代码搜索:equalizer
找到约 546 项符合「equalizer」的源代码
代码结果 546
www.eeworm.com/read/154890/5633344
h fl_eq.h
//
// "$Id: Fl_Eq.H,v 1.1.1.1 2003/08/07 21:18:21 jasonk Exp $"
//
// Slider header file for the Fast Light Tool Kit (FLTK).
//
// Copyright 1998-1999 by Bill Spitzak and others.
//
// This library is
www.eeworm.com/read/381211/9103724
m fg_08_11.m
% fg_08_11 Sample sequences for equalizer design.
N=100; k=0:N-1;
s=[1,zeros(1,99)];
f=exp(-.1*k).*sin(.1*k*pi);
sp_fig(1,9,5.5);
stem(k,s,'-or'); grid on; hold on;
stem(k,f,'-ob');
set(gca,
www.eeworm.com/read/458161/7303060
m frit.m
%frit.m
%fse frequency response interpretation test
%crj jr, 7/01
clear
%channel specification
d=[1,0.8,1.665,1.8095,1.11207,1.0643,0.368,0.1696,...
0.0452,0.0127,0.001,0.0002]';
www.eeworm.com/read/205378/15317057
s app_table.s
.rdata
/*============================================================================*\
power spectrum meter data declare
\*--------------------------------------------------------------------
www.eeworm.com/read/205376/15317116
s app_table.s
.rdata
/*============================================================================*\
power spectrum meter data declare
\*--------------------------------------------------------------------
www.eeworm.com/read/278336/10544520
cpp decoder.cpp
#include
#include "maplay.h"
#include "decoder.h"
CDecoder::CDecoder()
{
m_hMad = NULL;
for (int i = 0; i < 10; i++) {
m_Equalizer.data[i] = 31;
}
m_Equalizer.preamp = 3
www.eeworm.com/read/273787/10901145
m sga.m
function [coeff, coeff_hist, abs_err] = sga(Desire, Red, NE, delay,
beta)
%
% function [coeff, coeff_hist, abs_err] = sga(Desire, Red, NE, delay,
beta)
%
% implements the Stochastic Gradi
www.eeworm.com/read/417673/10980723
m nonoise.m
% plot for noise-free situation
% Roger Jang, Aug-10-1995
% ============ plot 1: minimum phase
order1 = 2; % order of the equalizer
order2 = 3; % order of the channel
delay = 0; % delay of the
www.eeworm.com/read/467198/7019978
m nonoise.m
% plot for noise-free situation
% Roger Jang, Aug-10-1995
% ============ plot 1: minimum phase
order1 = 2; % order of the equalizer
order2 = 3; % order of the channel
delay = 0; % delay of the