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CopierMaschineHarrington 1200AutomatonnetzQuantermainQuadraturiaLow-rentsPiquedDialectic Ping PongViznutcracker, sweet!References
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CategoryI/O4 stage Analog Shift RegisterNeo-Riemannian transformationsNeo-Riemannian transforms on 5x5 grid4 channel QuantizerQuadrature Wavetable LFODual Lorenz attractorQuad triggerable envelopes (w/ Euclidean Mode)Quad triggerable bouncing ball simulationByte beats signal generatorsOutputs fixed reference voltages
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Left
Encoder
Main TurnSelect scale Root note transpose up or downSelect cell in the grid sequentially, row-wiseSelect channel
Increase or decrease frequency of master LFO
Increase or decrease frequency of selected generator
Select channel A to D
Select channel A to D to edit (all channels always active)
Select channel A to D to edit (all channels always active)
Select channel A to D to edit (all channels always active)
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Other TurnMove cursor in scale edit menu
Note in scale in scale edit mode
Note in scale in scale edit mode
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Main PressActivate scaleToggle display of note numbersToggle between grid or current cell settings
Increment channel by one
Toggle frequency control between Coarse and Fine control
Toggle currently selected generator frequency control
Toggle between menu settings and envelope visualisation
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Other PressAdd/remove note in scale edit menu
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Long PressReset to defaultsClear/reset grid
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Right
Encoder
Main TurnMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu itemsMove up and down through the menu items
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Other Turn +/- the value being edited; move scale "mask" +/- the value being edited +/- the value being edited +/- the value being edited +/- the value being edited +/- the value being edited
Move back and forth between envelope segments
Increase or decrease the value being edited
Increase or decrease the value being edited
Increase or decrease the value being edited
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Main PressToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit modeToggle between menu mode and value edit mode
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Other Press
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Long PressApp selection menuApp selection menuApp selection menuApp selection menuApp selection menuApp selection menuApp selection menuApp selection menuApp selection menuApp selection menu
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ButtonsUpTranspose up: one octave
Increment chord inversion by 1
Reset current cell to top-leftTranspose up: one octave
Increment frequency by 32
Increment frequency of selected generator by 32
Increase duration of envelope section by 32
Increase gravity by 32
Change equation up
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Up Long Press
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
Preview Screensaver
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DownTranspose down: one octaveDecrement chord inversion by 1Increment grid position by one clock stepTranspose down: one octave
Decrement frequency by 32
Decrement frequency of selected generator by 32
Decrease duration of envelope section by 32
Decrease gravity by 32
Change equation down
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Trigger
Input
TR1Clock inputReset to root triadClock/trigger input to increment steps on gridMappable trigger input for channel A-D
Reset phase (all LFOs)
Reset phase of generator 1
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for step mode A-D
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TR2Hold (freeze ring buffer)P transformArpeggiator clock (for arp/strm modes)Mappable trigger input for channel A-D
Freeze (all LFOs hold current value while high)
Reset phase of generator 2
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for step mode A-D
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TR3Transpose: Octave up, when highL transformMappable trigger input for channel A-D
Rest phase of both generators
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for step mode A-D
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TR4Transpose: Octave down, when highR transformIf high, inhibits arpeggiator clockMappable trigger input for channel A-D
Freeze (both generators hold while TR4 is high)
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for envelope A-D
Assignable Trigger Input for step mode A-D
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CV
Input
CV1Sample inRoot note transpositionRoot note transpositionMappable CV to be quantized for channel A-D
Master frequency
Frequency/speed of generator 1
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
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CV2Index: ring buffer index (= "delay")Mappable CV to be quantized for channel A-DWave shape
Rho or c parameter for generator 1
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
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CV3Mask: rotate scale maskMappable CV to be quantized for channel A-DShape spread
Frequency/speed of generator 2
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
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CV4Transpose: octave up/down (-4/+4)Chord inversionChord inversionMappable CV to be quantized for channel A-DCoupling
Rho or c parameter for generator 2
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
Assignable CV parameter (see notes)
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OutputAASR outputs 1Quantised rootQuantised root, arp, strum or trig
Output voltage for channel A
LFO channel A output
Mappable outputs from the two generators
Envelope A Out
Envelope A Out
Byte Beat A
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BASR outputs 2Transformed & inverted triadTransformed & inverted triad
Output voltage for channel B
LFO channel B output
Mappable outputs from the two generators
Envelope B Out
Envelope B Out
Byte Beat B
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CASR outputs 3Transformed & inverted triadTransformed & inverted triad
Output voltage for channel C
LFO channel C output
Mappable outputs from the two generators
Envelope C Out
Envelope C Out
Byte Beat C
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DASR outputs 4Transformed & inverted triadTransformed & inverted triad
Output voltage for channel D
LFO channel D output
Mappable outputs from the two generators
Envelope D Out
Envelope D Out
Byte Beat D
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ScreensaverDisplay"Arabesque" patterns, representing the pitch CVTriad as triangle on 12 point polygonTriad as triangle on 12 point polygon with last few steps4 lane piano roll style with octave triangleQuadrant rolling display of LFO 1-4Vectorscope with AB on left and CD on rightQuadrants with scrolling output and realtime envelope progressQuadrants with scrolling output and realtime envelope progressMy God, it's full of starsSame as Quantermain with millivolt number
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Other Settings and NotesScale:Current scaleTranspose:Shift root/triad in semitones
Grid Settings
ScaleCurrent scaleCoarse or FineCoarse: 0-255,Fine: each step into 256Freq 1Frequency/speed of generator 1, 0-255Envelope typeThe type of envelope (below)Gravityg, the acceleration due to gravity, 0-255EquationByte beat equation (see table below)OctaveSet the octave range. C0 is 0V, C1 is 1V etc
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Root:Root note for scaleRoot mode:Mode of root triad: Major or minordxMovement along x-axis per clockRootRoot note for scaleShapecontrols the shape of LFO1Freq 2Frequency/speed of generator 2, 0-255ADAttack-DecayBounce lossEnergy lost by the ball at each bounce 0-255hopeAtmospheric, hopefulSemitoneSet the semitone offset 1 increment is 83.333333mV
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Active Notes:"Scale mask" / active notesInversion:Chord inversion dyMovement along y-axis per clockActive notesscale mask / active notesShape spread
Offsets wavetable position between each Ch
Rho/c 1Rho or c for generator 1ADSRAttack-Decay-Sustain-ReleaseAmplitudeInitial amplitude (height) of the ball 0-255loveBubblyMod range octSet the number of octaves to automatically jump up or down
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Index:Ring buffer index (= "delay")Priority:Order of trigger input for PLR transformsModeMaj or minCV SourceExternal CV source (below)
Phase/frq spread
Offsets the phase/frequency between ChRho/c 2Rho or c for generator 2ADRAttack-Decay-Release: Can be used as a AHR/AHDVelocityInitial velocity of the ball 0-255lifeDeep, multilayeredMod rate (s)Set the rate in seconds at which the output jumps octaves
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Mult/Att:Multiply incoming CV by 0.1 - 2.0Output mode:Chord or tune (quantized output on A-D)OctTranspose up/down octavesCV1-CV4Assignable CV inputsCouplingsets the degree of PM “bleed” between Chout ASet A mappingASRAttack-Sustain-ReleaseTrigger input
Trigger input source (TR1 to TR4) for the current channel
ageArp rotator, choppy glitchy
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Trigger Delay:Sets the delay between triggersOutAOutput A mode (below)|||||||||||Turing Machine (LFSR)Freq range
sets the frequency range "vslow" to "vfast"
out BSet B mappingADSARLike ADSR envelope, but attack re-triggers after sustainHard resetOn: will reset to initial amplitude on trigger mid-bounceclysmBitWiz Transplant, radio tuning noisy
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rootoutputs root noteLgstcLogistic MapB freq ratio
sets the frequency ratio B/A at unity to 1/16
out CSet C mappingADARLike ADR envelope, but attack re-triggers after decay
CV Parameters
monkVocaliser, LFO like parameters, crunchy to sing songy
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trigoutputs a trig for each transformByteBByte BeatsC freq ratio
sets the frequency ratio C/A at unity to 1/16
out DSet D mappingAD loopAD envelope, loops when trigger is highOffCV not mappedNERVChewie, shepard tone like, insect
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arparpeggiates the current triadTrigger sourceSet trigger source (below)D freq ratio
sets the frequency ratio D/A at unity to 1/16
Output Mapping Options
ADR loopADR envelope, loops when trigger is highGravCV mapped to GravityTrurlTinbot, robotic vocal
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strmarpeggiates the triad onceTR1-TR4Assignable trigger inputsB XOR ACh B LFO bit-wise XORed with Ch A LFOLx1Generator 1 Lorenz attractor x valueADAR loopADAR envelope, loops when trigger is highBnceCV mapped to Bounce LossPirxMy Loud Friend, different flavors of noise
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ClrSets how the grid is cleared (below)contContinuous quantizationC XOR ACh C LFO bit-wise XORed with Ch A LFOLy1Generator 1 Lorenz attractor y valueTrigger inputspecifies which which trigger/gate (T1-T4) to useAmplCV mapped to Initial AmplitudeSnautA bit high-frequency, electrical to arpeggio
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zeroclears the gridClock divClock divider on trigger sourceD XOR ACh D LFO bit-wise XORed with Ch A LFOLz1Generator 1 Lorenz attractor z valueTr delay modesets the mode for the trigger delay (below)VelCV mapped to VelocityHariThe Signs, gated pattern
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rTfills with random transformsTrigger delayDelay between trigger and quantizationLx2Generator 2 Lorenz attractor x valueOffNo delayKrisLight Reactor, Alien spaceship
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rTevsets each cell's event to randTOctaveOctave transpositionLy2Generator 2 Lorenz attractor y valueQueueSubsequent triggers are added to queue, ignored once fullTichyAlpha, dissonant noise
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Per-cell settings
TransposeSemitone transpose, post-quantizeLz2Generator 2 Lorenz attractor z valueRingLike queue except once full it will replace final triggerBreggHooks, warm, organ like
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Trfm
Determines the transform applied (below)
FineFine tuning controlRx1Generator 1 Rössler attractor x valueTr delay countNumber of trigger delays that will be storedAvonWiderange, river rapids, waterfall
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@reset
CV Source Settings
Ry1Generator 1 Rössler attractor y valueTr delay msecsTrigger delay in milliseconds (0-999 ms)OracAbducted, echoes, X-files
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*no transformLFSR ModeRz1Generator 1 Rössler attractor z valueTr delay secsTrigger delay in seconds (0-64 s)Speed0 to 255. 255 equates to a 16.6 kHz sample rate
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OffsOffset in semitones applied when activeLFSR lengthLength of the LFSR 2-32Rx2Generator 2 Rössler attractor x valueEucl lengthLength of the Euclidean pattern (2-32 beats)Parameter 0The first adjustable parameter for equation
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InvInversion of the transformed triadLFSR pProbability that the LSB will flip on copyRy2Generator 2 Rössler attractor y valueEucl fill
Number of beats in the pattern that let triggers through
Parameter 1The second adjustable parameter for equation
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Muta
Mutation applied when leaving cell (below)
LFSR rangeThe range or span of notesRz2Generator 2 Rössler attractor z valueEucl offsetOffset of the Euclidean patternParameter 2The third adjustable parameter for equation
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nonenothing happensLFSR p CV srcAssignable CV input for LFSR probabilityLx1+Rx1Sum of G1 Lorenz x and G1 Rössler xHard reset
On: envelope will reset to zero on trigger mid-envelope
Loop mode
Phase accumulator loops between specific start and end
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rT__Random TransformLFSR rng CV srcAssignable CV input for LFSR note rangeLx1+Rz1Sum of G1 Lorenz x and G1 Rössler zGate highYes: Forces the trigger/gate to high
Loop begin ++
Coarse loop begin point, range 0-255
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r_O_Random Transpose
Logistic Map Mode
Lx1+Ly2Sum of G1 Lorenz x and G2 Lorenz yAttack shapeSets attack segment shape (see notes below)Loop begin +Medium loop begin point, range 0-255
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rTO_Random Transform and TransposeLogistic r
The r coefficient for logistic map equation
Lx1+Lz2Sum of G1 Lorenz x and G2 Lorenz zDecay shapeSets decay segment shape (see notes below)Loop beginFine loop begin point, range 0 - 255
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r__IRandom InversionLogistic rangeThe range or span of notesLx1+Rx2Sum of G1 Lorenz x and G2 Rössler xRelease shapeSets release segment shape (see notes below)Loop end ++Coarse loop end point, range 0-255
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r_OIRandom Transpose and InversionLog r CV srcAssignable CV input for r coefficientLx1+Rz2Sum of G1 Lorenz x and G2 Rössler zSegment shapeLoop end +Medium loop end point, range 0-255
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rTOI
Random Transform, Transpose, Inversion
Log rng CV srcAssignable CV input for note rangeLx1xLy1Bit-wise XOR of G1 Lorenz x value and G1 Lorenz yLinLinear (a straight line)Loop endFine loop end point, range 0 - 255
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Logistic seedThe seed value for logistic mapLx1xLx2Bit-wise XOR of G1 Lorenz x value and G2 Lorenz xExpExponentialTrigger input Select TR1 to TR4 for step mode
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Byte Beat ModeLx1xRx1
Bit-wise XOR of G1 Lorenz x value and G1 Rössler x
QuartQuarticStep mode
On: the phase accumulator is incremented on trigger. Off: Reset phase accumulator on trigger
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Bytebeat eqnSets the byte beat equationLx1xRx2
Bit-wise XOR of G1 Lorenz x value and G2 Rössler x
SineHalf a sine wave
CV Assignment Options
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Bytebeat rangeThe range or span of notesLedgeSquare wave with rounded cornersoffNo assignment
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Bytebeat P0Parameter 0 for the byte beat equationCliffsimilar to Ledge, but has a delay before risingeqnCV mapped to equation
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Bytebeat P1Parameter 1 for the byte beat equationGatePulse outputspdCV mapped to speed
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Bytebeat P2Parameter 2 for the byte beat equationBgDipBig dipper - has one large bumpp0CV mapped to Parameter 0
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Bb eqn CV srcAssignable CV input for ByteB equationMeDipMedium dipper - has a medium sized dipp1CV mapped to Parameter 1
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Bb rng CV srcAssignable CV input for ByteB rangeLtDipLittle dipper - has a little dipp2CV mapped to Parameter 2
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Bb P0 CV srcAssignable CV input for ByteB P0 valueWigglWiggles - lots of wigglesbeg++CV mapped to begin point coarse
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Bb P1 CV srcAssignable CV input for ByteB P1 valuebegCV mapped to begin point fine
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Bb P2 CV srcAssignable CV input for ByteB P2 valueend++CV mapped to end point coarse
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endCV mapped to end point fine
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