基于氧化铝粉末的电磁屏蔽降低电子器件电磁辐射能量可能性的论证

D. I. Penialosa Ovalies, O. Boiprav, M. V. Tumilovich, A. Gusinsky, P. I. Baltrukovich
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引用次数: 0

摘要

本文介绍了利用粉末状氧化铝基电磁屏蔽层降低电子设备电磁辐射能量的可能性的实验结果。为了实现这一目标,我们开发了一种评估材料对电子设备电磁辐射水平影响的方法,并系统化了一种估计计算机设备二次电磁辐射控制区半径的方法。按照所述方法进行了研究,根据研究结果确定,含有粉末氧化铝和氧化铁复合涂层的电磁屏蔽对电子设备的电磁辐射能量有抑制作用,并可使计算机设备的二次电磁辐射控制区半径减小2倍。对粉末氧化铝和氧化铁复合涂层的实际应用提出了建议。根据这些建议,这种涂层可以用于制造或改进电磁屏蔽的技术和功能特性,以确保电子设备的电磁兼容性,并解决与信息安全有关的问题。
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Substantiation of the Possibility to Use the Electromagnetic Shields Based on Powdered Aluminum Oxides to Reduce the Electromagnetic Radiation Energy of Electronic Devices
The article introduces the results of the experimental substantiation of the possibility to use the electromagnetic shields based on powdered aluminum oxides to reduce the electromagnetic radiation energy introduced by electronic devices. To achieve this goal, a methodology has been developed for assessing the effect of materials on the electromagnetic radiation level of electronic devices, and a methodology for estimating the radius of the controlled zone of the secondary electromagnetic radiation of computer equipment has been systematized. In accordance with the indicated methods, the study has been carried out, based on the results of which it was determined that electromagnetic shields containing the composite coating based on powdered aluminum oxides and iron oxide provide suppression of the electromagnetic radiation energy of electronic devices, as well as a reduction of up to 2 times the radius of the controlled zone of the secondary electromagnetic radiation of computer equipment. Recommendations for the practical application of the composite coatings based on the powdered alumina and iron oxide have been developed. In accordance with these recommendations, such coatings can be used in the process of manufacturing or improving the technical and functional properties of electromagnetic shields designed to ensure the electromagnetic compatibility of electronic devices, as well as to solve problems related to the information security.
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发文量
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审稿时长
8 weeks
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