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C106 Dual Loopable VC AD Envelope & more

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DUAL LOOPABLE VC AD ENVELOPE & MORE

C106

ATTACK A

MIN

MAX

DECAY A

MIN

MAX

END A

OUT A

A-B OUT

END B

OUT B

BIPOLAR A

BIPOLAR B

A CV

GATE A

GATE B

LOOP

SINGLE

D SHAPE B

EXP

LOG

ATTACK B

MIN

MAX

DECAY B

MIN

MAX

AT SHAPE B

EXP

LOG

AB-A

AB-E

OFF

BA-E

D CV

A+D CV

A CV

D CV

A+D CV

D SHAPE A

EXP

LOG

AT SHAPE A

EXP

LOG

A+B OUT

LOOP

SINGLE

 

The 

C106 Dual Loopable VC AD Envelope & more 

it’s a really versatile module. It’s not only a Dual Voltage 
Controlled  Attack  /  Decay  envelope,  it’s  also  a  dual  VC 
LFO, an audio generator, a complex contour generator, a 
dual pulse delay, a voltage controlled AD envelope with 
adjustable delay and more….

 

The core of this module are two loopable voltage 

controlled  Attack  /  Decay  envelopes  that  can  be 
interconnected  in  different  ways  to  create  different 
functions.

Connection modes:

    1 - Two independent Attack / Decay envelopes ( single 
shot or looping )

    2 - Envelope A triggers the Envelope B after reach the 
end of the Attack phase

    3 - Envelope A triggers the Envelope B after reach the 
end of the Decay phase

    4 - Envelope B triggers the Envelope A after reach the 
end of the Decay phase

    5 - Envelope A triggers the Envelope B after reach the 
end of the Attack phase and Envelope B triggers Envelope 
A after reach the end of the Decay phase

    6 - Envelope A triggers the Envelope B after reach the 
end of the Decay phase and Envelope B triggers Envelope 
A after reach the end of the Decay phase

 

Each  envelope  has  four  manual  controls, 

Attack/Decay time and Attack/Decay shape, continuously 
variable from exponential to logarithmic. The A/D times 
can  be  voltage  controlled  using  the  three  available 
modulation  inputs,  one  for  the  Attack  time,  one  for  the 
Decay time and one that controls the Attack and Decay 
times simultaneously.

C106 Dual Loopable

VC AD Envelope & more

Содержание C106

Страница 1: ...E C106 ATTACK A MIN MAX DECAY A MIN MAX END A OUT A A B OUT END B OUT B BIPOLAR A BIPOLAR B A CV GATE A GATE B LOOP SINGLE D SHAPE B EXP LOG ATTACK B MIN MAX DECAY B MIN MAX AT SHAPE B EXP LOG AB A AB E OFF BA E D CV A D CV A CV D CV A D CV D SHAPE A EXP LOG AT SHAPE A EXP LOG A B OUT LOOP SINGLE ...

Страница 2: ...s to create different functions Connection modes 1 Two independent Attack Decay envelopes single shot or looping 2 Envelope A triggers the Envelope B after reach the end of the Attack phase 3 Envelope A triggers the Envelope B after reach the end of the Decay phase 4 Envelope B triggers the Envelope A after reach the end of the Decay phase 5 Envelope A triggers the Envelope B after reach the end o...

Страница 3: ...ope output 0 to 5V a bipolar output 5V an END pulse output outputs a short pulse every time the envelope reach the end of the Decay stage and a gate trigger input There are also another two common outputs with special functions A B output outputs the addition of the Envelope A and Envelope B This function is really useful to create complex envelopes A B output outputs the subtraction of the Envelo...

Страница 4: ... CV D CV A D CV D SHAPE A EXP LOG AT SHAPE A EXP LOG A B OUT LOOP SINGLE Attack Time CV input Attack Time control Decay Time Control Loop on off switch Decay Time CV input Attack Time CV input Attack Shape Attack Decay CV Input Decay Shape Attack Shape Decay Shape Attack Decay CV Input Attack Time CV input Env A Env B output Gate input Env B Bipolar Output Envelope B Output End B Pulse Output Loop...

Страница 5: ...DECAY A This control sets the Decay Time of the Envelope A The total Decay time is also dependent on the Decay Shape and the Decay CV Decay times without voltage control Exponential Decay from 4 ms to 10 s Logarithmic Decay from 37 ms to 94 s DECAY A MIN MAX AT SHAPE A This control defines the Envelope A Attack curve The Attack Shape is continuously variable from exponential to logarithmic D SHAPE...

Страница 6: ...without voltage control Exponential Decay from 4 ms to 10 s Logarithmic Decay from 37 ms to 94 s DECAY B MIN MAX AT SHAPE B This control defines the Envelope B Attack curve The Attack Shape is continuously variable from exponential to logarithmic D SHAPE B This control sets the Envelope B Decay curve The Decay Shape is continuously variable from exponential to logarithmic AT SHAPE B EXP LOG D SHAP...

Страница 7: ...epts positive and negative signals 5V A positive signal results in longer attack decay times and a negative signal results in shorter attack decay times GATE A Envelope A Gate input This input is used to starts the envelope The envelope is a AD type so it doesn t matter if the signal received is a gate or a trigger The envelope can be re triggered at every moment of the Decay phase if a Gate Trigg...

Страница 8: ...s the envelope The envelope is a AD type so it doesn t matter if the signal received is a gate or a trigger The envelope can be re triggered at every moment of the Decay phase if a Gate Trigger signal is received during the Attack phase this signal will be ignored END B End of Envelope B Pulse Out A short pulse will be delivered every time the Envelope B reach the end of the Decay Phase This pulse...

Страница 9: ...C106 Dual Loopable VC AD Envelope more 9 HTTP WWW CORSYNTH COM ATTACK DECAY RESPONSE CURVE Exponential Attack Linear Attack Logarithmic Attack Exponential Decay Linear Decay Logarithmic Decay ...

Страница 10: ...C106 Dual Loopable VC AD Envelope more 10 HTTP WWW CORSYNTH COM AB E MODE BA E MODE A B A B OUT A B OUT A B A B OUT A B OUT AB A MODE BA E MODE CONNECTION EXAMPLES ...

Страница 11: ...Moog unit Module Depth 56 mm 2 2 inches Power 15V 67mA 15V 68mA Power connectors Synthesizers com MOTM 4 pin Signal level Envelope 5Vpp 0V 5V Bipolar 10Vpp 5V TECHNICAL DATA 15V 5V GND 15V N C 15V 15V GND GND Synthesizers com MOTM IMPORTANT This module has two power connec tors Synthesizers com and MOTM Only one is needed to power the module Synthesizers com or MOTM Never connect both at the same ...

Страница 12: ...C106 Dual Loopable VC AD Envelope more 12 HTTP WWW CORSYNTH COM 0 1 2 3 4 5 6 7 8 9 10 ...

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