Title :
A wideband low cost E-band SIW antenna array for high capacity mmWave radio
Author :
Miraftab, Vahid ; Wenyao Zhai ; Repeta, Morris
Author_Institution :
Huawei Technol. Canada Res. Center, Ottawa, ON, Canada
Abstract :
In this paper, a novel E-band antenna array with high bandwidth is presented. The distribution network is based on Substrate-Integrated-Waveguide (SIW) technology and consists of several H-plane T-junctions in the lower layer. The coupling slot aperture has been designed with a special offset from the center axis of the waveguide for strong excitation of the SIW antenna. The radiating element has 3-dB beam-width of 25 degrees in E plane and 30 degrees in H plane making it compatible with beam steering. To show the validity of the approach, a 4×4 E-band array prototype is presented in this paper. The E-band antenna array is approximately 12mm×12mm in size realized by Rogers 4350 substrate. The antenna has been optimized for 71-86 GHz E-band frequency range. The broadside measured gain from 77-86 GHz is better than 15 dBi. This concept can be used for any application where SIW transmission can be implemented, and is compatible with low cost multilayer technologies.
Keywords :
5G mobile communication; antenna radiation patterns; aperture antennas; beam steering; cellular radio; millimetre wave antenna arrays; slot antenna arrays; substrate integrated waveguides; E-band frequency range; H-plane T-junctions; Rogers 4350 substrate; beam steering; cellular data; distribution network; frequency 71 GHz to 86 GHz; frequency 77 GHz to 86 GHz; high capacity millimeter wave radio; radiating element; strong SIW antenna excitation; substrate-integrated-waveguide SIW technology; wideband low cost E-band SIW antenna array; Antenna measurements; Antennas; Heating; Substrates; 5G; E-band antenna array; Organic PCB technology; SIW antenna; Substrate-Integrated-Waveguide (SIW); mmWave radio;
Conference_Titel :
Microwave Symposium (IMS), 2015 IEEE MTT-S International
Conference_Location :
Phoenix, AZ
DOI :
10.1109/MWSYM.2015.7167055