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A 12.5 Gb/s 6.6 mW receiver with analog equalizer and 1-tap DFE

机译:具有模拟均衡器和1抽头DFE的12.5 Gb / s 6.6 mW接收器

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This paper presents a compact, low power 12.5 Gb/s backplane receiver in a 90 nm CMOS technology. The receiver incorporates an analog equalizer, which is designed using active inductor circuit, and a 1-tap speculative decision-feedback- equalizer (DFE). The proposed active inductor circuit provides wider tuning range and higher inductive impedance with respect to the previous reported topologies, using negative impedance implemented by a cross coupled transistor pair, at the output nodes of active inductor circuit. The DFE is designed in half rate architecture utilizing an improved front end sample and hold to speculate the first feedback tap while consuming low power and imposing small capacitive load on the analog equalizer block. The input capacitance of the DFE block is alleviated more by changing the place of multiplexer in the DFE architecture. Furthermore power consumption reduction in DFE architecture is achieved by using a novel high speed slicer with rail-to-rail swing in the output to avoid implementing latches and MUXs in the next stages in CML topology. The receiver consumes 6.6 mW from a 1.2 V supply while delivering 12.5 Gb/s data over 5" NELCO 4000-6 channel in the presence of two aggressor far-end-crosstalk (FEXT) signals.
机译:本文介绍了一种采用90 nm CMOS技术的紧凑型低功耗12.5 Gb / s背板接收器。接收器集成了一个模拟均衡器和一个1抽头投机决策反馈均衡器(DFE),该均衡器使用有源电感器电路设计。相对于先前报道的拓扑,所提出的有源电感器电路在有源电感器电路的输出节点处使用由交叉耦合的晶体管对实现的负阻抗,相对于先前报道的拓扑结构提供了更宽的调谐范围和更高的电感阻抗。 DFE采用半速率架构设计,利用改进的前端采样和保持来推测第一反馈抽头,同时消耗低功耗并在模拟均衡器模块上施加较小的电容性负载。通过更改DFE架构中多路复用器的位置,可以进一步减轻DFE模块的输入电容。此外,通过使用新颖的高速切片器来实现DFE架构中的功耗降低,该切片器的输出具有轨至轨摆幅,从而避免了在CML拓扑的下一阶段实现锁存器和MUX。接收器从1.2 V电源消耗6.6 mW的功率,同时在存在两个侵害者远端串扰(FEXT)信号的情况下,通过5“ NELCO 4000-6通道提供12.5 Gb / s数据。

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