CMOS芯片
模拟前端
计算机科学
炸薯条
有限冲激响应
电子工程
波形
放大器
前端和后端
无限冲激响应
自适应滤波器
电气工程
带宽(计算)
工程类
电压
数字滤波器
电信
操作系统
作者
Aria Samiei,Hossein Hashemi
出处
期刊:IEEE Journal of Solid-state Circuits
[Institute of Electrical and Electronics Engineers]
日期:2021-02-10
卷期号:56 (7): 2142-2157
被引量:39
标识
DOI:10.1109/jssc.2021.3056040
摘要
We present a 180-nm CMOS bidirectional neural interface system-on-chip that enables simultaneous recording and stimulation with on-chip stimulus artifact cancelers. The front-end cancellation scheme incorporates a least-mean-square engine that adapts the coefficients of a 2-tap infinite-impulse-response filter to replicate the stimulation artifact waveform and subtract it at the front-end. Measurements demonstrate the efficacy of the canceler in mitigating artifacts up to 700 mVpp and reducing the front-end amplifier saturation recovery time in response to a 2.5 Vpp artifact. Each recording channel houses a pair of adaptive infinite-impulse-response filters, which enable cancellation of the artifacts generated by the simultaneous operation of the 2 on-chip stimulators. The analog front-end consumes 2.5 μW of power per channel, has a maximum gain of 50 dB and a bandwidth of 9.0 kHz with 6.2 μVrms integrated input-referred noise.
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