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Low-power low-area techniques for multichannel recording circuits dedicated to biomedical experiments

机译:用于生物医学实验的多通道记录电路的低功耗低面积技术

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This paper presents techniques introduced to minimize both power and silicon area of the multichannel integrated recording circuits dedicated to biomedical experiments. The proposed methods were employed in multichannel integrated circuit fabricated in CMOS 180nm process and were validated with the use of a wide range of measurements. The results show that both a single recording channel and correction blocks occupy about 0.061 mm2 of the area and consume only 8.5 μW of power. The input referred noise is equal to 4.6 μVRMS. With the use of additional digital circuitry, each of the recording channels may be independently configured. The lower cut-off frequency may be set within the range of 0.1 Hz–700 Hz, while the upper cut-off frequency, depending on the recording mode chosen, can be set either to 3 kHz/13 kHz or may be tuned in the 2 Hz–400 Hz range. The described methods were introduced in the 64-channel integrated circuit. The key aspect of the proposed design is the fact that proposed techniques do not limit functionality of the system and do not deteriorate its overall parameters.
机译:本文介绍了旨在最小化专门用于生物医学实验的多通道集成记录电路的功率和硅面积的技术。所提出的方法被用于以CMOS 180nm工艺制造的多通道集成电路中,并已通过广泛的测量方法得到了验证。结果表明,单个记录通道和校正块都占用约0.061 mm2的面积,并且仅消耗8.5μW的功率。输入参考噪声等于4.6μVRMS。通过使用附加的数字电路,可以独立配置每个记录通道。较低的截止频率可以在0.1 Hz至700 Hz的范围内设置,而较高的截止频率可以根据所选的录制模式设置为3 kHz / 13 kHz,也可以在2 Hz–400 Hz范围。所描述的方法被引入64通道集成电路中。提出的设计的关键方面是,提出的技术不会限制系统的功能并且不会降低其总体参数。

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