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RF equivalent circuit modeling of surface mounted components for PCB applications

Aleksandar B. Menićanin (Institute for Multidisciplinary Research, University of Belgrade, Belgrade, Serbia)
Mirjana S. Damnjanović (Faculty of Technical Sciences, University of Novi Sad, Novi Sad, Serbia)
Ljiljana D. Živanov (Faculty of Technical Sciences, University of Novi Sad, Novi Sad, Serbia)

Microelectronics International

ISSN: 1356-5362

Article publication date: 11 May 2010

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Abstract

Purpose

The appropriate selection of a testing method largely determines the accuracy of a measurement. Parasitic effects associated with test fixture demand a significant consideration in a measurement. The purpose of this paper is to introduce a measurement procedure which can be used for the characterization of surface mount devices (SMD) components, especially devoted to SMD inductors.

Design/methodology/approach

The paper describes measurement technique, characterization, and extracting parameters of SMD components for printed circuit board (PCB) applications. The commercially available components (multi‐layer chip SMD inductors in the ceramic body) are measured and characterized using a vector network analyzer E5071B and adaptation test fixture on PCB board. Measurement results strongly depend on the choice of the PCB; the behaviour of the component depends on the environment where the component is placed.

Findings

The equivalent circuit parameters are extracted in closed form, from an accurate measurement of the board‐mounted SMD inductor S‐parameters, without the necessity for cumbersome optimization procedures, which normally follow the radio frequency circuit synthesis.

Originality/value

It this paper, a new adaptation test fixture in PCB technology is realized. It is modeled and it has provided the extraction of parameters (intrinsic and extrinsic) of SMD inductor with great accuracy.

Keywords

Citation

Menićanin, A.B., Damnjanović, M.S. and Živanov, L.D. (2010), "RF equivalent circuit modeling of surface mounted components for PCB applications", Microelectronics International, Vol. 27 No. 2, pp. 67-74. https://doi.org/10.1108/13565361011034731

Publisher

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Emerald Group Publishing Limited

Copyright © 2010, Emerald Group Publishing Limited

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