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Implementing IIR/FIR Filters

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Figure 2-3<br />

Figure 2-4<br />

Figure 2-5<br />

Figure 2-6<br />

Figure 2-7<br />

Figure 2-8<br />

Figure 2-9<br />

Figure 2-10<br />

Figure 2-11<br />

Figure 2-12<br />

Illustrations<br />

Gain and Phase Response of Second-Order<br />

Lowpass <strong>IIR</strong> Filter 2-13<br />

DSP56001 Code and Data Structures for<br />

Second-Order Direct-Form Implementation<br />

of a Lowpass <strong>IIR</strong> Filter 2-14<br />

Direct-Form Implementation of Second Order<br />

Highpass <strong>IIR</strong> Filter and Analytical Formulas<br />

Relating Desired Response to Filter Coefficients 2-15<br />

Gain and Phase Response of Second-Order<br />

Highpass <strong>IIR</strong> Filter 2-16<br />

DSP56001 Code and Data Structures for<br />

Second-Order Direct-Form Implementation<br />

of a Highpass <strong>IIR</strong> Filter 2-17<br />

Direct-Form Implementation of Second-Order<br />

Bandstop <strong>IIR</strong> Filter and Analytical Formulas<br />

Relating Desired Response to Filter Coefficients 2-19<br />

DSP56001 Code and Data Structures for<br />

Second-Order Direct-Form Implementation<br />

of a Bandstop <strong>IIR</strong> Filter 2-20<br />

Gain and Phase Response of Second-Order<br />

Bandstop <strong>IIR</strong> Filter 2-21<br />

Direct-Form Implementation of Second-Order<br />

Bandpass <strong>IIR</strong> Filter and Analytical Formulas<br />

Relating Desired Response to Filter Coefficients 2-23<br />

DSP56001 Code and Data Structures for<br />

Second-Order Direct-Form Implementation<br />

of a Bandpass <strong>IIR</strong> Filter 2-24<br />

vi MOTOROLA

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