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DC25_SLIDES_Track07_NovelMethodForImprovingDifferential_Bloch_V3.pdf

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1、Information Classification:GeneralWelcome to ConferenceJanuary 2830,2025Santa Clara Convention Center1ExpoJanuary 2930,2025 Information Classification:GeneralNovel Method for Improving Differential to Common Signal Integrity Results for 112GB/224GBGal Matarasso,Xsight LabsRoee Bloch,Xsight Labs2Info

2、rmation Classification:GeneralImageImage SPEAKERSGal MatarassoSignal Integrity Engineer,Xsight L Signal Integrity and Power Integrity engineer for high-speed communication systems at Xsight Labs.Roee BlochSignal Integrity and Power Integrity Engineer,Xsight LSignal Integrity and Power Integrity expe

3、rt at Xsight LabsResponsible for developing next generations of packages and board focus on high-speed interfaces.3Information Classification:General In this session we will discuss differential to common mode conversion in high-speed interfaces such as 112GB and 224GB SerDeses.We will talk mostly a

4、bout transmitted differential signal and its conversion into common signal(noise)(SCD21).We will discuss the root causes,the problems and how to resolve them.We will show problems we had on our projects due to mode conversion issues and how it affected our system capabilities.We will demonstrate how

5、 we improved the differential to common mode conversion by applying a few simple steps.Note:We will use mixed mode S parameter notation.Abstract4Information Classification:General What is differential to common mode conversion?What are the root causes for D2C?Why should we care?What does IEEE 802.3c

6、k standard says about D2C?Can we count on ECAD tools for accurately calculating the channels mode conversion?How can we reduce mode conversion at the PCB level?Main Questions5Information Classification:General SDD11 Reflected differential energy back to the source when injecting differential signal.

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1. **主题**:112GB/224GB高速接口中差分-共模(D2C)转换问题及解决方案,主讲人为Xsight Labs的Gal Matarasso与Roee Bloch。 2. **核心问题**:D2C(SCD21)由差分线长度失配、不对称性、介质不均匀等引起,导致误码率(BER)上升、EMI辐射及信号完整性下降。 3. **关键数据**:案例显示,蛇形线补偿使SCD21恶化(28GHz处从-15.57dB降至-28.54dB),移除后改善至-28.54dB;相位偏差从41.2°降至2.07°。 4. **解决方案**:避免蛇形线,保持差分线对称性,在BGA/连接器附近补偿长度,使用3D仿真工具(如HFSS)精准分析。 5. **标准依据**:IEEE 802.3ck要求SCD21(共模噪声/差分信号比)需达标,高频下需严格控制失配。
**D2C如何影响112G?** **蛇形线为何有害?** **如何避免EMI辐射?**
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