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DCON26_SLIDES_Track12_Connector-FreeTerminationforFEXTMeasurementsUsingAbsorbersonBGAPads_233_125.pdf

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1、Welcome to ConferenceFebruary 2426,2026Santa Clara Convention CenterExpoFebruary 2526,2026 1Connector-Free Termination for FEXT Measurements Using Absorbers on BGA PadsDaniel L.Commerou,Missouri University of Science&TechnologyDaniel L Commerou,Reza Asadi,Seyed Mostafa Mousavi,Victor Khilkevich,Liju

2、n Jiang,Missouri S&TXiaoning Ye Intel Corporation.2ImageSPEAKERSDaniel Lyngby CommerouPostDoc,Missouri University of Science&Technologydcommeroumst.eduDaniel L.Commerou(Graduate Student Member,IEEE)received the B.Sc.and M.Sc.degrees in mechatronics with a focus on power electronics,in 2018 and EMC i

3、n power electronics in 2020,respectively,from the University of Southern Denmark,Sonderborg,Denmark,where he also completed his Ph.D.degree in electromagnetic compatibility,of near-field scanning of power electronics and coupling path investigations.He is currently with Missouri University of Scienc

4、e and Technology EMCLAB as a Postdoctoral Researcher.His research interests include Signal Integrity,RF Desense,near-field scanning,radiated emission,simulation of radiated emission,coupling paths investigation.3 Far-end Cross talk(FEXT)is crosstalk observed at the far end of the cable Caused by cou

5、pling along the transmission path Interfering signal travels in the same direction as the victim signal Increases witho Cable lengtho Signal frequencyIntroduction4 De-composed far-end cross talk into three contribution to the total crosstalk observed at the far end1.FEXT1 caused by ZAN to ZNE coupli

6、ng FEXT2 caused by coupling between aggressor line and victim along the length of the traces.FEXT3 caused by mismatch at ZAF and there by coupling like indicated by arrow(2)Introduction5 Crosstalk is unintentional coupling to nearby traces.near-end and far-end refers to the location of measurement r

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1. **研究目的**:开发一种无需连接器的吸波器终端方法,用于远端串扰(FEXT)测量,避免传统SMD焊接对电路板的永久损伤。 2. **核心数据**: - 吸波器在BGA焊盘上施加≤500g压力时,可实现50Ω±10Ω阻抗(目标阻抗)。 - 新材料(聚合物基)将阻抗标准差降至10Ω,所需压力减少75%。 3. **关键结论**: - 电加载吸波器性能优于磁加载,但存在寄生电容问题。 - 需验证终端阻抗,未来工作将优化电容和重复性(目标标准差<2Ω)。 4. **应用价值**:支持最终电路板迭代中的原位串扰测量,提升测试效率与无损性。
**FEXT测量新法?** **吸波器替代焊点?** **阻抗匹配难题解?**
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