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Development of analog circuit design automation tool

机译:开发模拟电路设计自动化工具

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In this paper, the performance of Genetic Algorithm (GA) and the key genetic operators are evaluated to identify the most suitable combination to be adopted for automating the design of analog circuits. The GA based design approach to select component values of an analog circuit to meet the desired specifications, is discussed and successfully demonstrated using a prototypical tool. A user friendly console provides an interactive simulation environment and Berkeley SPICE is the tool used for simulating analog circuits. Design of internals of the Complementary MOSFET (CMOS) Operational Amplifier for a specified bandwidth and design of a circuit using Bipolar Junction Transistor (BJT) Operational Amplifier for a specified closed loop gain are presented as applications. The methods used are generic and can be applied to all analog circuits.
机译:在本文中,对遗传算法(GA)和关键遗传算子的性能进行了评估,以确定最适合用于模拟电路设计自动化的组合。使用原型工具讨论并成功演示了基于GA的设计方法,用于选择模拟电路的元件值以满足所需的规格。一个用户友好的控制台提供了一个交互式仿真环境,而伯克利SPICE是用于仿真模拟电路的工具。介绍了针对指定带宽的互补MOSFET(CMOS)运算放大器的内部设计和针对指定闭环增益的使用双极结型晶体管(BJT)运算放大器的电路设计。所使用的方法是通用的,可以应用于所有模拟电路。

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