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A chopper current-feedback instrumentation amplifier with a 1 mHz 1/f noise corner and an AC-coupled ripple reduction loop

机译:斩波电流反馈仪表放大器,具有1 mHz 1 / f噪声角和交流耦合纹波减小环路

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摘要

This paper presents a chopper instrumentation amplifier for interfacing precision thermistor bridges. For high CMRR and DC gain, the amplifier employs a three-stage current-feedback topology with nested-Miller compensation. By chopping both the input and intermediate stages of the amplifier, a 1 mHz 1/f noise corner was achieved at an input-referred noise power spectral density (PSD) of 15 nV/¿Hz. To reduce chopper ripple, the amplifier employs a continuous-time AC-coupled ripple reduction loop. Due to its continuous-time nature, the loop causes no noise folding to DC and hence offers improved noise performance over auto-zeroed amplifiers. The loop reduces chopper ripple by more than 60 dB, to levels below the amplifier's own input-referred noise. Furthermore, a maximum input referred offset of 5 µ V and a CMRR greater than 120 dB were measured at a supply current of 230 µA at 5 V.
机译:本文提出了一种用于连接精密热敏电阻电桥的斩波仪表放大器。为了获得较高的CMRR和DC增益,该放大器采用了具有嵌套米勒补偿的三级电流反馈拓扑。通过斩波放大器的输入和中间级,在输入参考噪声功率谱密度(PSD)为15 nV / µHz时,获得了1 mHz 1 / f噪声角。为了减少斩波器纹波,该放大器采用了一个连续时间交流耦合的纹波减小环路。由于具有连续时间特性,因此该环路不会将噪声折叠到DC上,因此与自动调零放大器相比,噪声性能得到改善。该环路将斩波器的纹波降低了60 dB以上,达到了低于放大器自身输入参考噪声的水平。此外,在5 V的电源电流为230 µA时,测得的最大输入参考偏移为5 µV,CMRR大于120 dB。

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