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Modelling and Parametric Analysis of Heatsink of an Insulated Gate Bipolar Transistor

机译:绝缘栅双极晶体管散热器的建模和参数分析

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Even the most efficient electronic devices suffered by the heat generation which causes the increase of temperatures. Similarly, an IGBT is also suffered due to the heat generation. Heat sink is essential for IGBTs, to dissipate the generated heat and to maintain the temperature of the IGBT under safer limits to prevent the failure of IGBT. Hence a better cooling system is essential to dissipate the generated heat from IGBT and to increase the life cycle. In most of the applications, air is used as cooling medium while other medium can be used for higher level of heat generation within IGBT. Commonly heat sinks are provided with fins to improve the heat removal rate. The present work describes the importance of junction temperature of IGBT and also about the role of heat sink. A mathematical model has been developed to predict the junction temperatures in IGBT at various duty cycles (0.1, 0.3 and 0.5). A steady state junction temperature of 145°C is estimated for a 0.5 duty cycle using the present method. By proper designing of heat sink, substantial decrement of heat generation nearly 46.6 % of can be achieved. It is concluded that the heat sinks are so effective in cooling of IGBTs component substantially.
机译:即使是最有效的电子设备,也会因发热而受热,从而导致温度升高。类似地,由于发热,IGBT也受到损害。散热片对于IGBT是必不可少的,它可以散发产生的热量并将IGBT的温度保持在更安全的限制内,以防止IGBT发生故障。因此,更好的冷却系统对于散发IGBT产生的热量并延长使用寿命至关重要。在大多数应用中,空气用作冷却介质,而其他介质可用于在IGBT中产生更高水平的热量。通常,散热器设有散热片以提高散热率。本工作描述了IGBT结温的重要性以及散热片的作用。已开发出数学模型来预测各种占空比(0.1、0.3和0.5)下IGBT的结温。使用本方法,在0.5个占空比下估算出145°C的稳态结温。通过适当设计散热器,可以显着减少热量产生的近46.6%。结论是,散热器在冷却IGBT组件方面是如此有效。

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