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Impact of Kelvin-Source Resistors on Current Sharing and Failure Detection in Multichip Power Modules

机译:开尔文电源电阻对多芯片电源模块中电流共享和故障检测的影响

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The use of a kelvin-source (sometimes referred to as an auxiliary-source) terminal is becoming common in fast switching semiconductors such as Silicon Carbide MOSFETs. The kelvin-source terminal decouples the path of the load current from the path of the control current, leading to improved switching characteristics. However, in multiple paralleled chips, kelvin-source connections sometimes lead to load current imbalances among the bondwires of each paralleled chip. A simple method to prevent this is to introduce kelvin-source resistors. This paper investigates the sizing of kelvin-source resistors and their subsequent impact on current balancing. This investigation has primarily been conducted in the context of using the kelvin-source resistor as a failure detection sensor. We find that a kelvin-source resistor of 0.5Ω to 1Ω is adequate for current balancing purposes, however for dual purpose use as a failure sensor, a value of 2Ω or more may be recommended.
机译:开尔文(Kelvin)源(有时称为辅助源)端子的使用在诸如碳化硅MOSFET之类的快速开关半导体中变得很普遍。开尔文-源极端子使负载电流的路径与控制电流的路径解耦,从而改善了开关特性。但是,在多个并行芯片中,开尔文-源极连接有时会导致每个并行芯片的键合线之间的负载电流不平衡。防止这种情况的一种简单方法是引入开尔文源电阻。本文研究了开尔文源电阻的尺寸及其对电流平衡的影响。这项研究主要是在使用开尔文源电阻器作为故障检测传感器的情况下进行的。我们发现,0.5Ω至1Ω的开尔文电源电阻足以实现电流平衡,但是对于双重用途的故障传感器,建议使用2Ω或更大的电阻。

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