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Nested Miller compensation using current buffers for multi-stage amplifiers

机译:使用多级放大器的电流缓冲器嵌套米勒补偿

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Firstly, a literature review of existing nested Miller compensation (NMC) schemes for low-voltage multi-stage amplifiers is made. Secondly, a novel nested Miller compensation using two current buffers (NMCCB) in the feedback network is introduced. As opposed to previous NMC schemes, this scheme uses a non-inverting gain stage for the first stage and inverting gain stages for both the second and third stages. An inverting current buffer is utilized for the first time whereas previous NMC feedback networks utilized a positive current buffer. In conventional NMC, the major limitation is bandwidth since inner compensation capacitance loads the output node. In the proposed scheme, the two current buffers in the feedback network create two LHP zeros, cancelling one of the non-dominant poles and extending the bandwidth. Detailed small-signal modeling and analysis of the NMCCB compensation network is presented, demonstrating the effectiveness of this strategy.
机译:首先,对低压多级放大器进行现有嵌套米勒补偿(NMC)方案的文献综述。其次,介绍了在反馈网络中使用两个电流缓冲器(NMCCB)的新型嵌套米勒补偿。与先前的NMC方案相反,该方案使用用于第一阶段的非反相增益阶段,并为第二和第三阶段反转增益阶段。第一时间使用反相电流缓冲器,而先前的NMC反馈网络利用正电流缓冲器。在传统的NMC中,主要限制是带宽,因为内部补偿电容负载输出节点。在所提出的方案中,反馈网络中的两个当前缓冲区创建了两个LHP零,取消了其中一个非主导杆并扩展带宽。提出了NMCCB补偿网络的详细小信号建模和分析,展示了该策略的有效性。

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