Title :
A dispersion formula satisfying recent requirements in microstrip CAD
Author :
Kobayashi, Masanori
Author_Institution :
Dept. of Electr. Eng., Ibaraki Univ., Japan
fDate :
8/1/1988 12:00:00 AM
Abstract :
A dispersion formula ε*eff(f)=ε* -{ε*-ε*eff(0)}/{1+( f/f50)m}, for the effective relative permittivity ε*eff(f) of an open microstrip line is derived for computer-aided design (CAD) use. The 50% dispersion point (the frequency f50 at which ε*eff(f50)={ε *+ε*eff(0)}/2}) is used a normalizing frequency in the proposed formula, and an expression for f50 is derived. To obtain the best fit of ε *eff(f) to the theoretical numerical model, the power m of the normalized frequency in the proposed formula is expressed as a function of width-to-height ratio w/ h for w/h⩾0.7 and as a function of w /h, f50, and f for w/h⩽0.7. The present formula has a high degree of accuracy, better than 0.6% in the range 0.1<w/h⩽10, 1<ε*⩽128, and any height-to-wavelength ratio h/λ0
Keywords :
circuit CAD; dispersion (wave); electronic engineering computing; permittivity; strip line components; strip lines; waveguide theory; computer-aided design; dispersion formula; effective relative permittivity; microstrip CAD; microwave circuit design; open microstrip line; Closed-form solution; Conducting materials; Current distribution; Cutoff frequency; Dispersion; Microstrip; Numerical models; Permittivity; Power transmission lines; Transmission line theory;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on