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A Bio-Realistic Analog CMOS Cochlea Filter With High Tunability and Ultra-Steep Roll-Off

机译:具有高可调性和超陡峭滚降的生物现实模拟CMOS耳蜗滤波器

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This paper presents the design and experimental results of a cochlea filter in analog very large scale integration (VLSI) which highly resembles physiologically measured response of the mammalian cochlea. The filter consists of three specialized sub-filter stages which respectively provide passive response in low frequencies, actively tunable response in mid-band frequencies and ultra-steep roll-off at transition frequencies from pass-band to stop-band. The sub-filters are implemented in balanced ladder topology using floating active inductors. Measured results from the fabricated chip show that wide range of mid-band tuning including gain tuning of over 20dB, Q factor tuning from 2 to 19 as well as the bio-realistic center frequency shift are achieved by adjusting only one circuit parameter. Besides, the filter has an ultra-steep roll-off reaching over 300 dB/dec. By changing biasing currents, the filter can be configured to operate with center frequencies from 31 Hz to 8 kHz. The filter is order, consumes power and occupies chip area. A parallel bank of the proposed filter can be used as the front-end in hearing prosthesis devices, speech processors as well as other bio-inspired auditory systems owing to its bio-realistic behavior, low power consumption and small size.
机译:本文介绍了模拟超大规模集成(VLSI)的耳蜗滤波器的设计和实验结果,该滤波器非常类似于哺乳动物耳蜗的生理测量响应。该滤波器由三个专门的子滤波器级组成,分别提供低频的无源响应,中频带的有源可调响应以及从通带到阻带的过渡频率处的超陡峭滚降。子滤波器使用浮动有源电感器以平衡梯形拓扑实现。所制造芯片的测量结果表明,仅调整一个电路参数就可以实现宽范围的中频带调谐,包括超过20dB的增益调谐,从2到19的Q因子调谐以及逼真的中心频率偏移。此外,该滤波器具有超过300 dB / dec的超陡峭滚降。通过改变偏置电流,滤波器可以配置为以31 Hz至8 kHz的中心频率工作。滤波器是有序的,消耗功率并占用芯片面积。所提出的滤波器的并行库由于其逼真的行为,低功耗和小尺寸,可以用作听力假体设备,语音处理器以及其他受生物启发的听觉系统的前端。

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