DocumentCode
2123722
Title
RC-Term Correction in the Evaluation of Parasitic Inductances for Microwave Transistor Modelling
Author
Leuzzi, G. ; Serino, A. ; Gianini, F.
Author_Institution
Dept. of Electronic Engineering, University of Roma ´´Tor Vergata´´, Via della Ricerca Scientifica - 00133 Roma, Italy
Volume
2
fYear
1994
fDate
5-9 Sept. 1994
Firstpage
1628
Lastpage
1631
Abstract
Linear and non-linear microwave active devices are usually modelled with an equivalent circuit for CAD applications. The circuit is composed of parasitic (bias-independent) and intrinsic (bias-dependent) elements; the correct evaluation of both types of elements is required not only for the extraction of a non-linear model, but also for the extraction of a linear bias-dependent one, as necessary for foundry use. The evaluation of parasitics is usually performed prior to the standard full-bias measurements, for a special condition of the active device (Vds = 0, ´cold FET´ measurements) [1]. The standard technique for inductances evaluation however does not take into account a correction term due to parasitic resistances and capacitances, that is equivalent to a negative inductive tern even in the low and medium frequency range, where evaluation is made. This can lead to incorrect gate, source and drain parasitic inductance values, especially for small transistors. In some cases the magnitude of the error can be comparable to the small via-hole inductance, that therefore may appear to be negative if evaluated with the standard technique; it can also represent a substantial fraction of gate and drain inductances. In this paper the underlying theory and experimental data are exposed.
Keywords
Electrical resistance measurement; Equivalent circuits; FETs; Foundries; Inductance; Measurement standards; Microwave devices; Microwave transistors; Parasitic capacitance; Performance evaluation;
fLanguage
English
Publisher
ieee
Conference_Titel
Microwave Conference, 1994. 24th European
Conference_Location
Cannes, France
Type
conf
DOI
10.1109/EUMA.1994.337451
Filename
4138497
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