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A new high performance CMOS fully differantial second generation current conveyor

Fırat Kaçar, Hakan Kuntman

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Abstract

In this paper, a new CMOS high performance fully differential second-generation current conveyor (FDCCII) is presented. The proposed FDCCII provides good linearity, high output impedance at terminals Z+ and Z-, and excellent output-input current gain accuracy. Besides the proposed FDCCII circuit operating at a supply voltage of ± 1.25 V. The applications of the FDCCII to realize a voltage-mode universal filters are given.

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What this paper is about

In this paper, a new CMOS high performance fully differential second-generation current conveyor (FDCCII) is presented. The proposed FDCCII provides good linearity, high output impedance at terminals Z+ and Z-, and excellent output-input current gain accuracy. Besides the proposed FDCCII circuit operating at a supply voltage of ± 1.25 V. The applications of the FDCCII to realize a voltage-mode universal filters are given.

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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

In this paper, a new CMOS high performance fully differential second-generation current conveyor (FDCCII) is presented. The proposed FDCCII provides good linearity, high output impedance at terminals Z+ and Z-, and excellent output-input current gain accuracy. Besides the proposed FDCCII circuit operating at a supply voltage of ± 1.25 V. The applications of the FDCCII to realize a voltage-mode universal filters are given.

Key concepts: Current conveyor, CMOS, Linearity, Output impedance, Electrical impedance, Voltage, Electronic engineering, Electrical engineering

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