A 97 fJ/Conversion Neuron-ADC with Reconfigurable Sampling and Static Power Reduction

Jinbo Chen, Hui Wu, Jie Yang, M. Sawan
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引用次数: 3

Abstract

A bio-inspired Neuron-ADC with reconfigurable sampling and static power reduction for biomedical applications is proposed in this work. The Neuron-ADC leverages level-crossing sampling and a bio-inspired refractory circuit to compressively converts bio-signal to digital spikes and information-of-interest. The proposed design can not only avoid dissipating ADC energy on unnecessary data but also achieve reconfigurable sampling, making it appropriate for either low power operation or high accuracy conversion when dealing with various kinds of bio-signals. Moreover, the proposed dynamic comparator can reduce static power up to 41.1% when tested with a 10 kHz sinusoidal input. Simulation results of 40 nm CMOS process show that the Neuron-ADC achieves a maximum ENOB of 6.9 bits with a corresponding FoM of 97 fJ/conversion under 0.6 V supply voltage.
具有可重构采样和静态功耗降低的97 fJ/转换神经元adc
在这项工作中,提出了一种具有可重构采样和静态功率降低的生物医学应用的仿生神经元adc。神经元- adc利用平交采样和仿生耐火电路将生物信号压缩转换为数字尖峰和感兴趣的信息。该设计不仅可以避免在不必要的数据上消耗ADC能量,而且可以实现可重构采样,适用于处理各种生物信号时的低功耗工作或高精度转换。此外,当输入10 kHz正弦信号时,所提出的动态比较器可将静态功率降低41.1%。40 nm CMOS工艺的仿真结果表明,在0.6 V电源电压下,神经元- adc的最大ENOB为6.9位,相应的FoM为97 fJ/转换。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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