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Analyzing losses using junction temperature of 300V 2.4kW 96 efficient, 1MHz GaN synchronous boost converter

机译:使用300V 2.4kW 96%高效的结温损耗,1MHz GaN同步升压转换器

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New techniques for measuring and analyzing losses in GaN power converters are presented. A 2.4kW synchronous boost converter, switching 300V at 1MHz with normally-off, AlN-base gate, AlGaN/GaN HFETs [1], serves as a vehicle to substantiate the results. An infrared camera is utilized to accurately measure temperatures of the upper and lower switches, as a function of switched current. These temperature measurements are correlated to loss in the respective switches, utilizing temperature data obtained via DC loss measurements. The higher temperature observed in the lower switch results from the switching loss in that switch, and is clearly evident in the thermal images. Analysis of the temperature dependence exposes the loss due to dynamic on-resistance and the switching loss. The extracted parameters accurately model both the efficiency and junction temperatures versus switching current.
机译:提出了用于测量和分析GaN电源转换器损失的新技术。 2.4KW同步升压转换器,用常关灯的1MHz开关300V,Aln-Base Gate,AlGaN / GaN HFet [1],用作证实结果的车辆。红外摄像机用于精确测量上部和下开关的温度,作为开关电流的函数。这些温度测量与各个开关中的损耗相关,利用通过DC损耗测量获得的温度数据。在较低开关中观察到的较高温度导致该开关中的开关损耗,并且在热图像中显然明显。对温度依赖性的分析暴露了由于动态导通电阻和开关损耗引起的损耗。提取的参数精确模拟效率和结温而与开关电流。

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