从元件到集成光电电路的演变

L. Tomasetta
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引用次数: 0

摘要

最近光纤半导体组件(即激光器和探测器)的改进将导致光纤系统在未来几年内的快速部署。然而,这并不意味着半导体光电子学研究的结束,而是光电子器件新的和最终更广泛应用的开始。将光学和电子功能结合在一个单片晶圆上,将使新的强大的信号处理和数据传输功能成为可能。应用范围将从简单的单通道集成中继器到具有纠错电子和交换功能的中继器,再到复杂的分布式计算机数据总线网络,这些网络能够将20世纪90年代的数十台计算机与运行速度超过100千兆位/秒的循环数据流互连起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The evolution from components to integrated optoelectronics circuits
Recent improvements in fiber optic semiconductor components (i.e. lasers and detectors) will lead to the rapid deployment of fiber optic systems in the next few years. This does not, however, signal the end of research in semiconductor optoelectronics, but rather the opening of new and ultimately more widespread application of optoelectronic devices. New and powerful signal processing and data transmission functions will become possible by the marriage of optical and electronic functions on a single monolithic wafer. Applications will range from simple single channel integrated repeaters to repeaters with error correcting electronics and switching capabilities to complex distributed computer data bus networks capable of interconnecting dozens of the computers of the 1990's with a circulating data stream operating in excess of 100 Gigabits/sec.
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