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Digitally programmable modified current differencing transconductance amplifier in 40-nm technology: design flow, parameter analyses and applications

机译:40-NM技术中数字可编程改进的电流差异跨导放大器:设计流程,参数分析和应用

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The study discusses selected issues of modelling and designing current-mode devices. The authors propose the design flow that covers abstract behavioural models, the schematic and SPICE-level netlists and the post-layout parasitic parameters. The considerations related to the analogue functional blocks with a dual-stage complexity. The theoretical backgrounds of the current-mode basic building blocks are introduced. Special attention has been paid to a new current-mode active component, digitally programmable modified current differencing transconductance amplifier (MCDTA). Based on the idea of an MCDTA, the authors have developed their own cell, which integrates the digital control feature (programmability) into current-mode analogue devices. This original solution enables the dual control techniques, coarse digital control and precise analogue control to be used. The presented examples of continuous-time active filters show that such a solution enables flexibility in the digital control of the parameters of analogue blocks. In order to facilitate the integration of the analogue and mixed-signal models in a single environment, VHSIC Hardware Description Language - Analogue Mixed Signal (VHDL-AMS) language was selected for the behavioural modelling methodology. The authors have used the back annotating mechanism to update behavioural models based on an estimation of the post-layout parameters. The approach is presented on examples that were implemented in TMSC 40 nm complementary metal-oxide-semiconductor technology.
机译:该研究讨论了建模和设计电流模式设备的选定问题。作者提出了涵盖抽象行为模型,原理图和香料级网册和后布局寄生参数的设计流程。与具有双级复杂度的模拟功能块相关的考虑因素。介绍了当前模式基本构建块的理论背景。已经特别注意了新的电流模式有源组件,数字可编程修改电流差异跨导放大器(MCDTA)。基于MCDTA的想法,作者开发了自己的单元格,将数字控制功能(可编程性)集成到当前模式模拟设备中。此原始解决方案可以使用双控技术,粗略数字控制和精确的模拟控制。呈现的连续活动滤波器的示例表明这种解决方案能够在模拟块参数的数字控制中实现灵活性。为了便于在单个环境中集成模拟和混合信号模型,为行为建模方法选择了VHSIC硬件描述语言 - 模拟混合信号(VHDL-AMS)语言。作者使用了后面的注释机制来基于后布局参数的估计来更新行为模型。该方法提出在TMSC 40nm互补金属氧化物 - 半导体技术中实施的实施例。

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