2009Unpublished venueRequires access

Large-signal settling optimization of SC circuits using two-stage amplifiers with current-buffer miller compensation

Francesco Amoroso, Andrea Pugliese, G. Cappuccino

Open publisher page 4 citations

Abstract

The large-signal performances of switched-capacitor (SC) circuits employing two-stage operational amplifiers (opamps) with current-buffer Miller compensation are analyzed. Well-defined rules to fix carefully the bias currents of the two op-amp stages are proposed in order to optimize the amplifier settling behavior. Simulation results related to op-amps designed in a commercial 0.35 ¿m CMOS technology show the usefulness of the proposed design guidelines.

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What this paper is about

The large-signal performances of switched-capacitor (SC) circuits employing two-stage operational amplifiers (opamps) with current-buffer Miller compensation are analyzed. Well-defined rules to fix carefully the bias currents of the two op-amp stages are proposed in order to optimize the amplifier settling behavior. Simulation results related to op-amps designed in a commercial 0.35 ¿m CMOS technology show the usefulness of the proposed design guidelines.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The large-signal performances of switched-capacitor (SC) circuits employing two-stage operational amplifiers (opamps) with current-buffer Miller compensation are analyzed. Well-defined rules to fix carefully the bias currents of the two op-amp stages are proposed in order to optimize the amplifier settling behavior. Simulation results related to op-amps designed in a commercial 0.35 ¿m CMOS technology show the usefulness of the proposed design guidelines.

Key concepts: Operational amplifier, Buffer amplifier, Settling time, Amplifier, Switched capacitor, CMOS, Compensation (psychology), Capacitor

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