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Evaluation of loop transfer function based dynamic testing of LDOs

机译:基于环路传递函数的LDO动态测试评估

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Embedded power regulators, such as low dropout regulators (LDOs), are generally tested for DC behavior and are rarely characterized dynamically. However, LDO loop dynamics play an important role in the overall behavior of the system. Dynamic characterization of LDOs based directly on LDO specifications requires measurement of output transient response with a step input at various points in the circuit. Such characterization is both difficult and costly. Alternatively, LDOs can be characterized by measuring loop dynamics in the form of a transfer function. Since the system is highly non-linear, transfer function can be characterized around a given operating point in terms of poles and zeros. The stability of the system can be inferred from the loop transfer function. This indirect characterization is more feasible but may result in test escapes. In this paper, we investigate the dynamic LDO characterization by closed loop transfer function and evaluate the test coverage with respect to modeled faults in the circuit. We show that faults that are not detectable with DC tests only become detectable with dynamic testing. We also show that the majority of undetectable faults are redundant with regards to the overall operation in terms of step response.
机译:嵌入式电源稳压器,例如低压差稳压器(LDO),通常经过DC性能测试,很少动态表征。但是,LDO回路动力学在系统的整体行为中起着重要作用。直接基于LDO规范对LDO进行动态表征需要在电路中各个点处使用阶跃输入来测量输出瞬态响应。这种表征既困难又昂贵。或者,可以通过测量传递函数形式的环路动态特性来表征LDO。由于系统是高度非线性的,因此可以在给定的工作点附近以极点和零点为特征来描述传递函数。从循环传递函数可以推断出系统的稳定性。这种间接表征更为可行,但可能导致测试失败。在本文中,我们通过闭环传递函数研究动态LDO表征,并针对电路中的建模故障评估了测试覆盖范围。我们表明,直流测试无法检测到的故障只能通过动态测试来检测。我们还表明,就阶跃响应而言,大多数不可检测的故障对于整个操作都是多余的。

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