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  Optical Design(CODE V and LightTools)培訓課程
   班.級.規.模.及.環.境
       為了保證培訓效果,增加互動環節,我們堅持小班授課,每期報名人數限5人,多余人員安排到下一期進行。
   上課時間和地點
上課地點:【上海】:同濟大學(滬西)/新城金郡商務樓(11號線白銀路站) 【深圳分部】:深圳大學成教院/ 電影大廈(地鐵一號線大劇院站)【北京分部】:福鑫大樓/北京中山學院 【武漢分部】:佳源大廈(高新二路) 【南京分部】:金港大廈(和燕路) 【成都分部】:領館區1號(中和大道)
最近開課時間(連續班/周末班/晚班)
Optical Design(CODE V and LightTools)培訓課程:2025年7月14日..用心服務..............--即將開課----即將開課,請咨詢客服。
   學時
     ◆課時: 共6天,36學時

        ◆外地學員:代理安排食宿(需提前預定)
        ☆合格學員免費頒發相關資格證書,提升您的職業資質
        作為最早專注于嵌入式培訓的專業機構,曙海嵌入式學院提供的證書得到本行業的廣泛認
        可,學員的能力得到大家的認同

        ☆合格學員免費推薦工作
        ★實驗設備請點擊這兒查看★
   .最.新.優.惠.
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   .質.量.保.障.

        1、培訓過程中,如有部分內容理解不透或消化不好,可免費在以后培訓班中重聽;
        2、培訓結束后,培訓老師留給學員手機和Email,免費提供半年的技術支持,充分保證培訓后出效果;
        3、培訓合格學員可享受免費推薦就業機會。 ☆合格學員免費頒發相關工程師等資格證書,提升您的職業資質。專注高端培訓13年,曙海提供的證書得到本行業的廣泛認可,學員的能力得到大家的認同,受到用人單位的廣泛贊譽。

  Optical Design(CODE V and LightTools)培訓課程
培訓方式以講課和實驗穿插進行

課.程.描.述 :

第一階段 Introduction to CODE V for Image Forming Systems

This course covers the basics on modeling, analyzing, optimizing, and tolerancing image-forming optical systems using CODE V, including hands-on workshops. It assumes familiarity with optics concepts and terminology.

By the end of the week, you will be able to do the following:

  • Model an optical system given its design parameters
  • Evaluate the system to determine its quality
  • Optimize the system to improve its quality
  • Evaluate the manufacturability of the final design

    Agenda

    Unit 1
    • Getting started: A design study
    Unit 2
    • Performance evaluation
    Unit 3
    • Optimization of lens performance
    • Reflective optical systems
    Unit 4
    • Tolerancing an optical system
    • Zoom and multi-configuration systems
    Unit 5
    • Non-spherical surfaces
    • Afocal systems
    • Macros and command mode

第二階段 Advanced Topics in CODE V?

Overview
This course will give current users of CODE V an opportunity to learn about and practice using a number of advanced topics and specialized techniques. You will learn how to solve current problems more effectively and discover new applications for CODE V in your work.

Agenda


Seminar attendees will be CODE V users with varying interests and experience levels. Thus, a flexible, informal, and wide-ranging format will be used, which will include presentations on all topics, computer demonstrations, hands-on exercises, informal discussions, and workshops.

Unit 1
  • Diffraction analysis
  • Environmental analysis of optical systems
  • Diffractive and binary optics
Unit 2
  • Advanced optimization techniques
  • Interferograms and the Alignment option
Unit 3
  • Non-sequential surfaces
  • Polarization analysis of optical systems
Unit 4
  • Macro-PLUS? programming
  • COM interface
Unit 5
  • Tolerancing tools and techniques
  • General Beam Propagation

第三階段 Designing Photonics Systems in CODE V?

Overview
This course covers the basics and some advanced concepts related to the modeling, analyzing, and tolerancing of photonics-related systems using CODE V. It assumes a familiarity with basic photonics and optics concepts and terminology.

Agenda


Unit 1
  • Basic concepts and terminology
  • Photonics design study: Ball lens
Unit 2
  • Performance Analysis
  • Optimization of a photonics system
Unit 3
  • Tolerancing a photonics system
  • Polarization effects in photonics systems
Unit 4
  • Photonics design examples
  • Miscellaneous topics

第四階段 Illumination Design Using LightTools

Overview
This course is a practical introduction to LightTools for engineers and scientists who wish to model and analyze the interaction of light with opto-mechanical systems. It assumes some familiarity with optical concepts and terminology. The course will be taught using LightTools 8.0. The course is based on interactive examples of various illumination systems rather than lectures. This hands-on approach maximizes time spent using LightTools while incorporating key illumination concepts in their practical context. Workshop problems provide opportunity for additional practice.

The course will include how to:?

  • Create an opto-mechanical system model within LightTools, with native geometry or imported from a CAD program
  • Use Surface Properties to define the interaction of light with smooth, scattering, and complex surfaces
  • Use Boolean operations to construct complex structures
  • Set up an illumination system, including multiple sources and multiple receivers
  • Understand, interpret, and manipulate the intensity and illuminance analyses
  • Create photorealistic renderings of models to visualize the system performance
  • Improve system performance by using LightTools optimization with its various merit functions

第五階段 COM Macro Programming in LightTools

This course provides a practical overview of LightTools COM Macro Programming. The course includes lectures, demonstrations, and hands-on computer workshop sessions. Familiarity with LightTools basic features is assumed.

The COM Macro Programming capability allows users to automate tasks within LightTools. The course will use Excel Visual Basic for Applications (VBA) to control LightTools. Basic programming experience is helpful, although proficiency in VBA is not necessary.

Agenda


Topics covered in the course include:

COM Macro Programming

  • Accessing LightTools via Excel's VBA COM interface
  • LightTools JumpStart Macro Library
  • Direct database access
第六階段 Digital Projector Design and Analysis Using LightTools

Topics covered in this course include:

  • LightTools Fundamentals:?
    (Optional - Day 1)
    • User Environment
    • Coordinate Systems
    • Creating/Importing Geometry
    • Sources and Receivers
    • Illumination Controls and Graphics
  • Projector Technology Basics
  • LCD Light Engines
  • DMD Light Engines
  • Arc Lamp Sources
  • Receivers and Receiver Filtering
  • Illumination Simulations
  • ANSI and JBMMA Analysis
  • Projector Modeling Macro
第七階段 Backlight Design and Analysis Using LightTools

Topics covered in this course include:

  • LightTools Fundamentals:?
    (Optional - Day 1)
    • User Environment
    • Coordinate Systems
    • Creating/Importing Geometry
    • Sources and Receivers
    • Illumination Controls and Graphics
  • Backlight Basics
  • Modeling Light Guides
  • 3D Textures
  • Scattering and Diffusers
  • CCFL and LED Sources
  • Backlight Utilities
  • Receiver Analysis



 
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