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-rw-r--r--externals/build/doc/highshelf.pd39
1 files changed, 0 insertions, 39 deletions
diff --git a/externals/build/doc/highshelf.pd b/externals/build/doc/highshelf.pd
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-#N canvas 310 193 620 455 10;
-#X obj 77 182 print;
-#X floatatom 77 114;
-#X floatatom 186 112;
-#X msg 360 117 \; paint 0;
-#X obj 159 175 filtgain;
-#X msg 91 138 bang;
-#X text 6 334 See also:;
-#X obj 72 335 bandpass;
-#X obj 139 336 notch;
-#X obj 195 337 lowpass;
-#X obj 247 336 highpass;
-#X obj 247 358 equalizer;
-#X obj 72 357 highshelf;
-#X obj 139 357 lowshelf;
-#X obj 195 357 hlshelf;
-#X text 75 226 These filters are all controlled by a bandwidth which is expressed in octaves. A bandwidth of 100 is equivalent to one octave.;
-#X text 358 25 click first;
-#X text 208 159 click on filtgain to view frequency plot;
-#X text 6 393 (C) Guenter Geiger 2000;
-#X text 75 92 frequency;
-#X text 75 268 Attention \, only the left inlet triggers new coefficients for biquad~;
-#X floatatom 129 113;
-#X text 138 92 gain;
-#X text 71 26 ==============================================;
-#X text 186 91 slope (0 - 100);
-#X text 76 12 Highshelf coefficients for biquad~;
-#X obj 77 160 highshelf 5000 70 100;
-#X obj 30 113 r doit;
-#X msg 360 45 \; pd dsp 1 \; paint 1 \; doit bang \;;
-#X connect 1 0 26 0;
-#X connect 2 0 5 0;
-#X connect 2 0 26 2;
-#X connect 5 0 26 0;
-#X connect 21 0 5 0;
-#X connect 21 0 26 1;
-#X connect 26 0 0 0;
-#X connect 26 0 4 0;
-#X connect 27 0 26 0;