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A Capacitance-To-Digital Converter for MEMS Sensors for Smart Applications

机译:用于智能应用的MEMS传感器的电容数字转换器

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摘要

The use of MEMS sensors has been increasing in recent years. To cover all the applications, many different readout circuits are needed. To reduce the cost and time to market, a generic capacitance-to-digital converter (CDC) seems to be the logical next step. This work presents a configurable CDC designed for capacitive MEMS sensors. The sensor is built with a bridge of MEMS, where some of them function with pressure. Then, the capacitive to digital conversion is realized using two steps. First, a switched-capacitor (SC) preamplifier is used to make the capacitive to voltage (C-V) conversion. Second, a self-oscillated noise-shaping integrating dual-slope (DS) converter is used to digitize this magnitude. The proposed converter uses time instead of amplitude resolution to generate a multibit digital output stream. In addition it performs noise shaping of the quantization error to reduce measurement time. This article shows the effectiveness of this method by measurements performed on a prototype, designed and fabricated using standard 0.13 µm CMOS technology. Experimental measurements show that the CDC achieves a resolution of 17 bits, with an effective area of 0.317 mm2, which means a pressure resolution of 1 Pa, while consuming 146 µA from a 1.5 V power supply.
机译:近年来,MEMS传感器的使用一直在增加。为了覆盖所有应用,需要许多不同的读出电路。为了降低成本和缩短上市时间,通用的电容数字转换器(CDC)似乎是合理的下一步。这项工作提出了一种针对电容式MEMS传感器设计的可配置CDC。该传感器由MEMS桥接器构成,其中一些在压力下起作用。然后,使用两个步骤实现电容到数字的转换。首先,使用开关电容(SC)前置放大器进行电容到电压(C-V)转换。其次,使用自激式噪声整形集成双斜率(DS)转换器将该幅度数字化。提出的转换器使用时间而不是幅度分辨率来生成多位数字输出流。另外,它执行量化误差的噪声整形以减少测量时间。本文通过对使用标准0.13 µm CMOS技术设计和制造的原型进行测量,显示了该方法的有效性。实验测量表明,CDC的分辨率为17位,有效面积为0.317 mm 2 ,这意味着压力分辨率为1 Pa,而1.5 V电源消耗146 µA的电流。

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