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An Improved Capacitance-to-Digital Converter for Leaky Capacitive Sensors

机译:用于漏电电容传感器的改进的电容数字转换器

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This paper presents a capacitance-to-digital converter (CDC) that employs a novel approach to perform an accurate measurement of capacitance of a leaky capacitive sensor. This CDC employs a sinusoidal source for excitation, which is advantageous for various sensing applications, including ice detection, liquid level measurement, humidity measurement, proximity sensing, and so on. Recently, an impedance-to-digital converter (IDC) based on the dual-slope conversion technique has been reported. It can measure the value of capacitance even when a parallel resistance is present, but requires a large number of sinusoidal excitation cycles to complete a conversion, leading to poor update rate. The CDC proposed in this paper gives much higher (about 125 times) update rate compared with the IDC as it requires only a few excitation cycles for the conversion, but still gives an accurate output due to the use of a specially designed clock, which helps to count the number of charge packets received by the integrator capacitor during the deintegration. Other than the operation of the CDC, this paper also describes an outcome of a thorough analysis conducted to quantify the effect of various circuit parameters on the output of the new CDC. A prototype of the improved CDC has been developed, and its performance parameters, such as accuracy (±0.27%), conversion time (24 ms), effect of parallel resistance, and so on, have been tested, and the results are reported in this paper.
机译:本文介绍了一种电容数字转换器(CDC),它采用一种新颖的方法来对泄漏电容传感器的电容进行精确测量。该CDC使用正弦波源进行激励,这对于各种感测应用(包括冰检测,液位测量,湿度测量,接近感测等)都是有利的。最近,已经报道了基于双斜率转换技术的阻抗数字转换器(IDC)。即使存在并联电阻,它也可以测量电容值,但是需要大量的正弦激励周期才能完成转换,从而导致更新速度较差。与IDC相比,本文提出的CDC提供了更高的更新速率(约125倍),因为它仅需要几个激励周期即可进行转换,但由于使用了专门设计的时钟,仍可提供准确的输出,这有助于计算去积分过程中积分电容器接收到的电荷包的数量。除了CDC的操作以外,本文还介绍了进行彻底分析的结果,以量化各种电路参数对新CDC输出的影响。已经开发出改进的CDC的原型,并测试了其性能参数,例如精度(±0.27%),转换时间(24 ms),并联电阻的影响等,并将结果报告在这篇报告。

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