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Shape evolution of high aspect ratio copper bumps used for wafter level CSP

机译:晶圆级CSP用高纵横比铜凸块的形状演变

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Electrodeposited via-posts are important elements in wafer level CSP. Cross sections of these via-posts were observed for the via-posts with less than 100 #mu#m cathode length. Heights of via-posts become non-uniform with the narrower via-post pitches. Via-posts become the higher for lower portion of electrode and lower for the upper portion of electrode. The uniformity increases for wider via-post pitches. The uniform height via-posts for via-post pitch of for longerthan 700 #mu#m at 100 #mu#m cathode length. Uniform height forms for pitch of longer than 400 #mu#m at 75 #mu#m cathode length, longer than 250 #mu#m at 50#mu#m cathode length and longer than 100 #mu#m at 25 #mu#m cathode length. The solution becomes dilute because of consumption of copper ion at the cathode via. This dilute solution emerges from the via and becomes uper stream flow, which travels along the resist surface and flows into the vias at upper portion of the electrode. The upper stream flow mixes with bulk electrolyte along the resist surface and recovers its concentration. With longer resist surface distance,the flow mixes more with bulk electrolyte and increases recovery. This concentration recovery along the resist surface causes the height of via-posts as uniform.
机译:电沉积通孔柱是晶圆级CSP中的重要元素。对于具有小于100#μm的阴极长度的通孔柱,观察到这些通孔柱的横截面。通孔柱的高度随着通孔柱间距的变窄而变得不均匀。通孔柱对于电极的下部而言变得更高而对于电极的上部而言变得更低。对于更宽的通孔柱间距而言,均匀性增加。在阴极长度为100#mu#m的情况下,用于通孔间距的均匀高度通孔长度超过700#mu#m。阴极高度均匀分布,在阴极长度为75#mu#m时间距大于400#mu#m,在阴极长度为50#mu#m时间距大于250#mu#m,在25#mu#时大于100#mu#m m阴极长度。由于阴极通孔中铜离子的消耗,溶液变得稀薄。这种稀溶液从通孔中流出,并成为向上的气流,它沿着抗蚀剂表面行进并流入电极上部的通孔中。上游流沿抗蚀剂表面与大量电解质混合并恢复其浓度。抗蚀剂表面距离越长,流与大量电解质的混合就越多,并提高了回收率。沿着抗蚀剂表面的这种浓度恢复导致通孔柱的高度均匀。

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