DocumentCode
1524207
Title
Conversion matrix and gain of self-oscillating mixers
Author
Claassen, Manfred ; Güttich, Ulrich
Author_Institution
Lehrstuhl fuer Allgemeine Elektrotech. & Angewandte Elektronik, Tech. Univ. Munchen, West Germany
Volume
39
Issue
1
fYear
1991
fDate
1/1/1991 12:00:00 AM
Firstpage
25
Lastpage
30
Abstract
The conversion matrix of self-oscillating mixers is derived from the bias-, amplitude-, and frequency-dependent admittance of the active device together with its dynamic current-voltage characteristic. Components at the image frequency are also taken into account. With this matrix and the circuit admittances at the different frequencies involved, the conversion gain can be expressed. For better insight into the relevant mechanisms, the conversion gain is subdivided into the amplitude response of the self-excited oscillation to an input signal and the demodulation caused by the device internal rectification. The formalism is applied to a simplified model of an oscillating BARITT diode. The resulting analytical expressions allow a discussion of the influence of different device and circuit parameters as well as a qualitative and quantitative comparison with experimental results from a self-oscillating BARITT-diode mixer operating in the V -band at 60 GHz
Keywords
BARITT diodes; microwave oscillators; mixers (circuits); semiconductor device models; solid-state microwave circuits; solid-state microwave devices; 60 GHz; EHF; V-band; active device; amplitude dependent admittance; amplitude response; analytical expressions; bias dependent admittance; circuit admittances; circuit parameters; conversion gain; conversion matrix; demodulation; device internal rectification; dynamic current-voltage characteristic; experimental results; formalism; frequency-dependent admittance; image frequency; oscillating BARITT diode; quantitative comparison; self-excited oscillation; self-oscillating BARITT-diode mixer; self-oscillating mixers; simplified model; Admittance; Amplitude modulation; Circuits; Diodes; Doppler radar; Frequency conversion; Gunn devices; Image converters; Mixers; Oscillators;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.64601
Filename
64601
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