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Analysis and modeling of electrostatic discharge in a tactile glass featured watch

机译:触觉玻璃特色手表静电放电的分析与建模

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Electrostatic discharge (ESD) in quartz watches is becoming more and more important due to the use of plastic materials and tactile sensors. The discharge can lead to different type of dysfunction such as a simple reset, a latch-up or the destruction of the electronics. In this paper, only the reversible dysfunction is considered. Electrostatic finite element (FEM) simulation completed with analytical calculation is carried out. Spatial distribution of the voltages will be shown. Values of the discrete elements are determined either by the electrostatic FEM (capacitors) or by analytical methods. Validation of the theory is done by DC (resistors) and AC (impedance) measurements. The watch is then modeled with these discrete impedances forming a global equivalent circuit in order to simulate its dynamic behavior. Results will show the discharge propagation on key components like the micro-controller IC.
机译:由于使用塑料材料和触觉传感器,石英手表中的静电放电(ESD)变得越来越重要。 放电可以导致不同类型的功能障碍,例如简单复位,闩锁或电子器件的破坏。 在本文中,仅考虑可逆功能障碍。 进行了分析计算完成的静电有限元(FEM)模拟。 将显示电压的空间分布。 离散元件的值由静电有限元(电容器)或通过分析方法确定。 该理论的验证由DC(电阻)和AC(阻抗)测量完成。 然后用这些离散的阻抗建模的手表形成全局等效电路,以模拟其动态行为。 结果将显示微控制器IC等关键组件上的放电传播。

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