Title :
Low-Cost Phased-Array Antenna Using Compact Tunable Phase Shifters Based on Ferroelectric Ceramics
Author :
Sazegar, Mohsen ; Zheng, Yuliang ; Maune, Holger ; Damm, Christian ; Zhou, Xianghui ; Binder, Joachim ; Jakoby, Rolf
Author_Institution :
Microwave Eng. Group, Tech. Univ. of Darmstadt, Darmstadt, Germany
fDate :
5/1/2011 12:00:00 AM
Abstract :
A low-cost phased-array antenna at 10 GHz is presented for a scan angle of ±50°. The array employs continuously tunable phase shifters based on a screen printed barium-strontium-titanate thick-film ceramic. Due to the use of artificial transmission line topology, the proposed phase-shifter design has a very compact size (3 mm × 2.8 mm) for 342° total phase shift. In the frequency range from 8 to 10 GHz, it exhibits a figure of merit >;52°/dB, which is among the best of phase shifters based on ferroelectric thick films. In a prototyped phased array, the RF circuit consists of a feeding network, phase shifters, and antenna elements, which are integrated into one planar metallization layer. Furthermore, a simple way for routing bias lines for phase shifters is demonstrated using high resistive electrodes. Using screen printed thick films and applying a simplified fabrication process for the RF and bias circuitry can reduce the total expense of phased arrays considerably.
Keywords :
antenna feeds; antenna phased arrays; ferroelectric ceramics; metallisation; microwave antenna arrays; phase shifters; transmission lines; RF circuit; antenna element; artificial transmission line topology; bias circuitry; compact tunable phase shifter; feeding network; ferroelectric ceramics; ferroelectric thick film; frequency 8 GHz to 10 GHz; high resistive electrode; phase-shifter design; phased-array antenna; planar metallization layer; screen printed barium-strontium-titanate thick-film ceramic; simplified fabrication process; Antenna feeds; Arrays; Fabrication; Materials; Phase measurement; Phase shifters; Tuning; Barium–strontium–titanate (BST); ferroelectric devices; left-handed (LH) transmission lines; metamaterials; phase shifters; phased arrays; planar arrays;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2010.2103092