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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/displays
课程评论:没有评论
课程名称:显示器 课程概述:本课程可作为学术学分修读,课程代码为ECEA 5607,属于科罗拉多大学博尔德分校电气工程硕士学位课程的一部分。 课程介绍:本课程将深入探讨电子显示设备,包括液晶显示器、发光二极管、等离子体显示器、有机发光二极管以及基于电湿润的显示器。您将了解各种设计原则、优缺点,并探索在专业光学领域的多种应用。 学习目标:完成本课程后,您将能够: (1) 针对特定应用选择合适的显示技术(如激光雷达、成像、显微镜等); (2) 针对特定显示技术的限制设计系统(例如:寻址); (3) 设计一个最大化对比度的系统。 课程大纲: 模块1:液晶显示器 描述:本模块将涵盖电子显示器的基本原理,包括液晶、发光二极管、等离子体、有机发光二极管和基于电湿润的显示器。学习结束后,学员将能选择适合的显示技术并进行基本的设计,同时深入理解驱动显示操作的基本原理。 模块2:发光二极管显示器 描述:在这一模块中,我们将讨论发光二极管显示器。电致发光是通过施加电场使材料非热产生光的过程。使用该技术的显示器具有响应速度快、视角广、高分辨率、宽温范围、轻便及优良的显示效果等诸多优势。您将学习这一重要类显示器的基本原理及其面临的挑战。 模块3:电子墨水、电子湿润和等离子体显示器 描述:在本模块中,您将学习前景广阔的显示技术,包括电子墨水、电子湿润和等离子体显示器。尽管这些技术与液晶显示器有所不同,但在对比度、大面积显示和超低功耗方面各有其优势。我们希望您在学习这些技术的过程中获得良好的体验。
Name:Liquid Crystal Displays
Description:The course will cover the basics of electronic display devices, including liquid crystals, electroluminescent, plasma, organic light emitting diodes, and electrowetting based displays. At the end of this course learners will be able to select a display technology and perform basic design of the display and have a thorough grasp of basic principles that drive display operation. Module 1 will cover the fundamentals of liquid crystal displays, used in most computer monitors.
Name:Electroluminescent Displays
Description:In this module, we will talk about electroluminescent displays. Electroluminescence is the non-thermal generation of light caused by an applied electric field to a material. Displays using this technology have many advantages including fast response, wide viewing angles, high resolution, wide operating temperatures, light weight, and good display qualities. You will learn about fundamentals of this important class of displays and challenges. It's a very exciting topic!
Name:E-ink, Electrowetting, & Plasma Displays
Description:In this module, you will learn about promising display technologies that include e-ink, electrowetting and plasma displays. While the technology is different than the liquid crystal displays, these techniques have their own advantages in terms of contrast, scaling to large areas and ultralow power consumption. I hope you have as great experience learning about these techniques as I have had in preparing the course material.
This course can also be taken for academic credit as ECEA 5607, part of CU Boulder’s Master of Science in Electrical Engineering degree. Displays Course Introduction The course will dive deep into electronic display devices, including liquid crystals, electroluminescent, plasma, organic light emitting diodes, and electrowetting based displays. You'll learn about various design principles, affordances and liabilities, and also a variety of applications in the real world of professional optics. Course Learning Outcomes At the end of this course you will be able to… (1) Select a display technology for a given application (LIDAR, imaging, microscopy etc.) (2) Design a system around the limitations of a given display technology (ie. addressing) (3) Design a system that maximizes contract