Filter Design Results

Generated by:   http://www-users.cs.york.ac.uk/~fisher/mkfilter

Summary

You specified the following parameters:

Results

Command line: /www/usr/fisher/helpers/mkfilter -Bu -Hp -o 2 -a 5.6689342404e-02 0.0000000000e+00
raw alpha1    =   0.0566893424
raw alpha2    =   0.0566893424
warped alpha1 =   0.0572963984
warped alpha2 =   0.0572963984
gain at dc    :   mag = 0.000000000e+00
gain at centre:   mag = 9.100194803e-01   phase =   0.5000000000 pi
gain at hf    :   mag = 1.286961891e+00   phase =   0.0000000000 pi

S-plane zeros:
	  0.0000000000 + j   0.0000000000	2 times

S-plane poles:
	 -0.2545611911 + j  -0.2545611911
	 -0.2545611911 + j   0.2545611911

Z-plane zeros:
	  1.0000000000 + j   0.0000000000	2 times

Z-plane poles:
	  0.7518476706 + j  -0.1978001002
	  0.7518476706 + j   0.1978001002

Recurrence relation:
y[n] = (  1 * x[n- 2])
     + ( -2 * x[n- 1])
     + (  1 * x[n- 0])

     + ( -0.6043997995 * y[n- 2])
     + (  1.5036953413 * y[n- 1])

Ansi ``C'' Code

/* Digital filter designed by mkfilter/mkshape/gencode   A.J. Fisher
   Command line: /www/usr/fisher/helpers/mkfilter -Bu -Hp -o 2 -a 5.6689342404e-02 0.0000000000e+00 -l */

#define NZEROS 2
#define NPOLES 2
#define GAIN   1.286961891e+00

static float xv[NZEROS+1], yv[NPOLES+1];

static void filterloop()
  { for (;;)
      { xv[0] = xv[1]; xv[1] = xv[2]; 
        xv[2] = next input value / GAIN;
        yv[0] = yv[1]; yv[1] = yv[2]; 
        yv[2] =   (xv[0] + xv[2]) - 2 * xv[1]
                     + ( -0.6043997995 * yv[0]) + (  1.5036953413 * yv[1]);
        next output value = yv[2];
      }
  }

Download code and/or coefficients:

Magnitude (red) and phase (blue) vs. frequency

For an expanded view, enter frequency limits (as a fraction of the sampling rate) here:

Lower limit: Upper limit:

Impulse response

Step response

For a view on a different scale, enter upper time limit (integer number of samples) here:

Upper limit:

Tony Fisher fisher@minster.york.ac.uk