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A new advanced RNMC technique with dual-active current and voltage buffers for low-power high-load three-stage amplifiers

机译:具有双有源电流和电压缓冲器的新型先进RNMC技术,适用于低功率高负载三级放大器

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This paper proposes and develops an original power-efficient reversed nested Miller compensation technique for low-power three-stage amplifiers driving large capacitive loads. The proposed approach exploits dual-active buffers in the compensation network, along with a feedforward gain stage providing enhanced speed performance. A well-defined design procedure for the compensation elements is also developed using the loop-gain phase margin as the main design parameter. To confirm the effectiveness of the proposed technique, SPECTRE simulations on a three-stage amplifier driving a 1-nF capacitive load are carried out adopting the model parameters of a standard 0.35 mum CMOS technology. Simulation results are finally found to be in excellent agreement with the theoretical analysis, showing a considerable improvement of the proposed strategy over other traditional solutions in terms of small-signal and large-signal performance.
机译:本文提出并开发了一种用于驱动大容性负载的低功率三级放大器的原始功率效率反向嵌套米勒补偿技术。所提出的方法利用补偿网络中的双主动缓冲器,以及提供增强的速度性能的前馈增益级。还使用环路增益相位裕度作为主要设计参数,为补偿元件制定了明确的设计程序。为了确认所提出技术的有效性,采用标准的0.35um CMOS技术的模型参数对驱动1-nF电容负载的三级放大器进行了SPECTER仿真。最终发现仿真结果与理论分析非常吻合,表明在小信号和大信号性能方面,所提出的策略相对于其他传统解决方案有了很大的改进。

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