A low-power portable ECG sensor interface with dry electrodes

来源 :Journal of Semiconductors | 被引量 : 0次 | 上传用户:jackieWXM
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This paper describes a low-power portable sensor interface dedicated to sensing and processing electrocardiogram (ECG) signals.Dry electrodes were employed in this ECG sensor,which eliminates the need of conductive gel and avoids complicated and mandatory skin preparation before electrode attachment.This ECG sensor system consists of two ICs,an analog front-end(AFE) and a successive approximation register analog-todigital converter(SAR ADC) containing a relaxation oscillator.This proposed design was fabricated in a 0.18μm 1P6M standard CMOS process.The AFE for extracting the biopotential signals is essential in this ECG sensor. In measurements,the AFE obtains a mid-band gain of 45 dB,a bandwidth from 0.6 to 160 Hz,and a total input referred noise of 2.8μV rms while consuming 1μW from the 1.8 V supply.The noise efficiency factor(NEF) of our design is 3.4.After conditioning,the amplified ECG signal is digitized by a 12-bit SAR ADC with 61.8 dB SNDR and 220 fJ/conversion-step.Finally,a complete ECG sensor interface with three dry copper electrodes is demonstrated in real-word setting,showing successful recordings of a capture ECG waveform. This paper describes a low-power portable sensor interface dedicated to sensing and processing electrocardiogram (ECG) signals. Dry electrodes were used in this ECG sensor, which eliminates the need of conductive gel and avoids complicated and mandatory skin preparation before electrode attachment. This ECG sensor system consists of two ICs, an analog front-end (AFE) and a successive approximation register analog-digital converter (SAR ADC) containing a relaxation oscillator. This proposed design was fabricated in a 0.18 μm 1P6M standard CMOS process. AFE for extracting the biopotential signals is essential in this ECG sensor. In measurements, the AFE gain a mid-band gain of 45 dB, a bandwidth from 0.6 to 160 Hz, and a total input referred noise of 2.8 μV rms while consuming 1 μW from the 1.8 V supply.The noise efficiency factor (NEF) of our design is 3.4.After conditioning, the amplified ECG signal is digitized by a 12-bit SAR ADC with 61.8 dB SNDR and 220 fJ / conversion-step. Capital, a complete ECG sensor interface with three dry copper electrodes is demonstrated in real-word setting, showing successful recordings of a captured ECG waveform.
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