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Experimental Analysis of a Novel Piezoelectric Jetting System for Micrograms Deposition in lectronic Assemblies

机译:用于电子组件中微克沉积的新型压电喷射系统的实验分析

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摘要

Over the past ten years, there has been an exponential growth in innovations and designs to offer cutting edge electronic devices that are smaller, faster, with advanced features built in. The existence of smartphones, wearable devices, tablets, etc., is the evidence of these advancements. Original equipment manufacturers are looking for processes in electronic assemblies that can offer high-speed, high accuracy, and fine droplet mass deposition to address the challenges of product miniaturization, high-density component packaging, and complex designs. This work presents a novel piezoelectric-driven jetting system that is designed to dispense small droplet masses with high accuracy and speed. The system is referred to as "novel" because, in the contact style jetting arena, the piezoelectric drive assembly for use to drive the motion of the piston assembly at high frequencies (up to 500 Hz) is new; furthermore, the piston motion tracking feature is patent pending of. Using a split-plot design of experiments (DOE) model, the jetting system is studied to understand the influence of critical designs introduced and to further review the smallest droplet mass possible to reliably dispense. This experimental analysis uses some of the widely used adhesives in the electronics assembly applications.
机译:在过去的十年中,创新和设计呈指数增长,提供了更小,更快,内置高级功能的尖端电子设备。智能手机,可穿戴设备,平板电脑等的存在就是明证这些进步。原始设备制造商正在寻找可提供高速,高精度和精细液滴沉积的电子组件工艺,以应对产品小型化,高密度组件封装和复杂设计的挑战。这项工作提出了一种新颖的压电驱动喷射系统,该系统设计用于以高精度和高速度分配小液滴。该系统之所以被称为“新型”,是因为在接触式喷射领域中,用于驱动活塞组件在高频率(最高500 Hz)下运动的压电驱动组件是新的。此外,活塞运动跟踪功能已申请专利。使用实验的分割图设计(DOE)模型,对喷射系统进行了研究,以了解所引入的关键设计的影响,并进一步审查最小的液滴质量以可靠地分配。该实验分析在电子装配应用中使用了一些广泛使用的粘合剂。

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  • 来源
    《Journal of Electronic Packaging》 |2017年第3期|031009.1-031009.10|共10页
  • 作者

    Iyer Rajiv L.; Santos Daryl L.;

  • 作者单位

    Systems Science and Industrial Engineering Department, Binghamton University, State University of New York, Binghamton, NY, United States;

    Systems Science and Industrial Engineering Department, Binghamton University, State University of New York, Binghamton, NY, United States;

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