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Nonlinear Behavior Immunity Modeling of an LDO Voltage Regulator Under Conducted EMI

机译:传导EMI下LDO稳压器的非线性行为抗扰度建模

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This paper presents a nonlinear behavior modeling method committed to the immunity of low-dropout (LDO) voltage regulator to conducted electromagnetic interference (EMI). A nonlinear behavior model is proposed to predict the immunity of LDOs, where the nonlinear characteristics of an LDO voltage regulator are described as a cascade of Taylor series and linear filter system. A test printed circuit board (PCB), using the direct power injection (DPI) method, is designed up to 2 GHz to measure the immunity of LDOs. A nonlinear behavior model, lump-parameter models of discrete components on PCB extracted from S-parameter measurement, and DPI method are used to predict the immunity of an LDO voltage regulator. The comparison of immunity between simulation and measurement shows that the model has a good fit up to 2 GHz.
机译:本文提出了一种非线性行为建模方法,致力于降低低压差(LDO)稳压器对传导电磁干扰(EMI)的影响。提出了一种非线性行为模型来预测LDO的抗扰性,其中将LDO稳压器的非线性特性描述为泰勒级数和线性滤波器系统的级联。使用直接功率注入(DPI)方法设计的测试印刷电路板(PCB)的频率高达2 GHz,可测量LDO的抗扰度。非线性行为模型,从S参数测量中提取的PCB上离散组件的总参数模型以及DPI方法用于预测LDO稳压器的抗扰性。仿真和测量的抗扰度比较表明,该模型在2 GHz以下具有良好的拟合度。

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