DocumentCode :
1756964
Title :
1.6 GHz Low-Power Cross-Correlator System Enabling Geostationary Earth Orbit Aperture Synthesis
Author :
Ryman, E. ; Emrich, Andreas ; Andersson, Sean B. ; Svensson, Lars ; Larsson-Edefors, Per
Author_Institution :
Omnisys Instrum. AB, Västra Frölunda, Sweden
Volume :
49
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
2720
Lastpage :
2729
Abstract :
We present a 64-channel cross-correlator system for space-borne synthetic aperture imaging. Two different types of ASICs were developed to fit into this system: An 8-channel comparator ASIC implemented in a 130 nm SiGe BiCMOS process technology performs A/D conversion, while a single 64-channel digital cross-correlator ASIC implemented in a 65 nm CMOS process performs the signal processing. The digital ASIC handles 2016 cross-correlations at up to 3.6 GS/s and has a power dissipation of only 0.13 mW/correlation/GHz at a supply voltage of 1 V. The comparator ASIC can handle sample rates of at least 4.5 GS/s with a power dissipation of 47 mW/channel or 1 GS/s with a power dissipation of 17 mW/channel. The assembled system consists of a single board measuring a mere 136 × 136 mm2 and weighing only 135 g. The assembled system demonstrates crosstalk of 0.04% between neighboring channels and stability of 800 s. We provide ASIC and system-board measurement results that demonstrate that aperture synthesis can be a viable approach for Earth observation from a geostationary Earth orbit.
Keywords :
CMOS integrated circuits; analogue-digital conversion; application specific integrated circuits; correlation methods; microwave imaging; radioastronomical techniques; radiometry; remote sensing; 130 nm SiGe BiCMOS process technology; 65 nm CMOS process; 8-channel comparator ASIC; A-D conversion; Earth observation; geostationary Earth orbit aperture synthesis; low-power cross-correlator system; signal processing; single 64-channel digital cross-correlator ASIC; space-borne synthetic aperture imaging; Apertures; Application specific integrated circuits; Bandwidth; Clocks; Earth; Instruments; Power dissipation; Cross-correlator; comparator; interferometry; space application; synthetic imaging;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2014.2354648
Filename :
6913568
Link To Document :
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