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dispersive

  • Orthogonal Time–Frequency Signalin Over Doubly dispersive Channels

    Orthogonal Time–Frequency Signalin Over Doubly dispersive Channels,IEEE上的文章

    標簽: Orthogonal dispersive Frequency Channels

    上傳時間: 2014-01-22

    上傳用戶:xg262122

  • Characterization of wall dispersive and attenuative effects on UWB radar signals

    Characterization of wall dispersive and attenuative effects on UWB radar signals

    標簽: Characterization attenuative dispersive effects

    上傳時間: 2014-01-10

    上傳用戶:luopoguixiong

  • 一種改進的簡單的電纜仿真模型

    Abstract: Nonideal cable dispersive effects can affect system performance. This application note discusses the twomain loss effects related to cables (skin-effect and dielectric losses), and presents a simple method of modeling thecable for use in standard SPICE simulators.

    標簽: 電纜仿真 模型

    上傳時間: 2014-11-18

    上傳用戶:wxnumen

  • Time-Varying Channels

    Wireless communications has become a field of enormous scientific and economic interest. Recent success stories include 2G and 3G cellular voice and data services (e.g., GSM and UMTS), wireless local area networks (WiFi/IEEE 802.11x), wireless broadband access (WiMAX/IEEE 802.16x), and digital broadcast systems (DVB, DAB, DRM). On the physical layer side, traditional designs typically assume that the radio channel remains constant for the duration of a data block. However, researchers and system designers are increasingly shifting their attention to channels that may vary within a block. In addition to time dispersion caused by multipath propagation, these rapidly time-varying channels feature frequency dispersion resulting from the Doppler effect. They are, thus, often referred to as being “doubly dispersive.”

    標簽: Time-Varying Channels

    上傳時間: 2020-06-01

    上傳用戶:shancjb

  • IGBT失效分析技術

    近年來,對器件的失效分析已經成為電力電子領域中一個研究熱點。本論文基于現代電力電子裝置中應用最廣的IGBT器件,利用靜態測試儀3716,SEM(Scanning Electrom Microscope,掃描電子顯微鏡)、EDX(Energy dispersive X-Ray Spectroscopy、能量色散x射線光譜儀)、FIB(Focused lon beam,聚焦高子束)切割、TEM(Thermal Emmision Microscope,高精度熱成像分析儀)等多種分析手段對模塊應用當中失效的1GBT芯片進行電特性分析、芯片解剖并完成失效分析,并基于相應的失效模式提出了封裝改進方案。1,對于柵極失效的情況,本論文先經過電特性測試完成預分析,并利用THEMOS分析出柵極漏電流通路,找到最小點并進行失效原因分析,針對相應原因提出改進方案。2,針對開通與關斷瞬態過電流失效,采用研磨、劃片等手段進行芯片的解剖。并用SEM與EDX對芯片損傷程度進行評估分析,以文獻為參考進行失效原因分析,利用saber仿真進行失效原因驗證。3,針對通態過電流失效模式,采用解剖分析來評估損傷情況,探究失效原因,并采用電感鉗位電路進行實驗驗證。4,針對過電壓失效模式,采用芯片解剖方式來分析失效點以及失效情況,基于文獻歸納并總結出傳統失效原因,并通過大量實驗得出基于封裝的失效原因,最后采用saber仿真加以驗證。

    標簽: igbt

    上傳時間: 2022-06-21

    上傳用戶:1208020161

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