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Timing-controlled fully programmable analogue signal processors using switched continuous-time filters

机译:使用开关连续时间滤波器的定时控制的完全可编程模拟信号处理器

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摘要

Analog signal processors based on continuous-time emulation of sampled-data networks are presented. In these processors, continuous-time signal delay is realized using the phase shift of fixed-frequency, fixed-Q, continuous-time low-pass filters (LPFs), and analog multiplication is accomplished through signal switching using digitally programmable duty cycles. Each coefficient of the processor transfer function is dependently programmable, without requiring selectable capacitor (or resistor) arrays. Experiments verify that this method can be used to construct analog processors with arbitrarily programmable frequency responses. The results presented here are complementary to other results presented earlier by the authors, using sample-data delays.
机译:提出了基于采样数据网络连续时间仿真的模拟信号处理器。在这些处理器中,使用固定频率,固定Q,连续时间低通滤波器(LPF)的相移来实现连续时间信号延迟,并且通过使用数字可编程占空比的信号切换来实现模拟乘法。处理器传递函数的每个系数都可以独立编程,而无需选择电容器(或电阻器)阵列。实验证明,该方法可用于构建具有任意可编程频率响应的模拟处理器。此处提供的结果与作者先前使用样本数据延迟提供的其他结果相辅相成。

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