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A low-power monolithic three-axis accelerometer with automatically sensor offset compensated and interface circuit

机译:具有自动传感器偏移补偿和接口电路的低功耗单片三轴加速度计

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This work presents a monolithically integrated CMOS-MEMS three-axis capacitive accelerometer with an effective and practical method to compensate the sensor offset. By using correlated double sampling (CDS) and an automatic sensor offset compensated mechanism in the interface circuit, the purposes of low noise and low zerogravity(zero-g) offset accelerometer are achieved. The zero-g offset compensated circuit calibrates the sensor offset in each axis. All of the calibrated procedure is executed automatically by a micro-control-unit (MCU). After calibration, the worst zero-g offset is reduced to +/- 50 mg and background calibration is no longer needed. The three-axis accelerometer was fabricated by using a 0.18-mu m CMOS-MEMS process and the chip area containing the sensors and the integrated circuit is 2 x 2 mm(2). It achieved a +/- 6 g sensing range and the noise was 350 mu g/rtHz for the X- and Y-axes and Z-axes was 1.5 mg/rtHz with a total current consumption of 120 mu A under 1.8 V.
机译:这项工作提出了一种单片集成的CMOS-MEMS三轴电容式加速度计,具有一种有效且实用的方法来补偿传感器偏移。通过在接口电路中使用相关双采样(CDS)和自动传感器偏移补偿机制,达到了低噪声和低零重力(zero-g)偏移加速度计的目的。零重力偏移补偿电路可校准每个轴上的传感器偏移。所有校准过程均由微控制器(MCU)自动执行。校准后,最坏的零克偏移降低到+/- 50毫克,并且不再需要背景校准。通过使用0.18微米CMOS-MEMS工艺制造三轴加速度计,包含传感器和集成电路的芯片面积为2 x 2 mm(2)。它实现了+/- 6 g的感测范围,X和Y轴的噪声为350μg / rtHz,Z轴的噪声为1.5 mg / rtHz,在1.8 V下的总电流消耗为120μA。

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