2018Unpublished venueRequires access

Optimizing the Performance of a Low Power – Area Efficient OTA Design that is Based on Hybrid Current Shunting Technique

Imtinan B. Attili, Soliman A. Mahmoud

Open publisher page 3 citations

Abstract

This paper presents a new current mirror operational transconductance amplifier (OTA) design that utilizes a hybrid technique of shunting current from the main differential pair. This technique combines shunting current through two different ways; the first is by using an adaptive biased transistors through a second differential pair, and the other is by using a constant biased current source transistors. Each way separately had been examined in previous studies and have shown an improvement on the performance of the current mirror OTA. Combining these different ways is examined here and the performance have been optimized using 90nm CMOS technology to insure obtaining the best results without compromising the stability of the circuit, therefore keeping the phase margin ≥ 60°.

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What this paper is about

This paper presents a new current mirror operational transconductance amplifier (OTA) design that utilizes a hybrid technique of shunting current from the main differential pair. This technique combines shunting current through two different ways; the first is by using an adaptive biased transistors through a second differential pair, and the other is by using a constant biased current source transistors. Each way separately had been examined in previous studies and have shown an improvement on the performance of the current mirror OTA. Combining these different ways is examined here and the performance have been optimized using 90nm CMOS technology to insure obtaining the best results without compromising the stability of the circuit, therefore keeping the phase margin ≥ 60°.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a new current mirror operational transconductance amplifier (OTA) design that utilizes a hybrid technique of shunting current from the main differential pair. This technique combines shunting current through two different ways; the first is by using an adaptive biased transistors through a second differential pair, and the other is by using a constant biased current source transistors. Each way separately had been examined in previous studies and have shown an improvement on the performance of the current mirror OTA. Combining these different ways is examined here and the performance have been optimized using 90nm CMOS technology to insure obtaining the best results without compromising the stability of the circuit, therefore keeping the phase margin ≥ 60°.

Key concepts: Current mirror, Operational transconductance amplifier, Current (fluid), Shunting, Electronic engineering, CMOS, Transistor, Computer science

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