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/usr/lib/pd/extra/windowing/kaiser~-help.pd is in pd-windowing 0.1-2.

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#X obj 4 479 cnv 15 550 20 empty \$0-pddp.cnv.footer empty 20 12 0
14 -228856 -66577 0;
#X obj 4 -17 cnv 15 550 40 empty \$0-pddp.cnv.header kaiser~ 3 12 0
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#X text 168 40 formula:;
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#X msg 94 106 1;
#X obj 94 86 loadbang;
#X obj 102 365 pddp/pddplink http://en.wikipedia.org/wiki/Window_function
-text wikipedia: window functions;
#X obj 438 -14 import windowing;
#X msg 36 154 \; pd dsp 1;
#X text 21 125 height --->;
#X obj 127 149 sig~ 1;
#N canvas 0 0 450 300 graph3 0;
#X array \$0-kaiser 64 float 0;
#X coords 0 1 63 -1 200 140 1;
#X restore 326 65 graph;
#X text 103 396 Windowing functions are used with FFTs. These transform
the signal block-by-block into a spectral representation whose resolution
in both the frequency and time domains are proportional to their size
(as a power-of-two in PD). The different windows have different characteristics
in terms of stopband attenuation and noise bandwidth.;
#X text 102 258 SIGNAL: the height (amplitude) of the window is controlled
by the signal on its inlet.;
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#X floatatom 192 145 5 0 0 0 - - -;
#X obj 127 172 kaiser~;
#X obj 127 198 tabsend~ \$0-kaiser;
#X obj 435 6 pddp/pddplink http://wiki.puredata.info/en/kaiser~ -text
pdpedia: kaiser~;
#X text 169 84 modified Bessel function;
#X text 169 70 where Io is 0th order;
#X text 168 55 Io(a*sqrt(1-x^2))/Io(a);
#X text 103 327 SIGNAL: a kaiser (exponential decay) window with size=dsp
blocksize;
#X msg 121 106 10;
#X obj 102 379 pddp/pddplink http://en.wikipedia.org/wiki/Kaiser_window
-text wikipedia: kaiser window;
#X text 102 284 FLOAT: the narrowness of the kaiser window is controlled
by floats in the inlet;
#X text 15 6 description: generates a kaiser window for each dsp block
;
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