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Kurzweil K2661 - Parameters (VC+Dist+1 Rotor 2)

Kurzweil K2661
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KDFX Reference
KDFX Algorithm Specications
10-123
Parameters (VC+Dist+1Rotor 2):
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VC+Dist+HiLoRotr gives you a model of the Hammond vibrato/chorus, distortion and the band splitting
for high and low frequency drivers. To pack all this into a two-PAU algorithm, a few sacrices had to be
made to the list of parameters for the rotating speaker model. So what’s missing? The resonance controls
for the low frequency driver are gone. There is no control of the acoustic beam width for the low driver.
The microphone panning is gone and there is a single microphone level control for the A and B
microphones. The distortion used is a smaller version of PolyDistort+EQ. Even with fewer features, this
algorithm gives a convincing Leslie effect while allowing space for more algorithms on other buses.
VC+Dist+HiLoRot2 makes different tradeoffs than VC+Dist+HiLoRotr. The distortion is the same as
used in Mono Distortion. This distortion uses more processor resources than the PolyDistort+EQ, so
VC+Dist+HiLoRot2 does not include the acoustic beam width control for either the high or low frequency
drivers. The signal ow is the same as for VC+Dist+HiLoRotr.
In Gain Off, -79.0 to 24.0 dB
In/Out In or Out Out Gain Off, -79.0 to 24.0 dB
VibChInOut In or Out Dist Drive 0.0 to 96.0 dB
Vib/Chor V1 DistWarmth 8 to 25088 Hz
Roto InOut In or Out Cabinet LP 8 to 25088 Hz
Gain Off, -79.0 to 24.0 dB
Rate -10.00 to 10.00 Hz
Size 0 to 250 mm
Tremolo 0 to 100%
Beam Width 45.0 to 360.0 deg
Mic A Pos -180.0 to 180.0 deg Mic B Pos -180.0 to 180.0 deg
Mic A Lvl 0 to 100% Mic B Lvl 0 to 100%
Mic A Pan -100 to 100% Mic B Pan -100 to 100%
Resonate 0 to 100%
Res Dly 10 to 2550 samp
Res Xcurs 0 to 510 samp
Res Phs 0.0 to 360.0 deg

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