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所在平台: Udemy |
课程主页: https://www.udemy.com/course/spice-simulation-for-beginners/
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Coursera 课程总结:OrCAD PSpice 新手入门与电路仿真 本课程旨在帮助初学者掌握 OrCAD PSpice 软件在电路仿真中的应用,课程共分为五个部分,循序渐进地讲解不同复杂度的电路及其 SPICE 仿真。 **第一部分:SPICE 基础与仿真类型** 本部分将介绍 SPICE(Simulation Program with Integrated Circuit Emphasis)是什么,它的工作原理,以及在 Cadence PSpice 中可以进行的各种仿真类型。 **第二部分:一级电路的数学与仿真** 重点讲解一级电路的数学原理,并通过 DC-Sweep、AC-Sweep/频率响应和瞬态分析等方式,对不同的 RC 和 LC 滤波器进行仿真。 **第三部分:二级电路的数学与仿真** 介绍二级电路,重点在于频率响应和波特图(Bode Plot)的分析,包括增益裕度和相位裕度。将深入探讨有源低通滤波器(Active LPF)、反相放大器和同相比例放大器等电路。 **第四部分:三级电路的数学与仿真(Buck 转换器)** 本部分将从 Buck 转换器的基础知识讲起,通过推导进行设计计算,然后绘制电路原理图,并进行频率响应、探针(Probe)等 SPICE 仿真,理解其工作原理,并探讨如何通过闭环控制来优化 Buck 转换器。 **第五部分:四级电路的数学与仿真(Boost 转换器)** 本部分将介绍 Boost 转换器的基础,进行设计计算的推导,绘制电路原理图,并进行频率响应、探针等 SPICE 仿真,理解其工作原理,并探讨如何通过闭环控制来优化 Boost 转换器。 通过本课程的学习,学员将能够熟练运用 OrCAD PSpice 进行各种复杂电路的仿真分析。
This course is divided into #5 different sections, under each section I have discussed different complexity levels of circuits and their SPICE simulations:Section-1 In this section I have discussed "What are SPICE, How it works, and Types of simulation we can do on Cadence PSPICE?"Section-2 is all about Level-1 Circuits, their maths, and simulations."DC-Sweep, AC-Sweep/Frequency Response, Transient analysis on different RC and LC filters"Section-3 is all about Level-2 Circuits, their maths, and simulations."We'll start with circuit introductions and then perform frequency responses and bode plots for gain/phase margins, Circuits we'll discuss under this sections are Active LPF, Inverting and Non-inverting Amplifiers"Section-4 is all about Level-3 Circuits, their maths, and simulations. "Under this section, we'll start with Basics of Buck converters and do few derivations to do design calculations, then we'll draw it's schematic and perform different spice simulations like Frequency responses, Probe and understand the working, how we can make it better with a close loop buck converter, etc.Section-5 is all about Level-4 Circuits, their maths, and simulations. "Under this section, we'll start with Basics of Boost converters and do few derivations to do design calculations, then we'll draw it's schematic and perform different spice simulations like Frequency responses, Probe and understand the working, how we can make it better with a close loop buck converter, etc.