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4 Measurement Setting
4.5 Setting of Sweep
97
Fig. 4.13 Segment Insertion and Deletion
4) Editing of segment table
a) Double-click the [State] box of the segment and select “ON” or “OFF” to open or close the segment.
b) Double-click the [Start] box of the segment and enter the start frequency of the segment.
c) Double-click the [Stop] box of the segment and enter the stop frequency of the segment.
d) Double-click the [Points] box of the segment and enter the number of sweep points of the segment.
e) Double-click the [Power Level] box of the segment and enter the power level of the segment (the independent
power level option is opened).
f) Double-click the [IF Bandwidth] box of the segment and enter the intermediate frequency bandwidth of the
segment (the intermediate frequency bandwidth option is opened).
g) Double-click the [Sweep Time] box of the segment and set the sweep time (the independent sweep time option is
opened).
4.5.3 Sweep Time
After setting of measurement, the minimum sweep time will be adopted by the analyzer. The sweep time can be
increased to meet certain requirements of measurement. If the sweep time is set as 0, the minimum sweep time will
be adopted automatically by the analyzer. If the sweep is no less than 300ms, a sweep indicator will be displayed
on the analyzer, indicating the point-to-point measurement sweep. The measurement indicator is a small upward
arrow, showing the point at which measurement is just completed on the trace.
1) Setting of sweep time
Menu path:
[Stimulus] > [Sweep] > [Sweep Time...]
. The dialog box of
sweep time
will appear.
Enter the sweep time directly in the
[Sweep Time]
box. For setting of the sweep time with the keys and auxiliary
menu bar, directly enter the sweep time in the input toolbar.
Fig. 4.14 Setting of Sweep Time
4.5.4 Setting of Sweep
1) Sweep setting
Menu path:
[Stimulus] > [Sweep] > [Sweep Setup...]
. The
[Sweep Setup]
dialog box will appear.
Summary of Contents for AV3672 Series
Page 3: ......
Page 4: ...AV3672 Series Vector Network Analyzer Contents...
Page 5: ......
Page 124: ...5 Menu 5 1 Menu structure 120 5 1 2 Track Fig 5 2 Track Menu...
Page 125: ...5 Menu 5 1 Menu structure 121 5 1 3 Channel Fig 5 3 Channel Menu...
Page 126: ...5 Menu 5 1 Menu structure 122 5 1 4 Excitation Fig 5 4 Excitation Menu I...
Page 127: ...5 Menu 5 1 Menu structure 123 Fig 5 5 Excitation Menu II...
Page 128: ...5 Menu 5 1 Menu structure 124 Fig 5 6 Excitation Menu III...
Page 129: ...5 Menu 5 1 Menu structure 125 5 1 5 Response Fig 5 7 Response Menu I...
Page 130: ...5 Menu 5 1 Menu structure 126 Fig 5 8 Repsonse Menu II...
Page 131: ...5 Menu 5 1 Menu structure 127 Fig 5 9 Response Menu III...
Page 132: ...5 Menu 5 1 Menu structure 128 Fig 5 10 Response Menu V Fig 5 11 Response IV...
Page 133: ...5 Menu 5 1 Menu structure 129 5 1 6 Calibration Fig 5 12 Calibration Menu...
Page 134: ...5 Menu 5 1 Menu structure 130 5 1 7 Marker Fig 5 13 Cursor Menu I...
Page 135: ...5 Menu 5 1 Menu structure 131 Fig 5 13 Cursor Menu II...
Page 136: ...5 Menu 5 1 Menu structure 132 Fig 5 15Marker Menu III...
Page 137: ...5 Menu 5 1 Menu structure 133 5 1 8 Analysis Fig 5 16 Analysis Menu I...
Page 138: ...5 Menu 5 1 Menu structure 134 Fig 5 17 Analysis Menu II...
Page 139: ...5 Menu 5 1 Menu structure 135 Fig 5 18 Analysis Menu III...
Page 140: ...5 Menu 5 1 Menu structure 136 5 1 9 System Fig 5 19 System Menu I...
Page 141: ...5 Menu 5 1 Menu structure 137 Fig 5 20 System Menu I...
Page 254: ...8 Basis of Network Measurement 8 3 Amplifier Parameter Specifications 250...
Page 257: ...8 Basis of Network Measurement 8 4 Complex Impedance 253...
Page 373: ...Appendix Appendix 4 Pulse Measurement 369 Fig 4 9 Receiver gain configuration Dialog Box...