In this paper, we reformulate the quasi-static spectral-domain approach, using the partial capacitance method (PCM), to compute the w/h and s/h dependent equivalent isotropic substrates corresponding to the anisotropic substrate asymmetric coplanar waveguide (ACPW), coplanar waveguide (CPW), micro-coplanar strip line (MCS), and microstrip line. We have used the closed-form dispersion relations over equivalent substrates to obtain the dispersion in these line structures. For this purpose, the ACPW and MCS structures are converted to the equivalent symmetrical CPW and the available closed-form dispersion model for the CPW is adapted to the ACPW and MCS structures. The dispersion results for these lines are compared against the results of the ...
This paper presents a comparative study of the losses of 4 commonly used planar transmission lines (...
WOS: A1996VB94800002CAD oriented analytic formulas are presented for calculating the quasistatic TEM...
In this paper, we describe the measurement and modeling of coplanar waveguide (CPW) transmission lin...
In this paper, we reformulate the quasi-static spectral-domain approach, using the partial capacitan...
In this paper, we reformulate the quasi-static spectral-domain approach, using the partial capacitan...
In this paper, we present the closed-form models of conductor thickness dependent dispersive line pa...
Microwave transmission lines with coplanar electrodes on dielectric or semiconductor substrates are ...
New analytical approximations are derived for the conductor losses of asymmetric coplanar waveguides...
WOS: 000165336000007Fast, accurate, and simple closed-form expressions are presented for calculating...
Fast and simple CAD-oriented analytical expressions for the characteristic impedance and the effecti...
The effect of a conductive substrate, such as silicon, on the attenuation of microstrip (MS) lines h...
In this study, fast and new analytical formulations have been presented for correct loss calculation...
A theoretical model is derived which predicts the critical frequency above which coupling between Co...
This paper investigates the effect of anisotropic substrate of printed circuit board (PCB) on the ch...
Abstract Among several methods used for designing microstrip‐like microwave and millimetre‐wave wave...
This paper presents a comparative study of the losses of 4 commonly used planar transmission lines (...
WOS: A1996VB94800002CAD oriented analytic formulas are presented for calculating the quasistatic TEM...
In this paper, we describe the measurement and modeling of coplanar waveguide (CPW) transmission lin...
In this paper, we reformulate the quasi-static spectral-domain approach, using the partial capacitan...
In this paper, we reformulate the quasi-static spectral-domain approach, using the partial capacitan...
In this paper, we present the closed-form models of conductor thickness dependent dispersive line pa...
Microwave transmission lines with coplanar electrodes on dielectric or semiconductor substrates are ...
New analytical approximations are derived for the conductor losses of asymmetric coplanar waveguides...
WOS: 000165336000007Fast, accurate, and simple closed-form expressions are presented for calculating...
Fast and simple CAD-oriented analytical expressions for the characteristic impedance and the effecti...
The effect of a conductive substrate, such as silicon, on the attenuation of microstrip (MS) lines h...
In this study, fast and new analytical formulations have been presented for correct loss calculation...
A theoretical model is derived which predicts the critical frequency above which coupling between Co...
This paper investigates the effect of anisotropic substrate of printed circuit board (PCB) on the ch...
Abstract Among several methods used for designing microstrip‐like microwave and millimetre‐wave wave...
This paper presents a comparative study of the losses of 4 commonly used planar transmission lines (...
WOS: A1996VB94800002CAD oriented analytic formulas are presented for calculating the quasistatic TEM...
In this paper, we describe the measurement and modeling of coplanar waveguide (CPW) transmission lin...