Wideband design of power dividers, T-junctions, and transitions based on groove gap waveguide (GGW) technology is presented in this paper with the goal to use these components in high-gain millimeter-wave antenna array design at 60-GHz frequency range. Since this GGW technology does not require electrical contact between the different metal layers of a complex 3-D waveguide structure, the fabrication cost and mechanical complexity are decreased. The designed T-junctions and different power dividers exhibit wide operational bandwidth and low output power and phase imbalance over the 60-GHz frequency band. Also, two transitions from GGW to a standard rectangular waveguide have been designed. To validate the performance of the designed compone...
In this paper, a high gain high efficiency 16×16-element slot antenna array is presented for 60 GHz ...
The millimeter wave frequency range has got a lot of attention over the past few years because it co...
This paper presents the design of a high efficiency corporate-fed 8×8-slot array antenna in the 60 G...
This paper deals with the design of low loss wideband power dividers based on groove gap waveguide (...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
In this paper, a high gain high efficiency 16 716-element slot antenna array is presented for 60 GHz...
The newly introduced gap waveguide technology offers non-contact waveguide configurations so that th...
This paper deals with the design of low loss wideband power dividers based on groove gap waveguide (...
This paper presents a wideband high efficiency slot antenna array based on ridge gap waveguide techn...
This communication presents a wideband aperture-coupled patch antenna array based on ridge gap waveg...
This paper deals with the design of patch antenna arrays with Ridge Gap Waveguides (RGW) feed networ...
An 8 78 slot array with high-efficiency andcorporate-fed single layer by ridge gap waveguide at 60-G...
This paper deals with the design of a 16x16 slot array antenna fed by inverted microstrip gap wavegu...
Two wideband vertical transitions from inverted microstrip gap waveguide to rectangular waveguide (W...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
In this paper, a high gain high efficiency 16×16-element slot antenna array is presented for 60 GHz ...
The millimeter wave frequency range has got a lot of attention over the past few years because it co...
This paper presents the design of a high efficiency corporate-fed 8×8-slot array antenna in the 60 G...
This paper deals with the design of low loss wideband power dividers based on groove gap waveguide (...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
In this paper, a high gain high efficiency 16 716-element slot antenna array is presented for 60 GHz...
The newly introduced gap waveguide technology offers non-contact waveguide configurations so that th...
This paper deals with the design of low loss wideband power dividers based on groove gap waveguide (...
This paper presents a wideband high efficiency slot antenna array based on ridge gap waveguide techn...
This communication presents a wideband aperture-coupled patch antenna array based on ridge gap waveg...
This paper deals with the design of patch antenna arrays with Ridge Gap Waveguides (RGW) feed networ...
An 8 78 slot array with high-efficiency andcorporate-fed single layer by ridge gap waveguide at 60-G...
This paper deals with the design of a 16x16 slot array antenna fed by inverted microstrip gap wavegu...
Two wideband vertical transitions from inverted microstrip gap waveguide to rectangular waveguide (W...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
In this paper, a high gain high efficiency 16×16-element slot antenna array is presented for 60 GHz ...
The millimeter wave frequency range has got a lot of attention over the past few years because it co...
This paper presents the design of a high efficiency corporate-fed 8×8-slot array antenna in the 60 G...