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A New CMOS Current-Mode Multiplexer for 10 Gbps Serial Links

机译:用于10 Gbps串行链路的新型CMOS电流模式多路复用器

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This paper presents an in-depth study of the pros and cons of voltage-mode multiplexers for Gbps serial links and exploits the advantages of multiplexing in current domain. In addition, it proposes a new fully differential CMOS current-mode multiplexer where a high multiplexing speed is achieved by multiplexing at a low-impedance node. Multiplexing speed is further improved by inductive shunt peaking with active inductors. The differential configuration of the multiplexer minimizes the effect of common-mode disturbances, particularly those coupled from the power and ground rails. The flow of the output currents in the opposite directions minimizes the effect of electro-magnetic interference from channels, making the multiplexer particularly attractive for high-speed data transmission over long interconnects and printed-circuit-board (PCB) traces. The proposed multiplexer draws a constant current from the supply voltage, thereby minimizing both switching noise and noise injected to the substrate. A fully differential CMOS current-mode 8-to-1 multiplexer has been implemented in TSMC's 1.8 V 0.18 μm CMOS technology and analyzed using Spectre from Cadence Design Systems with BSIM3.3v device models. Simulation results demonstrate that the multiplexer offers sufficiently large eye-opening when multiplexed at 10 Gbps.
机译:本文对Gbps串行链路的电压模式多路复用器的优缺点进行了深入研究,并利用了电流域中多路复用的优势。此外,它提出了一种新的全差分CMOS电流模式多路复用器,其中通过在低阻抗节点上进行多路复用来实现高多路复用速度。通过使用有源电感器的电感分流峰值,可以进一步提高多路复用速度。多路复用器的差分配置最大程度地降低了共模干扰的影响,尤其是从电源和接地轨耦合的干扰。输出电流在相反方向上的流动使来自通道的电磁干扰的影响最小化,从而使多路复用器特别适合通过长互连和印刷电路板(PCB)迹线进行高速数据传输。所提出的多路复用器从电源电压汲取恒定电流,从而将开关噪声和注入到基板的噪声最小化。台积电的1.8 V 0.18μmCMOS技术中已经实现了全差分CMOS电流模式8到1多路复用器,并使用Cadence Design Systems的Spectre和BSIM3.3v器件模型进行了分析。仿真结果表明,当以10 Gbps进行多路复用时,多路复用器可提供足够大的睁眼空间。

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