Title :
140-GHz TE20-Mode Dielectric-Loaded SIW Slot Antenna Array in LTCC
Author :
JunFeng Xu ; Zhi Ning Chen ; Xianming Qing ; Wei Hong
Author_Institution :
Inst. for Infocomm Res., A*STAR, Singapore, Singapore
fDate :
4/1/2013 12:00:00 AM
Abstract :
A TE20-mode substrate integrated waveguide (SIW) fed slot antenna array is proposed at 140 GHz for fabrication ease and cost reduction. The antenna array consists of a feeding network, radiators, and dielectric loadings. The proposed antenna array and an SIW-waveguide transition are integrated into the multilayered low-temperature co-fired ceramic (LTCC). The feeding network comprises a power divider and E-plane couplers that support the TE20 mode. Each pair of symmetrical longitudinal radiating slots is fed by the TE20 mode in a doubled-width SIW. The pair of radiating slots is loaded by a doubled-width open-ended via-fence structure in which a higher order mode is also excited. Experimental results show that an 8 × 8 slot array with the transition achieves a maximum boresight gain of 21.3 dBi at 140.6 GHz and an impedance matching bandwidth of 129.2-146 GHz with a boresight gain above 18.3 dBi.
Keywords :
antenna feeds; cost reduction; dielectric-loaded antennas; millimetre wave antenna arrays; slot antenna arrays; substrate integrated waveguides; waveguide transitions; E-plane couplers; LTCC; SIW-waveguide transition; TE20-mode dielectric-loaded SIW fed slot antenna array; bandwidth 129.2 GHz to 146 GHz; cost reduction; doubled-width SIW; doubled-width open-ended via-fence structure; feeding network; frequency 140 GHz; frequency 140.6 GHz; higher order mode; multilayered low-temperature co-fired ceramic; power divider; radiating slots; radiators; substrate integrated waveguide; symmetrical longitudinal radiating slots; Antenna arrays; Arrays; Couplers; Dielectrics; Electromagnetic waveguides; Loading; Metals; 140 GHz; Dielectric loading; TE$_{20}$ mode; low-temperature co-fired ceramic (LTCC); millimeter wave antenna array; substrate integrated waveguide (SIW);
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2220317