02.02.2013 Views

1. First steps in Reaktor Core - Native Instruments

1. First steps in Reaktor Core - Native Instruments

1. First steps in Reaktor Core - Native Instruments

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

H.105. Oscillators > Quad Osc<br />

Generates a pair of phase-locked s<strong>in</strong>e waveforms with a phase shift of 90<br />

degrees. The F <strong>in</strong>put specifies the frequency <strong>in</strong> Hz.<br />

H.106. Oscillators > S<strong>in</strong> Osc<br />

Generates a s<strong>in</strong>e wave. The F <strong>in</strong>put specifies the frequency <strong>in</strong> Hz.<br />

H.107. Oscillators > Sub Osc 4<br />

Generates 4 phase-locked subharmonics. The fundamental frequency is specified<br />

by the F <strong>in</strong>put (<strong>in</strong> Hz). The subharmonic numbers are specified by S<strong>1.</strong>.<br />

S4 <strong>in</strong>puts (range <strong>1.</strong>.120). The Tbr <strong>in</strong>put controls the harmonic content of the<br />

output waveform (range 0..1).<br />

H.108. VCF > 2 Pole SV<br />

2-pole state-variable filter. The F <strong>in</strong>put specifies the cutoff <strong>in</strong> Hz and the Res<br />

<strong>in</strong>put specifies the resonance (range 0..0.98).<br />

The HP/BP/LP outputs produce highpass, bandpass and lowpass signals<br />

respectively.<br />

REAKTOR CORE – 191

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!