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所在平台: Udemy |
课程主页: https://www.udemy.com/course/cardinal-points-of-lens/
课程评论:没有评论
**课程名称:** Lens Cardinal Points (透镜的基点) **课程概述:** 本课程旨在帮助学员掌握光学系统设计的基础知识,深入理解透镜的基点(例如有效焦距EFL、后/前焦距BFL/FFL、主面BPP/FPP以及光圈节点),并学习如何利用Zemax OpticStudio进行实际的光学模拟。课程将涵盖厚透镜和浸没式光学系统的计算与分析,并通过Zemax的实际操作演示,让学员能够独立进行光学参数的提取和系统设计。 **学习目标:** * 理解透镜基点在光学系统设计中的作用。 * 学习计算厚透镜的焦距、主面和间隙。 * 掌握节点概念及其在光学系统中的应用。 * 分析浸没式光学系统及其对光学性能的影响。 * 通过厚透镜和浸没式系统的实例,获得实践经验。 * 学习在Zemax OpticStudio中建模和提取光学系统参数。 **目标学员:** * 光学工程师和设计师 * 学习光学、光子学或光学工程的学生 * 影像和光学仪器(显微镜、望远镜、AR/VR等)领域的研发人员 * 对精密光学设计感兴趣的透镜和光学系统制造商 * 任何希望了解Zemax光学系统模拟技术的个人 **先修知识:** * 基本几何光学知识(斯涅尔定律、折射、透镜) * 基本代数和三角函数知识 * (可选)Zemax OpticStudio使用经验 **课程结构与关键主题:** * **透镜基点:** 深入理解EFL, BFL, FFL, BPP, FPP和gap。 * **主面与焦距计算:** 理论讲解与现实应用。 * **浸没式光学系统:** 与标准光学设置的区别。 * **实践案例与分步计算:** 厚透镜和浸没式系统分析。 * **Zemax OpticStudio教程:** 模拟透镜参数和提取光学数据。 * **节点及其重要性:** 理论阐述与实际确定方法。 * **Zemax软件实操:** 学习添加表面、输入处方数据、确定基点,并巩固关键光学概念。 **课程优势:** 完成本课程后,学员将能够深刻理解透镜基点的工作原理,并熟练运用Zemax OpticStudio进行光学系统的分析、设计和优化。
Mastering Lens Cardinal Points & Optical System Design with ZemaxAre you looking to master optical system design and understand lens cardinal points, principal planes, and focal lengths? Do you want to apply these concepts using Zemax OpticStudio for real-world optical simulations?This course provides a deep dive into the fundamental principles of lens systems, including effective focal length (EFL), back and front focal lengths (BFL & FFL), principal planes (BPP & FPP), and nodal points. You'll also learn how immersed optical systems differ from standard systems and how to analyze them in Zemax.What You Will Learn:Understand Lens Cardinal Points and their role in optical system design.Learn how to calculate focal lengths, principal planes, and hiatus in thick lenses.Master the concept of nodal points and their applications in optical systems.Analyze immersed optical systems and understand how they affect optical performance.Gain hands-on experience with practical examples of thick lenses and immersed lenses.Learn how to model and extract optical system parameters in Zemax OpticStudio.Who Should Take This Course?This course is perfect for:Optical Engineers & Designers working in lens and optical system development.Physics & Engineering Students studying optics, photonics, or optical engineering.R & D Professionals in Imaging & Optical Instrumentation (microscopes, telescopes, AR/VR, etc.).Lens & Optical System Manufacturers interested in precision design.Anyone interested in understanding optical system simulations in Zemax.Prerequisites:Basic understanding of geometrical optics (Snell's Law, refraction, lenses).Familiarity with basic algebra and trigonometry for optical calculations.(Optional) Experience with Zemax OpticStudio is beneficial but not required.Course Structure & Key Topics:Lens Cardinal Points - Understanding EFL, BFL, FFL, BPP, FPP, and hiatus.Principal Planes & Focal Point Calculations - Theory and real-world applications.Immersed Optical Systems - How they differ from standard optical setups.Practical Examples & Step-by-Step Calculations - Thick lens and immersed systems.Zemax OpticStudio Tutorials - How to simulate lens parameters and extract optical data.Nodal Points & Their Importance - Theory and practical determination.Hands-On Zemax ApplicationsLearn how to add surfaces, input prescription data, and determine cardinal points in Zemax.Apply practical examples to solidify your understanding of key optical concepts.By the end of this course, you'll have the skills to analyze, design, and optimize optical systems with a deep understanding of lens cardinal points and their practical applications in Zemax OpticStudio.Ready to take your optical design skills to the next level? Enroll now and start mastering optical system design and simulation!