Title :
Substrate Integrated Image Guide Array Antenna for the Upper Millimeter-Wave Spectrum
Author :
Patrovsky, Andreas ; Wu, Ke
Author_Institution :
Ecole Polytech de Montreal, Montreal
Abstract :
A compact linear array antenna fed by substrate integrated image guide (SIIG) at 94 GHz is presented. The SIIG is a low-loss dielectric waveguide which is synthesized directly on a high dielectric constant substrate or semiconductor wafer. Such a low-cost approach of integration allows for the development of directive low profile antennas for future commercial millimeter-wave products. Special attention was directed towards the radiation elements that are fabricated in printed circuit technique on top of the SIIG. Their novel design provides a wide tuning range for the radiation coefficient and excellent linear polarization purity. In addition, an optimized reflection compensation technique effectively reduces the overall return loss and permits frequency scanning through broadside direction without suffering from a stop band due to distributed Bragg reflection. Published theory concerning the scan range of this class of frequency-scannable array antennas is extended in this work. Detailed design guidelines are given along with simulation and measurement results of a prototype. The 2 cm long implementation produced a fan beam with 11 dB gain.
Keywords :
antenna radiation patterns; dielectric waveguides; electromagnetic wave polarisation; electromagnetic wave reflection; linear antenna arrays; millimetre wave antenna arrays; substrates; waveguide antenna arrays; compact linear array antenna; dielectric constant substrate; dielectric waveguide; distributed Bragg reflection; frequency 94 GHz; frequency-scannable array antennas; gain 11 dB; linear polarization; millimeter-wave antennas; printed circuit technique; reflection compensation technique; semiconductor wafer; size 2 cm; substrate integrated image guide array antenna; upper millimeter-wave spectrum; Antenna arrays; Dielectric substrates; Directive antennas; Frequency; High-K gate dielectrics; Integrated circuit synthesis; Linear antenna arrays; Millimeter wave technology; Optical reflection; Semiconductor waveguides; Antenna array feeds; dielectric waveguides; leaky waves; millimeter-wave antennas; substrate integrated circuits; substrate integrated image guide;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2007.908558