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Moog Modular Model 15 Synthesizer

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Moog, MOD-SYS-15-01-01, Moog Modular Model 15 Synthesizer - Portable Design for Live Performance. Recreated fr...
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SKU 7R9aIBfXhAuG4imukkWKe6

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Moog modular model 15 synthesizer,MOD-SYS-15-01-01 - They are pumped-up in groups to a common 921A Oscillator Driver, which provides both exponential frequency control and rectangular width voltage controlLike the 921 Oscillator, this is one of the building blocks of analog synthesis. Potential drop controlled rectangular width is set by the knob in the upper center {left}, with accompanying voltage input jacks. At the introduction of a switch-to-ground {S-trigger} trigger signal from an external source, the 911 Envelope Generator produces a single voltage contour whose time/voltage variation is determined by potentiometers T1, T2, T3 and a time constant sustaining level pot {Esus}.

Includes Patch and Trigger Cables Manual adjustment to the Frequency and Width Of Rectangular Wave pots changes the nominal frequency and duty cycle of all connected 921B's in parallel. Two modes of gain response are available: linear and exponential;

Nominal frequency is set manually by the scale, coarse range, frequency and {octave} range controls found at the top of the module. Four waveforms are available: Sine, Triangular, Sawtooth, and Rectangular {with variable duty cycle}. They are pumped-up in groups to a common 921A Oscillator Driver, which provides both exponential frequency control and rectangular width voltage control;

Control inputs to this module change the frequency of its associated oscillators in volt/octave increments. Four waveforms are available: Sine, Triangular, Sawtooth, and Rectangular {with variable duty cycle}. This module functions as both an audio or control voltage generator;

Rugged Tolex-Encased Cabinet; 2 x 902 Potential drop-Controlled Amplifiers; The 902 Potential drop-Controlled Amplifier is a differential input and output circuit which gives an overall voltage gain of 2 {6dB} when the manual control potentiometer is at maximum {6}, or when a control voltage of 6 volts is applied to the control input.

Closure of the input trigger switch directs the voltage contour to T3 {final decay} regardless of what stage { T1, T2 or E} was in current operation. The 902 Potential drop-Controlled Amplifier is a differential input and output circuit which gives an overall voltage gain of 2 {6dB} when the manual control potentiometer is at maximum {6}, or when a control voltage of 6 volts is applied to the control input. The 904A Low Pass Filter attenuates frequencies above the fixed control voltage cutoff point at a rate of 24dB per octave.

1 x CP15 Console Panel; The 921 Potential drop-Controlled Oscillator is a variable waveform generator, which produces frequencies ranging from .01Hz to 40kHz. The basic cutoff frequency of the Low Pass Filter is determined by the combination of fixed control voltage and frequency range in addition to the control input signals.

Multiple frequency control inputs can be plugged into this module in parallel. DC Modulate is a linear frequency control input {does not conform to 1 volt/octave control voltage format}. External sources must be converted to the S-trigger format via the 961 Interface;

1 x 923 Random Noise/Filter; Two modes of gain response are available: linear and exponential; All waveform outputs can be used concurrently if desiredAll manual controls on this module can be moved or switched during operation.

Attenuators reduce the gain or amplitude of any applied input signal, control or audio. 2 x 902 Potential drop-Controlled Amplifiers1 x 904A Potential drop-Controlled Low Pass Filter1 x 907A Fixed Filter Bank2 x 911 Envelope Generators1 x 921 Potential drop-Controlled Oscillator1 x 921A Oscillator Driver2 x 921B Oscillators1 x 923 Random Noise/Filter1 x 995 Attenuator1 x CP15 Console Panel1 x 130 Watt 120 VAC Power Supply; The regeneration potentiometer {variable Q} varies the amount of internal feedback, creating a resonant peak at the cutoff frequency.

The 921A Oscillator Driver is a control voltage processor, which drives associated 921B oscillators through internally pumped-up connections {via edge connectors}. 921B Oscillators may be phase locked together via the Synch input jack and the associated three position Synch Switch. The overall range of the FCV pot is determined by the Frequency Range switch, which moves the frequency cutoff range in two-octave steps;

1 x 921 Potential drop-Controlled Oscillator; Moving clockwise from zero gain to unity with input, these attenuators can be used for reducing the effect of a control upon a voltage controlled module, providing up to three variable outputs from a single source input or reducing the gain of an entire signal complex; Maximum sum of control voltage {fixed control voltage and input jacks} is approximately 7.5 control volts, producing +4.7dB or gain of 3.

Moving clockwise from zero gain to unity with input, these attenuators can be used for reducing the effect of a control upon a voltage controlled module, providing up to three variable outputs from a single source input or reducing the gain of an entire signal complex; AC Modulate input is a capacitor-coupled circuit like the DC Modulate input, however, blocking constant DC voltages; Control inputs for frequency and rectangular width are summing;

The 907A Fixed Filter Bank is a non-voltage controlled modifier, which emphasizes or reduces the gain of the center frequency bands indicated on each of the eight center pots, in addition to the cutoff points set by low pass and high pass filters at either frequency extreme. Portable Design for Live Performance; The 921B Oscillator generates frequencies from 1Hz to 40kHz minimum.

The 921B Oscillator generates frequencies from 1Hz to 40kHz minimum. Two voltages are generated: one for frequency control and one for rectangular wave duty cycle. Both fixed and variable levels can be obtained from front panel output jacks.

Two voltages are generated: one for frequency control and one for rectangular wave duty cycle. 14 Hand-Made Modules; 1 x 904A Potential drop-Controlled Low Pass Filter;

Clamping point {waveform reset control} may be set with the lower left knob and accompanying trigger inputs to the left. The sum of the applied control voltages doubles the frequency of the cutoff point for each one-volt increase {volt per octave standardization}. The overall range of the FCV pot is determined by the Frequency Range switch, which moves the frequency cutoff range in two-octave stepsThe basic cutoff frequency of the Low Pass Filter is determined by the combination of fixed control voltage and frequency range in addition to the control input signals.

Parallel outputs are provided for both noise sources. This oscillator generates both sub-audio and audio frequencies for control and audio signal use. All manual controls on this module can be moved or switched during operation.

Two ranges are provided on the Frequency potentiometer: semitone {two octaves compass} and octave {12 octaves compass} These ranges are selected by the white switch below the Frequency potentiometer. 2 x 911 Envelope Generators; Pink noise displays equal amplitude/energy per octave.

A resultant lower frequency concentration for Pink Noise marks the difference between the two outputs, with white noise appearing in even intensity throughout the audio spectrum. 1 x 130 Watt 120 VAC Power Supply; The cutoff point {cutoff frequency} is voltage controlled through the control input jacks.

A sawtooth waveform is recommended for best synchronization results; A total of 10 overlapping LC networks are included; Two ranges are provided on the Frequency potentiometer: semitone {two octaves compass} and octave {12 octaves compass} These ranges are selected by the white switch below the Frequency potentiometer.

This oscillator generates both sub-audio and audio frequencies for control and audio signal use. A total of 10 overlapping LC networks are included; The two manual sweep filters, Low Pass and High Pass, are single pole {RC} circuits with a frequency cutoff slope of 6dB per octave;

The sum of the applied control voltages doubles the frequency of the cutoff point for each one-volt increase {volt per octave standardization}. Maximum sum of control voltage {fixed control voltage and input jacks} is approximately 7.5 control volts, producing +4.7dB or gain of 3. The Frequency pot at the top of the module has a two-octave range for fine-tuning, while the Range switch shifts the frequency of the oscillator in octaves, up or down.

Parallel outputs are provided for both noise sources. Control inputs for frequency and rectangular width are summing; Clamping point {waveform reset control} may be set with the lower left knob and accompanying trigger inputs to the left.

The Frequency pot at the top of the module has a two-octave range for fine-tuning, while the Range switch shifts the frequency of the oscillator in octaves, up or down. 1 x 921A Oscillator Driver; Number indications on the Range switch correspond to traditional organ pipe range notations.

1 x 995 Attenuator; The 904A Low Pass Filter attenuates frequencies above the fixed control voltage cutoff point at a rate of 24dB per octave. The White and Pink noise outputs of the 923 Random Noise/Filter module produces continuous bursts of random frequencies and waveshape throughout the audio spectrum.

The Envelope Generator requires an S-trigger to operate. DC Modulate is a linear frequency control input {does not conform to 1 volt/octave control voltage format}. Potential drop controlled rectangular width is set by the knob in the upper center {left}, with accompanying voltage input jacks.

The Envelope Generator requires an S-trigger to operate. Pink noise displays equal amplitude/energy per octave. AC Modulate input is a capacitor-coupled circuit like the DC Modulate input, however, blocking constant DC voltages921B Oscillators may be phase locked together via the Synch input jack and the associated three position Synch Switch.

Nominal frequency is set manually by the scale, coarse range, frequency and {octave} range controls found at the top of the module. 2 x 921B Oscillators; The 907A Fixed Filter Bank is a non-voltage controlled modifier, which emphasizes or reduces the gain of the center frequency bands indicated on each of the eight center pots, in addition to the cutoff points set by low pass and high pass filters at either frequency extreme.

Both fixed and variable levels can be obtained from front panel output jacks. Closure of the input trigger switch directs the voltage contour to T3 {final decay} regardless of what stage { T1, T2 or E} was in current operation. An increase in regeneration narrows and increases the strength of the cutoff frequency peak, while decreasing the amplitude of the lower frequencies;

Fixed level outputs for Sine, Triangle, Sawtooth and Rectangular waveforms are found at the right of the modules. Like the 921 Oscillator, this is one of the building blocks of analog synthesis. Number indications on the Range switch correspond to traditional organ pipe range notations.

This resonant peak will break into oscillation at clockwise settings of the regeneration pot, creating a voltage controlled sine wave generator. An increase in regeneration narrows and increases the strength of the cutoff frequency peak, while decreasing the amplitude of the lower frequencies; This resonant peak will break into oscillation at clockwise settings of the regeneration pot, creating a voltage controlled sine wave generator.

The fixed control voltage pot covers a 12-volt {octave} range. At the introduction of a switch-to-ground {S-trigger} trigger signal from an external source, the 911 Envelope Generator produces a single voltage contour whose time/voltage variation is determined by potentiometers T1, T2, T3 and a time constant sustaining level pot {Esus}. Phase locking capability is generally limited to the first six harmonics of the input signal.

External sources must be converted to the S-trigger format via the 961 Interface; All waveform outputs can be used concurrently if desired; The White and Pink noise outputs of the 923 Random Noise/Filter module produces continuous bursts of random frequencies and waveshape throughout the audio spectrum.

The cutoff point {cutoff frequency} is voltage controlled through the control input jacks. A resultant lower frequency concentration for Pink Noise marks the difference between the two outputs, with white noise appearing in even intensity throughout the audio spectrum. Control inputs to this module change the frequency of its associated oscillators in volt/octave increments.

1 x 907A Fixed Filter Bank; Recreated from the1974 Factory Specs; A sawtooth waveform is recommended for best synchronization results;

Multiple frequency control inputs can be plugged into this module in parallel. The 921A Oscillator Driver is a control voltage processor, which drives associated 921B oscillators through internally pumped-up connections {via edge connectors}. Phase locking capability is generally limited to the first six harmonics of the input signal.

The two manual sweep filters, Low Pass and High Pass, are single pole {RC} circuits with a frequency cutoff slope of 6dB per octave; Fixed level outputs for Sine, Triangle, Sawtooth and Rectangular waveforms are found at the right of the modules. The regeneration potentiometer {variable Q} varies the amount of internal feedback, creating a resonant peak at the cutoff frequency.

Attenuators reduce the gain or amplitude of any applied input signal, control or audio. The 921 Potential drop-Controlled Oscillator is a variable waveform generator, which produces frequencies ranging from .01Hz to 40kHz. This module functions as both an audio or control voltage generator;

The fixed control voltage pot covers a 12-volt {octave} range. Manual adjustment to the Frequency and Width Of Rectangular Wave pots changes the nominal frequency and duty cycle of all connected 921B's in parallel.


SKU

7R9aIBfXhAuG4imukkWKe6

Model

MOD-SYS-15-01-01

Brand

Moog

Weight Product (Kg)

0.454

MPN

MOD-SYS-15-01-01

SKU

7R9aIBfXhAuG4imukkWKe6

Model

MOD-SYS-15-01-01

Brand

Moog

Weight Product (Kg)

0.454

MPN

MOD-SYS-15-01-01
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