[Header] Info=Clavia Nord Modular patch file Version=Nord Modular patch 2.10 Name=FlipFlop Demo KbRangeMin=0 KbRangeMax=127 VelRangeMin=0 VelRangeMax=127 BendRange=1 PMMode=0 PMTime=0 Voices=12 Cable0=1 Cable1=1 Cable2=1 Cable3=1 Morph0=1 Morph1=1 Morph2=1 Morph3=1 Sustain=1 Retrig=0 [Voices] 0=4210752 1=4210752 2=4210752 3=4210752 4=4210752 5=4210752 6=4210752 7=4210752 8=4210752 9=4210752 10=4210752 11=4210752 [Module 1] Type=66 Name=Invertor Col=0 Row=8 P0=0 P1=127 P2=1 P3=127 P4=0 Im1=9 Ih1=64 Ic1=1 [Module 2] Type=8 Name=Oscillator 1 Col=0 Row=2 P0=64 P1=68 P2=64 P3=3 P4=0 P5=82 P6=0 P7=0 Im1=3 Ih1=1 Ic1=1 Im2=9 Ih2=64 Ic2=1 [Module 3] Type=8 Name=Oscillator 2 Col=0 Row=5 P0=64 P1=62 P2=64 P3=3 P4=0 P5=82 P6=0 P7=0 Im1=13 Ih1=64 Ic1=1 Im2=1 Ih2=64 Ic2=1 [Module 4] Type=19 Name=Oscillator Mix Col=1 Row=0 P0=88 P1=88 P2=127 Im0=2 Ih0=64 Ic0=0 Im1=3 Ih1=64 Ic1=0 [Module 5] Type=20 Name=Filter/Amp Env Col=1 Row=5 P0=2 P1=51 P2=98 P3=45 P4=76 P5=0 Im0=12 Ih0=64 Ic0=0 Im1=6 Ih1=65 Ic1=2 [Module 6] Type=1 Name=Keyboard Col=0 Row=0 [Module 7] Type=4 Name=2 outputs1 Col=1 Row=8 P0=115 P1=1 Im0=5 Ih0=65 Ic0=0 Im1=7 Ih1=0 Ic1=0 [Module 8] Type=43 Name=Switch Input Col=0 Row=15 P0=0 P1=0 [Module 9] Type=39 Name=Lag Col=0 Row=9 P0=119 Im0=11 Ih0=64 Ic0=0 [Module 10] Type=70 Name=FlipFlop Invert Col=0 Row=14 Im0=11 Ih0=64 Ic0=0 [Module 11] Type=53 Name=FlipFlop Col=0 Row=13 Im0=8 Ih0=64 Ic0=1 Im1=10 Ih1=64 Ic1=2 [Module 12] Type=92 Name=Filter Col=1 Row=1 P0=59 P1=32 P2=55 P3=93 P4=0 P5=3 Im0=5 Ih0=64 Ic0=1 Im2=4 Ih2=64 Ic2=0 [Module 13] Type=28 Name=LFOSlvC1 Col=1 Row=10 P0=64 Im0=3 Ih0=65 Ic0=3 [Module 14] Type=6 Name=Morph Col=1 Row=11 P0=0 P1=0 P2=0 P3=0 [Controllers] M1=14 P1=0 M66=8 P66=0 M127=14 P127=1 [Morphs] M0=2 P0=4 G0=0 D0=35 M1=3 P1=4 G1=0 D1=42 M2=4 P2=0 G2=1 D2=39 M3=4 P3=1 G3=1 D3=39 [Knobs] M0=7 P0=0 M1=13 P1=0 M3=12 P3=0 M4=12 P4=2 M5=8 P5=0 [Notes] Count=17 L0=FlipFlop Demo L1=Copyright 1998, Keith R. Crosley L2=krc@gehenna.com L3=http://www.gehenna.com/modular L4= L5=This patch demonstrates how to build a "flip/flop" switch using a sample & hold L6=module, an inverter, and a constant module. The flip/flop switch programming is in L7=the lower right part of the screen. L8= L9=The value of the "Switch Input" constant is assigned to Knob 6. Twist knob 6 back L10=and forth... everytime the it goes upward through zero, the "FlipFlop" sample & hold L11=module toggles between -64 and 64. This technique is more useful with switches -- in L12=my own studio, I use my E-mu E4K's "thumby" button (controller 66, also known as L13=sostenuto) to trigger the flip flop. Try assigning the switch input to a MIDI controlled L14=switch, if you have one. L15= L16=