Evaluation and optimization of package processing, design, and reliability through solder joint profile prediction

B. Yeung, T. Lee
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引用次数: 5

Abstract

Solder joints are generated using a variety of methods to provide both mechanical and electrical connection for applications such as flip-chip, wafer level packaging, fine pitch, ball-grid array, and chip scale packages. Solder joint shape prediction has been incorporated as a key tool to aid in process development, wafer level and package level design and development, assembly, and reliability enhancement. This work demonstrates the application of an analytical model and the Surface Evolver software in analyzing a variety of solder processing methods and package types. Bump and joint shape prediction was conducted for the design of wafer level bumping, flip-chip assembly, and wafer level packaging. The results from the prediction methodologies are validated with experimentally measured geometries at each level of design.
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通过焊点轮廓预测对封装工艺、设计和可靠性进行评估和优化
焊点是使用各种方法生成的,为倒装芯片、晶圆级封装、细间距、球栅阵列和芯片级封装等应用提供机械和电气连接。焊点形状预测已被纳入帮助工艺开发、晶圆级和封装级设计和开发、组装和可靠性增强的关键工具。本工作演示了分析模型和Surface Evolver软件在分析各种焊料加工方法和封装类型中的应用。对晶圆级碰撞、倒装组装和晶圆级封装的设计进行了碰撞和接头形状预测。预测方法的结果在每个设计水平上都用实验测量的几何形状进行了验证。
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