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1. First steps in Reaktor Core - Native Instruments

1. First steps in Reaktor Core - Native Instruments

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I.33. Oscillator > 4-Wave Mst<br />

Generates 4 phase-locked audio waveforms. The oscillator pitch is specified by<br />

the P <strong>in</strong>put (as a MIDI note number), can be modulated by the PM <strong>in</strong>put (<strong>in</strong><br />

semitones, exponential) and by the FM <strong>in</strong>put (<strong>in</strong> Hz, l<strong>in</strong>ear). The pulse width is<br />

specified by the PW <strong>in</strong>put (range –<strong>1.</strong>.0..1, affects only the pulse waveform).<br />

This oscillator can oscillate at negative frequencies and additionally offers a<br />

synchronization output for 4-Wave Slv oscillator.<br />

I.34. Oscillator > 4-Wave Slv<br />

Generates 4 phase-locked audio waveforms. The oscillator pitch is specified by<br />

the P <strong>in</strong>put (as a MIDI note number), can be modulated by the PM <strong>in</strong>put (<strong>in</strong><br />

semitones, exponential) and by the FM <strong>in</strong>put (<strong>in</strong> Hz, l<strong>in</strong>ear). The pulse width is<br />

specified by the PW <strong>in</strong>put (range –<strong>1.</strong>.0..1, affects only the pulse waveform).<br />

This oscillator can oscillate at negative frequencies and can be synchronized to<br />

another 4-Wave Mst/Slv oscillator. The SncH <strong>in</strong>put controls the synchronization<br />

hardness (0 = no sync, 1 = hard sync, 0…1 = various degrees of soft sync).<br />

A synchronization output for another 4-Wave Slv oscillator is also provided.<br />

REAKTOR CORE – 203

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