首页> 外文会议>Conference on Smart Structures and Materials 2001: Smart Electronics and MEMS Mar 5-7, 2001, Newport Beach, USA >A MEMS high-speed angular-position sensing system with RF wireless transmission
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A MEMS high-speed angular-position sensing system with RF wireless transmission

机译:具有RF无线传输的MEMS高速角位置传感系统

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A novel surface-micromachined non-contact high-speed angular-position sensor with total surface area under 4mm2 was developed using the Multi-User MEMS Processes (MUMPs) and integrated with a commercial RF transmitter at 433MHz earrier frequency for wireless signal detection. Currently, a 2.3 MHz internal clock of our data acquisition system and a sensor design with a 13mu g seismic mass is sufficient to provide visual observation of a clear sinusoidal response wirelessly generated by the piezoresistive angular-position sensing system within speed range of 180 rpm to around 1000 rpm. Experimental results showed that the oscillation frequency and amplitude are related to the input angular frequency of the rotation disk and the tilt angle of the rotation axis, respectively. These important results could provide groundwork for MEMS researchers to estimate how gravity influences structural properties of MEMS devices under different circumstances.
机译:使用多用户MEMS工艺(MUMP)开发了一种新颖的表面微机械化非接触式高速角位置传感器,其总表面积小于4mm2,并与433MHz载波频率的商用RF发射器集成在一起,用于无线信号检测。目前,我们的数据采集系统的2.3 MHz内部时钟和具有13μg地震质量的传感器设计足以提供对压阻角位置传感系统无线产生的清晰正弦响应的直观观察,速度范围为180 rpm至约1000 rpm。实验结果表明,振荡频率和振幅分别与旋转盘的输入角频率和旋转轴的倾斜角有关。这些重要的结果可以为MEMS研究人员评估重力如何在不同情况下影响MEMS器件的结构特性提供基础。

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