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Reducing test time in the high-volume production of analog circuits using efficient test-vector generation and interpolation techniques

机译:使用高效的测试 - 向量生成和插值技术减少模拟电路的高批量生产的测试时间

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Test cost is one of the main factors determining the profit margin of a device in production. Current test strategies require hundreds of measurements to determine the specifications of a parameter. In this paper, we present an automatic test-vector generation technique that is based on transfer function manipulation and requires only one circuit simulation. The proposed method consists of generating the first set of vectors by applying a derivation technique to the golden transfer function of the circuit under test (CUT). An interpolation technique allows a new transfer function to be constructed based on the first set of test vectors. The difference between the reconstructed transfer function and the golden transfer function is used to select the second set of test vectors. These new test vectors are selected to achieve the best possible fit. Our technique reduces the test vector size to values that at present can be achieved only by using powerful and time-consuming fault simulation tools. As an example, we apply the method to state variable and Chebyshev filters. We also compute the fault coverage in order to demonstrate the effectiveness of this new technique.
机译:测试成本是确定生产中设备利润率的主要因素之一。当前的测试策略需要数百项测量来确定参数的规格。在本文中,我们提出了一种基于传递函数操纵的自动测试 - 向量生成技术,并且只需要一个电路模拟。该提出的方法包括通过将推导技术应用于被测电路(切割)的金色传递函数来生成第一套矢量。插值技术允许基于第一组测试向量构建的新传递函数。重建传递函数和金色传递函数之间的差异用于选择第二组测试向量。选择这些新的测试向量以实现最佳拟合。我们的技术将测试矢量尺寸减少到目前可以通过使用强大耗时的故障仿真工具实现的值。作为示例,我们将该方法应用于状态变量和Chebyshev过滤器。我们还计算故障覆盖范围,以展示这种新技术的有效性。

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