2014Unpublished venueRequires access

Differential second-generation current conveyor for ultra-low voltage applications

Montree Kumngern, Fabian Khateb

Open publisher page 2 citations

Abstract

This paper presents an ultra-low voltage and -low power differential current conveyor which is suitable for low-voltage supply and low-power consumption signal processing circuit applications. The bulk-driven technique is used to provide a low-voltage supply as low as ±0.25 V and a rail-to-rail input voltage swing. The quasi-floating gate technique is also used to achieve the frequency performance of the proposed circuit.

About this research paper

What this paper is about

This paper presents an ultra-low voltage and -low power differential current conveyor which is suitable for low-voltage supply and low-power consumption signal processing circuit applications. The bulk-driven technique is used to provide a low-voltage supply as low as ±0.25 V and a rail-to-rail input voltage swing. The quasi-floating gate technique is also used to achieve the frequency performance of the proposed circuit.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents an ultra-low voltage and -low power differential current conveyor which is suitable for low-voltage supply and low-power consumption signal processing circuit applications. The bulk-driven technique is used to provide a low-voltage supply as low as ±0.25 V and a rail-to-rail input voltage swing. The quasi-floating gate technique is also used to achieve the frequency performance of the proposed circuit.

Key concepts: Low voltage, Voltage, Swing, Electrical engineering, Current conveyor, Power (physics), Low-power electronics, Computer science

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