This paper presents a full-wave model of the propagation along interconnects consisting of ideal conducting thin wires. It consists of two coupled differential-integral equations of the first kind with singular kernels and is solved applying the collocation method on staggered meshes. The solutions put on evidence high frequency effects due to spatial dispersion and radiation losses
The “standard” transmission line model describes accurately the propagation of electric signals alon...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
This paper presents a full-wave model of the propagation along interconnects consisting of ideal con...
This paper presents a full-wave model of the propagation along interconnects consisting of ideal con...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
Abstract—The paper presents a generalized transmission line model able to describe the high-frequenc...
Abstract—The paper presents a generalized transmission line model able to describe the high-frequenc...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
This paper presents a full-wave model of the propagation along interconnects consisting of ideal con...
This paper presents a full-wave model of the propagation along interconnects consisting of ideal con...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
Abstract – The paper deals with the inclusion of inhomogeneous dielectrics in a full-wave transmissi...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
The paper presents a generalized transmission line model able to describe the high-frequency mixed-m...
Abstract—The paper presents a generalized transmission line model able to describe the high-frequenc...
Abstract—The paper presents a generalized transmission line model able to describe the high-frequenc...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
The “standard” transmission line model describes accurately the propagation of electric signals alon...
The “standard” transmission line model describes accurately the propagation of electric signals alon...