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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Automated Design of Analog Circuits Using a Cell-Based Structure
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Automated Design of Analog Circuits Using a Cell-Based Structure

机译:使用基于单元的结构自动设计模拟电路

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摘要

An automated synthesis for analog computational circuits in transistor-level configuration is presented. A cell-based structure is introduced to place moderate constraints on the MOSFET circuit topology. Even though each cell has a simple structure that consists of one current path with four transistors, common analog building blocks can be implemented using combinations of the cells. A genetic algorithm is applied to search circuit topologies and transistor sizes that satisfy given specifications. Synthesis capabilities are demonstrated through examples of three types of computational circuits; absolute value, squaring, and cubing functions by using computer simulations and real hardware.
机译:提出了用于晶体管级配置的模拟计算电路的自动综合。引入了基于单元的结构,以对MOSFET电路拓扑施加适度的约束。即使每个单元具有由一条带有四个晶体管的电流路径组成的简单结构,也可以使用单元的组合来实现常见的模拟构建块。遗传算法应用于满足给定规格的搜索电路拓扑和晶体管尺寸。通过以下三种类型的计算电路的示例来展示综合能力。通过使用计算机仿真和实际硬件来实现绝对值,平方和求方函数。

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