Title :
A 60-GHz Active Receiving Switched-Beam Antenna Array With Integrated Butler Matrix and GaAs Amplifiers
Author :
Patterson, Chad E. ; Khan, Wasif Tanveer ; Ponchak, George E. ; May, Gary S. ; Papapolymerou, John
Author_Institution :
Sch. of ECE, Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
This paper presents for the first time a 60-GHz receiving switched-beam antenna on organic liquid crystal polymer (LCP) platform. A 4 × 1 quasi-Yagi array is incorporated with a 4 × 4 Butler matrix beamforming network and GaAs low-noise amplifiers on an LCP substrate. The active beam is controlled by GaAs single-pole-double-throw switches to access the four output states of the Butler matrix. The entire 4 × 1 active array is 1.4 cm × 1.75 cm and consumes 1.1 W of dc power. Successful comparisons of the measured and simulated results verify a working phased array with a return loss better than 10 dB across the frequency band of 56.7-63.7 GHz. A comparison of radiation patterns demonstrate beam steering of ±40° with a peak active gain of 27.5 dB. The combined antenna and receiver noise performance at 60 GHz exhibits an estimated merit G/T of -18.6 dB/K and noise figure of 5.4 dB.
Keywords :
III-V semiconductors; Yagi antenna arrays; active antenna arrays; antenna radiation patterns; array signal processing; gallium arsenide; liquid crystal polymers; low noise amplifiers; matrix algebra; microwave switches; millimetre wave amplifiers; millimetre wave antenna arrays; receiving antennas; GaAs; LCP platform; LCP substrate; active receiving switched-beam antenna array; antenna radiation patterns; frequency 56.7 GHz to 63.7 GHz; integrated Butler matrix beamforming network; low-noise amplifiers; noise figure 5.4 dB; organic liquid crystal polymer platform; phased antenna array; power 1.1 W; quasiYagi array; return loss; single-pole-double-throw switches; Arrays; Butler matrix; Dipole antennas; Gallium arsenide; Microstrip; Radio frequency; Switches; Butler matrix; integrated circuit (IC) packaging; liquid crystal polymer (LCP); phased arrays; receiving antennas;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2012.2213834