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New digital readout electronics for capacitive sensors by the example of micro-machined gyroscopes

机译:以微机械陀螺仪为例的新型电容式传感器数字读出电子设备

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This paper reports a new digital readout electronics for capacitive sensors like accelerometer, gyroscopes or inclinometers. The functional principle of the readout electronics is shown by the example of the micro-machined gyroscope decoupled angular velocity detector (DAVED) developed at HSG-IMIT [Sens. Actuators A 84 (2000) 280]. The goal of this digital concept is to minimize noise and temperature drifts caused by the analog components of the readout electronics. This is feasible, because the main part is done digitally inside a digital signal processor (DSP). Further, this new digital concept is not only used for temperature compensation or force-to-rebalance loops [Algorithm and low power digital implementaion for MEMS inertial sensors, Final report 1999-2000 for MICRO Project 99-083] it is also used to readout the small capacitive changes of the sensor output. First measurement results of the novel digital prototype show a rms noise of 0.21degrees/s and a nonlinearity of 0.39% (end-point- straight-line) in a measurement range of +/-200degrees/s. (C) 2002 Published by Elsevier Science B.V. [References: 7]
机译:本文报告了一种用于电容传感器(如加速度计,陀螺仪或倾角仪)的新型数字读出电子设备。 HSG-IMIT研发的微机械陀螺仪去耦角速度检测器(DAVED)的示例显示了读出电子设备的功能原理。致动器A 84(2000)280]。该数字概念的目的是最大程度地减少由读出电子设备的模拟组件引起的噪声和温度漂移。这是可行的,因为主要部分是在数字信号处理器(DSP)内部以数字方式完成的。此外,这种新的数字概念不仅用于温度补偿或力到再平衡环路​​[用于MEMS惯性传感器的算法和低功耗数字实现,针对MICRO Project 99-083的最终报告1999-2000],还用于读出传感器输出的电容变化很小。新型数字原型的首次测量结果表明,在+/- 200°s / s的测量范围内,均方根噪声为0.21°s / s,非线性度为0.39%(端点直线)。 (C)2002由Elsevier Science B.V.发布[参考:7]

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