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所在平台: Udemy |
课程主页: https://www.udemy.com/course/silvaco-tcad-e-learning-course/
课程评论:没有评论
课程名称:Silvaco TCAD 在线学习课程 课程概述:在这个课程中,我将教你如何使用 Silvaco TCAD 软件,带领你设计、模拟和建模半导体电器设备。此外,我还将教授 Silvaco 的编码、指令和语句。我们将通过 PPT 和虚拟模式一步步进行讲解。我将介绍不同精度和速度的各种模拟技术,并覆盖半导体量度的各种模型,包括迁移率、载流子复合生成和电流密度等。完成本课程后,你将对电子设备的运行原理和多种模拟技术有深入了解,这些知识可用于作业、书面作业甚至日常工作。如今,半导体设备和工艺的发展大多依赖计算机建模,这种方法称为 TCAD(技术计算机辅助设计)。TCAD 是电子设计自动化的一个分支,模型化半导体制造过程和半导体设备运作。制造过程的建模称为过程 TCAD,而设备运作的建模则称为设备 TCAD。 学习要求:为学习 Silvaco,你需要具备有关半导体材料及其性能参数的知识,了解电子设备的物理学和技术,及其模拟设备的一些解析解法。此外,你还需要了解如何从物理模型开始,数值模拟电子设备,依次到达其数学模型,再到数学模型的解,以获得设备性能参数,如设备的 I-V 曲线。
In this program, I'll teach you about Silvaco TCAD software and lead you through the design, simulation and modeling of semiconductor electrical devices. Additionally, I'll be teaching coding, instructions, and statements for Silvaco. We'll walk you through it step-by-step using PPT and virtual mode. I'll also go through various simulation techniques that differ in accuracy and speed. Various models for semiconductor quantities, including mobility, carrier recombination generation, and current density, will also be covered.You will have a deep understanding of how electronic devices operate and several simulation techniques at the end of this course. You can use it for homework, writing assignments, and even regular jobs.Today much of the development of semiconductor devices and processes is done by computer modeling. The approach is called TCAD. Technology computer-aided design is a branch of electronic design automation that models semiconductor fabrication and semiconductor device operation. The modeling of the fabrication is termed Process TCAD, while the modeling of the device operation is termed Device TCAD.Requirement:To learn Silvaco you have to be knowledgeable about semiconductor materials and their performance parameters, the physics and technology of the electronic device, and some analytical solutions of the device you want to simulate.Then you have to know how an electronic device is simulated numerically starting from its physical model, then its mathematical model then its solution of the mathematical model to get the performance parameters such as the i-v curves of the device.