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A Power Adaptive, 1.22-pW/Hz, 10-MHz Read-Out Front-End for Bio-Impedance Measurement

机译:功率自适应,1.22pW / Hz,10 MHz读出前端,用于生物阻抗测量

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This paper presents a read-out front-end application-specific integrated circuit (ASIC) for the measurement of tissue impedances. The 10 mm(2) 2-channel front-end ASIC is fabricated in a 0.18 mu m CMOS technology. The measurement results show that the proposed ASIC operates over a frequency range of 100 Hz up to 10 MHz. The ASIC has 1.22 pW/Hz power performance, with an SNR over 72 dB for frequencies <= 1 MHz, and over 65 dB SNR for frequencies >= 1 MHz. The total measured power consumption of the read-out front-end is shown to range from 2.1 to 21.7 mW depending on the input frequency. To achieve a wide dynamic range, the instrumentation amplifier has an adaptive gain control feature, and it employs programmable bias currents and reconfigurable structure to save power while processing low-frequency signals. A dual digital-to-analog converter (DAC) hybrid SAR analog-to-digital converter (ADC) is presented that reduces the power consumption of the ADC driver by sevenfold for frequencies between 4 kHz and 1 MHz.
机译:本文提出了一种用于组织阻抗测量的读出式前端专用集成电路(ASIC)。 10毫米(2)2通道前端ASIC采用0.18微米CMOS技术制造。测量结果表明,拟议的ASIC在100 Hz至10 MHz的频率范围内工作。 ASIC具有1.22 pW / Hz的功率性能,对于<= 1 MHz的频率,SNR超过72 dB,对于> = 1 MHz的频率,SNR超过65 dB。根据输入频率,读出的前端的总测量功耗显示为2.1至21.7 mW。为了实现宽动态范围,仪表放大器具有自适应增益控制功能,并采用可编程偏置电流和可重新配置的结构来节省功率,同时处理低频信号。提出了一种双数模转换器(DAC)混合SAR模数转换器(ADC),对于4 kHz至1 MHz之间的频率,该转换器可将ADC驱动器的功耗降低七倍。

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