File:Elliptic Filter Response (4th Order, Detail).svg

Original file (SVG file, nominally 720 × 460 pixels, file size: 69 KB)

Description
English: The response of a 4-th order elliptic filter (detail of the transistion band). Also shown is the maximum extent of the passband ripples, where ε is the ripple factor and Ln is the discrimination factor.
Date
Source Own work
Author Inductiveload
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Public domain I, the copyright holder of this work, release this work into the public domain. This applies worldwide.
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Mathematica Code

xp2[zeta_] :=
  Module[{g, num, den},
   g = Sqrt[4*zeta^2 + (4*zeta^2*(zeta^2 - 1))^(2/3)];
   num = 2*zeta^2*Sqrt[g];
   den = Sqrt[8*zeta^2*(zeta^2 + 1) + 12*g*zeta^2 - g^3] - Sqrt[g^3];
   num/den
   ];
xz2[zeta_] := zeta^2/xp2[zeta];

t[zeta_] := Sqrt[1 - 1/zeta^2];

r1[zeta_, x_] := x;
r2[zeta_, x_] := ((t[zeta] + 1)*x^2 - 1)/((t[zeta] - 1)*x^2 + 1);
r3[zeta_, x_] := 
  x*((1 - xp2[zeta])*(x^2 - xz2[zeta]))/((1 - xz2[zeta])*(x^2 - 
        xp2[zeta]));
r4[zeta_, x_] :=
  Module[{num, den},
   num = (1 + t[zeta]) (1 + Sqrt[t[zeta]])^2*x^4 - 
     2 (1 + t[zeta]) (1 + Sqrt[t[zeta]])*x^2 + 1;
   den = (1 + t[zeta]) (1 - Sqrt[t[zeta]])^2*x^4 - 
     2 (1 + t[zeta]) (1 - Sqrt[t[zeta]])*x^2 + 1;
   num/den
   ];

ellgain[xi_, w_, w0_, ep_] := 1/Sqrt[1 + ep^2*r4[xi, w/w0]^2];

Plot[
 ellgain[1.05, w, 1, 0.5],
 {w, 0, 3}]

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29 January 2009

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Date/TimeThumbnailDimensionsUserComment
current05:49, 29 January 2009Thumbnail for version as of 05:49, 29 January 2009720 × 460 (69 KB)Inductiveload{{Information |Description={{en|1=a}} |Source=Own work by uploader |Author=Inductiveload |Date=2009/01/29 |Permission={{PD-self}} |other_versions= }} <!--{{ImageUpload|full}}--> Category:Elliptic filters

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