ADDAC System ADDAC506 Manual de Usario

Lee a continuación 📖 el manual en español para ADDAC System ADDAC506 (4 páginas) en la categoría No categorizado. Esta guía fue útil para 4 personas y fue valorada con 4.5 estrellas en promedio por 2 usuarios

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ENVELOPE 1
ENVELOPE 2
ENVELOPE 3
ENVELOPE 4
WORKING DIAGRAM
ADDAC SYSTEM
FALLRISE
HOLD RISE & FALL MIN & MAX VALUES
ENVELOPES SUMMING MIX
MICRO CONTROLLER UNIT
ADDAC506
VC STOCHASTIC FUNCTION GENERATOR & Expansion SIGNAL FLOW DIAGRAM
July.2018
Revision.01
RISE RANDOM OUTPUT
FALL RANDOM OUTPUT
SELECTABLE
JUMPER
SELECTABLE
JUMPER
CV OUTPUT
RANDOM OUTPUT (Expansion)
GATE OUTPUT
SUMMING MIX CV OUTPUT
EOR (End of Rise)
EOF (End of Fall)
CONTROLS DIAGRAM
INITIAL KNOB
CV INPUT ATTENUVERTER KNOB
INPUTS MIX TO MCU
t t
AMPLITUDE OFFSET
CURVE
LOG / LIN
LOCK /
UNLOCK
RISE TIME
MINIMUM
RISE TIME
MAXIMUM
RISE TIME
MINIMUM
RISE TIME
MAXIMUM
OVERALL SPEED
MEDIUM /
HIGH /
LOW
LOOP /
ONESHOT
SLEW /
TRIGGER
ENVELOPES AVERAGE MIX AVERAGE MIX CV OUTPUT
TRIGGER RISE/FALL
RANDOM
(Expansion)
TRIGGER
GATE
ADDAC SYSTEM
ADDAC506
VC STOCHASTIC FUNCTION GENERATOR & Expansion FRONTPANEL DESCRIPTION
July.2018
Revision.01
RISE MIN & MAX
RISE Min defines the minimum rise time, RISE Max defines the maximum rise time
At every new input or loop the 506 will randomise a rise time in the range defined by the min and max values. If rise minimum is above
rise maximum then it will behave as a fixed control for Rise time.
The randomisation only happens at the start of the cycle, if you change the controls in the middle of a cycle nothing will happen until a
new cycle is triggered and the randomisation will be calculated from the new control settings.
The expansion Random input allows to Re-trigger a new randomization of these values at any point in time.
Same principle for FALL Min &Max.
There are CV inputs with dedicated attenuverters for all four RISE/FALL MIN/MAX controls.
Lock holds each channel RISE and FALL settings and prevents changes.
This allow for individual channel control, locking all channels and unlocking the one you want to work on, then lock it and unlock the
next… Very useful to make it a totally independent 4 channel envelope
ENVELOPE CURVE: LIN / LOG
the envelope curve adjustment from linear to the typical logarithmic rise and exponential decay
AMPLITUDE
The amplitude of the envelope, this is an attenuverter amplifier from -10V to +10V
so that the maximum range of the envelope is 10V pp. Center rest position is zero amplitude.
OFFSET
Offsets the overall envelope CV from -10 to +10V. Center rest position is zero offset
LEDS
monitor the envelope amplitude and polarity
MED / HIGH / LOW
defines the speed range of the envelope
LOOP / ONE SHOT
defines if the envelope self re-triggers when reaches the end of cycle
SLEW / TRIGGER
Slew works for any cv source as well as gates and triggers, it’s sort of a cv envelope follower as it follows the cv input as it changes.
Trigger (also accepts gate and cvs) allows to trigger 1 cycle of the envelope.
CHANNEL 1-4 SIGNAL IN
The input for each channel envelopes, cv, gates, triggers any input is good.
GATE OUT 1-4
These will output a Gate On while in the Rise part of the envelope.
OUTPUTS 1-4
the CV output envelope for each independent channel.
END OF RISE (EOR) 1 to 4
Every time the cycle reaches the end of Rise a trigger or gate will be outputted depending on the position of each channel jumper
setting.
END OF FALL (EOF) 1 to 4
Every time the cycle reaches the end a trigger will be outputted.
AVERAGE MIX OUT
An average CV calculated from all 4 channels outputs.
SUMMING MIX OUT
A sum of all 4 channel outputs
EXPANSION
RANDOM TRIGGERS INPUTS 1 to 4
These inputs allow to externally re-trigger the randomisation of the Rise & Fall times.
This allow to independently change the overall time of a channel in the middle of a cycle.
RANDOM CV OUTPUTS 1 to 4
These outputs the CV value used to control the RISE/FALL times.
A jumper allow to choose between the Rise or Fall random calculation.

Especificaciones del producto

Marca: ADDAC System
Categoría: No categorizado
Modelo: ADDAC506

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