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An experimental study of electrostatic discharge immunity testing for wearable devices

机译:可穿戴装置静电放电免疫检测的实验研究

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Wearable electronic devices have proliferated in recent years. Since such devices are used by attaching to a human, every time the human is electrically charged or discharged, the electric potential of such a wearable device abruptly changes. Thus the device is exposed in close proximity to the resultant transient electromagnetic fields, which may cause malfunctions in the device. Electrostatic discharge (ESD) immunity test methods that assume this situation are not yet developed in the present international standards. In this study, to investigate such ESD immunity testing, we considered the worst case as an ESD event which occurs when the body-mounted wearable device approaches a grounded conductor. In lieu of actual devices, we measured discharge currents caused by air discharges from a charged human through a hand-held metal bar or through a semi-sphere metal attached to the head, arm or waist. As a result, we found that at a human charge voltage of 1 kV, the peak current from the semi-sphere metal is large in order of the attachment of the waist (15.4 A), arm (12.8 A) and head (12.2 A), whereas the peak current (10.0 A) from the hand-held metal bar is the smallest. It was also found that the discharge currents from the semi-sphere metal decrease at around 50 ns regardless of the attachment positions, however, the current from the handheld metal bar continues to flow at over 90 ns. This suggests that ESD immunity testing for wearable devices needs different specifications of test equipment and test method from the conventional testing.
机译:近年来可穿戴电子设备增殖。由于这些装置通过附接到人而使用,因此每当人被带电或放电时,这种可穿戴器件的电位突然改变。因此,该装置紧密地暴露于所得的瞬态电磁场,这可能导致装置中的故障。静电放电(ESD)免疫试验方法,呈现这种情况尚未在目前的国际标准中制定。在这项研究中,为了研究这种ESD免疫测试,我们认为是最坏的情况作为ESD事件,当车身安装的可穿戴装置接近接地导体时发生的ESD事件。代替实际装置,我们通过手持式金属杆或通过附着在头部,臂或腰部的半球形金属中通过带电的人从带电的人引起的排出引起的放电电流。结果,我们发现,在1 kV的人电压电压下,腰部(15.4a),臂(12.8a)和头部的附着(12.8a)和头部(12.2a) ),而手持式金属条的峰值电流(10.0a)是最小的。还发现,无论附接位置如何,来自半球形金属的放电电流在约50ns时减小,但是,来自手持式金属条的电流继续在超过90ns处流动。这表明可穿戴设备的ESD免疫测试需要从传统测试中使用不同规格的测试设备和测试方法。

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