2010•Unpublished venueRequires access

A Novel High Performance Atto-Ampere Current Mirror

Hassan Faraji Baghtash, Khalil Monfaredi, Seyed Javad Azhari

Open publisher page 6 citations

Abstract

in this paper is proposed a novel atto-ampere current mirror (AACM) which reaches the minimum yet reported current range of 0.4aA. Operation of this circuit is based on source voltage modulation instead of conventionally used gate voltage modulation which interestingly prevents usage of commonly required voltage shifting in those circuits. The proposed circuit has a simple structure prohibiting large chip area consumption. The proposed current mirror is the best choice for ultra low power low voltage (ULPVL) applications. Simulation results in TSMC 0.18µm CMOS technology with Hspice are presented to demonstrate the validation of the proposed current mirror.

About this research paper

What this paper is about

in this paper is proposed a novel atto-ampere current mirror (AACM) which reaches the minimum yet reported current range of 0.4aA. Operation of this circuit is based on source voltage modulation instead of conventionally used gate voltage modulation which interestingly prevents usage of commonly required voltage shifting in those circuits. The proposed circuit has a simple structure prohibiting large chip area consumption. The proposed current mirror is the best choice for ultra low power low voltage (ULPVL) applications. Simulation results in TSMC 0.18µm CMOS technology with Hspice are presented to demonstrate the validation of the proposed current mirror.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

in this paper is proposed a novel atto-ampere current mirror (AACM) which reaches the minimum yet reported current range of 0.4aA. Operation of this circuit is based on source voltage modulation instead of conventionally used gate voltage modulation which interestingly prevents usage of commonly required voltage shifting in those circuits. The proposed circuit has a simple structure prohibiting large chip area consumption. The proposed current mirror is the best choice for ultra low power low voltage (ULPVL) applications. Simulation results in TSMC 0.18µm CMOS technology with Hspice are presented to demonstrate the validation of the proposed current mirror.

Key concepts: Current mirror, CMOS, Voltage, Electrical engineering, Current (fluid), Modulation (music), Electronic circuit, Volt-ampere

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