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DC25_SLIDES_Track11_TutorialCharacterizationOfShieldingEffectiveness_Mayevskiy_V2.pdf

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1、Information Classification:GeneralWelcome to ConferenceJanuary 2830,2025Santa Clara Convention Center1ExpoJanuary 2930,2025 Information Classification:GeneralTUTORIAL:CHARACTERIZATION OF SHIELDING EFFECTIVENESS OF CONNECTORS IN LOW INTENSITY MAGNETIC FIELDSEugene Mayevskiy,TE Connectivity MedicalBao

2、 Nguyen,TE Connectivity Medical2MeasurementSimulationInformation Classification:GeneralImageImage SPEAKERSEugene MayevskiySr.Principal Engineer,TE Connectivity MedicalE|Eugene holds B.S.E.E.and M.S.E.E.degrees from Oregon State University,where he researched measurement-based modeling of RF passive

3、devices.He has experience in TDR/VNA measurements,interconnect modeling,and circuit simulations,with multiple publications and patents in high-speed and medical interconnect design.Currently,he is with TE Connectivity Medical division,focusing on advanced technologies.Bao NguyenProduct Engineer,TE C

4、onnectivityBao.N| Bao Nguyen is a Product Development Engineer at TE Connectivity with a background in board-level simulation,PCB design,and embedded systems.His current focus is on the development of test systems and manufacturing automation.3Information Classification:GeneralMagnetic Shielding The

5、ory and ApplicationsMagnetic Shielding Measurement SetupMagnetic Shielding Simulations vs MeasurementsConnector Design Case StudiesOUTLINE4Information Classification:General Interconnects and Magnetic Interferenceo Electromagnetic Fieldso Coax,twisted pairo Connector Magnetic propertiesoPermeability

6、 definitionoB-H curveoNon-linearity Magnetic Shielding AttenuationoDefinition of magnetic shieldingoImplicationsFUNDAMENTALS OF MAGNETIC SHIELDING5Information Classification:GeneralMaxwells EquationsInformation Classification:GeneralInduced Current due to Magnetic FieldsCoax:Low magnetic pickup due

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1. **会议与主题**:2025年1月28-30日圣克拉拉会议中心,主题为“低强度磁场中连接器屏蔽效能表征”。 2. **核心理论**:磁屏蔽依赖高磁导率材料(如Mu-metal,μ>80,000),需通过B-H曲线和仿真设计。 3. **关键数据**: - 医疗应用(如MRI)需-45dB屏蔽效能,1.5T(15,000高斯)磁场。 - Mu-metal厚度增加(2→6mil)提升屏蔽效能(如60Hz时从-16dB→-30dB)。 4. **测量方法**:使用亥姆霍兹线圈生成可控磁场(1-2高斯),结合3D扫描探头验证。 5. **案例**:TE医疗连接器采用Mu-metal屏蔽,实测效能达45.9dB(1高斯),仿真与实测一致。
**磁屏蔽原理?** **Mu金属特性?** **屏蔽效果如何测?**
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