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Carbon nanotube-based power diode

机译:基于碳纳米管的电力二极管

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摘要

Power diodes are frequently used in power converters and inverters as freewheeling and snubber components. In many applications, power diodes are required to meet demands such as short reverse recovery time, soft recovery, high breakdown voltage and a low forward voltage drop at the rated forward current with small size. Bundled Single-walled Carbon Nanotube (BSWCNT) p-type semiconductor is a strong candidate material for power diodes because of the selective electron transport that can be used in hot carrier, ballistic transport, high current density, mechanical stiffness, thermal, and chemical stability. In addition, carbon nanotube-based power diode provides high breakdown voltage, high electrical conductivity in the forward mode, and high current output capability. This paper presents modeling, design, and simulation of the Bundled Single-Walled Carbon (BSWCNT) nanotechnology-based power diode.
机译:电源二极管经常用于电源转换器和逆变器,作为续流和缓冲部件。在许多应用中,电力二极管需要满足诸如短尺寸的额定前电流的额定前电流等额定前电电流等所需的需求。捆绑的单壁碳纳米管(BSWCNT)P型半导体是电力二极管的强大候选材料,因为可用于热载体,弹道传输,高电流密度,机械刚度,热和化学稳定性。此外,基于碳纳米管的功率二极管提供高击穿电压,正向模式的高电导率,以及高电流输出能力。本文介绍了捆绑的单壁碳(BSWCNT)纳米技术电力二极管的建模,设计和仿真。

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