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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >EMI Coupling Paths and Mitigation in Optical Transceiver Modules
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EMI Coupling Paths and Mitigation in Optical Transceiver Modules

机译:光学收发器模块中的EMI耦合路径和缓解措施

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摘要

Optical transceiver modules are commonly used in telecommunication and data communication systems, and are among the most troublesome electromagnetic interference (EMI) problems for regulatory compliance at their operation frequencies and/or harmonics. In this study, simulations and measurements are performed on an optical subassembly module, including the silicon photonics submodule assembly, in order to identify and characterize the EMI coupling paths. The total radiated power is measured and computed. Through simulation and corroborating measurements, the dominant EMI coupling paths at high frequencies above 10 GHz are identified and characterized, and currents on the silicon photonic subassembly conductor housing and optical fiber connection ferrule are a dominant radiating source. EMI mitigation methods are developed and shown to be effective in reducing the radiated emissions from real product hardware.
机译:光学收发器模块通常用于电信和数据通信系统中,并且是最麻烦的电磁干扰(EMI)问题之一,以确保其工作频率和/或谐波符合法规。在这项研究中,对光学子组件模块(包括硅光子子模块组件)进行仿真和测量,以识别和表征EMI耦合路径。测量并计算总辐射功率。通过仿真和确证的测量,可以识别和表征10 GHz以上高频下的主要EMI耦合路径,并且硅光子组件导体外壳和光纤连接插芯上的电流是主要的辐射源。已开发出EMI缓解方法,并显示出有效减少实际产品硬件的辐射的方法。

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