2004•IEEE Transactions on Circuits and Systems II Analog and Digital Signal ProcessingRequires access

Effect of CFOA Nonidealities in Miller Integrator Cells

Rosario Mita, Gaetano Palumbo, Salvatore Pennisi

Open publisher page 5 citations

Abstract

The performance of the Miller integrator cells based on current feedback OpAmps (CFOAs) is evaluated. Inverting and noninverting structures are analyzed and compared to traditional implementations using voltage OpAmps (VOAs). Fundamental relations, useful for design purposes, are also carried out. CFOA-based implementations were found to exhibit lower dc gain and higher relative error in the unity-gain frequency, thereby, limiting the high-frequency potential. The higher CFOA bandwidth can be traded for higher quality factors. Experimental data, in excellent agreement with expected results, are included.

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What this paper is about

The performance of the Miller integrator cells based on current feedback OpAmps (CFOAs) is evaluated. Inverting and noninverting structures are analyzed and compared to traditional implementations using voltage OpAmps (VOAs). Fundamental relations, useful for design purposes, are also carried out. CFOA-based implementations were found to exhibit lower dc gain and higher relative error in the unity-gain frequency, thereby, limiting the high-frequency potential. The higher CFOA bandwidth can be traded for higher quality factors. Experimental data, in excellent agreement with expected results, are included.

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Available abstract

The performance of the Miller integrator cells based on current feedback OpAmps (CFOAs) is evaluated. Inverting and noninverting structures are analyzed and compared to traditional implementations using voltage OpAmps (VOAs). Fundamental relations, useful for design purposes, are also carried out. CFOA-based implementations were found to exhibit lower dc gain and higher relative error in the unity-gain frequency, thereby, limiting the high-frequency potential. The higher CFOA bandwidth can be traded for higher quality factors. Experimental data, in excellent agreement with expected results, are included.

Key concepts: Integrator, Operational amplifier, Op amp integrator, Current-feedback operational amplifier, Implementation, Bandwidth (computing), Control theory (sociology), Computer science

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