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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A Systematic Design Flow for Optimal Capacitance Assignment in Switched-Capacitor Biquads
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A Systematic Design Flow for Optimal Capacitance Assignment in Switched-Capacitor Biquads

机译:开关电容双二阶最优电容分配的系统设计流程

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This paper presents a systematic design flow for optimal capacitance assignment in switched-capacitor biquad circuits. The proposed design flow starts with a biquad template configuration, which is defined based on circuit regularity. Then, the symbolic transfer function in the $z$-domain is derived for the biquad template. Given the desired transfer function to be realized, a set of equality constraints can be obtained from coefficient matching of the symbolic transfer function and the desired one. In addition, we also formulate an exact closed-form expression for the output swing constraint so that output swings for the biquad are equalized. Other constraints, such as direct charge coupling, are also formulated. Finally, a nonlinear programming technique is used to solve for capacitance variables subject to optimal capacitance assignment, which is defined as minimizing total capacitance, total number of capacitors and circuit sensitivity. The main advantage of the proposed design flow is that an optimal biquad configuration can be obtained in an automated and accurate way. Experiments confirmed the flexibility of the design flow on obtaining optimal biquad configurations under various design tradeoffs.
机译:本文提出了一种用于开关电容双二阶电路中最佳电容分配的系统设计流程。拟议的设计流程从基于电路规则性定义的双二阶模板配置开始。然后,为二元模板导出$ z $域中的符号传递函数。给定要实现的期望传递函数,可以从符号传递函数与期望传递函数的系数匹配中获得一组相等约束。此外,我们还为输出摆幅约束制定了精确的封闭形式表达式,以使双二阶方程的输出摆幅相等。还制定了其他约束条件,例如直接电荷耦合。最后,使用非线性编程技术来求解受最佳电容分配影响的电容变量,这被定义为最小化总电容,电容器总数和电路灵敏度。提出的设计流程的主要优点在于,可以自动且准确的方式获得最佳的二元配置。实验证实了在各种设计折衷下获得最佳双二阶配置时设计流程的灵活性。

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