基于PDM的可调谐折叠级联差分放大器设计

A. K. Mal, R. Todani, O. Hari
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引用次数: 13

摘要

运算放大器(运放)是模拟和混合信号VLSI设计中最常用的模块之一。设计人员经常花费大量时间分析设计运放,然后意识到模拟电路与分析预期不匹配。这主要是由于使用长通道方程对短通道MOS器件进行建模。最后,在仿真器的帮助下,采用一种特殊的机构来实现运放。建议电位分布法(PDM)是一种设计方法基于器件的实际行为的方法,它不受任何分析表达式的约束。本文介绍了一种基于预置偏置条件下的仿真结果,利用PDM实现全差分折叠级联码运放的设计方法。给出了摆幅率(SR)、单位增益带宽(UGB)、相位裕度(PM)等性能参数对不同节点电位和电流分布的依赖关系。研究发现,利用这些依赖关系,可以在更短的设计时间内实现运放的目标规格。此外,可以使用PDM对性能指标进行微调。最后,设计了一种全差分折叠级联码运放,并给出了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of tunable folded cascode differential amplifier using PDM
Operational Amplifiers (op-amps) are one of the most commonly used blocks in analog and mixed signal VLSI design. Designers often spend considerable time in designing op-amps analytically, and then realize that the simulated circuits do not match with analytical expectations. This is primarily due to modeling of short channel MOS devices using long channel equations. Finally an adhoc mechanism is adopted to realize the op-amp with the help of a simulator. Proposed Potential Distribution Method (PDM) is a method where the design methodology is based on actual behavior of the devices and it is free from any analytical expression. This paper demonstrates the design approach for realizing a fully differential folded cascode op-amp using PDM, which is based on simulator results obtained with predefined bias conditions. The dependency of various performance parameters, like slew rate (SR), unity gain bandwidth (UGB), phase margin (PM), etc. on potentials and current distribution at different nodes is presented. It is found that using these dependencies, the target specifications for an op-amp can be achieved with shorter design time. Also, fine tuning the performance metric can be achieved using PDM. Finally, a fully differential folded cascode op-amp is thus designed and the simulation results are presented.
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