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Design of a low-noise, high power efficiency neural recording front-end with an integrated real-time compressed sensing unit

机译:具有集成实时压缩传感单元的低噪声,高功率效率神经记录前端的设计

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This paper presents a 12-channel, low-power, high efficiency neural signal acquisition front-end for local field potential and action potential signals recording. The proposed neural front-end integrates low noise instrumentation amplifiers, low-power filter stages with configurable gain and cut-off frequencies, a successive approximation register (SAR) ADC, and a realtime compressed sensing processing unit. A capacitor coupled instrumentation amplifier integrated input impedance boosting has been designed, dissipating 1μA quiescent current. An input referred noise of 1.63μV was measured in the frequency band of 1Hz to 7kHz. The noise efficiency factor (NEF) of the amplifier is 0.76. The SAR ADC achieves an ENOB of 10.6-bit at a sampling rate of 1MS/s. A compressed sensing processing unit with configurable compression ratio, up to 8x, was integrated in the design. The design has been fabricated in 180nm CMOS, occupying 4.5mm×1.5mm silicon area. A portable neural recorder has been built with the custom IC and a commercial low-power wireless module. A 4.6g lithium battery supports the device for a continuous compressed sensing recording up to 70 hours.
机译:本文介绍了12通道,低功耗,高效神经信号采集前端,用于局部场电位和动作电位信号记录。所提出的神经前端集成了低噪声仪表放大器,低功耗滤波器级,具有可配置增益和截止频率,连续近似寄存器(SAR)ADC以及实时压缩检测处理单元。设计了电容器耦合仪表放大器集成输入阻抗升压,耗散了1μA静态电流。在1Hz至7kHz的频带中测量1.63μV的输入引用噪声。放大器的噪声效率因数(NEF)为0.76。 SAR ADC以1ms / s的采样率实现10.6位的eNOB。具有可配置压缩比的压缩检测处理单元,可在设计中集成为8倍。该设计已在180nm CMOS中制造,占地4.5mm×1.5mm硅区域。采用自定义IC和商业低功耗无线模块建立了便携式神经记录器。 4.6g锂电池支持可连续压缩检测录制的装置,可达70小时。

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