光纤埋入式光电互联技术  被引量:4

Fiber-Embedded Optoelectronic Interconnection Technology

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作  者:邱钊[1] 

机构地区:[1]中国西南电子技术研究所,成都610036

出  处:《光通信研究》2016年第1期59-62,共4页Study on Optical Communications

摘  要:随着电子装备集成度和工作频率的迅速提高,以及布线密度和信号频率的不断提高,铜导线连接的电气互联不可避免地出现了信号延迟和电磁兼容等问题。为了满足高频信号数据处理和传输的要求,鉴于光传输具有频率高、抗电磁干扰等优点,采用微细光纤结合传统基板制造技术,开展了光电基板布设技术、光电基板制作技术和光电信号传输检测技术的研究,重点突破了光纤埋入和光电耦合等关键技术,最终解决了基于埋入式光纤的光电基板制造难题。光纤埋入式光电互联技术能有效解决高频信号在传输处理过程中的电气互联"瓶颈",保证新一代信息化装备的发展需求。With the rapid increase of the integration degree and working frequency of electronic devices as well as their wiring density and signal frequency,signal delay and poor electromagnetism compatibility will inevitably occur in copper wire-connect-ed electric interconnections.In order to satisfy the requirement for the processing and transmission of high frequency signals and data and in view of the advantages of high optical transmission frequency and resistance to electromagnetic interference,we conducted researches on the photoelectric substrate layout and fabrication technologies and the optoelectronic signal transmis-sion and detection technology by using the microfiber with the traditional substrate fabrication technology,broke through such key technologies as fiber embedding and photoelectric coupling and finally solved the problem of fiber-embedded photoelectric substrate fabrication.The fiber-embedded optoelectronic interconnection technology can effectively break the bottleneck in the interconnection of high frequency signals in the course of transmission and processing,ensuring the development of new genera-tion informationized equipment.

关 键 词:埋入光纤技术 光电耦合 抗电磁干扰 

分 类 号:TN253[电子电信—物理电子学]

 

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