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Overcoming Logistic, Economic and Technical Challenges to Implementing Functional Test in High Mix / High Volume Production Environments

机译:在高混合/大批量生产环境下实施功能试验的滞留,经济和技术挑战

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Functional circuit test (FCT) of circuit boards and end products in a high volume (>1000 units per day) production environment presents challenging technical, logistic and cost obstacles that are usually more complex than those encountered at the inspection (automated optical inspection) and the manufacturing process test step (in-circuit test). FCT "logistic challenges" are even more significant when there is a variety (high mix) of different circuit types to be tested. It is not uncommon for production lines to routinely have fifty or more active board types, each with a difficult-to-forecast production schedule that must respond to varying customer demand. The exigencies of high volume production-not to mention the economics-preclude the typical "one-off' functional testers or "product-minus-one" found in many production environments. A "universal test system" is required. However, most "universal testers" are typically large and expensive, where (1) cycle times may be several times longer than the line takt rate, and (2) complex fixturing and UUT connection requirements that are difficult to modify in line further impede throughput. Developing and maintaining revision control of application test programs for FCT is a further complicating factor in a high product mix environment. The difficulty of developing a practical FCT system to be used in the production line is exacerbated when the tests must include accurate and repeatable measurement of "outlier" electrical parameters such as very low or very high voltages and currents, and/or low level and/or very high frequency RF signals. We have developed a standardized FCT system architecture, combined with fixturing/UUT interconnection solutions designed for the rigors of a high-mix, high volume production environment, significantly reducing total cost compared to typical custom-designed FCT systems. We have also developed algorithmic programming techniques that have proven useful to minimize overall UUT test time. We will describe how this architectural and procedural approach meets FCT technical, logistic and economic goals by studying the actual functional test of a high-mix, high volume AC driver product, which has more than 50 distinct variations, built in a volume exceeding one million units per year. The robustness of our technical test solution will be further illustrated by describing test requirements that included voltage measurements of up to 1200V and current measurements up to 40A.
机译:电路板和最终产品的功能电路测试(FCT)高卷(> 1000个单位)生产环境呈现出具挑战性的技术,后勤和成本障碍,这些障碍通常比检查(自动光学检测)和自动化光学检测)更复杂制造过程测试步骤(电路式测试)。当有多种电路类型的不同电路类型时,FCT“Logistic挑战”更为显着。生产线常规具有五十或更多的活性板类型并不罕见,每个生产线都有一个难以预测的生产计划,必须应对不同的客户需求。高批量生产的紧急情况 - 更不用说经济学 - 排除了许多生产环境中发现的典型的“一次性”功能测试仪或“产品 - 减号”。需要一个“通用测试系统”。然而,最多“通用测试仪“通常很大且昂贵,其中(1)循环时间可能比线路速率长数次,并且(2)复杂的固定装置和UUT连接要求难以在线进一步妨碍吞吐量。发展和维护用于FCT的应用测试程序的修订控制是高产品混合环境中的进一步复杂因素。当测试必须包括准确和可重复测量“异常值”时,在生产线中使用要使用的实际FCT系统的难度会加剧。电气参数,如非常低或非常高的电压和电流,和/或低电平和/或非常高频RF信号。我们开发了一个标准化的FCT系统建筑E,结合固定/ UUT互连解决方案,专为高卷,高批量生产环境的严格而设计,与典型的定制FCT系统相比,显着降低了总成本。我们还开发了算法编程技术,这些技术已被证明可用于最小化整体UUT测试时间。我们将描述这种建筑和程序方法如何通过研究高混合物,高批量交流驾驶员产品的实际功能试验,该架构和程序方法如何通过研究具有超过50个不同变化的高卷,高批量交流驾驶员产品的实际功能试验。单位每年。通过描述包括高达1200V的电压测量值和高达40A的电流测量值的测试要求,将进一步说明我们的技术测试解决方案的稳健性。

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