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A 96-Channel Full Data Rate Direct Neural Interface in 0.13 um CMOS

  • Authors:
    Ross M Walker (Stanford), Paul Nuyujukian (Stanford), Hua Gao (Stanford), Kofi Makinwa (Delft University), Krishna Shenoy (Stanford), Teresa Meng (Stanford), Boris Murmann (Stanford)
    Publication ID:
    P058972
    Publication Type:
    Paper
    Received Date:
    29-Jan-2011
    Last Edit Date:
    31-Jan-2011
    Research:
    2047.004 (Mass. Institute of Technology)

Abstract

A power and area efficient sensor interface consumes 6.5 mWfrom 1.2 V supplies while occupying 5 mm x 5 mm in 0.13 um CMOS. The interface enables full bandwidth access to 96 channels of data acquired from cortical microelectrodes as part of a head-mounted wireless recording system for unconstrained primate neuroscience experiments. Open loop amplification and switched-capacitor (SC) filtering with 2.2 u Vrms input referred noise conditions the signals before conversion by 10-bit SARADCs with 60.3 dB SNDR and 41.5 fJ/conv step.

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