A transition from Microstrip to Ridge Gap Waveguide (RGW) has been studied and numerically analyzed in terms of S parameters. The RGW technology shows potential to be used up to THz frequencies. Therefore, good transitions are needed in order to make possible the measurements of RGW components at frequencies above 100 GHz
This paper presents a study of the characteristic impedance of a ridge gap waveguide. Ridge gap wave...
The paper describes the design methodology, experimentalvalidation and practical considerations of t...
This paper describes the design and realization of a transition from a microstrip line to a ridge ga...
A transition from Microstrip to Ridge Gap Waveguide (RGW) has been studied and numerically analyzed ...
A transition from Coplanar Waveguide (CPW) via capacitive coupling in order to provide feeding to th...
A new simple transition from a microstrip to gap waveguides has been proposed in this paper. The tra...
A transition from Coplanar Waveguide (CPW) via capacitive coupling in order to provide feeding to th...
This paper presents a vertical wideband transition between a standard WR-3.4 rectangular waveguide (...
This paper presents the design of microstrip-ridge gap waveguide using via-holes in printed circuit ...
This paper presents the design of a simple transition from ridge gap waveguide to coaxial line trans...
This paper describes the design and realization of a transition from a microstrip line to a ridge ga...
An evaluation of losses of the Ridge Gap Waveguide (r-GAP) at 100 GHz has been developed in terms of...
This article discusses three integration and packaging techniques for gap waveguides and monolithic ...
Gap waveguide technology is a new technology that is well suited for millimeter and submillimeter ap...
The ridge gap waveguide is a fundamentally new high-frequency waveguide. It does not need any electr...
This paper presents a study of the characteristic impedance of a ridge gap waveguide. Ridge gap wave...
The paper describes the design methodology, experimentalvalidation and practical considerations of t...
This paper describes the design and realization of a transition from a microstrip line to a ridge ga...
A transition from Microstrip to Ridge Gap Waveguide (RGW) has been studied and numerically analyzed ...
A transition from Coplanar Waveguide (CPW) via capacitive coupling in order to provide feeding to th...
A new simple transition from a microstrip to gap waveguides has been proposed in this paper. The tra...
A transition from Coplanar Waveguide (CPW) via capacitive coupling in order to provide feeding to th...
This paper presents a vertical wideband transition between a standard WR-3.4 rectangular waveguide (...
This paper presents the design of microstrip-ridge gap waveguide using via-holes in printed circuit ...
This paper presents the design of a simple transition from ridge gap waveguide to coaxial line trans...
This paper describes the design and realization of a transition from a microstrip line to a ridge ga...
An evaluation of losses of the Ridge Gap Waveguide (r-GAP) at 100 GHz has been developed in terms of...
This article discusses three integration and packaging techniques for gap waveguides and monolithic ...
Gap waveguide technology is a new technology that is well suited for millimeter and submillimeter ap...
The ridge gap waveguide is a fundamentally new high-frequency waveguide. It does not need any electr...
This paper presents a study of the characteristic impedance of a ridge gap waveguide. Ridge gap wave...
The paper describes the design methodology, experimentalvalidation and practical considerations of t...
This paper describes the design and realization of a transition from a microstrip line to a ridge ga...