端到端电源完整性仿真中多相稳压器模块暂态行为建模方法

Junho Joo;Hanyu Zhang;Hanfeng Wang;Zhigang Liang;Lihui Cao;Jan S. Rentmeister;Chulsoon Hwang
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引用次数: 0

摘要

精确的端到端电源完整性仿真需要包括配电网络中每个组件的模型,包括电压调节器模块(VRMs)和片上电容器。然而,将VRM纳入电力完整性仿真一直具有挑战性,因为电力电子仿真工具与典型的电力完整性仿真工具不兼容,并且SPICE工具的加密VRM模型通常不够精确,无法捕捉各种负载条件下的非线性行为。在此基础上,提出了一种与spice兼容的行为建模方法,并将其应用于移动平台上的实际多相VRM进行了验证。仿真模型充分捕捉了VRM的控制回路,如单电压反馈回路和多电流反馈回路。通过结合电压和电流反馈网络的基于参数的方程,该模型再现了基于脉宽和脉频调制的VRM操作。为了验证行为模型,通过两个步骤确定设计参数。最后,在不同载荷条件下的评估板上对所提出的行为建模方法进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for Transient Behavior Modeling of a Multiphase Voltage Regulator Module for End-to-End Power Integrity Simulation
Accurate end-to-end power integrity simulations require models that include every component in the power distribution network, including voltage regulator modules (VRMs) and on-die capacitors. However, including VRMs in power integrity simulations has been challenging, because power electronic simulation tools are not compatible with typical power integrity simulation tools, and encrypted VRM models for SPICE tools are typically not sufficiently accurate to capture the non-linear behaviors under various load conditions. Herein, a SPICE-compatible behavior modeling method is proposed, which is applied and validated for a practical multiphase VRM in a mobile platform. The simulation model adequately captures the control loops of the VRM, such as single-voltage and multiple current feedback loops. By combining the parameter-based equations from the voltage and current feedback networks, the model reproduces pulse-width and pulse-frequency modulation-based VRM operations. For validation of the behavior model, the design parameters are determined through a two-step process. Finally, the proposed behavior modeling method is experimentally validated with an evaluation board with various load conditions.
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