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High-Voltage Insulation Design of Coreless, Planar PCB Transformers for Multi-MHz Power Supplies

机译:用于多MHz电源的无芯,平面PCB变压器的高压绝缘设计

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This article investigates the insulation design for printed, planar, coreless, and high-frequency transformers with high isolation-voltage. By using finite element analysis on 2-D axial-symmetry, the transformer circuit parameters and electric field distribution are modeled and estimated. Several transformers are designed for an operating frequency of 6.78 MHz. The high frequency, coreless design allows for using thicker insulation material while ensuring a high transformer efficiency. The inclusion of the coupling capacitance in the design optimization results in several design solutions with the same figure of merit, but with different footprint and isolation voltages. Moreover, high electric fields are identified around the sharp edges of the printed circuit board (PCB) windings. Finally, the electrical and isolation performance is verified experimentally. The measured electrical properties are close to the simulated values, validating the chosen model. Breakdown tests demonstrate the feasibility of isolation voltage levels up to several tens of kilovolts. The majority of breakdowns occurs at the outer edge of the PCB winding that was identified as a high-field area. Additionally, a concept for grading the electric field of PCB windings is also proposed. Based on the results, the design aspects are discussed in detail for planar, high-frequency isolation transformers with medium-voltage isolation level.
机译:本文调查了具有高隔离电压的印刷,平面,无芯和高频变压器的绝缘设计。通过在2-D轴对称上使用有限元分析,建模和估计变压器电路参数和电场分布。若干变压器设计为6.78 MHz的工作频率。高频,无芯设计允许使用更厚的绝缘材料,同时确保高变压器效率。在设计优化中包含耦合电容导致具有相同体积图的若干设计解决方案,但具有不同的占地面积和隔离电压。此外,围绕印刷电路板(PCB)绕组的尖锐边缘识别出高电场。最后,通过实验验证电气和隔离性能。测量的电气属性接近模拟值,验证所选模型。击穿测试证明了隔离电压水平高达几十千伏的可行性。大部分故障发生在PCB绕组的外边缘被识别为高场区域。另外,还提出了一种用于分级PCB绕组的电场的概念。基于该结果,对具有中型电压隔离电平的平面,高频隔离变压器详细讨论了设计方面。

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