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首页> 外文期刊>IBM Journal of Research and Development >Performance of fiber-optic data links using 670-nm cw VCSELs and a monolithic Si photodetector and CMOS preamplifier
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Performance of fiber-optic data links using 670-nm cw VCSELs and a monolithic Si photodetector and CMOS preamplifier

机译:使用670 nm cw VCSEL和单片Si光电检测器和CMOS前置放大器的光纤数据链路的性能

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摘要

To be competitive with copper technology for links and bus applications, optoelectronics must be made affordable. One means of achieving a low-cost optoelectronics link is to adapt volume-manufactured components. This may imply CMOS optoelectronic integrated circuits (OEICs), which are suggested by the huge CMOS IC volumes being produced for computer logic and memory, and red laser diodes, which are already in demand for the consumer and storage markets. In this paper, we demonstrate a potential low-cost link using a monolithically integrated Si photodiode and CMOS preamplifier, a multimode fiber-optic transmission medium, and red, vertical-cavity surface-emitting lasers (VCSELs). The integrated receiver shows a 3.5-dB improvement in received power when light at 670 nm instead of 845 nm is used; it operates error free at both the Fibre Channel rate of 531.25 Mb/s and the SONET OC-12 rate of 622.08 Mb/s. The red VCSELs are shown to be capable of a 1.5-Gb/s transmission data rate with as little as 18 mW average power dissipation. The potential for fabricating arrays using both of these technologies for optical buses is discussed.
机译:为了在链接和总线应用中与铜技术竞争,必须使光电子产品价格可承受。实现低成本光电链路的一种方法是调整量产的组件。这可能暗示着CMOS光电集成电路(OEIC),这是由用于计算机逻辑和存储器的大量CMOS IC量产以及红色激光二极管所暗示的,而这些消费电子和存储市场已经在需求它们。在本文中,我们演示了使用单片集成Si光电二极管和CMOS前置放大器,多模光纤传输介质以及红色垂直腔表面发射激光器(VCSEL)的潜在低成本链接。当使用670 nm而非845 nm的光时,集成接收器的接收功率提高了3.5 dB。它在531.25 Mb / s的光纤通道速率和622.08 Mb / s的SONET OC-12速率下均无错误运行。红色VCSEL显示出能够以1.5 Gb / s的传输数据速率传输,平均功耗仅为18 mW。讨论了将这两种技术用于光总线制造阵列的潜力。

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