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A Hybrid Verilog-A and Equation-Defined Subcircuit Approach to MOS Switched Current Analog Cell Modeling and Simulation in the Transient and Large Signal AC Domains

机译:混合Verilog-A和公式定义的子狼能对瞬态和大信号AC域中的MOS开关电流模拟单元建模和仿真方法

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Conventional modeling and simulation of two phase switched current MOS integrated circuits is normally undertaken at semiconductor device level. This allows primary and secondary circuit effects to be studied and characterized. However, with the growing complexity of these circuits, transient domain simulation times can become prohibitively long, restricting the size of circuit that can be easily investigated. Measurable reductions in transient simulation run times can be achieved by modeling part, or all, of a switched current design as a macromodel. This paper introduces a hybrid approach to MOS switched current circuit modeling that combines the primary features of compact device modeling with functional circuit macromodeting. To illustrate the proposed hybrid modeling procedure the properties, and simulation model, of a MOS switched current analog memory cell are described. The material presented also demonstrates how recent trends in Quite universal circuit, simulator (Qucs) technology promote embedded Verilog-A models and equation-defined subcircuits as integral elements in mixed-mode circuit and system design.
机译:在半导体器件水平上通常进行两个相位开关电流MOS集成电路的传统建模和模拟。这允许研究和表征初级和次级电路效果。然而,随着这些电路的增长复杂性,瞬态域模拟时间可能会受到预约,限制可以容易地研究的电路的尺寸。瞬态模拟运行时间的可测量可以通过建模部分或全部,作为Macromodel来实现开关电流设计来实现。本文介绍了MOS开关电流电路建模的混合方法,该模拟了具有功能电路宏观的紧凑型器件建模的主要特征。为了说明所提出的混合建模过程,描述了MOS开关电流模拟存储器单元的属性和仿真模型。所提出的材料还展示了近期普遍电路,模拟器(QUCS)技术的趋势如何促进嵌入式Verilog-A模型和方程定义的子通道作为混合模式电路和系统设计中的整体元素。

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