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            TetraMAX 2-OSM testATPG培訓班
   入學要求

        學員學習本課程應具備下列基礎知識:
        ◆ 有數字電路設計和硬件描述語言的基礎或自學過相關課程。

   班級規模及環境--熱線:4008699035 手機:15921673576/13918613812( 微信同號)
       堅持小班授課,為保證培訓效果,增加互動環節,每期人數限3到5人。
   上課時間和地點
上課地點:【上!浚和瑵髮W(滬西)/新城金郡商務樓(11號線白銀路站) 【深圳分部】:電影大廈(地鐵一號線大劇院站)/深圳大學成教院 【北京分部】:北京中山/福鑫大樓 【南京分部】:金港大廈(和燕路) 【武漢分部】:佳源大廈(高新二路) 【成都分部】:領館區1號(中和大道) 【沈陽分部】:沈陽理工大學/六宅臻品 【鄭州分部】:鄭州大學/錦華大廈 【石家莊分部】:河北科技大學/瑞景大廈 【廣州分部】:廣糧大廈 【西安分部】:協同大廈
近開課時間(周末班/連續班/晚班)
TetraMAX 2-OSM testATPG:2025年7月14日..用心服務..........--即將開課--...............................(歡迎您垂詢,視教育質量為生命!)
   實驗設備
     ☆資深工程師授課

         ☆注重質量 ☆邊講邊練

        ☆合格學員免費推薦工作
        ★實驗設備請點擊這兒查看★
   新優惠
       ◆在讀學生憑學生證,可優惠500元。
   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、課程完成后,授課老師留給學員手機和Email,保障培訓效果,免費提供半年的技術支持。
        3、培訓合格學員可享受免費推薦就業機會。

             TetraMAX 2-OSM testATPG培訓班

 

Overview
This workshop discusses at-speed faults and how to use TetraMAX for at-speed test. Topics include description, recommendation, and scripts of transition, small-delay defect, and path-delay fault model ATPG. Also covered are the Onchip Clock Controller (OCC) flow, which leverages the PLL fast clocks, and using PrimeTime to generate the necessary data for at-speed test. Hands-on labs follow each training module, allowing you to apply the skills learned in lecture. Labs include: using PrimeTime to generate the necessary files for at-speed ATPG; generating the patterns for different fault models in Tetramax; and, finally, using VCS for simulating the patterns generated. Objectives At the end of this workshop the student should be able to:
  • Describe the need for At-Speed testing
  • List the At-Speed fault models available
  • Describe the two launch techniques for at-speed faults
  • Successfully edit a stuck-at SPF file to suit at-speed fault model
  • Define the timing exceptions
  • Automate the process of script generation for TetraMAX, using PrimeTime. This script will take care of the false and multi-cycle paths
  • Modify a given stuck-at fault model script to run for an at-speed fault model
  • State the steps required to merge transition and stuck-at fault patterns to reduce the overall patterns
  • Automatically create scripts that can be used in PrimeTime to perform test mode STA
  • Describe the SDD flow
  • Describe the flow needed to successfully use the PLL present in your design to give the at-speed clock during capture mode
  • State the steps needed to perform path-delay ATPG
  • Understand the fault classification in path-delay ATPG
Audience Profile
Engineers who use ATPG tools to generate patterns for different fault models.Prerequisites
To benefit the most from the material presented in this workshop, you should: A. Have taken the TetraMAX 1 workshop. OR B. Possess knowledge in the following areas:
  • Scan Architecture and ATPG
  • Stuck-At fault model ATPG with TetraMAX
  • SPF file
Course Outline Module 1
  • Introduction of At-Speed defects
  • Source of Test Escapes and chip failure
  • Requirements for At-Speed testing
  • Popular fault models for At-Speed testing
Module 2
  • Transition Fault model
  • Path Delay Fault model
  • At-Speed Fault Detection Method
  • Techniques to Launch and Capture a Fault
Module 3
  • STIL file
  • Modifications to STIL file for At-Speed testing
  • Generic Capture Procedures
Module 4
  • Timing Exceptions
  • Automated Way to Generate Timing Exceptions form PrimeTime
Module 5
  • TetraMAX Scripts for Transition ATPG
  • Design Guidelines
  • Flow Considerations and Requirements
  • Pattern Merging
  • Automated way to generate the scripts for PrimeTime to perform testmode STA
Module 6
  • What is a Small Delay Defect ATPG
  • How to use PrimeTime to Generate the Slack Data
  • ATPG Flow in TetraMAX
Module 7
  • Requirement of PLL for At-speed faults
  • The various clocks in PLL flow
  • Use QuickSTIL to generate the SPF
Module 8
  • TetraMAX scripts for Path Delay ATPG
  • Fault Classification for Path Delay Faults
  • Generating Paths for TetraMAX Using PrimeTime
  • Reconvergence Paths
  • Hazard Simulation
Module 9
  • Conclusion
  • Topics Covered
  • Fault model and Features of TetraMAX
  • Solvnet Resources