Title :
A rhombic antenna array solution in eWLB package for millimeter-wave applications
Author :
Hamidipour, Abouzar ; Fischer, Anath ; Maurer, Linus ; Stelzer, Andreas
Author_Institution :
Inst. for Commun. Eng. & RF-Syst., Johannes Kepler Univ. of Linz, Linz, Austria
fDate :
Oct. 29 2012-Nov. 1 2012
Abstract :
A 77-GHz rhombic antenna as well as a rhombic antenna array designed for automotive radar applications are presented in 6×6mm2 and 12×8mm2 embedded wafer level ball grid array (eWLB) packages respectively. For the sake of antenna characterization, a 2×2mm2 monolithic microwave integrated circuit (MMIC) including a 77-GHz transceiver and a frequency multiplier is integrated in the package. The frequency multiplier generates the eighteenth harmonic of its input signal and scales a 4.25-GHz input signal to a 76.5-GHz output signal. This enables the antenna beam pattern characterization using a commercial signal source. As the dimensions of a single-element antenna in package (AiP) hardly exceeds the dimension of the MMIC, an AiP typically suffers from an asymmetric beam pattern and limited gain. This paper proposes a highly directional rhombic antenna array solution with more than 10 dBi gain and a symmetric beam pattern.
Keywords :
antenna radiation patterns; millimetre wave antenna arrays; radar antennas; radio transceivers; road vehicle radar; MMIC; antenna beam pattern characterization; antenna characterization; asymmetric beam pattern; automotive radar applications; commercial signal source; directional rhombic antenna array solution; eWLB package; eWLB packages; embedded wafer level ball grid array; frequency 77 GHz; frequency multiplier; microwave integrated circuit; millimeter-wave applications; single-element antenna in package; symmetric beam pattern; transceiver; Antenna arrays; Arrays; MMICs; Microwave antennas; Millimeter wave technology; Radar antennas;
Conference_Titel :
Microwave Conference (EuMC), 2012 42nd European
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4673-2215-7
Electronic_ISBN :
978-2-87487-026-2