Title :
A single-chip 53 GHz radiometer front-end MMIC for geostationary atmospheric measurements
Author :
Gunnarsson, Sten E. ; Emrich, Anders ; Zirath, Herbert ; Kozhuharov, Rumen ; Kärnfelt, Camilla ; Embretsén, Johan ; Tegnander, Christina
Author_Institution :
Chalmers Univ. of Technol., Goteborg
Abstract :
A multi-functional single-chip 53 GHz radiometer front-end MMIC has been designed in a commercial GaAs mHEMT technology and evaluated by probed measurements. To the best of the authors´ knowledge, this is the first multi-functional MMIC ever presented intended for a radiometer application. Thus, the presented MMIC represents the future in radiometer front-end design, enabling a new generation of radiometers with lower cost, weight and DC power consumption. The MMIC is intended to be used in a demonstrator for a future geostationary synthetic thinned aperture radiometer for satellite-based environmental studies of the earth. Measured results for conversion gain, RF and IF bandwidths, image rejection ratio, 1-dB compression point, input referred third order intercept point (IIP3), LO saturation, and noise figure are presented and discussed. A study of the influence of benzocyclobutene (BCB) as a dielectric coating used for surface passivation on the measured RF performance is also performed. Furthermore, the very important issue of phase stability versus temperature and time was also investigated.
Keywords :
III-V semiconductors; MMIC; gallium arsenide; high electron mobility transistors; radiometers; DC power consumption; aperture radiometer; benzocyclobutene; dielectric coating; frequency 53 GHz; geostationary atmospheric measurements; image rejection ratio; mHEMT technology; multifunctional single-chip radiometer front-end MMIC; radiometers generation; satellite-based environmental; surface passivation; third order intercept point; Atmospheric measurements; Costs; DC generators; Dielectric measurements; Gallium arsenide; MMICs; Power generation; Radio frequency; Radiometry; mHEMTs; 53 GHz; BCB; GaAs; MMIC; mHEMT; multifunctional; phase stability; radiometer; singlechip;
Conference_Titel :
Radio and Wireless Symposium, 2008 IEEE
Conference_Location :
Orlando, FL
Print_ISBN :
978-1-4244-1462-8
Electronic_ISBN :
978-1-4244-1463-5
DOI :
10.1109/RWS.2008.4463630