首页> 外文会议>ESSCIRC Conference 2016: 42nd European Solid-State Circuits Conference >An energy-efficient 17-bit noise-shaping Dual-Slope Capacitance-to-Digital Converter for MEMS sensors
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An energy-efficient 17-bit noise-shaping Dual-Slope Capacitance-to-Digital Converter for MEMS sensors

机译:MEMS传感器的高能效17位噪声整形双斜率电容数字转换器

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摘要

A noise-shaping Dual-Slope (DS) Capacitance-to-Digital Converter (CDC), specifically designed for interfacing capacitive MEMS sensors, is presented. In particular, this work proposes a design with a MEMS sensor built with a bridge of capacitors. In this bridge, some capacitors are function of the pressure in order to obtain a variation in the output of the bridge related with the change of 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 time domain noise-shaping Dual-Slope ADC is used to digitalize the magnitude of the capacitive bridge. The use of time instead of amplitude resolution leads to the following strengths: 1) intrinsically small sensitivity to temperature and process variations; 2) simplicity of trimming offset and gain to correct the sensor parameter spread; and 3) area and energy efficient implementation. The effectiveness of the method is demonstrated by measurements performed on a prototype, designed and fabricated using standard digital 0.13μm CMOS technology. Experimental results show that it achieves a resolution of 17-bit, which corresponds to a capacitive resolution of 5.4aF, while consuming only 146μA from a 1.5V power supply, with an effective area of 0.317mm2.
机译:提出了一种专为连接电容性MEMS传感器而设计的噪声整形双斜率(DS)电容数字转换器(CDC)。尤其是,这项工作提出了一种带有MEMS传感器的设计,该MEMS传感器带有一个电容器桥。在该电桥中,一些电容器是压力的函数,以便获得与压力变化有关的电桥输出的变化。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,使用时域噪声整形双斜率ADC来数字化电容电桥的幅度。使用时间而不是幅度分辨率可以带来以下优势:1)本质上对温度和工艺变化的敏感性很小; 2)修正失调和增益以简化传感器参数扩展的简便性; 3)面积和能源高效实施。通过使用标准数字0.13μmCMOS技术对原型进行测量,设计和制造,证明了该方法的有效性。实验结果表明,该器件可实现17位分辨率,相当于5.4aF的电容分辨率,而1.5V电源仅消耗146μA的电流,有效面积为0.317mm2。

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