DocumentCode :
1397512
Title :
Multi-Bit Mixers for Digital-RF Receivers
Author :
Filippov, Timur V. ; Sarwana, Saad ; Sahu, Anubhav ; Kirichenko, Alex F. ; Gupta, Deepnarayan
Author_Institution :
HYPRES, Inc., Elmsford, NY, USA
Volume :
21
Issue :
3
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
818
Lastpage :
822
Abstract :
HYPRES, Inc has successfully completed the development of the first-generation superconductor digital channelizing receiver. This channelizer circuit, comprising a single-bit digital in-phase and quadrature (I&Q) mixer and two second-order digital decimation filters (DDFs), was built with rapid single flux quantum (RSFQ) logic. The further development of digital-RF receivers requires a multi-bit (n × k) multiplier for digital mixing of n-bit data streams provided by advanced low pass or band pass modulator and k-bit digital local oscillator (LO). We report our results on the design of both n × 1-bit and 1 × k-bit mixers where either data or LO streams can have a multi-bit representation. The reported approach is the generalization of a 1 × 1-bit mixer used in the first-generation channelizer. The detailed block-diagrams are given for both types and the correct operation at low frequency of test chips with 3-bit mixers are reported. Design issues pertaining to scaling to a digital-RF receiver containing multi-bit mixers are discussed.
Keywords :
digital filters; mixers (circuits); radio receivers; superconducting devices; band pass modulator; block-diagrams; channelizer circuit; digital-RF receivers; first-generation superconductor digital channelizing receiver; k-bit digital local oscillator; low pass modulator; multibit mixers; quadrature mixer; rapid single flux quantum logic; second-order digital decimation filters; single-bit digital in-phase mixer; Clocks; Local oscillators; Mixers; Receivers; Strontium; Synchronization; Testing; Digital-RF; RSFQ; mixer; superconductor;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2010.2090328
Filename :
5659972
Link To Document :
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