Title :
Integration of Circular Polarized Array and LNA in LTCC as a 60-GHz Active Receiving Antenna
Author :
Sun, Mei ; Zhang, Ya-Qiong ; Guo, Yong-Xin ; Karim, Muhammad Faeyz ; Chuen, Ong Ling ; Leong, Mook Seng
Author_Institution :
Inst. for Infocomm Res., Singapore, Singapore
Abstract :
A compact 60-GHz active receiving antenna array is designed and fabricated using low temperature co-fired ceramic (LTCC) technology. It integrates a 4 × 4 circularly polarized (CP) patch array and a 21-dB low noise amplifier (LNA) into the same package substrate. By applying a stripline sequential rotation feeding scheme the CP array exhibits a wide impedance bandwidth (SWR <; 2) and 3-dB axial ratio bandwidth, both over 8 GHz, as well as a beam-shaped pattern with a 3-dB beam width of 20° and a peak gain of 16.8 dBi. By applying a bond wire compensation scheme and low-loss transition optimization, the LNA is successfully integrated into the package. The final fabricated prototype measures only 13 × 20 × 1.4 mm3, demonstrates the good integration performance as well as the CP polarization characteristics in measurement, and is estimated to have a peak overall gain of at least 35 dBi.
Keywords :
antenna feeds; antenna radiation patterns; ceramic packaging; low noise amplifiers; microstrip antenna arrays; optimisation; polarisation; receiving antennas; strip lines; CP polarization characteristics; LNA; LTCC; active receiving antenna array; antenna fabrication; axial ratio bandwidth; beam-shaped pattern; bond wire compensation scheme; circularly polarized patch array; final fabricated prototype measure; frequency 60 GHz; impedance bandwidth; low noise amplifier; low temperature cofired ceramic technology; low-loss transition optimization; sequential rotation feeding scheme; Antenna measurements; Antennas; Arrays; Bandwidth; Bonding; Insertion loss; Wires; 60-GHz radio; Aperture-coupled patch antenna array; LTCC; millimeter wave; receiver front end; sequential rotation; wireless personal area network;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2011.2158781