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Design Consideration for Characterization and Study of Dynamic on State Resistance of GaN Devices

机译:GaN器件表征和研究动态导通态电阻的设计考虑

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On state resistance (RDSON) of GaN devices is not constant like Si devices. The RDSON of GaN devices exhibits a dynamic behavior and can be much larger than the static RDSON. This dynamic behavior depends on various factors and device-to-device from different manufacturers. The increased RDSON leads to increased power loss and reduces overall system efficiency which can lead to reliability concern. For the dynamic RDSON characterization, Double Pulse Test (DPT) is a widely used method. To calculate RDSON, real-time measurements of voltage across the Device Under Test (DUT) and current through the DUT are required. Common DUT current measurement techniques require the insertion of current sensor in the current path, which introduces additional loop inductance in the current path. In this paper inductor current measurement is used instead of DUT current for the dynamic RDSON calculation. Use of the inductor current measurement in RDSON calculation optimizes the switching loop by eliminating the need of direct DUT current measurement. Furthermore, different design considerations for double pulse test circuit, and dynamic RDSON characterization of two different GaN devices are presented.
机译:导通电阻(R DSON GaN器件的)常数不像Si器件那样恒定。 GaN器件的RDSON具有动态行为,并且可以比静态RDSON大得多。这种动态行为取决于各种因素以及不同制造商的设备到设备。 RDSON的增加导致功率损耗增加,并且降低了整体系统效率,这可能会导致可靠性问题。对于动态R DSON 表征,双脉冲测试(DPT)是一种广泛使用的方法。计算R DSON ,需要对被测设备(DUT)两端的电压和通过DUT的电流进行实时测量。常见的DUT电流测量技术需要在电流路径中插入电流传感器,这会在电流路径中引入额外的环路电感。本文使用电感器电流测量代替动态R的DUT电流 DSON 计算。在R中使用电感器电流测量 DSON 通过消除直接DUT电流测量的需要,计算可以优化开关环路。此外,介绍了双脉冲测试电路的不同设计注意事项,以及两种不同GaN器件的动态RDSON表征。

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