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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Cost-Driven Optimization of Coverage of Combined Built-In Self-Test/Automated Test Equipment Testing
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Cost-Driven Optimization of Coverage of Combined Built-In Self-Test/Automated Test Equipment Testing

机译:成本驱动的组合式内置自测/自动测试设备测试覆盖率优化

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摘要

As the complexity of design and fabrication for instrumentation-on-silicon systems increases, the optimization of a combined Built-In Self-Test (BIST) and Automated Test Equipment (ATE) process is desirable to meet the high fault coverage while preserving acceptable costs. For digital systems, the costs associated with a combined BIST/ATE testing process mainly consist of the following components: 1) the cost due to the BIST area overhead and 2) the cost due to the overall test time. In general, BIST is faster than ATE, but it can provide only a limited fault coverage; for attaining a higher fault coverage from BIST, additional area (at a corresponding higher cost) is required. However, a higher fault coverage can usually be achieved from ATE, but excessive use of ATE results in additional test time (as an increased cost). The fault coverage of BIST and ATE plays a significant role, because it can affect the area overhead in BIST and the test time in BIST/ATE. This paper proposes a novel numerical method to find the optimized fault coverage by BIST and ATE so that minimal cost can be achieved. The proposed method is then applied to two parallel combined BIST/ATE testing schemes to ensure its validity
机译:随着硅基仪器系统的设计和制造复杂性的增加,需要对内置自测(BIST)和自动测试设备(ATE)工艺进行优化,以在不增加成本的情况下满足较高的故障覆盖率并保持可接受的成本。对于数字系统,与BIST / ATE组合测试过程相关的成本主要包括以下组成部分:1)由于BIST区域开销而产生的成本,以及2)由于整个测试时间而产生的成本。通常,BIST比ATE快,但是它只能提供有限的故障覆盖范围。为了从BIST获得更高的故障覆盖率,需要额外的区域(以相应的较高成本)。但是,通常可以通过ATE实现更高的故障覆盖率,但是过度使用ATE会导致额外的测试时间(因为增加了成本)。 BIST和ATE的故障覆盖率起着重要作用,因为它会影响BIST中的区域开销和BIST / ATE中的测试时间。本文提出了一种新的数值方法,可以通过BIST和ATE找到最优的故障覆盖率,从而可以实现最低的成本。然后将提出的方法应用于两个并行组合的BIST / ATE测试方案,以确保其有效性

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