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Tuning the low cut-off frequency in multichannel neural recording amplifiers by the on-chip correction DACs

机译:通过片上校正DAC调整多通道神经记录放大器中的低截止频率

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This paper presents a design and measurements of multichannel integrated circuits dedicated to recording of neurobiological signals. 64 recording channels have been implemented in a single chip using a commercially available CMOS 180 nm process. A single recording amplifier consumes only 25 µW from 1.8 V supply and occupies 0.13 mm2 of the silicon area. Its main parameters such as the low/high cut off frequencies and the voltage gain are controlled thanks to the on-chip register. User is able to change the low cut off frequency in the 60 mHz – 100 Hz range in each channel independently while the high cut off frequency and the voltage gain can be set to 4.7 kHz / 12 kHz and 139 V/V / 1100 V/V respectively. The input referred noise depends on the bandwidth of the recording channel and is equal to 3.7 µV (100 Hz – 12 kHz) or to 7.6 µV (3 Hz – 12 kHz). This paper deals with problems that are present in a multichannel integrated recording electronics for neurobiology experiments such as: ability to record input signals in the frequency range below a single Hz, and the spread of the cut off frequencies from channel to channel in such systems. Up to our knowledge the solution presented in this paper is the first one reporting the multichannel IC that is able both to record extremely low frequency signals in each channel with a small spread of this parameter from channel to channel.
机译:本文介绍了专用于记录神经生物信号的多通道集成电路的设计和测量。 64记录通道已经使用市售的CMOS 180nm工艺在单个芯片中实现。单个记录放大器从1.8 V电源的仅消耗25μW,占用0.13 mm 2 的硅区域。由于片上寄存器,它的主要参数如低/高切断频率和电压增益。用户能够独立地在每个通道中更改60 MHz - 100 Hz范围内的低切断频率,而高切断频率和电压增益可以设置为4.7 kHz / 12 kHz和139 V / V / 1100 V / v分别。输入引用的噪声取决于记录通道的带宽,等于3.7μV(100Hz -12kHz)或7.6μV(3Hz-12 kHz)。本文涉及用于神经生物学实验的多通道集成记录电子设备中存在的问题,例如:能够在单个Hz以下的频率范围内记录输入信号,以及在这种系统中的频道到通道的切断频率的扩展。据了解本文中提出的解决方案是第一个报告多通道IC,其能够在每个通道中记录极低频率信号,从通道到通道。

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