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High-speed three-stage operational transconductance amplifiers for switched-capacitor circuits

机译:用于开关电容器电路的高速三级运算跨导放大器

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In this paper, three-stage operational transconductance amplifiers (OTAs) for use in switched-capacitor (SC) circuits using nanometer CMOS technologies are described. Two three-stage OTAs, one with nested-Miller compensation (NMC) as a basic compensation scheme and another with damping factor control frequency compensation (DFCFC) as an advanced compensation scheme are presented. The open-loop small-signal analysis as well as the large signal-analysis for both OTAs are investigated and their speed performance is compared and discussed. Circuit level simulations are carried out using a 90 nm CMOS technology with HSPICE. Simulation results show that the NMC and the DFCFC OTAs achieve a settling time of 17.5 ns and 8.4 ns with 0.02% accuracy, respectively, while consuming 3 mW from a 1.2 V power supply and have the same input-referred thermal noise.
机译:在本文中,描述了用于使用纳米CMOS技术的开关电容器(SC)电路中的三级运算跨导放大器(OTA)。提出了两种三阶段OTA,一种是采用嵌套米勒补偿(NMC)作为基本补偿方案,另一种是采用阻尼因子控制频率补偿(DFCFC)作为高级补偿方案。研究了两种OTA的开环小信号分析以及大信号分析,并对它们的速度性能进行了比较和讨论。电路级仿真是使用带有HSPICE的90 nm CMOS技术进行的。仿真结果表明,NMC和DFCFC OTA的建立时间分别为17.5 ns和8.4 ns,准确度为0.02%,而1.2 V电源消耗3 mW的功率,并且具有相同的输入参考热噪声。

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