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552 nW per channel 79 nV/rtHz ECG acquisition front-end with multi-frequency chopping

机译:每通道552 nW 79 nV / rtHz ECG采集前端,带多频斩波

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An ultra low power low noise analog front-end for ECG signal acquisition is demonstrated. Key to its performance is a multi-frequency chopping technique that helps to significantly reduce power consumption by frequency-division multiplexing of two channels in a single low noise instrumentation amplifier. A complete two-channel analog front-end, chopped at frequencies of 4 kHz and 8 kHz, is implemented in a 0.18 µm CMOS technology from UMC. A current reuse technique is employed in the first stage of the instrumentation amplifier to further improve efficiency. Simulation results show that the front-end achieves an input-referred noise voltage density of 79 nV/√Hz while consuming a current of 460 nA per channel from a 1.2 V power supply. The 1/f noise corner of the system is around 10 Hz and the CMRR of 138 dB.
机译:演示了用于ECG信号采集的超低功耗,低噪声模拟前端。其性能的关键是多频斩波技术,该技术通过在单个低噪声仪表放大器中对两个通道进行频分复用来帮助显着降低功耗。 UMC采用0.18 µm CMOS技术实现了完整的两通道模拟前端,分别在4 kHz和8 kHz的频率下进行了斩波。仪表放大器的第一阶段采用了电流重用技术,以进一步提高效率。仿真结果表明,前端通过1.2 V电源在每通道消耗460 nA电流的同时,实现了79 nV /√Hz的输入参考噪声电压密度。系统的1 / f噪声角约为10 Hz,CMRR为138 dB。

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