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A Fast-Settling Three-Stage Amplifier Using Regular Miller Plus Reversed Indirect Compensation

机译:使用常规米勒加反向间接补偿的快速建立的三级放大器

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摘要

A novel frequency compensation technique, named Regular Miller plus Reversed Indirect Compensation (RMRIC), is presented in this paper for fast-settling three-stage amplifiers. The RMRIC topology includes, on the one hand, a Miller capacitor combined with one nulling resistor connected between the first stage and the third stage, and on the other hand, an indirect compensation capacitor in series with a resistor added between the first and the second stage, which improves remarkably the performance such as gain-bandwidth product (GBW) and sensitivity of the proposed amplifier. Detailed design considerations are carried out to demonstrate the stability of the compensation technique. Circuit simulation results show the amplifier driving a 2-pF load capacitance achieves a 9.25-GHz GBW dissipating only 16.5 mW with a 1.2 V supply voltage using a TSMC 65 nm CMOS technology, which shows a significant improvement in figure of merits. The implemented amplifier reaches a settling time of 3.35 ns with 0.006 % accuracy.
机译:本文提出了一种新颖的频率补偿技术,称为正则米勒加反向间接补偿(RMRIC),用于快速建立三级放大器。 RMRIC拓扑结构一方面包括一个米勒电容器和一个连接在第一级和第三级之间的调零电阻,另一方面包括一个间接补偿电容器,在第一级和第二级之间增加了一个电阻阶段,显着改善了拟议放大器的性能,例如增益带宽积(GBW)和灵敏度。进行了详细的设计考虑,以证明补偿技术的稳定性。电路仿真结果表明,使用台积电65 nm CMOS技术,驱动2 pF负载电容的放大器在1.2 V电源电压下可实现9.25 GHz GBW的功耗,仅耗散16.5 mW,从而显着改善了性能。所实现的放大器的建立时间达到3.35 ns,精度为0.006%。

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