静电放电对可穿戴设备电应力的影响研究

Takahiro Yoshida
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引用次数: 7

摘要

近年来,智能手机等可穿戴设备被广泛使用。然而,在使用可穿戴设备的真实环境中,由于可穿戴设备通常是由用户持在体内,因此认为ESD的发生条件与以往的测试方法不同。在这项研究中,我们测量了一个带电的人的指尖对带电的可穿戴设备上的接地物体产生的静电引起的电应力。从实验结果来看,每个天线的感应电压波形的形状、持续时间和幅度都有很大的不同。特别是,感应电压波形的持续时间在10纳秒到100微秒之间变化。这意味着静电放电在可穿戴设备上引起的电应力是多种多样的,它取决于电路结构。
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A study on electrical stress induced by electrostatic discharge on wearable devices
In recent years, wearable devices such as smartphones are widely used. However, in real environment wearable devices are used, ESD occurrence conditions are considered to be different from previous test methods because wearable devices are usually held by users in their body. In this study, we measured electrical stress induced by ESD from a charged human's fingertip to grounded objects on wearable devices held in charged human. From experimental results, shapes of the induced voltage waveforms, their durations, and amplitudes are quite different between each antenna. Especially, the durations of the induced voltage waveforms are changed between ten nanosecond order and hundred microsecond order. This means that electrical stress induced by ESD on wearable devices is very various and it depends on circuit structure.
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