Octave-Wcalc: bars_calc

bars_calc - Self and mutual inductance of a pair of parallel rectangular bars

SYNOPSIS

[L1, L2, M, k] = bars_calc(a, b, l1, d, c, l2, E, P, l3, freq)

PARAMETERS

INPUT PARAMETERS

  • a : Width of bar 1 (meters)
  • b : Thickness of bar 1 (meters)
  • l1 : Length of bar 1 (meters)
  • d : Width of bar 2 (meters)
  • c : Thickness of bar 2 (meters)
  • l2 : Length of bar 2 (meters)
  • E : Position of bar 2 in the width direction (meters)
  • P : Position of bar 2 in the thickness direction (meters)
  • l3 : Position of bar 2 in the length direction (meters)
  • freq : analysis frequency (Hertz)

OUTPUT VALUES

  • L1 : Bar 1 self inductance (Henries)
  • L2 : Bar 2 self inductance (Henries)
  • M : Mutual inductance (Henries)
  • k : Coupling coefficient

DESCRIPTION

Function to analyze the self and mutual inductances of two parallel rectanglar bars.

EXAMPLE

 % Width of bar #1
a=10e-6;
 % Thickness of bar #1
b=1e-6;
 % Length of bar #1
l1=1e-3;
 % Width of bar #2
d=10e-6;
 % Thickness of bar #2
c=1e-6;
 % Length of bar #2
l2=1e-3;
 % Position of bar #2 in the width direction
E=12e-6;
 % Position of bar #2 in the thickness direction
P=0;
 % Position of bar #2 in the length direction
l3=0;
 % 1 GHz operation
f=1e9;
[L1, L2, M, k] = bars_calc(a,b,l1,d,c,l2,E,P,l3,f);
disp(sprintf('L1=%g nH',L1*1e9));
disp(sprintf('L2=%g nH',L2*1e9));
disp(sprintf('M =%g nH',M*1e9));
disp(sprintf('k =%g',k));

SEE ALSO

air_coil_calc
air_coil_syn
coax_calc
bars_calc
coax_syn
coplanar_calc
coplanar_syn
coupled_microstrip_calc
coupled_microstrip_syn
coupled_stripline_calc
coupled_stripline_syn
ic_microstrip_calc
ic_microstrip_syn
microstrip_calc
microstrip_syn
stripline_calc
stripline_syn

AUTHOR

Dan McMahill

BUGS

None known

Please report any bugs on the Wcalc Sourceforge Project Page

Return to the Octave-Wcalc page.

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Copyright © 2001, 2002, 2004, 2005, 2006 Dan McMahill ALL RIGHTS RESERVED.