独增量,将不超过1.2dB。
闭环功率控制的范围定义:移动台对于其开环估计应提供闭环调节,调节是作为有效接收的功率控制比特的响应,调节的范围是由移动台最大输出功率和开环估值之差与移动台最小输出功率和开环估值之差确定。
测试方法1如果移动台支持RC(无线配置)1、2、3、4 或5 的解调,根据测试选择Radio Config 为RC1或RC3。
2使用基本信道283或384建立呼叫,然后更改channel到测试信道。