2013•Unpublished venueRequires access

Effect of die shape on die tilt in die attach process

Huai Zheng, Yiman Wang, Xiaobing Luo, Ling Xu, Sheng Liu

Open publisher page 10 citations

Abstract

Die attach process is widely used to realize the connection between die, device and the rest of the system in electronic packaging. During this process, the die moves under the capillary force induced by the liquidus solder. Such a die tilt phenomenon usually occurs and strongly worsens the reliability and performances of devices. In this paper, we built a numerical model based on fluid minimal free energy theory for analyzing the die arrangement in die attach process. By this model, die arrangements of three kinds of die shapes in terms of square, square with round corner and circle were calculated. Results indicate that compared to the square, both square with round corner and circle benefit preventing the die tilt. Especially, the circle die can well keep the parallel die arrangement.

About this research paper

What this paper is about

Die attach process is widely used to realize the connection between die, device and the rest of the system in electronic packaging. During this process, the die moves under the capillary force induced by the liquidus solder. Such a die tilt phenomenon usually occurs and strongly worsens the reliability and performances of devices. In this paper, we built a numerical model based on fluid minimal free energy theory for analyzing the die arrangement in die attach process. By this model, die arrangements of three kinds of die shapes in terms of square, square with round corner and circle were calculated. Results indicate that compared to the square, both square with round corner and circle benefit preventing the die tilt. Especially, the circle die can well keep the parallel die arrangement.

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OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Die attach process is widely used to realize the connection between die, device and the rest of the system in electronic packaging. During this process, the die moves under the capillary force induced by the liquidus solder. Such a die tilt phenomenon usually occurs and strongly worsens the reliability and performances of devices. In this paper, we built a numerical model based on fluid minimal free energy theory for analyzing the die arrangement in die attach process. By this model, die arrangements of three kinds of die shapes in terms of square, square with round corner and circle were calculated. Results indicate that compared to the square, both square with round corner and circle benefit preventing the die tilt. Especially, the circle die can well keep the parallel die arrangement.

Key concepts: Die (integrated circuit), Square (algebra), Tilt (camera), Process (computing), Die casting, Mechanical engineering, Engineering, Computer science

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