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A and B are outputs
X and Y are inputs
Z is threshold
Knob recorder enabled
Parameter Min Max Default
Description
0
0
3
0
Mode.
This algorithm processes the inputs with half-wave rectification
, in one of two different ways.
Equally useful for audio and CV manipulation, this allows you to split a bipolar signal into its
positive and negative sections, and to combine two different waveforms, using the positive part of
one and the negative part of the other.
For ease of explanation, assume first that the Z knob/CV is at zero.
If the mode (parameter 0) is 0: output A is the positive part of X, plus the negative part of Y. Output
B is the negative part of X, plus the positive part of Y.
If the mode is 1 or 2: the inputs are summed (mode 1) or subtracted (mode 2). Then output A is the
positive part of X±Y, and output B is the negative part of X±Y.
If the mode is 3: output A is the positive part of input X; output B is the positive part of input Y.
Z is a threshold control, allowing the various comparisons above to be against a non-zero value. So
for 'positive part' above read 'part where the value is more than Z' etc.
M-5 Stereo Filter
X is left input
Y is right input
A is left output
B is right output
Z is filter frequency
Knob recorder enabled
Parameter Min Max Default Description
0
0
2
0
Mode.
1
0
31
0
Resonance (Q).
A stereo filter, switchable between low-, band-, and high-pass (via parameter 0).
Parameter 1 sets the filter resonance.
20 https://en.wikipedia.org/wiki/Rectifier#Half-wave_rectification
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