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11.8 An Echo-Cancelling Front-End for 112Gb/s PAM-4 Simultaneous Bidirectional Signaling in 14nm CMOS

机译:11.8在14NM CMOS中,112GB / S PAM-4同时双向信号传导的回声前端。

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The rapid growth of hyperscale data centers has led to an increased demand for high-speed and low-latency data connectivity solution upgrades, which are power-efficient and minimal cost. In the last few years, PAM-4 modulation across copper channels was realized by high-performance electrical transceivers in a tight signal integrity environment, which employed the superior spectral efficiency of PAM-4 over NRZ signaling. This shift created a relatively smooth path from 28Gb/s NRZ to 56Gb/s PAM4 per lane by keeping the same baud rate, which eliminated the need to replace the legacy communication channel components with high-performance cables and connectors, providing a cost-effective solution to the overall system. To achieve 112Gb/s, solutions employed channel components which require a doubling of signal bandwidth, thus increasing system cost [1,2]. While such solutions commonly use two separate channels per lane, one for transmit (Tx) and one for receive (Rx), this paper demonstrates the utilization of simultaneous bidirectional Tx and Rx across each individual channel such that 112Gb/s can be achieved per lane while maintaining the 28Gbaud rate and thereby the legacy, low-cost copper channels (top of Fig. 11.8.1).
机译:超高速数据中心的快速增长导致对高速和低延迟数据连接解决方​​案升级的需求增加,这是节能和最低成本。在过去的几年中,通过紧密信号完整性环境中的高性能电收发器实现了铜通道的PAM-4调制,从而在NRZ信号传导中采用PAM-4的卓越光谱效率。通过保持相同的波特率,这种偏移从28GB / s NRZ到56GB / s PAM4的相对平滑的路径,从而消除了使用高性能电缆和连接器更换传统通信信道组件的需要,提供成本效益解决整体系统。为了实现112GB / s,解决方案采用了需要信号带宽加倍的信道组件,从而增加系统成本[1,2]。虽然这种解决方案通常使用每条通道的两个单独的通道,但是对于发送(Tx)和一个用于接收(Rx),虽然用于接收(Rx),但是在每个单独的频道上使用同时双向Tx和Rx的利用,使得每条通道可以实现112GB / s同时保持28Gbaud率,从而遗留,低成本的铜通道(图11.8.1顶部)。

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