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RFI suppression and throughput improvement of WiFi performance with graphene coating for converging mobile device

机译:石墨烯涂层用于融合移动设备的RFI抑制和WiFi性能的吞吐量提高

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As the wireless applications for high-performance computing and video streaming is booming, the converging high performance devices for wireless and mobile application bring up the platform noise and RFI de-sensitivity issue. The problem involving with electromagnetic compatibility (EMC) or radio frequency interference (RFI) is becoming more critical for the system integration of smart phones design. To prevent RFI noise coupling to sensitive RF front-end and thus degrading wireless communications performance, this paper is mainly focusing on the effective shielding analysis of graphene coating on RF noisy chips or modules. We first adopt the near-field electromagnetic interference (EMI) scanning methods developed by IEC for chip level (IEC 61967-3) to investigate the distribution of EMI noise sources characteristic on the smart-phone platform under investigation. To effectively shield the electric, magnetic, or electromagnetic field originated from noise source, we then apply the shielding capability of graphene coating on the RFI noisy sources. Finally, we will use Over-the-air (OTA) measurement to show the RF performance improvement with implementation of graphene coating from the relationship between data throughput increase and RFI reduction on chips or modules under investigation.
机译:随着用于高性能计算和视频流的无线应用的蓬勃发展,用于无线和移动应用的融合高性能设备带来了平台噪声和RFI灵敏度下降的问题。电磁兼容性(EMC)或射频干扰(RFI)涉及的问题对于智能手机设计的系统集成变得越来越重要。为了防止RFI噪声耦合到敏感的RF前端,从而降低无线通信性能,本文主要关注RF噪声芯片或模块上石墨烯涂层的有效屏蔽分析。我们首先采用由IEC针对芯片级(IEC 61967-3)开发的近场电磁干扰(EMI)扫描方法,以研究所研究的智能手机平台上EMI噪声源特性的分布。为了有效地屏蔽源自噪声源的电场,磁场或电磁场,我们然后将石墨烯涂层的屏蔽功能应用于RFI噪声源。最后,我们将使用空中(OTA)测量来显示在研究中的芯片或模块上数据吞吐量增加与RFI减少之间的关系,从而通过实施石墨烯涂层来改善RF性能。

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