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Achieving Six Sigma printed circuit board yields by improving incoming component quality and using a PCBA prioritization algorithm

机译:通过改善传入组件质量和使用pCBa优先级算法实现六西格玛印刷电路板产量

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摘要

Printed circuit board assemblies (PCBAs) are the backbone of the electronics industry. PCBA technologies are keeping pace with Moore's Law and will soon enable the convergence of video, voice, data, and mobility onto a single device. With the rapid advancements in product and component technologies, manufacturing tests are being pushed to the limits as consumers are demanding higher quality and more reliable electronics than ever before. Cisco Systems, Inc. (Cisco) currently manufactures over one thousand different types of printed circuit board assemblies (PCBAs) per quarter all over the world. Each PCBA in Cisco's portfolio has an associated complexity to its design determined by the number of interconnects, components, and other variables. PCBA manufacturing yields have historically been quite variable. In order to remain competitive, there is an imminent need to attain Six Sigma PCBA yields while controlling capital expenditures and innovating manufacturing test development and execution. Recently, Cisco kicked off the Test Excellence initiative to improve overall PCBA manufacturing yields and provided the backdrop to this work study. This thesis provides a first step on the journey to attaining Six Sigma PCBA manufacturing yields. Using Six Sigma techniques, two hypotheses are developed that will enable yield improvements: (1) PCBA yields can be improved by optimizing component selection across the product portfolio by analyzing component cost and quality levels, and (2) Using the Six Sigma DMAIC (define-measure-analyze-improve-control) method and the TOPSIS (Technique for Order Preferences by Similarity to Ideal Solutions) algorithm, PCBA yields will improve by optimally prioritizing manufacturing resources on the most important PCBAs first.
机译:印刷电路板组件(PCBA)是电子行业的支柱。 PCBA技术与摩尔定律保持同步,并将很快将视频,语音,数据和移动性融合到单个设备上。随着产品和组件技术的飞速发展,制造测试正被推向极限,因为消费者需要比以往更高的质量和更可靠的电子产品。思科系统公司(Cisco)目前在全球每季度生产一千多种不同类型的印刷电路板组件(PCBA)。思科产品组合中的每个PCBA的设计都具有相关的复杂性,具体取决于互连,组件和其他变量的数量。从历史上看,PCBA的制造产量变化很大。为了保持竞争力,迫切需要在控制资本支出和创新制造测试开发与执行的同时获得6 Sigma PCBA的收益。最近,思科启动了“卓越测试”计划,以提高PCBA的整体制造良率,并为这项工作研究提供了背景。本论文为实现六西格玛PCBA制造良率提供了第一步。使用六西格码(sigma)技术,开发了两个可以提高产量的假设:(1)通过分析组件成本和质量水平来优化整个产品组合中的组件选择,可以提高PCBA的产量;(2)使用六西格玛DMAIC(定义-测量-分析-改善-控制)方法和TOPSIS(类似于理想解决方案的订单首选项技术)算法,将通过首先优化最重要的PCBA上的制造资源优先级来提高PCBA的产量。

著录项

  • 作者

    Davis Daniel Jacob;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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