首页> 外文期刊>International journal of circuit theory and applications >An improved reversed miller compensation technique for three-stage CMOS OTAs with double pole-zero cancellation and almost single-pole frequency response
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An improved reversed miller compensation technique for three-stage CMOS OTAs with double pole-zero cancellation and almost single-pole frequency response

机译:具有双极零消除的三级CMOS OTA的改进的反转米勒补偿技术和几乎单极频响应

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This paper presents an improved reversed nested Miller compensation technique exploiting a single additional feed-forward stage to obtain double pole-zero cancellation and ideally single-pole behavior, in a three-stage Miller amplifier. The approach allows designing a three-stage operational transconductance amplifier (OTA) with one dominant pole and two (ideally) mutually cancelling pole-zero doublets. We demonstrate the robustness of the proposed cancellation technique, showing that it is not significantly influenced by process and temperature variations. The proposed design equations allow setting the unity-gain frequency of the amplifier and the complex poles' resonance frequency and quality factor. We introduce the notion of bandwidth efficiency to quantify the OTA performance with respect to a telescopic cascode OTA for given load capacitance and power consumption constraints and demonstrate analytically that the proposed approach allows a bandwidth efficiency that can ideally approach 100%. A CMOS implementation of the proposed compensation technique is provided, in which a current reuse scheme is used to reduce the total current consumption. The OTA has been designed using a 130-nm CMOS process by STMicroelectronics and achieves a DC gain larger than 120 dB, with almost single-pole frequency response. Monte Carlo simulations have been performed to show the robustness of the proposed approach to process, voltage, and temperature (PVT) variations and mismatches.
机译:本文提出了一种改进的逆转嵌套米勒补偿技术,利用单个额外的前馈阶段,以获得三级米勒放大器中的双极零取消和理想的单极行为。该方法允许使用一个主导极点和两个(理想地)相互消除极零双重的三级操作跨导放大器(OTA)。我们展示了所提出的取消技术的稳健性,表明它不会受到过程和温度变化的显着影响。所提出的设计方程允许设置放大器的单位增益频率和复杂的极谐振频率和质量因数。我们介绍了带宽效率的概念,以对给定负载电容和功耗约束的望远镜Cascode OTA量化OTA性能,并分析地证明所提出的方法允许具有理想地接近100%的带宽效率。提供了所提出的补偿技术的CMOS实现,其中使用电流重用方案来降低总电流消耗。 OTA采用STMicroelectronics的130nm CMOS工艺设计,实现了大于120 dB的直流增益,具有几乎单极频响应。已经进行了Monte Carlo模拟,以表明所提出的方法处理,电压和温度(PVT)变化和不匹配的稳健性。

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