高级检索
梁颖, 林训超, 黄春跃, 邵良滨, 张欣. UBM凸点互连结构信号完整性分析[J]. 焊接学报, 2015, 36(8): 9-12.
引用本文: 梁颖, 林训超, 黄春跃, 邵良滨, 张欣. UBM凸点互连结构信号完整性分析[J]. 焊接学报, 2015, 36(8): 9-12.
LIANG Ying, LIN Xunchao, HUANG Chunyue, SHAO Liangbin, ZHANG Xin. Analysis of signal integrity of UBM and bump interconnection[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2015, 36(8): 9-12.
Citation: LIANG Ying, LIN Xunchao, HUANG Chunyue, SHAO Liangbin, ZHANG Xin. Analysis of signal integrity of UBM and bump interconnection[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2015, 36(8): 9-12.

UBM凸点互连结构信号完整性分析

Analysis of signal integrity of UBM and bump interconnection

  • 摘要: 建立了凸点下金属层(under bump metallization,UBM)和凸点互连结构仿真分析模型,基于HFSS软件对其高频条件下的信号完整性进行了研究.得到了UBM凸点互连结构表面电场强度分布,分析了UBM各层厚度及不同材料组合变化对UBM凸点互连结构信号完整性的影响.结果表明,不同信号频率下电场强度在凸点及UBM各层表面分布不均匀,越接近UBM顶端电场强度越大;随信号频率的提高,UBM凸点互连结构的回波损耗增大而插入损耗减小;随镍层厚度、铜层厚度和钛层厚度的增加插入损耗减小;采用Ti-Wu-Au组合UBM凸点互连结构的信号完整性最好,Ti-Cu-Ni组合次之,而Cr-Ni-Au组合最差.

     

    Abstract: The simulation model of UBM bump interconnect structure was built. Its signal integrity under the high-frequency condition was studied based on HFSS software. The electric field strength distribution of UBM bump interconnect structure was obtained, the impact of UBM thickness and different material combinations on signal integrity of UBM bump interconnect structure was also studied. The results show that the electric field strength distributions on the bump surface and UBM under different frequencies are uneven,the more close to the top of UBM the stronger of the electric field strength is. The return loss of UBM bump interconnect structure increase as the signal frequency increases but the insertion loss decreases with the increase of the frequency. With the increase of the thickness of nickel layer, copper layer and titanium layer, the insertion loss decreases. The signal integrity of Ti-Wu-Au combination is the best, the Ti-Cu-Ni combination is the second and the Cr-Ni-Au combination is the worst.

     

/

返回文章
返回