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2 MHz High-Density Integrated Power Supply for Gate Driver in High-Temperature Applications

机译:2 MHz高密度集成电源用于高温应用中的栅极驱动器

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A PCB embedded transformer for harsh environment (i.e., ambient temperature above 200 °C) applications is presented and used in the design of a 2 MHz integrated power-supply prototype for gate driver. The main benefits of using this developed PCB embedding process are the capability to customize the air-gap for the flyback transformer and volume reduction for the converter. The easy modulation of the air-gap distance can be achieved using PCB material in specfic thickness. Moreover, the design of a coplanar-winding transformer structure with very low inter-winding capacitance needs a large winding area and raises the interest for the PCB integration approach. Two-machined ferrite pieces in UI shape were sandwiched into a multilayer PCB laminate with multiple pressing processes. A converter prototype built with the PCB embedded transformer and other components (GaN transistors, gate driver and passives) mounted above it shows 72% of power efficiency. One thousand thermal cycles between -55 °C and 200° C were performed on the PCB embedded transformer without observation of any major defects, such as delamination and cracking. The thermal reliability test validates the compatibility between the selected ferrite core and PCB materials as well as the feasibility of this developed transformer embedding method. A three-time volume reduction is achieved when comparing with a benchmark converter prototype using discrete transformer.
机译:提出并使用了用于苛刻环境的PCB嵌入式变压器,用于栅极驱动器的2 MHz集成电源原型的设计和使用的应用。使用此开发PCB嵌入过程的主要优点是能够自定义反激式变压器的空气间隙和转换器的体积减少。可以使用PCB材料在规格厚度的易于实现空气间隙距离的易于调制。此外,具有非常低的绕组电容的共面绕组变压器结构的设计需要大的绕组区域,并提高PCB集成方法的兴趣。使用多层PCB层压材料,两种机加工的铁氧体碎片用多个压制工艺夹在多层PCB层压板中。使用PCB嵌入式变压器和其他安装的组件(GaN晶体管,栅极驱动器和通过)构建的转换器原型显示它显示出功率效率的72%。在PCB嵌入式变压器上进行-55°C和200°C之间的一千个热循环,而不会观察到任何主要缺陷,例如分层和裂缝。热可靠性测试验证所选铁氧体磁心和PCB材料之间的兼容性以及该开发变压器嵌入方法的可行性。与使用离散变压器的基准转换器原型进行比较,实现了三次减少量。

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