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A Chopper Stabilized Biasing Circuit Suitable for Cascaded Wheatstone-Bridge-Like Sensors

机译:适用于级联惠斯通电桥-桥式传感器的斩波稳定偏置电路

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Many sensitive devices are based on Wheatstone bridge structures or can be modeled as Wheatstone bridges like Hall effect magnetic sensors. These sensors require a biasing circuit, and many solutions were proposed. However, up to now, none of them gives the opportunity to cascade several sensors, while such a cascade can help in improving the signal-to-noise-ratio (SNR) or in removing some parasitic effects through the direct summing/subtraction of sensing/parasitic effects. The circuit this paper presents is based on an operational transconductance amplifier with$n$output stages, and allows to cascade$n$Wheatstone-bridge-like sensors. It is shown that the maximal number of bridges which can be efficiently cascaded is limited by the output resistance of the output stages. Nevertheless, this number remains sufficient in practical cases, easily up to$n=10$. To remove the$1/f$noise coming from the output stages, a chopper stabilization is used. We also establish formulas which allow quick hand calculation of the main parameters of the circuit. A prototype where 10 Hall effect sensors are cascaded is presented as well as experimental results.
机译:许多敏感设备都基于惠斯通电桥结构,或者可以建模为惠斯通电桥,例如霍尔效应磁传感器。这些传感器需要偏置电路,因此提出了许多解决方案。但是,到目前为止,它们都没有提供级联多个传感器的机会,而这种级联可以通过直接求和/减去传感来帮助改善信噪比(SNR)或消除一些寄生效应。 /寄生效应。本文介绍的电路基于具有输出级的运算跨导放大器,并允许级联像惠斯通电桥一样的传感器。结果表明,可以有效级联的最大电桥数量受到输出级输出电阻的限制。然而,这个数字在实际情况下仍然足够,很容易达到$ n = 10 $。为了消除来自输出级的$ 1 / f $噪声,使用了斩波稳定器。我们还建立了可以快速计算电路主要参数的公式。展示了一个原型,其中层叠了10个霍尔效应传感器以及实验结果。

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