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Analog electronic cochlea design using multiplexing switched-capacitor circuits

机译:使用多路开关电容电路的模拟电子耳蜗设计

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摘要

A new design methodology is proposed to realize a real cochlea using the multiplexing switched-capacitor circuits. The proposed technique is based upon the transmission-line model proposed by Zwislocki (1950). At the cost of the increase in the number of clock phases, the decay rate in the transition region of the filter section can be increased by adding only a few components. Therefore, the components and chip area of the designed silicon cochlea can be small. An experimental chip containing four filter sections has been designed and fabricated. The measured frequency responses from the 32-section cochlea formed by cascading nine fabricated chips are consistent with both theoretical calculation results and observed behavior of a real cochlea. Moreover, the designed silicon cochlea has the dynamic range of 67 dB in each section and a low sensitivity to process variations. Thus it is suitable for VLSI implementation with the associated neural network.
机译:提出了一种新的设计方法,以利用多路复用开关电容器电路实现真正的耳蜗。提出的技术基于Zwislocki(1950)提出的传输线模型。以增加时钟相位的数量为代价,可以通过仅添加几个分量来增加滤波器部分的过渡区域中的衰减率。因此,所设计的硅耳蜗的组件和芯片面积可以很小。设计并制造了一个包含四个滤波器部分的实验芯片。级联九个人造芯片形成的32段耳蜗的频率响应与理论计算结果和实际耳蜗的观察行为均一致。此外,设计的硅耳蜗在每个部分的动态范围为67 dB,并且对工艺变化的敏感性较低。因此,它适用于带有关联神经网络的VLSI实现。

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