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Chapter 8
Multitone Waveform Generator
Creating, Viewing, and Optimizing Multitone Waveforms
4. Press Q Offset and turn the rotary knob to further reduce the carrier feedthrough level.
5. Repeat steps 3 and 4 until you have reached the lowest possible carrier feedthrough level.
6. On the spectrum analyzer, return the resolution bandwidth to its previous setting.
7. Turn on waveform averaging.
8. Create a marker and place it on the peak of one of the end tones.
9. Create a delta marker and place it on the peak of the adjacent intermodulation product, which should be
spaced 10 MHz from the marked tone.
10. Measure the power difference between the tone and its distortion product.
You should now see a display that is similar to the one shown in
Figure 8-6 on page 176
. Your optimized
multitone signal can now be used to measure the IMD products generated by a device-under-test.
Note that carrier feedthrough changes with time and temperature. Therefore, you will need to periodically
readjust your I and Q offsets to keep the signal optimized.
Figure 8-6
Minimized
Carrier
Feedthrough
Intermodulation
Distortion
Tone 1
Carrier
Feedthrough
Distortion
Tone 10
Summary of Contents for E8247C
Page 10: ...Contents x ...
Page 96: ...86 Chapter 4 Analog Modulation Configuring the LF Output ...
Page 142: ...132 Chapter 6 Custom Arb Waveform Generator Working with Filters ...
Page 178: ...168 Chapter 7 Custom Real Time I Q Baseband Working with Differential Data Encoding ...
Page 198: ...188 Chapter 10 Troubleshooting ...
Page 214: ...204 Chapter 10 Troubleshooting Returning a Signal Generator to Agilent Technologies ...