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6 Measurement Optimization
6.5 Improvement of Phase Measurement Accuracy
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Fig. 6.9 Automatic Port Extension
6.5.4 Frequency Point Interval
1) Sample the data of discrete frequency points, connect each sampling point and form a trace on the screen.
2) If the phase deviation of two adjacent frequency points of the device is more than 180°, the displayed phase
slope will look like the reverse phase. This is caused by mixing as a result of insufficient data sampling.
If the group delay is measured but the phase slope is opposite, the symbol will be changed as a result of the group
delay. For example, Fig. 6.10 shows the measurement results of the surface acoustic wave (SAW) bandpass filter.
a) The first figure shows the measurement results of 51 points, and the group delay is negative. But this is
impossible in the actual situation, as the response will not be below the reference line (0s).
b) The second figure shows the measurement results of 201 points, and the group delay is positive, that is, the
response is above the reference line (0s).
Fig. 6.10 Influence of Frequency Interval on Phase Measurement
Prompt
Mixing check
In order to check mixing in measurement, you can check whether the display data change by reducing the
frequency interval. You can increase the number of frequency points or reduce the frequency interval to avoid
mixing.
6.5.5 Specific Operations
1) Compensation of linear phase deviation
Menu path:
[Response] > [Scale] > [Electrical Delay...]
.
Enter the required value in the
[Electrical Delay]
box or select the value with the arrow.
Enter the value in the
[Velocity Factor]
box or select the value between 0 and 1.0 with the arrow.
➢
1.0 corresponds to the light velocity in vacuum.
Содержание AV3672 Series
Страница 1: ...AV3672 Series Vector Network Analyzer User Manual China Electronics Technology Instruments Co Ltd...
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Страница 4: ...AV3672 Series Vector Network Analyzer Contents...
Страница 5: ......
Страница 124: ...5 Menu 5 1 Menu structure 120 5 1 2 Track Fig 5 2 Track Menu...
Страница 125: ...5 Menu 5 1 Menu structure 121 5 1 3 Channel Fig 5 3 Channel Menu...
Страница 126: ...5 Menu 5 1 Menu structure 122 5 1 4 Excitation Fig 5 4 Excitation Menu I...
Страница 127: ...5 Menu 5 1 Menu structure 123 Fig 5 5 Excitation Menu II...
Страница 128: ...5 Menu 5 1 Menu structure 124 Fig 5 6 Excitation Menu III...
Страница 129: ...5 Menu 5 1 Menu structure 125 5 1 5 Response Fig 5 7 Response Menu I...
Страница 130: ...5 Menu 5 1 Menu structure 126 Fig 5 8 Repsonse Menu II...
Страница 131: ...5 Menu 5 1 Menu structure 127 Fig 5 9 Response Menu III...
Страница 132: ...5 Menu 5 1 Menu structure 128 Fig 5 10 Response Menu V Fig 5 11 Response IV...
Страница 133: ...5 Menu 5 1 Menu structure 129 5 1 6 Calibration Fig 5 12 Calibration Menu...
Страница 134: ...5 Menu 5 1 Menu structure 130 5 1 7 Marker Fig 5 13 Cursor Menu I...
Страница 135: ...5 Menu 5 1 Menu structure 131 Fig 5 13 Cursor Menu II...
Страница 136: ...5 Menu 5 1 Menu structure 132 Fig 5 15Marker Menu III...
Страница 137: ...5 Menu 5 1 Menu structure 133 5 1 8 Analysis Fig 5 16 Analysis Menu I...
Страница 138: ...5 Menu 5 1 Menu structure 134 Fig 5 17 Analysis Menu II...
Страница 139: ...5 Menu 5 1 Menu structure 135 Fig 5 18 Analysis Menu III...
Страница 140: ...5 Menu 5 1 Menu structure 136 5 1 9 System Fig 5 19 System Menu I...
Страница 141: ...5 Menu 5 1 Menu structure 137 Fig 5 20 System Menu I...
Страница 254: ...8 Basis of Network Measurement 8 3 Amplifier Parameter Specifications 250...
Страница 257: ...8 Basis of Network Measurement 8 4 Complex Impedance 253...
Страница 366: ...Appendix Appendix 3 Frequency Offset Measurement 362 Fig 3 13 Test of Return Loss of Mixer LO Port...
Страница 373: ...Appendix Appendix 4 Pulse Measurement 369 Fig 4 9 Receiver gain configuration Dialog Box...