Ultra low-voltage, rail-to-rail input/output stage Operational Transconductance Amplifier (OTA) with high linearity and its application in a Gm-C filter

F. Rezaei, S. J. Azhari
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引用次数: 12

Abstract

This paper presents an ultra low-voltage, rail-to-rail input/output stage Operational Transconductance Amplifier (OTA) which uses quasi floating gate input transistors. This OTA works with ±0.3v and consumes 57µw. It has near zero variation in small/large-signal behavior (i.e. transconductance and slew rate) in whole range of the common mode voltage of input signals. Using source degeneration technique for linearity improvement, make it possible to obtain −42.7 dB, HD3 for 0.6vP-P sine wave input signal with the frequency of 1MHz. The used feedback amplifier in input stage also enhances common mode rejection ratio (CMRR), such that in DC, CMRR is 146 dB. OTA is used for implementation of a wide-tunable third-order elliptic filter with 237 KHz–2.18 MHz cutoff frequencies. Proposed OTA and filter have been simulated in 0.18µm TSMC CMOS technology with Hspice.
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高线性度的超低电压轨对轨输入/输出级运算跨导放大器(OTA)及其在Gm-C滤波器中的应用
提出了一种采用准浮栅输入晶体管的超低电压轨对轨输入/输出级运算跨导放大器(OTA)。该OTA工作电压为±0.3v,功耗为57µw。在输入信号共模电压的整个范围内,它的小/大信号行为(即跨导和摆压率)变化接近于零。采用源退化技术对线性度进行改进,使频率为1MHz的0.6vP-P正弦波输入信号获得−42.7 dB, HD3成为可能。输入级采用的反馈放大器还提高了共模抑制比(CMRR),在直流时,CMRR为146 dB。OTA用于实现具有237 KHz-2.18 MHz截止频率的宽可调谐三阶椭圆滤波器。采用Hspice在0.18µm TSMC CMOS技术上对OTA和滤波器进行了仿真。
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