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X is signal
Y is frequency shift
Z is frequency shift
A & B are signal outputs
Parameter Min Max Default
Description
0
0
3
1
Range.
1
0
1
0
B mode.
2
0
1
1
Include Z.
This algorithm is a frequency shifter. Note that this is very different from a pitch shifter.
X is the audio input. A and B are the audio outputs.
The Y input controls the frequency shift. If parameter 2 is 1, the Z knob/CV is also added to the
total shift.
Parameter 0 sets the range of the shift CV, from 1Hz/Volt up to 1kHz/Volt.
Parameter 1 controls whether output B uses the same shift as output A or the opposite shift. Small
opposite shifts can give a pleasing chorus type sound.
N-8 Clockable SD Ping Pong
X is signal
Y is clock input
A & B are stereo audio outputs
Z is feedback
Tap tempo enabled
Parameter Min Max Default
Description
0
-15 8
0
Delay time multiplier.
1
0
8
8
Maximum feedback.
2
0
1
0
Output mode.
3
-32 32
-32
Input pan.
This is a ping-pong version of the Clockable SD Delay algorithm as described above.
Being stereo, the maximum delay time is halved, to a mere 48 minutes.
Please be sure to read the 'SD card requirements' box.
Outputs A & B are the left and right outputs respectively. If the output mode parameter is 0 (the
default), they are a mix of the dry (undelayed) signal and the delay effect. The amount of delay in
the mix rises in direct proportion to the amount of feedback. If the output mode parameter is 1, the
outputs are the delayed signals only. Use this and the input signal, plus an external mixer, if you
need more flexibility in the dry/wet balance than is offered by output mode 0.
Parameter 2 controls the left/right pan position of the input signal.
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