Analyze Waveform or Trace Data
2.
Push
Dual Wfm Math
.
Dual Wfm
Math
FFT
Advanced
Math
Spectrum
Math
(M) Label
3.
On the side menu, set the sources to either
channel
1
,
2
,
3
,
4
, or reference waveforms
R1
,
2
,
3
, or
4
. Choose the
+
,
–
,
x
, or
÷
operators.
4.
For example, you might calculate power
by multiplying a voltage waveform and a
current waveform.
Quick Tips
Math waveforms can be created from channel or reference waveforms or a combination of them.
Measurements can be taken on math waveforms in the same way as on channel waveforms.
Math waveforms derive their horizontal scale and position from the sources in their math expressions. Adjusting these
controls for the source waveforms also adjusts the math waveform.
You can zoom in on math waveforms using the inner knob of the Pan-Zoom control. Use the outer knob for positioning
the zoomed area. (See page 149,
Using Wave Inspector to Manage Long Record Length Waveforms
Using FFT
An FFT function breaks down signals into component frequencies, which the oscilloscope uses to display a graph of
the frequency domain of a signal, as opposed to the oscilloscope's standard time domain graph. You can match these
frequencies with known system frequencies, such as system clocks, oscillators, or power supplies.
1.
Push
Math
.
142
MDO3000 Series Oscilloscopes User Manual
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