减少光收发器辐射发射的方法

D. Moongilan
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引用次数: 0

摘要

电信网络设备广泛使用光收发器将电信号转换为光波,反之亦然。连接光纤的收发器的孔径(卡圈)不能完全屏蔽射频,以防止8至40 GHz频率范围内的辐射。大多数电信设备被设计成在没有门或盖子的框架中运行,因此,为了满足法规和客户强加的辐射发射要求,必须在电路包级别停止辐射。光收发器的辐射水平随数据速率、传输光功率和光纤阻抗的增加而增加。光网络平台可以使用不同厂家的收发器来提高数据吞吐量和速率。从收发器发出的辐射发射被发现是不同的取决于他们的类型和制造商。本文讨论了降低收发机辐射发射水平的角度向下安装方法,使设备有额外的余量来补偿某些收发机增加的辐射发射水平。提出了一种降低辐射发射的收发器放置角度的理论计算方法。还介绍了模拟收发器和安装在网络设备中的收发器的不同向下角度放置的实验数据并讨论了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods to reduce radiated emissions from optical transceivers
Telecommunication network equipment extensively uses optical transceivers to convert electrical signals into lightwave and vice-versa. The aperture (ferrule) of the transceiver where fiber will be attached cannot be completely RF shielded to prevent radiation in the frequency range of 8 to 40 GHz. Most telecommunication equipment is designed to operate in a frame without doors or covers and therefore, radiation must be stopped at circuit pack level in order to meet the regulatory and customer imposed radiated emission requirements. The radiation levels from optical transceivers increase with data-rate, transmit optical power-level, and fiber impedance. Transceivers of different manufacturers may be used in optical network platforms to increase the data throughput and rate. The radiated emissions emanating from transceivers are found to be different depending on their type and manufacturer. This paper discusses downward angular installation methods to reduce radiated emission levels from transceivers so that equipment has extra margin to compensate for increased radiated emission levels from certain transceivers. A theoretical calculation of transceiver placement angle to lower radiated emissions is presented. Also presented and results discussed is experimental data for different downward angular placement for a simulated transceiver and for transceivers installed in network equipment.
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