串扰
发射机
CMOS芯片
重点(电信)
电容感应
计算机科学
电子工程
方案(数学)
电气工程
工程类
电信
数学分析
频道(广播)
数学
作者
Weitao Wu,Hongzhi Wu,Liping Zhong,Xuxu Cheng,Xiongshi Luo,Dongfan Xu,Catherine Wang,Zhenghao Li,Quan Pan
标识
DOI:10.1109/isscc49657.2024.10454320
摘要
With the development of massive computing and AI technologies, the memory interface is critical to achieve higher computational throughput. Increasing the parallel-channel density is an effective solution to improve the throughput [1]. However, due to a reduced channel pitch, the crosstalk between adjacent lanes becomes severe and degrades signal integrity. Advanced DRAM applications, such as GDDR6x [2], have adopted PAM-4 signaling to increase transmission speed; unfortunately, PAM-4 is more sensitive to crosstalk. Various TX crosstalk cancellation (XTC) techniques have been reported [3] –[5], but these techniques mainly focus on NRZ. The de-emphasis FIR-based XTC (FIR-XTC) in [3] increases static power consumption and reduces the TX-output SNR. Phase predistortion is utilized in [4] to eliminate crosstalk; however, this method has limited elimination capacity and high-power consumption. Fibonacci coding used in [5] decreases the pin efficiency by 25% and consumes substantial power for PAM-4, due to the increased coding complexity. Therefore, an efficient PAM-4 crosstalk cancellation technique that does not sacrifice pin efficiency and the TX-output SNR is highly desired.
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