Microelectronics - Two-Port Models

所在平台: Udemy

课程主页: https://www.udemy.com/course/microelectronics-two-port-models/

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**课程名称:** 微电子学 - 双端口模型 **课程概述:** 本课程是“微电子学基础”系列的重要组成部分,专注于模拟电路分析中最强大的工具之一:双端口模型。无论您是在设计放大器、分析反馈网络,还是对复杂的子电路进行建模,双端口表示都能架起物理器件和系统级理解之间的桥梁。 在本课程中,我们将探讨如何使用一系列双端口参数集(包括 h 参数、y 参数、z 参数和 g 参数)来建模微电子元件和电路,并理解它们在理论和实践中的优势。我们将深入探讨: * 双端口建模的动机及其重要性 * 如何从物理测量或器件模型中提取双端口参数 * BJT 的混合-π 模型及其与双端口 h 参数的对应关系 * 使用双端口模型进行输入和输出阻抗分析 * 在多级放大器设计、级联系统和反馈分析中使用双端口模型 贯穿整个课程,您将建立起将真实晶体管行为转化为预测性能和指导设计选择的分析模型所需的直觉。音频格式强调清晰度、流程和概念联系,是您散步、通勤或设计评审前的理想学习伴侣。 **学习目标:** 课程结束时,您不仅将熟练掌握双端口模型的使用,还将理解它们如何融入更广泛的微电子学语言。

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Welcome to this essential course in the Fundamentals of Microelectronics series, where we focus on one of the most powerful tools in analog circuit analysis: the two-port model. Whether you're designing amplifiers, analyzing feedback networks, or modeling complex sub-circuits, two-port representations provide the bridge between physical devices and system-level understanding.In this course, we'll explore how to model microelectronic components and circuits using a range of two-port parameter sets-including h-parameters, y-parameters, z-parameters, and g-parameters-and understand where each shines in both theory and practice. We'll dig into:The motivation behind two-port modeling and when it's essentialHow to extract two-port parameters from physical measurements or device modelsThe hybrid-π model of the BJT and its mapping to two-port h-parametersInput and output impedance analysis using two-port modelsUsing two-port models in multi-stage amplifier design, cascading systems, and feedback analysisThroughout the course, you'll build the intuition to translate real transistor behavior into analytical models that predict performance and guide design choices. The audio format emphasizes clarity, flow, and conceptual connections-making this the perfect companion whether you're on a walk, commuting, or reviewing before a design session.By the end of this course, you'll not only be fluent in using two-port models-you'll see how they fit into the broader language of microelectronics.

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