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Low-Noise Amplifier Circuit for Embedded Electrophysiological Recording with Adjustable Gain and High-Pass Filtering

机译:可调增益和高通滤波的嵌入式电生理记录低噪声放大器电路

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This paper describes a fully-integrated, differential, dual-channel, gain-adjustable and bandwidth-adjustable neural preamplifier circuit. This chip has been designed to enable commercial-off-the-shelf (COTS) embedded-networked sensors (ENS) to acquire electrophysiological signals from mobile test subjects, while allowing for the user to remotely adjust amplifier gain and high-pass filtering characteristics for dynamically switching between local field potential and spike acquisition. The preliminary data presented in this paper has been derived from circuit simulations in Spectre, as the chip has been submitted for fabrication in a standard dual-poly dual-metal 1.5-驴m process. The 2.2 脳 2.2-mm2 chip will consume 127 驴A of standby current per channel while operating from a single 3-V supply. Gain and high-pass corner frequency are voltage controlled, and can vary between 40 to 90 dB, and 0.1 to 1000 Hz, respectively, while rejecting the large DC offsets that occur at the interface between the tissue and electrode surface. The low-pass cutoff frequency is set to approximately 10 kHz. Simulated input-referred noise is 4.4 驴Vrms between 0.5 and 5000 Hz.
机译:本文介绍了一种完全集成的,差分,双通道,增益可调和带宽可调的神经前置放大器电路。该芯片的设计使商用(COTS)嵌入式网络传感器(ENS)能够从移动测试对象中获取电生理信号,同时允许用户远程调整放大器增益和高通滤波特性,从而在本地场电势和峰值采集之间动态切换。本文提供的初步数据来自Spectre中的电路仿真,因为该芯片已提交用于标准双多晶硅双金属1.5-驴工艺的制造。 2.2英寸2.2毫米2芯片在使用3V单电源供电时,每通道将消耗127 KEYA的待机电流。增益和高通转折频率受电压控制,并且分别在40至90 dB和0.1至1000 Hz之间变化,同时抑制了在组织和电极表面之间的界面处发生的大DC偏移。低通截止频率设置为大约10 kHz。模拟的参考输入噪声为0.5至5000 Hz之间的4.4驴Vrms。

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