首页> 外文会议>Frontiers in Education Conference, 1999. FIE '99. 29th Annual >Introduction to digital circuits for engineering students-thinking in projects
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Introduction to digital circuits for engineering students-thinking in projects

机译:面向工程系学生的数字电路简介-项目思考

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This is a new approach for teaching and demonstrating the principles of designing testable digital circuits by using mini-projects. A mini-project in this context is a rather simple digital circuit which is utilized as a vehicle to transfer methods and knowledge to the students. Each mini-project has a practical application which can be understood easily and is implemented as an experiment on a special educational circuit board, GALEX, with an in-system programmable logic device, ispGAL22V10. The tool for design, synthesis and simulation is the evaluation version of the design environment, LOG/iC2. All lectures are held preferably in the laboratory with one PC and one GALEX board for each student. After presentation of the relevant theory in the lecture, each student has to design his own circuit for the lecture related mini-project. Hardware implementation is verified by external measurement. It is obvious that the systematic approach requires a design for testability from the very beginning. As a consequence, validation of all results is necessary and possible. Test vectors stored in a file must be used or even enhanced at every step of the design process. Students learn how to use all necessary hardware and software tools during the first mini-project in the very first lecture. This approach has already been in use for 3 semesters at the University of Heilbronn, Department of Manufacturing Engineering. The majority of the students say that they have a better motivation to study the course material because of the obvious commercial applications.
机译:这是一种新的方法,用于教授和演示使用微型项目设计可测试数字电路的原理。在这种情况下,小型项目是一个相当简单的数字电路,它被用作将方法和知识传递给学生的​​工具。每个小型项目都有一个易于理解的实际应用,并在带有系统内可编程逻辑器件ispGAL22V10的特殊教育电路板GALEX上作为实验进行实施。用于设计,综合和仿真的工具是设计环境的评估版LOG / iC2。所有讲座最好在实验室进行,每位学生一台PC和一个GALEX板。在讲座中介绍了相关理论之后,每个学生都必须为讲座相关的小型项目设计自己的电路。硬件实现通过外部测量进行验证。显而易见,系统的方法从一开始就需要针对可测试性进行设计。结果,所有结果的验证都是必要且可能的。在设计过程的每个步骤中,都必须使用甚至增强存储在文件中的测试向量。在第一堂课的第一个小型项目中,学生将学习如何使用所有必要的硬件和软件工具。这种方法已经在Heilbronn大学制造工程系使用了三个学期。大多数学生说,由于显而易见的商业应用,他们有更好的动力来学习课程材料。

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