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A monolithic 3.125 Gbps fiber optic receiver front-end for POF applications in 65 nm CMOS

机译:用于65 nm CMOS中POF应用的单片3.125 Gbps光纤接收器前端

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This paper describes the design of an analog receiver front-end targeting multi-gigabit data communications over large-core plastic optical fibers. A receiver front-end with an integrated photo detector has been implemented in a standard TSMC 65 nm low-power bulk-silicon CMOS process. A novel hybrid current buffer based transimpedance amplifier has been proposed to drive the 14 pF photo capacitance presented by the large-area photo detector to multi-gigahertz range. A digitally controlled slow-slope equalizer has also been integrated in the receiver front-end to compensate the high-frequency losses due to the integrated photo detector. The receiver front-end consumes 50 mW dc power from a 1.2 V supply (excluding output buffer) and achieves an NRZ data rate up to 3.125 Gbps.
机译:本文介绍了针对大芯塑料光纤上的千兆位数据通信的模拟接收机前端的设计。带有集成光电探测器的接收器前端已在标准的TSMC 65 nm低功耗体硅CMOS工艺中实现。已经提出了一种新颖的基于混合电流缓冲器的跨阻放大器,以将大面积光电检测器提供的14 pF光电电容驱动至数千兆赫兹范围。接收机前端还集成了数字控制的慢斜率均衡器,以补偿由于集成的光电检测器引起的高频损耗。接收器前端从1.2 V电源(不包括输出缓冲器)消耗50 mW直流电源,并实现高达3.125 Gbps的NRZ数据速率。

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