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A Low-Power 0.7 $\mu {\rm V_{rms}}$ 32-Channel Mixed-Signal Circuit for ECoG Recordings

IEEE journal on emerging and selected topics in circuits and systems(2011)

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摘要
Monitoring of electrocorticography signals using multi-electrode array creates new opportunities for neural prosthetic applications. In this paper, we present a 32-channel recording ASIC that provides low-noise amplification and analog filtering. It also includes a 12-bit analog-to-digital conversion function, and offers programmable output rates through a serial peripheralinterface (SPI). The targeted application is a remote-powered wireless implantable ECoG recording system. Each recording channel has a measured 0.7 mu m input-referred noise on a [0.5-300 Hz] bandwidth. The device was fabricated in a 0.35 mu m complementary metal-oxide-semiconductor process for a total die area of 86 mm(2) with an analog power consumption limited to 134 mu W per channel.
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关键词
Action potentials,bio-signal amplifier,brain-computer interface (BCI),electrocorticography (ECoG),local field potential (LFP),noise efficiency factor
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