首页> 外文期刊>The Chinese Journal of Mechanics. Series A >ON THE DESIGN OF AN INNOVATIVE LATCH MECHANISM IN SMIFED WAFER CONTAINERS
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ON THE DESIGN OF AN INNOVATIVE LATCH MECHANISM IN SMIFED WAFER CONTAINERS

机译:硅片容器创新锁存机制设计研究

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摘要

This paper presents the design process for an innovative latch mechanism in a standard mechanical interfaced (SMIFed) wafer container, in which the manufactured integrated circuits are stored. An innovative latch mechanism is proposed and applied to the wafer container, such that the container door can be latched and air-tightly sealed during storage or transportation. The design process is divided into two stages. In the first stage, an output slot-cam is designed in order to generate decoupled fine motions of the output link. The issue is formulated as an optimization problem where the output link dimensions are optimized to minimize the resultant pin forces'subject to an adequate transmission angle. In the second stage, the input slot-cam is designed to achieve that kinetic energy of the elastic gasket on the container lid is absorbed at a uniform rate. Finally, a numerical example and computer simulations are given to demonstrate the results of design process. It is believed that this work could aid in enhancing the performance and reliability of the latch mechanism in the SMIF environment.
机译:本文介绍了在标准机械接口(SMIFed)晶圆容器中创新的闩锁机制的设计过程,在其中存储了制造的集成电路。提出了一种创新的闩锁机构并将其应用于晶片容器,使得容器门在存储或运输期间可以被闩锁并气密密封。设计过程分为两个阶段。在第一阶段中,设计了一个输出槽凸轮,以产生输出连杆的解耦的精细运动。该问题被表述为一个优化问题,其中优化了输出连杆的尺寸,以最大程度地减小合力受到适当传动角的影响。在第二阶段中,输入狭槽凸轮设计为使容器盖上弹性垫圈的动能以均匀的速率吸收。最后,通过数值算例和计算机仿真验证了设计过程的结果。相信这项工作可以帮助提高SMIF环境中闩锁机构的性能和可靠性。

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