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A new FPGA-based Detection Method for Spurious Variations in PCBA Power Distribution Network

机译:基于FPGA的PCBA配电网杂散变化检测新方法

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Nowadays, increasing demand for High-Performance Systems produces significant growth in usage of Field Programmable Gate Arrays (FPGAs) for different applications thanks to their flexibility and high level of parallelism. Such systems rely on complex multi-layer Printed Circuit Board Assemblies (PCBA)with a few dozens of hidden layers, stacked microvias and high-density interconnects. Along with creating new test challenges, the increasing PCBA complexity elevates the criticality of defects in various subsystems. One of such sub-systems is a Power-Delivery-Network (PDN) with operating margin progressively reduced due to increasingly strict requirements of High-Performance applications. As a consequence, Marginal Defects and process variations in a PDN may create latent problems that will manifest in a particular condition thus compromising the overall system performance and causing malfunctions. In this paper we propose a new FPGA-based non-intrusive method to detect Marginal Defects in a PCBA PDN. The method is based on a monitoring circuit that measures signal delays caused by PDN variations and thus detects relevant anomalies. Additional ad-hoc PDN stress circuits have been developed to validate the measurement technique. Experimental results demonstrating the consistency of the proposed approach are obtained by comparing stress and non-stress scenarios.
机译:如今,由于高性能系统的灵活性和高度并行性,对高性能系统的日益增长的需求使用于不同应用的现场可编程门阵列(FPGA)的使用显着增长。这样的系统依赖于复杂的多层印刷电路板组件(PCBA),该组件具有几十个隐藏层,堆叠的微孔和高密度互连。随着提出新的测试挑战,不断增加的PCBA复杂性也提高了各个子系统中缺陷的严重性。这种子系统之一是电力传输网络(PDN),由于对高性能应用程序的要求越来越严格,因此运营裕度逐渐降低。结果,PDN中的边际缺陷和过程变化可能会产生潜在的问题,这些问题会在特定条件下显现,从而损害了整个系统的性能并导致故障。在本文中,我们提出了一种新的基于FPGA的非侵入式方法来检测PCBA PDN中的边际缺陷。该方法基于监视电路,该电路测量由PDN变化引起的信号延迟,从而检测相关异常。已经开发了额外的专用PDN应力电路来验证测量技术。通过比较压力和非压力情况,获得了表明所提方法一致性的实验结果。

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