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A Battery-Less Portable ECG Monitoring System With Wired Audio Transmission

机译:具有有线音频传输的无电池便携式ECG监测系统

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This paper proposes a batteryless electrocardiogram (ECG) monitoring chip and intelligent system with wired audio transmission, which can be applied to long-term and real-time-ECG monitoring. The ECG signal is modulated and amplified in the front-end chip and then is transmitted through the microphone channel of the 3.5-mm headphone cable. The sinusoidal signals from the left and right channels are converted into a dc supply and a precise local oscillator signal in the front-end chip, respectively. The proposed system samples the signal through the high-precision audio analog-to-digital converter in smart devices and processes it through the internal software. Therefore, no external battery, local oscillator, and complicate modules are required in this system. A chopper/amplitude modulation (AM) reused mixer amplifier is proposed, which combines chopping with AM and reuses the local oscillator signal. The closed-loop gain of the proposed amplifier varies between 20 and 47 dB and can be automatically adjusted according to the amplitude of the output signal. The proposed chip was implemented in a standard 0.18-mu m CMOS process and occupies 1.07 x 0.95 mm(2) of core area. The power management module outputs a 1.5-V dc voltage to power the system. When connected with the headphone cable load, the chip consumes a total power of 156 mu W. The proposed monitoring system has been verified by the audio device and MATLAB in the PC. The test results show that the input reference noise of the demodulated signal is 2.12 mu V-rms (0.1-200 Hz) and the total harmonic distortion is 0.56%@ 3 mV input.
机译:本文提出了一种具有有线音频传输的无电池心电图监测芯片和智能系统,可以应用于长期和实时的心电图监测。 ECG信号在前端芯片中进行调制和放大,然后通过3.5毫米耳机电缆的麦克风通道传输。来自左和右通道的正弦信号分别在前端芯片中转换为直流电源和精确的本地振荡器信号。拟议的系统通过智能设备中的高精度音频模数转换器对信号进行采样,并通过内部软件对其进行处理。因此,此系统不需要外部电池,本地振荡器和复杂的模块。提出了一种斩波/调幅(AM)复用混频器放大器,该放大器将斩波与AM结合在一起并复用了本地振荡器信号。拟议的放大器的闭环增益在20至47 dB之间变化,并可根据输出信号的幅度自动调节。拟议的芯片采用标准的0.18微米CMOS工艺实现,占芯面积为1.07 x 0.95 mm(2)。电源管理模块输出1.5V直流电压为系统供电。当与耳机电缆负载连接时,该芯片消耗的总功率为156μW。所提议的监视系统已通过PC中的音频设备和MATLAB进行了验证。测试结果表明,解调信号的输入参考噪声为2.12μV-rms(0.1-200 Hz),总谐波失真为0.56%@ 3 mV输入。

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