DocumentCode
757668
Title
On the modeling and optimization of Schottky varactor frequency multipliers at submillimeter wavelengths
Author
Louhi, Jyrki T. ; Räisänen, Antti V.
Author_Institution
Radio Lab., Helsinki Univ. of Technol., Espoo, Finland
Volume
43
Issue
4
fYear
1995
fDate
4/1/1995 12:00:00 AM
Firstpage
922
Lastpage
926
Abstract
Schottky varactor frequency multipliers are used to generate local oscillator power at millimeter and submillimeter wavelengths. The equivalent circuit of the Schottky varactor contains a junction capacitance, a junction conductance, a series resistance and a model for electron velocity saturation. At millimeter wavelengths the equivalent circuit is affected by the edge effects, which are due to the small-area circular anode. The correction factors due to the edge effect for the junction capacitance and for the series resistance are available in the literature. In this work the electron velocity saturation is modeled by limiting the velocity of the transition front between the depleted and undepleted layer. By using this model the maximum current of the diode is given by the actual area of the transition front between depleted and undepleted layers, and is therefore related to the capacitance correction factor. The new model has been tested by analyzing a two diode balanced doubler for 160 GHz presented earlier in the literature. The agreement between the theoretical results and the measurements is excellent. The new diode model is useful in optimization of varactors for high millimeter and submillimeter wave frequencies
Keywords
Schottky diodes; equivalent circuits; frequency multipliers; submillimetre wave circuits; varactors; 160 GHz; Schottky varactor frequency multipliers; capacitance correction factor; correction factors; edge effects; electron velocity saturation; equivalent circuit; junction capacitance; junction conductance; local oscillator power; series resistance; small-area circular anode; submillimeter wavelengths; transition front; two diode balanced doubler; Capacitance; Electrons; Equivalent circuits; Frequency; Local oscillators; Millimeter wave circuits; Power generation; Schottky diodes; Submillimeter wave circuits; Varactors;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.375255
Filename
375255
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