A new low-power current-mode MOS only versatile precision rectifier

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Abstract

In this paper, a new low-power versatile current-mode rectifier is proposed. As a salient feature, the proposed rectifier provides two positive half-wave, two inverting negative half-wave or two full-wave outputs from the same configuration. The proposed circuit employs only a dual-output second-generation current conveyor (DO-CCII) and a core rectifying circuit consisting of twelve MOS transistors. The input and output signals are current. Favorably, by adding two additional transistors, the proposed rectifier can also rectify voltage signals with electronic tuning capability. The simple and MOS only structure of the proposed circuit is highly attractive from integration point of view. In spite of providing multiple outputs at the same time, the proposed rectifier enjoys low power consumption. PSPICE simulations using 0.18 µm CMOS parameters and supply voltage of ±0.9 V demonstrate a precise operation and good temperature stability. © 2017 Elsevier GmbH

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Keywords

Current-mode precision rectifier, Full-wave rectifier, Have-wave rectifier, Low power rectifier, Versatile rectifier, Amplifiers (electronic), Rectifying circuits, Full-wave rectifiers, Low Power, Precision rectifiers, Electric rectifiers, Have-wave rectifier, Current-mode precision rectifier; Versatile rectifier, Current-Mode Precision Rectifier, Electric rectifiers, Have-Wave Rectifier, Versatile Rectifier, 620, Full-Wave Rectifier, Full-wave rectifier, Rectifying circuits, Low power rectifier, Current-mode precision rectifier, Amplifiers (electronic), Low Power, Full-wave rectifier; Have-wave rectifier; Low power rectifier;, Full-wave rectifiers, Precision rectifiers, Versatile rectifier, Low Power Rectifier

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02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

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OpenCitations Citation Count
26

Volume

83

Issue

Start Page

40

End Page

51
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CrossRef : 3

Scopus : 26

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Mendeley Readers : 13

SCOPUS™ Citations

27

checked on Jun 03, 2026

Web of Science™ Citations

24

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44

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