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These are inaudible and sometimes cause distortion in audio output devices \, or when converting to fixed-point soundfile formats. It is often desirable to filter an audio signal to remove its DC component. ; #X text 23 147 The simplest way to do this is to use a one-pole low-pass filter \, tuned to a low frequency such as 3 Hertz \, and to subtract its output from the original. This difference is called a one-pole \, one-zero high-pass filter \, and it is used so often that Pd provides one in the "hip~" object.; #X obj 38 354 +~ 1; #X obj 37 491 hip~ 5; #X text 100 491 high-pass filter; #X floatatom 86 450 5 0 0 0 - - -; #X msg 86 380 0; #X text 122 329 sinusoidal test signal; #X text 83 354 add "DC"; #X text 124 380 zero for no filtering; #X msg 86 403 3; #X text 121 404 3 (or so) to remove DC; #X text 126 427 higher freqencies affect; #X text 166 443 the audible part of; #X text 166 459 the signal as well.; #X obj 38 329 osc~ 220; #X msg 86 426 220; #X text 23 229 The simplest way to do this is to use a one-pole low-pass filter \, tuned to a low frequency such as 3 Hertz \, and to subtract its output from the original. This difference is computed by a one-pole \, one-zero high-pass filter. These are used so often that Pd provides one in the "hip~" object.; #X text 131 4 ONE-POLE \, ONE-ZERO HIGH-PASS FILTER; #X obj 126 569 tabwrite~ H02-graph; #X connect 2 0 26 0; #X connect 3 0 2 0; #X connect 9 0 10 0; #X connect 10 0 0 0; #X connect 10 0 0 1; #X connect 10 0 26 0; #X connect 12 0 10 1; #X connect 13 0 12 0; #X connect 17 0 12 0; #X connect 22 0 9 0; #X connect 23 0 12 0;