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Fabless Semiconductor Implementation Model as an Enabling Factor for 'Virtual Labs' in Online Postgraduate Degrees in Microelectronics

机译:无晶圆厂半导体实现模型是微电子在线研究生学位中“虚拟实验室”的促成因素

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Modern technology and the increasingly readily available access to the internet in recent years have initiated the paradigm shift from the 'local student' to the 'global and virtual student', which is evident in the increased numbers of students who are enrolling in the postgraduate (master's and PhD) degrees offered through remote means. Such students are not necessarily even present in the town or the country of the university at which they have enrolled. Traditional walk-in universities such as the University of Johannesburg, South Africa, are consequently increasing the portfolio of online degrees, which is in line with the trend seen by many universities worldwide. Education in electronics traditionally requires a hands-on approach, and the laboratory component remains a requirement even at postgraduate level. In this paper, the fabless semiconductor manufacturing approach, already deployed by many microelectronic industry giants, is aligned as an enabling factor of establishing 'virtual labs', used to fulfil the practical education component of both research-based and coursework microelectronic modules offered online. A case study involving postgraduate degrees with specialization in microelectronics from the University of Johannesburg is also presented.
机译:近年来,随着现代技术的发展和互联网访问的日益便捷,从“本地学生”向“全球虚拟学生”的范式转变开始了,这一点在攻读研究生的学生人数增加中就很明显(通过远程方式提供硕士学位)。这样的学生甚至不一定在他们就读的大学所在的城镇或国家/地区中出现。因此,南非约翰内斯堡大学等传统的步入式大学正在增加在线学位的种类,这与全球许多大学所看到的趋势一致。电子学方面的教育传统上需要动手实践,即使在研究生阶段,实验室组件仍然是必需的。在本文中,已经被许多微电子行业巨头采用的无晶圆厂半导体制造方法被视为建立“虚拟实验室”的推动因素,用于完成在线提供的基于研究和课程的微电子模块的实践教育部分。还介绍了一个涉及约翰内斯堡大学微电子专业研究生学位的案例研究。

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