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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A 0.0023 mm^2/ch. Delta-Encoded, Time-Division Multiplexed Mixed-Signal ECoG Recording Architecture With Stimulus Artifact Suppression
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A 0.0023 mm^2/ch. Delta-Encoded, Time-Division Multiplexed Mixed-Signal ECoG Recording Architecture With Stimulus Artifact Suppression

机译:0.0023 mm ^ 2 / ch。具有刺激伪影抑制的三角洲编码,时分复用混合信号ECOG录制架构

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This article demonstrates a scalable, time-division multiplexed biopotential recording front-end capable of real-time differential- and common-mode artifact suppression. A delta-encoded recording architecture exploits the power spectral density (PSD) characteristics of Electrocorticography (ECoG) recordings, combining an 8-bit ADC, and an 8-bit DAC to achieve 14 bits of dynamic range. The flexibility of the digital feedback architecture is leveraged to time-division multiplex 64 differential input channels onto a shared mixed-signal front-end, reducing channel area by 2x compared to the state-of-the-art. The feedback DAC used for delta-encoding also serves to cancel differential artifacts with an off-chip adaptive loop. Analysis of this architecture and measured silicon performance of a 65 nm CMOS test-chip implementation, both on the bench and in-vivo, are included with this paper.
机译:本文演示了一种能够实时差分和共模伪压的可扩展,时分多路复用的生物电位记录前端。达达编码的录制架构利用电压识别(ECOG)记录的功率谱密度(PSD)特性,组合8位ADC,以及8位DAC实现14位动态范围。与最先进的相比,数字反馈架构的灵活性与时分复用64差分输入通道一起利用到共享混合信号前端,减小频道面积2x。用于Δ编码的反馈DAC还用于取消带有片外自适应环路的差分伪像。本文还包括对该架构和65nm CMOS试验芯片实现的65nm CMOS试验芯片实现的分析,包括在本文中。

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