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Embedding impedance approximations in the analysis of SIS mixersFuture millimeter-wave radio astronomy instruments will use arrays of many SIS receivers, either as focal plane arrays on individual radio telescopes, or as individual receivers on the many antennas of radio interferometers. Such applications will require broadband integrated mixers without mechanical tuners. To produce such mixers, it will be necessary to improve present mixer design techniques, most of which use the three-frequency approximation to Tucker's quantum mixer theory. This paper examines the adequacy of three approximations to Tucker's theory: (1) the usual three-frequency approximation which assumes a sinusoidal LO voltage at the junction, and a short-circuit at all frequencies above the upper sideband; (2) a five-frequency approximation which allows two LO voltage harmonics and five small-signal sidebands; and (3) a quasi five-frequency approximation in which five small-signal sidebands are allowed, but the LO voltage is assumed sinusoidal. These are compared with a full harmonic-Newton solution of Tucker's equations, including eight LO harmonics and their corresponding sidebands, for realistic SIS mixer circuits. It is shown that the accuracy of the three approximations depends strongly on the value of omega R(sub N)C for the SIS junctions used. For large omega R(sub N)C, all three approximations approach the eight-harmonic solution. For omega R(sub N)C values in the range 0.5 to 10, the range of most practical interest, the quasi five-frequency approximation is a considerable improvement over the three-frequency approximation, and should be suitable for much design work. For the realistic SIS mixers considered here, the five-frequency approximation gives results very close to those of the eight-harmonic solution. Use of these approximations, where appropriate, considerably reduces the computational effort needed to analyze an SIS mixer, and allows the design and optimization of mixers using a personal computer.
Document ID
19930018571
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Kerr, A. R.
(National Radio Astronomy Observatory Charlottesville, VA, United States)
Pan, S.-K.
(National Radio Astronomy Observatory Charlottesville, VA, United States)
Withington, S.
(Cambridge Univ. United Kingdom)
Date Acquired
September 6, 2013
Publication Date
January 1, 1992
Publication Information
Publication: Michigan Univ., The Third International Symposium on Space Terahertz Technology: Symposium Proceedings
Subject Category
Electronics And Electrical Engineering
Accession Number
93N27760
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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