首页> 外文会议>IEEE International Symposium on Electromagnetic Compatibility;IEEE International Symposium on Signal Power Integrity >Specific Dependence on Absolute Humidity and Saturation Deficit of Air Discharge Currents from Electrostatic Discharge Generator with Different Approach Speeds
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Specific Dependence on Absolute Humidity and Saturation Deficit of Air Discharge Currents from Electrostatic Discharge Generator with Different Approach Speeds

机译:具体取决于不同接近速度下静电放电发生器的空气放电电流的绝对湿度和饱和度的不足

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The International Electro-technical Commission (IEC) specifies air discharge immunity testing for electronic equipment in the standard 61000-4-2 under the climatic conditions of relative humidity from 30 to 60 % and ambient temperature from 15 to 35 degrees Celsius. For aiming to improve the testing reproducibility, to clarify effects of the above climate parameters on air discharge testing, we previously measured air discharge currents from an electrostatic discharge (ESD) generator with an approach speed of 80 mm/s under 6 combinations of relative humidity and temperature. The result showed that the same absolute humidity provides almost similar waveforms of the discharge currents despite different relative humidity and temperature. In this study, to further examine such combined effects, we measure air discharge currents from the ESD generator at a test voltage of 15 kV with three different approach speeds of 20 mm/s, 50 mm/s and 80 mm/s under 9 combinations of relative humidity and temperature inside and outside the IEC specified climate ranges. As a result, air discharge current behavior is affected by not only absolute humidity (AH) but also saturation deficit (SD) or the difference between the AH and the saturated water vapor amount. The humidity dependence differs according to the IEC specified and non-specified climate ranges, while it can well be explained by the SD. Under the IEC specified conditions, at faster approach speeds, the peak currents of air discharges have maximum values at AH7.70 g/m
机译:国际电工委员会(IEC)在相对湿度30%至60%和环境温度15至35摄氏度的气候条件下,对标准61000-4-2中的电子设备指定了抗空气放电的测试。为了提高测试的可重复性,以澄清上述气候参数对空气排放测试的影响,我们先前在6种相对湿度组合下以80 mm / s的接近速度测量了静电释放(ESD)发生器的空气排放电流和温度。结果表明,尽管相对湿度和温度不同,但相同的绝对湿度可提供几乎相似的放电电流波形。在本研究中,为了进一步研究这种组合效应,我们在15种测试电压下以三种不同的接近速度20 mm / s,50 mm / s和80 mm / s在9种组合下测量ESD发生器的空气放电电流。 IEC规定的气候范围内外的相对湿度和温度的变化。结果,排气电流的行为不仅受到绝对湿度(AH)的影响,而且还受到饱和度不足(SD)或AH与饱和水蒸气量之间的差的影响。湿度依赖性根据IEC规定的和非规定的气候范围而有所不同,尽管可以通过SD很好地解释。在IEC规定的条件下,以更快的接近速度,空气放电的峰值电流的最大值为AH7.70 g / m

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