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A practical micropower programmable bandpass filter for use in bionic ears

机译:适用于仿生耳的实用微功率可编程带通滤波器

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Subthreshold Gm-C filters offer the low power and wide tunable range required for use in fully implantable bionic ears. The major design challenge that must be met is increasing the linear range. A capacitive-attenuation technique is presented and refined to allow the construction of wide-linear-range bandpass filters with greater than 1 Vpp swings. For a 100-200 Hz fully differential filter with second-order roll off slopes and greater than 60 dB dynamic range, experimental results from a 1.5-Μm, 2.8-V BiCMOS chip yield only 0.23 ΜW power consumption; for a 5-10 kHz filter with the same specifications the power only increased to 6.36 ΜW. Fully differential filters with first-order slopes had a dynamic range of 66 dB and power consumptions of 0.12 and 3.36 ΜW in the 100-200 Hz and 5-10 kHz cases, respectively. We show that our experimental results of noise and linear range are in good accord with theoretical estimates of these quantities.
机译:亚阈值Gm-C滤波器可为完全植入仿生耳提供所需的低功率和宽可调范围。必须满足的主要设计挑战是增加线性范围。提出并完善了一种电容衰减技术,以允许构建具有大于1 Vpp摆幅的宽线性范围带通滤波器。对于具有二阶滚降斜率且动态范围大于60 dB的100-200 Hz全差分滤波器,1.5-μm,2.8-V BiCMOS芯片的实验结果仅产生0.23 MW的功耗。对于具有相同规格的5-10 kHz滤波器,功率仅增加到6.36 MW。具有一阶斜率的全差分滤波器在100-200 Hz和5-10 kHz的情况下分别具有66 dB的动态范围和0.12和3.36 MW的功耗。我们表明,我们的噪声和线性范围的实验结果与这些量的理论估计非常吻合。

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