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Efficient Optical Communications Using Multi-Bit Differential Signaling

机译:使用多位差分信令有效光通信

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We present an alternative signaling method for multi-channel fiber ribbon based optical links. The method is based on a hybrid of differential signaling and single-ended channels. Channels are grouped into code blocks of n-bits. Each code word transmitted in the block is restricted to conform to an n choose m rule. Electrical drivers steer current between m active VCSELS with no dummy loads. A virtual reference is synthesized from the received signals and used for differential discrimination. This signaling method approaches the signal-to-noise characteristics of fully differential signaling but can be implemented with significantly lower channel overhead, giving as much as a 33% reduction in fiber count and a 44% reduction in power. Further, code utilization rates on these links can be as low as 51%, leaving substantial code space available for ECC or channel management functions. In this paper, we describe the signaling method and present a prototype transceiver chip. The transceiver is implemented in 0.25um UTSi Silicon-on-Sapphire technology with flip-chip bonded VCSEL and photodetector arrays. The design demonstrates a pin-compatible alternative to the POP4-MSA transceiver standard with 125% greater data throughput and 25% better power efficiency.
机译:我们介绍了一种基于多通道光纤带的光学链路的替代信号方法。该方法基于差分信令和单端通道的混合。通道被分组成N位的代码块。在块中传输的每个代码字被限制为符合n选择m规则。电气驱动程序在M个活动VCSEL之间与没有虚拟负载之间的电流。从接收信号合成虚拟引用并用于差分辨别。该信号方法接近全差分信令的信号 - 噪声特性,但可以用显着降低的通道开销实现,使光纤计数降低多达33%,功率降低44%。此外,这些链路上的代码利用率可以低至51%,留下可用于ECC或信道管理功能的大量代码空间。在本文中,我们描述了信号传导方法并呈现了原型收发器芯片。收发器在0.25um UTSI硅上的蓝宝石技术中实现,具有倒装芯片键合VCSEL和光电探测器阵列。该设计演示了POP4-MSA收发器标准的引脚兼容替代方案,数据吞吐量增加125%,功率效率更高的25%。

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