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Design of a Low Noise, Low Power, High Dynamic Range Amplifier-Filter Circuit for Recording Neural Signals Using Multielectrode Arrays

机译:使用多电极阵列记录神经信号的低噪声,低功耗,高动态范围放大器电路的设计

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In the paper we present a design of the circuit for recording and processing electrical signals from alive neural tissue using multi-electrode arrays. The design is optimised with respect to critical requirements for such circuits, i.e. low noise, low power dissipation, good linearity and high dynamic range. The single readout channel is built of an AC-coupling circuit with the cut-off frequency below 1Hz, low noise preamplifier, two stages of band-pass filters with tuneable bandwidth from 1Hz to 10kHz and an output amplifier with variable gain. The circuit has been designed in a 0.35μm CMOS process and it is suitable for integration in a multi-channel ASIC.
机译:在本文中,我们使用多电极阵列呈现用于从活神经组织从活神经组织记录和处理电信号的电路的设计。该设计是针对这种电路的关键要求进行了优化,即低噪声,低功耗,良好的线性度和高动态范围。单个读数通道由截止频率低于1Hz,低噪声前置放大器的交流耦合电路,带宽过滤器的两个阶段,可调带宽从1Hz到10kHz和具有可变增益的输出放大器。该电路设计成0.35μmCMOS工艺,适用于多通道ASIC中的集成。

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