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Efficient simplification strategies for symbolic circuit expressions of linear analog integrated circuits

机译:线性模拟集成电路符号电路表达式的高效简化策略

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Analog circuit design is a very knowledge-intensive process, which heavily relies on the designer's understanding of circuit's behaviour. Symbolic Circuit Analysis gives the designer an additional insight and helps to gain a better understanding of circuit functionality. Moreover Symbolic Analysis plays a major role in analog circuit design automation process and is complementary to the numerical (SPICE) circuit simulation. Therefore automatic generation of symbolic circuit expressions or models has currently become a topic of heightened interest. The main difficulty of symbolic circuit analysis is that: the number of product terms in a symbolic expression increases exponentially with the size of the circuit. In order to handle circuits of large sizes several simplification and approximation strategies have been suggested in the literature, but the interpretability of the derived expressions has received insufficient attention from the symbolic analysis community. Symbolic expressions of relatively small circuits are not in readable format even for experienced designers, besides being complex for classroom teaching. This paper presents efficient strategies that can be adopted while simplifying large symbolic circuit expressions, aimed at preserving the accuracy and interpretability of circuit expressions better. The goal is to show that exploiting certain information from the device model and taking Miller effect of feedback elements into consideration will result in more meaningful simple expressions in nested formats that can be easily expanded as well. The strategies suggested in this paper are illustrated with different practical MOS and bipolar circuit examples, with emphasis on the compactness and interpretability of the circuit expressions.
机译:模拟电路设计是一个非常知识密调的过程,大量依赖于设计师对电路行为的理解。符号电路分析使设计人员提供了额外的洞察力,并有助于更好地了解电路功能。此外,符号分析在模拟电路设计自动化过程中起着重要作用,并且与数值(Spice)电路仿真互补。因此,自动生成符号电路表达式或模型目前已成为增长兴趣的主题。符号电路分析的主要难点是:符号表达式中的产品术语数量随着电路的尺寸指数呈指数级增大。为了处理大尺寸的电路,在文献中提出了几种简化和近似策略,但是衍生的表达式的可解释性已经接受了来自象征性分析界的注意力不足。即使对于经验丰富的设计师而言,相对较小的电路的象征性表达也不是可读的格式,除了课堂教学的复杂。本文呈现了可以采用的高效策略,同时简化大型符号电路表达式,旨在更好地保留电路表达的准确性和可解释性。目标是表明,从设备模型中利用某些信息并考虑到反馈元素的米勒效果将导致嵌套格式中的更有意义的简单表达式,也可以很容易地扩展。本文建议的策略用不同的实际MOS和双极电路示例说明,重点是电路表达式的紧凑性和可解释性。

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