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Comparision of two different architectures of multichannel readout ASICs for neurobiological experiments

机译:神经学实验的两种不同结构的多通道读出ASIC的比较

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We present two different approaches to the multichannel recording ASICs dedicated for neurobiology experiments. The ASICs are processed in 180nm CMOS technology and occupy the same silicon area of 5×2.3 mm2. Presented integrated circuits include 64 recording channels and have a possibility to tune their low and high cut-off frequencies. Each recording channel consumes about 200 μW of power and is characterized by the input referred noise as low as 6 μV rms. Both presented ASICs have good uniformity concerning the spread of their electrical parameters (like gain, corner frequencies, offsets, noise) from channel to channel. In order to decrease the number of output wires the 64:1 analog multiplexer is used in both cases. This paper presents the architecture, the layout, and the measurement results of the ASICs. Additionally it reports about the system we have built for neurobiology experiments that comprises of presented ASICs and micromachined recording electrodes. We show the preliminary measurements of action potentials from the thalamus of the rat under urethane anesthesia.
机译:我们为神经生物学实验专用的多通道记录ASIC提供了两种不同的方法。 ASIC采用180nm CMOS技术进行处理,并占据5×2.3 mm 2 的相同硅面积。提出的集成电路包括64个记录通道,并有可能调节其低截止频率和高截止频率。每个记录通道消耗约200μW的功率,其特点是输入噪声低至6μVrms。所展示的两种ASIC在通道之间的电参数分布(如增益,转折频率,偏移,噪声)方面均具有良好的一致性。为了减少输出线的数量,在两种情况下都使用64:1模拟多路复用器。本文介绍了ASIC的体系结构,布局和测量结果。此外,它还报告了我们为神经生物学实验构建的系统,该系统包括现有的ASIC和微加工的记录电极。我们显示了氨基甲酸乙酯麻醉下大鼠丘脑动作电位的初步测量。

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