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Design of an Educational Oscilloscope: A hands-on learning tool

机译:教育示波器的设计:动手学习工具

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Paradoxically, most engineering students do not possess an in-depth knowledge on how an oscilloscope works. Automation is partly to be blamed for this problem. In fact, the existence of the “auto scale” button has eliminated the hassle of making adjustments, but at the price of dampening the students'' curiosity and removing their need for deep understanding. We have found a powerful way of stimulating students'' curiosity and of bestowing them with knowledge of the basic oscilloscope operation: While still using an oscilloscope-set, although merely as a display unit, we have by-passed its fundamental components (namely the vertical amplifier, the time base and the trigger circuit), with our own designed components, built outside of the oscilloscope-set. Our teaching strategy provides students with hands-on experimentation of the circuits that control vertical gain, the time scale and the trigger level. Our educational tool is implemented in hardware; it is not another simulation oscilloscope. The effects of our didactic tool are highly positive, as demonstrated by student evaluation of circuit laboratories that took place before and after we incorporated the Educational Oscilloscope into the engineering curriculum. This paper provides the reader with the following educational facilities: the Educational Oscilloscope circuit schematics, as well as the explanation of its several components as provided to the engineering students at SUNY New Paltz.
机译:矛盾的是,大多数工程专业的学生对示波器的工作原理并不了解。自动化在一定程度上应归咎于这个问题。实际上,“自动缩放”按钮的存在消除了进行调整的麻烦,但是以减轻学生的好奇心和消除他们对深刻理解的需求为代价。我们发现了一种激发学生好奇心并赋予他们基本示波器操作知识的有效方法:尽管仍使用示波器套件,尽管它只是作为显示单元,但我们已经绕过了示波器的基本组成部分(即垂直放大器,时基和触发电路)以及我们自己设计的组件,这些组件内置在示波器装置外部。我们的教学策略为学生提供了控制垂直增益,时间范围和触发电平的电路的动手实验。我们的教育工具是通过硬件实现的;它不是另一台模拟示波器。我们将教育示波器纳入工程课程之前和之后,对电路实验室的学生评估都证明了我们的教学工具的效果是非常积极的。本文为读者提供了以下教育设施:教育示波器电路原理图,以及向SUNY New Paltz的工程专业学生提供的几个组成部分的说明。

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