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Capacitive instrumentation amplifier for low-power bio potential signal detection

机译:用于低功耗生物电位信号检测的电容仪表放大器

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This paper presents the design of a low-power capacitively-coupled CMOS instrumentation amplifier (INA) for long term bio potential measurement and recording applications. The increased demand for low cost, portable and wearable medical monitoring equipment for EEG (electroencephalogram) and ECG (electrocardiogram) is in turn giving rise to a need for very low power, but high precision, analogue front ends. EEG and ECG signals are differential signals characterized by very low amplitude (up to 100µV for EEG and up to 5mV for ECG), relatively low bandwidth (0.5Hz – 150/300Hz) and a quite noisy environment. We present an instrumentation amplifier that achieves the specifications recommended by the application while lowering as much as possible the power consumption through appropriate design choices. The front end has been designed and simulated using a CMOS 0.35µm AMS process.
机译:本文介绍了用于长期生物电位测量和记录应用的低功耗电容耦合CMOS仪表放大器(INA)的设计。对脑电图(脑电图)和ECG(心电图)的低成本,便携和可穿戴医疗监测设备的需求增加又导致需要非常低的功率,但高精度,模拟前端。 EEG和ECG信号是差分信号,其特征在于非常低的幅度(EEG高达100μV,ECG高达5MV),带宽相对低(0.5Hz - 150 / 300Hz)和相当嘈杂的环境。我们提供了一种仪表放大器,可通过适当的设计选择实现应用程序推荐的规格,同时尽可能降低功耗。前端已经设计和模拟了CMOS0.35μm工艺。

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