--------------------------------------------------------------------------
SCI Prophet VS ROM waves for the Waldorf Wave
--------------------------------------------------------------------------
converted for the Wave by Stefan Stenzel and Wolfram Franke
converted from the SCI Prophet VS to the MicroWave by Georg Mueller

The files VSWAVES1.WTB and VSWAVES2.WTB contain the ROM waves of the SCI Prophet VS
converted to User Waves and Wavetables for the Waldorf Wave. 

  VSWAVES1.WTB contains the VS waves 32 -  92
  VSWAVES2.WTB contains the VS waves 65 - 125

Have fun with the VS waves in your Wave. 

(c) Georg Mueller 1995, Darmstadt, Germany

Comments to <georg@nlp.physik.th-darmstadt.de>

--------------------------------------------------------------------------
Comment by Wolfram Franke
--------------------------------------------------------------------------
After loading the two wavetables in a Wave you should use them only as a
wave pool. If you want to use them, you should create a new wavetable and
put four of the VS waveforms in it, the first on position 01, the second
on position 31, the third on position 32 and the fourth on position 62.
Then you should program a sound where Wave 1 has access to the waves 01
to 31 and Wave 2 has access to waves 32 to 62 or so.

Questions to wmf@tsi-gmbh.de


--------------------------------------------------------------------------
Here is the file the supplier of the VS waves sent with the wave data.
--------------------------------------------------------------------------

> From: gints@prophet.esd.sgi.com (Gints Klimanis)
> Subject: available: Prophet VS wave data
>
> Prophet VS Wave data - 128 waves
>
> 32768 bytes = 128 cycles * 128 samples/cycle * 2 bytes/sample
> 16-bit signed integer
>
> Waves 0  .. 31 RAM memory and are actually of no value.
> Waves 32 ..127 ROM memory are standard wave set.
>
> Notable ROM waves:
>
> 32 cosine
> 33 sawtooth
> 34 square
> 46 thin pulse 1
> 47 thin pulse 2
>
>
> 126 silence
> 127 bogus entry, as this specifies Prophet VS noise generator
>
> Remember that single cycles themselves are not particularly 
> interesting.  Stacking, detuning and timbral animation via vector
> envlopes make the VS.  
>
> For convenience, I have left shifted the 12-bit data by 4 places to 
> align on a 16-bit boundary.  In other words, the 16-bit samples offer 
> no more information than the original 12-bit samples.  Soon, I will
> create 32-bit floating point wave cycles with more samples/cycle and 
> publish tables of harmonic amplitude and phases for each wave.
>
> Enjoy,
>
> Gints Klimanis


