This paper deals with the design of patch antenna arrays with Ridge Gap Waveguides (RGW) feed networks at 60-GHz band. An array of 64 radiating elements are designed and simulated to demonstrate the good performance of the proposed array. The proposed antenna shows the gain up to 22.6 dBi, efficiency higher than 80% and an impedance bandwidth of 13% covering 59-67 GHz. The results are valuable for the design and evaluation of wideband planar antenna arrays at millimeter-wave frequencies
This paper presents the design of a high efficiency corporate-fed 8×8-slot array antenna in the 60 G...
Wideband design of power dividers, T-junctions, and transitions based on groove gap waveguide (GGW) ...
In this paper, a high gain high efficiency 16×16-element slot antenna array is presented for 60 GHz ...
This paper deals with the design of patch antenna arrays with Ridge Gap Waveguides (RGW) feed networ...
This communication presents a wideband aperture-coupled patch antenna array based on ridge gap waveg...
In this paper, a high gain high efficiency 16 716-element slot antenna array is presented for 60 GHz...
This paper presents a wideband high efficiency slot antenna array based on ridge gap waveguide techn...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
This communication presents a wideband aperture-coupled patch antenna array based on ridge gap waveg...
A wideband 2×2-slot element for a 60 GHz antenna array is designed by making use of two double-sided...
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...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
In this work, we present several gap waveguide planar array antennas for millimeter wave point to po...
The demand for high data rates and the unavailability of low-frequency bands have driven the need to...
This paper presents the design of a high efficiency corporate-fed 8×8-slot array antenna in the 60 G...
Wideband design of power dividers, T-junctions, and transitions based on groove gap waveguide (GGW) ...
In this paper, a high gain high efficiency 16×16-element slot antenna array is presented for 60 GHz ...
This paper deals with the design of patch antenna arrays with Ridge Gap Waveguides (RGW) feed networ...
This communication presents a wideband aperture-coupled patch antenna array based on ridge gap waveg...
In this paper, a high gain high efficiency 16 716-element slot antenna array is presented for 60 GHz...
This paper presents a wideband high efficiency slot antenna array based on ridge gap waveguide techn...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
This communication presents a wideband aperture-coupled patch antenna array based on ridge gap waveg...
A wideband 2×2-slot element for a 60 GHz antenna array is designed by making use of two double-sided...
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...
A wideband high-gain high-efficiency 16 x 16-element slot antenna array is presented for 60-GHz band...
In this work, we present several gap waveguide planar array antennas for millimeter wave point to po...
The demand for high data rates and the unavailability of low-frequency bands have driven the need to...
This paper presents the design of a high efficiency corporate-fed 8×8-slot array antenna in the 60 G...
Wideband design of power dividers, T-junctions, and transitions based on groove gap waveguide (GGW) ...
In this paper, a high gain high efficiency 16×16-element slot antenna array is presented for 60 GHz ...