集成滞回控制DC-DC变换器的系统建模

S. Dietrich, H. Sandner, F. Vanselow, R. Wunderlich, S. Heinen
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引用次数: 2

摘要

在集成模拟电路的设计流程中,系统组件建模越来越受到人们的关注。使用Matlab Simulink或VHDL对数字部件进行了很好的描述。另一方面,模拟电路建模复杂,由于缺乏仿真加速或精度,其建模非常耗时。然而,随着系统复杂性的增加和晶体管级模拟几乎变得不可能,大型集成模拟电路的适当模型,如DC-DC转换器,是必不可少的。本文讨论了一种集成的、滞回控制的DC-DC降压变换器的实际建模方法。本文以著名的德州仪器TPS 62620为例。模拟芯片与数据表的一致性得到了体现,仿真速度提高了约30倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System modelling of an integrated hysteretic controlled DC-DC converter
Modelling of system components gains more and more interest in the design flow of integrated analog circuits. Digital parts are well described using e.g. Matlab Simulink or VHDL. On the other hand, analog circuits are complex to model and, therefore, its modeling is time consuming due to missing simulation speed-up or accuracy. Nevertheless, as system complexity rises and transistor level simulations nearly become impossible, adequate models of large integrated analog circuits, like DC-DC converters, are essential. This paper deals with a practical solution to model an integrated, hysteretic controlled DC-DC buck converter. The well known Texas Instruments TPS 62620 is used as an example. The consistency between the modelled chip and the datasheet is shown, while a simulation speed-up of about 30 has been achieved.
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