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A highly sensitive frontend IC for very robust capacitive vortex flowmeter sensors

机译:用于非常强大的电容式涡流流量计传感器的高度敏感的前端IC

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This paper presents a capacitive sensor interface IC for vortex flow measurements. With this interface, we can measure flows down to half the minumum flow speed of the state of the art, for media temperatures up to 400°C and pressures up to 200 bar in pipes from 15mm up to 300mm diameter, even in the presence of mechanical vibrations, for media ranging from air over oil to mercury. The mechanical sensor used is very robust in the presence of steam hammers. The sensor IC was realized in 0.35μm CMOS and operates over a temperature range of ?50?125°C. It adds input-referred noise far below the kT/C noise of the sensor, 1.17 aF/√Hz at f = 128 kHz. The IC consumes 1.5mA from a 3.3V supply and has an area of 10mm. The main signal processing problems to solve were the compensation of time-varying offsets up to 8 pF while measuring 60 aF, and the digital detection of signal frequencies at 1.15 dB SNR, done by adaptive filtering. The sensor IC has a production yield of 96.5 %.
机译:本文介绍了一种用于涡流流量测量的电容式传感器接口IC。 通过该界面,我们可以测量流量下降到现有技术的小型流速的一半,对于介质温度,对于高达400°C的介质温度,直径为15mm的管道高达200巴,即使在存在 机械振动,用于媒体从空气到汞的空气。 使用的机械传感器在蒸汽锤存在下非常稳健。 传感器IC在0.35μmcmos中实现,并在Δ50≤125°C的温度范围内操作。 它在F = 128 kHz时增加了远低于传感器的kt / c噪声的输入引用的噪音。 IC从3.3V电源消耗1.5mA,面积为10mm。 要解决的主要信号处理问题是通过自适应滤波进行的60 AF测量60 AF的时变偏移的补偿高达8pF,并通过自适应滤波完成的信号频率。 传感器IC的产量为96.5%。

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