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首页> 外文期刊>International journal of electronics >A clocked high-pass-filter-based offset cancellation technique for high-gain biomedical amplifiers
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A clocked high-pass-filter-based offset cancellation technique for high-gain biomedical amplifiers

机译:基于时钟的基于高通滤波器的失调对消技术,用于高增益生物医学放大器

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摘要

In this article, a simple offset cancellation technique based on a clocked high-pass filter with extremely low output offset is presented. The configuration uses the on-resistance of a complementary metal oxide semiconductor (CMOS) transmission gate (X-gate) and tunes the lower 3-dB cut-off frequency with a matched pair of floating capacitors. The results compare favourably with the more complex auto-zeroing and chopper stabilisation techniques of offset cancellation in terms of power dissipation, component count and bandwidth, while reporting inferior output noise performance. The design is suitable for use in biomedical amplifier systems for applications such as ENG-recording. The system is simulated in Spectre Cadence 5.1.41 using 0.6 μm CMOS technology and the total block gain is ~83.0 dB while the phase error is <5°. The power consumption is 10.2 mW and the output offset obtained for an input monotone signal of 5 μVpp is 1.28 μV. The input-referred root mean square noise voltage between 1 and 5 kHz is 26.32 nV/VHz.
机译:在本文中,提出了一种基于时钟高通滤波器且输出偏移极低的简单偏移消除技术。该配置使用互补金属氧化物半导体(CMOS)传输门(X-gate)的导通电阻,并通过匹配的一对浮动电容器来调谐较低的3-dB截止频率。该结果与功耗,组件数量和带宽方面更复杂的偏移消除自动调零和斩波稳定技术相比具有优势,同时报告的输出噪声性能较差。该设计适用于生物医学放大器系统中的应用,例如ENG记录。该系统在Spectre Cadence 5.1.41中使用0.6μmCMOS技术进行了仿真,总块增益为〜83.0 dB,而相位误差<5°。功耗为10.2 mW,对于5μVpp的输入单调信号获得的输出失调为1.28μV。 1至5 kHz之间的输入参考均方根噪声电压为26.32 nV / VHz。

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