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12-3
IM DL350-01EN
Binary Conversion (Bin (S1))
Using the specified threshold levels, you can convert the waveform assigned to Source to a digital waveform.
1
0
Upper
Lower
Math Source Waveforms (Source)
This setting is the same as that for basic arithmetic.
Upper and Lower Thresholds (Upper/Lower)
Set the upper and lower threshold values. All values above the upper threshold on the math source waveform
are converted to ones, and all values below the threshold are converted to zeros.
Phase Shift (Shift (S1))
You can shift the phase of the waveform assigned to Source, display the resulting waveform, and use the phase-
shifted data in computations.
Math Source Waveforms (Source)
This setting is the same as that for basic arithmetic.
Shift (Shift)
You can shift waveforms within the following ranges.
• When the Internal Clock Is Being Used as the Time Base
Selectable range: The time values between −(record length/2) points to (record length/2 points)
Step: 1 ÷ sample rate
The sample rate varies depending on the record length, Time/Div, and record time settings. For details, see
appendix 1, “Relationship between the Time Scale, Record Length, and Sample Rate” in the
Getting Started
Guide
, IM DL350-03EN.
• When an External Clock is Being Used as the Time Base
Selectable range: −(record length/2) points to (record length/2 points)
Step: 1
Frequency (FREQ(S1))
Calculates the frequency of the waveform that has been assigned to Source.
Math Source Waveforms (Source)
The options are the same as were described for basic arithmetic. However, you can select an input channel of
a logic module (select the channel, and then select the bit). You cannot select the input channel of a frequency
module.
Upper and Lower Limits (Upper/Lower)
Set the upper and lower threshold values.
The upper and lower limits are the same as
.
12 Computation Function