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Wirebonds for Munitions Applications: Effects of Dynamic Shock, Vibration, and Spin

机译:用于弹药应用的幂罩应用:动态冲击,振动和旋转的影响

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The use of microelectronics in munitions applications has been growing with the development of advanced "smart" weapons. For applications such as guided projectiles that are fired from a rifled cannon, the microelectronics in the shell will experience extremely high acceleration forces, vibration forces, and rotational forces during the launch and flight phases of the projectile. This study evaluates how un-encapsulated wirebonds behave when subjected to these kinds of severe environmental conditions. Fine pitch wirebonds of varying length and height were bonded on a test substrate in a microcircuit package. The package was then subjected to forces up to 28,000 G level (peak) along an axis that would either tend to push the wires do wn or to one side. Vibrational and ro tational forces were also applied to the package. Following high-G testing, microscopic visual inspection and X-ray imaging was conducted to detect any wire damage or deformation. Destructive wire bond pull test was utilized to reveal any wire or interface weakening that occurred due to high-G forces. As expected, most long length wires were severely damaged at the higher-G level exposures and the shorter wires were less deformed. When properly oriented, even long length wires can withstand high-G levels. Vibration testing appears to weaken some wirebonds.
机译:在弹药应用中使用的微电子一直在增长与先进的“智能”武器的发展。对于应用程序,例如引导射弹是从膛线炮开火,在外壳微电子将在弹丸的发射和飞行阶段经历非常高的加速力,振动力和旋转力。本研究旨在探讨如何在承受这些类型的恶劣环境条件下未封装的引线键合的行为。不同的长度和高度的细间距引线键合贴合在微电路封装的测试基板上。然后该包装经受力高达沿着的轴线要么倾向于推动导线做WN或一侧28000ģ电平(峰值)。振动和RO tational部队也适用于包装。以下高-G测试,进行了微观目视检查和X射线成像以检测任何电线损坏或变形。被利用破坏性引线键合拉力测试以显示发生由于高G力的任何线或接口弱化。正如预期的那样,最长长度的电线受到严重在较高-G级曝光损坏和较短的电线被较少变形。当适当地定向,即使长的长度的电线可承受高-G的水平。振动试验似乎削弱一些引线键合。

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