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The dual cycle bridge detection of piezoresistive triaxial accelerometer based on MEMS technology

机译:基于MEMS技术的压阻三轴加速度计的双周期桥检测。

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摘要

A cycle bridge detection method, which uses a piezoresistive triaxial accelerometer, has been described innovatively. This method just uses eight resistors to form a cycle detection bridge, which can detect the signal of the three directions for real time. It breaks the law of the ordinary independent Wheatstone bridge detection method, which uses at least 12 resistors and each four resistors connected as a Wheatstone bridge to detect the output signal from a specific direction. In order to verify the feasibility of this method, the modeling and simulating of the sensor structure have been conducted by ANSYS, then the dual cycle bridge detection method and independent Wheatstone bridge detection method are compared, the result shows that the former method can improve the sensitivity of the sensor effectively. The sensitivity of the x, y-axis used in the former method is two times that of the sensor used in the latter method, and the sensitivity of the z-axis is four times. At the same time, it can also reduce the cross-axis coupling degree of the sensor used in the dual cycle bridge detection method. In addition, a signal amplifier circuit and adder circuit have been provided. Finally, the test result of the "eight-beams/mass" triaxial accelerometer, which is based on the dual cycle bridge detection method and the related circuits, have been provided. The results of the test and the theoretical analysis are consistent, on the whole.
机译:创新地描述了一种使用压阻三轴加速度计的循环电桥检测方法。该方法仅使用八个电阻器就可以构成一个周期检测桥,可以实时检测三个方向的信号。它违反了普通的独立惠斯通电桥检测方法的法则,该方法使用至少12个电阻,并且每个四个电阻作为惠斯通电桥连接,以检测特定方向的输出信号。为了验证该方法的可行性,利用ANSYS对传感器结构进行了建模和仿真,然后比较了双循环电桥检测方法和独立的惠斯通电桥检测方法,结果表明,前一种方法可以改善传感器的结构。有效地提高了传感器的灵敏度。前一种方法中使用的x,y轴的灵敏度是后一种方法中使用的传感器的灵敏度的两倍,而z轴的灵敏度是四倍。同时,还可以降低双循环电桥检测方法中使用的传感器的横轴耦合度。另外,已经提供了信号放大器电路和加法器电路。最后,提供了基于双周期电桥检测方法和相关电路的“八光束/质量”三轴加速度计的测试结果。测试的结果和理论分析总体上是一致的。

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