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DC25_PAPER_Track12_PerspectivesManagingIntraPairSkew_Kocsis.pdf

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1、 Information Classification:General Perspectives on Managing Intra-Pair Skew in Copper Cable Assemblies for High-Volume Deployments Sam Kocsis,Amphenol Hari Thurairajaratnam,Microsoft Tahoura Mosavirik,WPI Mustafa Boyvat,Amphenol Information Classification:General Abstract The demand for high-qualit

2、y,high-performance passive copper interconnects has never been higher.Market pressures from Artificial Intelligence and Machine Learning(AI/ML)related deployments require interconnect solutions that can scale platform architectures while preserving link budgets,power consumption,and total cost of ow

3、nership.Passive copper interconnects,and specifically copper cable assemblies,are an attractive option but come with their own sets of challenges.Copper cabling takes up considerable size at the aggregate lane counts desired and requires careful routing within the data center rack builds.Bends and t

4、wists on copper cable assemblies create undesired stresses on the twin-ax causing performance variation and potential to degrade link performance.These stresses can be quantified with measurable characteristics of the cable segments such as insertion loss deviation,mode conversion,and intra-pair ske

5、w.When multiple segments are cascaded together in a link,its critically important to understand the interaction of the characteristics of the individual cable assemblies to accurately estimate the impact on the full link.This paper will focus on the characteristic attributes of intra-pair skew,inclu

6、ding root cause assessments,characterization of large data sets of high-volume production samples,and measurement-to-simulation model correlation.The paper will examine multiple ways to quantify and assess intra-pair skew of a cable assembly,in the frequency-domain and with a focus on high-volume pr

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1. **研究背景**:针对AI/ML等高带宽需求,铜缆互连因尺寸和布线挑战需管理对内线对偏差(intra-pair skew),其影响链路性能。 2. **评估方法**:提出四步频率域检查:端口配置验证、ILcd-ILdd掩模、有效对内线对偏差(EIPS)阈值(2.50 ps)、频率偏差(SOF)掩模。 3. **关键数据**: - 220mm/500mm/1000mm铜缆样本中,EIPS通过率分别为98.70%、98.18%、99.47%。 - 级联三段缆线时,总EIPS非简单叠加(如3×2.5ps=7.5ps),实际分布<3.4ps(占比<1%)。 4. **系统影响**:CTLE/FFE均衡可有效缓解缆线偏差对眼图的影响,确保224Gb/s系统性能。 5. **结论**:铜缆偏差可控,生产环境可通过统计方法筛选合格产品,保障高部署成功率。
**铜缆如何抗干扰?** **高速信号如何保真?** **生产如何控偏斜?**
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