Literature DB >> 23853341

Linear-phase delay filters for ultra-low-power signal processing in neural recording implants.

Benoit Gosselin, Mohamad Sawan, Eric Kerherve.   

Abstract

We present the design and implementation of linear-phase delay filters for ultra-low-power signal processing in neural recording implants. We use these filters as low-distortion delay elements along with an automatic biopotential detector to perform integral waveform extraction and efficient power management. The presented delay elements are realized employing continuous-time OTA-C filters featuring 9th-order equiripple transfer functions with constant group delay. Such analog delay enables processing neural waveforms with reduced overhead compared to a digital delay since it does not requires sampling and digitization. It uses an allpass transfer function for achieving wider constant-delay bandwidth than all-pole does. Two filters realizations are compared for implementing the delay element: the Cascaded structure and the Inverse follow-the-leader feedback filter. Their respective strengths and drawbacks are assessed by modeling parasitics and non-idealities of OTAs, and by transistor-level simulations. A budget of 200 nA is used in both filters. Experimental measurements with the chosen filter topology are presented and discussed.

Year:  2010        PMID: 23853341     DOI: 10.1109/TBCAS.2010.2045756

Source DB:  PubMed          Journal:  IEEE Trans Biomed Circuits Syst        ISSN: 1932-4545            Impact factor:   3.833


  3 in total

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Authors:  Benoit Gosselin
Journal:  Sensors (Basel)       Date:  2011-04-27       Impact factor: 3.576

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Journal:  Sensors (Basel)       Date:  2015-09-09       Impact factor: 3.576

3.  A CMOS Low Pass Filter for SoC Lock-in-Based Measurement Devices.

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Journal:  Sensors (Basel)       Date:  2019-11-26       Impact factor: 3.576

  3 in total

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