DocumentCode :
1313595
Title :
Dynamic shape of the depletion layer of a submillimeter-wave Schottky varactor
Author :
Louhi, Jyrki T. ; Raisanen, Antti V.
Author_Institution :
Radio Lab., Helsinki Univ. of Technol., Espoo, Finland
Volume :
44
Issue :
12
fYear :
1996
fDate :
12/1/1996 12:00:00 AM
Firstpage :
2159
Lastpage :
2165
Abstract :
Most frequency multipliers at submillimeter wavelengths are based on the Schottky varactor. The main problem of these multipliers is the output power, which remains low at frequencies above 500 GHz. The aim of this work is to help the situation by studying the usability of the conventional equivalent circuit during a fast voltage modulation. The anode edge effects play an important role in this voltage modulation. While the fringing fields, due to the edge effects, reduce the capacitance modulation in small submillimeter-wave varactors, the edge effects also lessen the effect of electron velocity saturation compared with an ideal varactor with a pure parallel plate capacitance. The usefulness of the static model can be estimated by comparing the three-dimensional shape of the depletion layer to the shape given by the dynamic model. The dynamic shape can be obtained by solving the potential and electron conduction currents in the epitaxial layer of the Schottky varactor. In this work the potential and the electron currents have been calculated from simplified device physics by using numerical methods
Keywords :
Schottky diodes; capacitance; equivalent circuits; frequency multipliers; submillimetre wave diodes; varactors; anode edge effects; capacitance modulation; depletion layer; electron conduction currents; electron velocity saturation; frequency multipliers; fringing fields; output power; pure parallel plate capacitance; submillimeter-wave Schottky varactor; three-dimensional shape; voltage modulation; Capacitance; Electrons; Frequency; Power generation; Semiconductor process modeling; Shape; Submillimeter wave circuits; Usability; Varactors; Voltage;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.556443
Filename :
556443
Link To Document :
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