This paper presented the design of MIMO 1x8 antenna operating at 38 GHz for future 5G applications. The antenna used the Rogers RT / duroid 5880 substrate with a thickness of 0.787 mm and a dielectric constant of 2.2. This antenna has 1x8 elements with 13.4 dBi of gain and the return loss of -15.76 dB. It has approximately 1.294 GHz bandwidth within the range of 37.485 GHz-38.779 GHz. The comparison performances between both antennas MIMO 1x4 and 1x8 are also discussed. It is shown that both radiation patterns are similar. The increasing number of elements affect to the gain and frequency. The proposed antenna meets the 5G requirements
In this contribution, a compact 13 GHz notched band Multiple-Input Multiple-Output (MIMO) antenna is...
In this paper, an in-depth study on the designing of a compact 2x2 MIMO planar antenna array, that c...
A miniaturized in size linear multiple-input multiple-output (MIMO) antenna array operating on deman...
This paper presented the design of MIMO 1x8 antenna operating at 38 GHz for future 5G applications. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
This article presented a millimeter wave antenna which operated at 38 GHz for 5G mobile base station...
This article presented a millimeter wave antenna which operated at 38 GHz for 5G mobile base station...
This article presented a millimeter wave antenna which operated at 38 GHz for 5G mobile base station...
This paper shows a compacted design of 4x4 Massive Multiple Input Multiple Output (mMIMO) antennas t...
This paper presents a design of multiple input multiple output (MIMO) antenna array for 5G millimete...
As the usage of electronic devices is rapidly growing at a huge leap, data and signal consumption ra...
v ABSTRACT Fifth generation (5G) is the next major phase of mobile telecommunications standards beyo...
In this contribution, a compact 13 GHz notched band Multiple-Input Multiple-Output (MIMO) antenna is...
In this paper, an in-depth study on the designing of a compact 2x2 MIMO planar antenna array, that c...
A miniaturized in size linear multiple-input multiple-output (MIMO) antenna array operating on deman...
This paper presented the design of MIMO 1x8 antenna operating at 38 GHz for future 5G applications. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
The 5G system requires more significant system capacity, more full bandwidth, and higher frequency. ...
This article presented a millimeter wave antenna which operated at 38 GHz for 5G mobile base station...
This article presented a millimeter wave antenna which operated at 38 GHz for 5G mobile base station...
This article presented a millimeter wave antenna which operated at 38 GHz for 5G mobile base station...
This paper shows a compacted design of 4x4 Massive Multiple Input Multiple Output (mMIMO) antennas t...
This paper presents a design of multiple input multiple output (MIMO) antenna array for 5G millimete...
As the usage of electronic devices is rapidly growing at a huge leap, data and signal consumption ra...
v ABSTRACT Fifth generation (5G) is the next major phase of mobile telecommunications standards beyo...
In this contribution, a compact 13 GHz notched band Multiple-Input Multiple-Output (MIMO) antenna is...
In this paper, an in-depth study on the designing of a compact 2x2 MIMO planar antenna array, that c...
A miniaturized in size linear multiple-input multiple-output (MIMO) antenna array operating on deman...