DocumentCode
1539125
Title
Superconducting direct digital synthesizer
Author
Spooner, A. ; Binneg Lao ; Rowe, D. ; Harper, C. ; Schwarzbek, S. ; Durand, D.J. ; Eaton, L. ; Smith, A.D.
Author_Institution
Sierra Monolithics Inc., Redondo Beach, CA, USA
Volume
7
Issue
2
fYear
1997
fDate
6/1/1997 12:00:00 AM
Firstpage
2270
Lastpage
2273
Abstract
Communications transmitters, receivers, radar applications, and related test equipment require precise control over generated frequencies which can be provided by digital synthesis. Superconductivity technology offers to greatly improve the operational frequency range at a tiny fraction of the power of present GaAs and Si digital frequency synthesizers, an important consideration for systems with multiple receiver elements and satellite applications. We designed, fabricated, and tested a digital superconducting frequency synthesizer on a 1-cm square substrate in niobium technology and tested at 4 Kelvin. The chip contains a 12-bit pipelined MVTL incremental phase accumulator (simple expansion to 32 bits achieves one part in 4.3/spl times/10/sup 9/ frequency resolution). The most significant 10-bits of the accumulated phase proceed to a Sine ROM which is based on SQUID cells and employs data compression to minimize circuit size. An 8-bit ROM output word proceeds to a superconducting D/A converter to construct the analog output waveform which updates each clock cycle. We have operated the entire superconducting synthesizer above 1 GHz. Our performance goal with present fabrication technology is /spl ges/4 GHz operation.
Keywords
direct digital synthesis; superconducting logic circuits; 1 GHz; 4 K; D/A converter; Nb; SQUID cell; Sine ROM; data compression; frequency synthesizer; niobium technology; pipelined MVTL incremental phase accumulator; superconducting direct digital synthesizer; Communication system control; Control system synthesis; Frequency synthesizers; Gallium arsenide; Radar applications; Read only memory; Superconductivity; Test equipment; Testing; Transmitters;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/77.621691
Filename
621691
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