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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II, Express Briefs >A 16-Channel Low-Power Nonuniform Spaced Filter Bank Core for Digital Hearing Aids
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A 16-Channel Low-Power Nonuniform Spaced Filter Bank Core for Digital Hearing Aids

机译:用于数字助听器的16通道低功耗非均匀间隔滤波器组核心

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摘要

We describe a 16-channel critical-like spaced, high stopband attenuation ($geqslant60$dB, 109th$,times,$16-order), micropower (247.5$mu$W@1.1 V, 0.96 MHz), small integrated circuit (IC) area (1.62 mm$^2$@0.35-$mu$m CMOS) finite impulse response filter bank core for power-critical hearing aids. We achieve the low-power and small IC area attributes by our proposed common pre-computational unit to generate a set of pre-calculated intermediate values that is shared by all 16 channels. We also take advantage of the consecutive zeros in the coefficients of the filter channels, allowing the multiplexers therein to be simplified. We show that our design is very competitive compared to reported designs, and with the advantages of higher stopband attenuation and linear phase frequency response. Compared to a design using the usual approach, our design features 47% lower power dissipation and 37% smaller IC area.
机译:我们描述了一个16通道临界状间隔开,高阻带衰减($ geqslant60 $ dB,109th $,times,$ 16阶),微功耗(247.5$mu$W@1.1 V,0.96 MHz),小型集成电路(IC )(1.62 mm$^2$@0.35-$mu$m CMOS)有限脉冲响应滤波器组核心,用于功率关键型助听器。我们通过建议的通用预计算单元来实现低功耗和小IC面积属性,以生成一组被所有16个通道共享的预计算中间值。我们还利用了滤波器通道系数中的连续零,从而简化了其中的多路复用器。我们证明,与已报道的设计相比,我们的设计具有很高的竞争力,并且具有更高的阻带衰减和线性相位频率响应的优势。与使用常规方法的设计相比,我们的设计的功耗降低了47%,IC面积减小了37%。

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