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A Unified Model for High-Power, Air-Core Toroidal PCB Inductors

机译:高功率,空心环形PCB电感器的统一模型

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In high-frequency and very-high-frequency power converters, which operate with switching frequencies between 3 and 300 MHz, efficient power inductors cannot be constructed with commercially available core materials. In this regime, air-core inductors are preferred, and the toroidal geometry best constrains the magnetic field. These inductors have been implemented as printed circuit board (PCB) traces. Here, we present the first unified electrical model for high-power, air-core toroidal inductors implemented as PCB traces, which includes closed-form calculations for the lumped capacitance, resistance, and inductance of the structure. In this regime, the self-resonant frequency (SRF) of the inductor may be of the same order of magnitude as the circuit operating frequency, so the capacitance must be carefully modeled and tightly controlled. The lumped capacitance is calculated by assuming that the impedance between two turns is well approximated by the characteristic impedance of a microstrip geometry. We fabricate inductors with inductances ranging from 44 nH to 10 μH and PCB heights of 1 mm, 1.6 mm, 2 mm, 3.2 mm, and 6.4 mm. For all inductors from 44 nH to 2 μH, the SRF is predicted within 10% and the modeled capacitance is within 1 pF of the measured value.
机译:在高频和非常高频电源转换器中,在3到300 MHz之间的开关频率下操作,高效的功率电感器不能与市售的芯材料构成。在该制度中,空气芯电感器是优选的,环形几何形状最佳地限制磁场。这些电感器已经实现为印刷电路板(PCB)迹线。在这里,我们介绍了用于高功率的第一统一电气模型,其作为PCB迹线实现,其包括用于簇的电容,电阻和结构电感的闭合形式计算。在该制度中,电感器的自谐振频率(SRF)可以与电路工作频率相同的幅度,因此必须仔细建模和紧密地进行电容。通过假设两个匝之间的阻抗通过微带几何的特征阻抗近似地近似来计算集合电容。我们制造电感的电感器,范围为44 nH至10μH,PCB高度为1毫米,1.6毫米,2毫米,3.2毫米和6.4毫米。对于来自44nH至2μH的所有电感器,SRF在10%以内预测,建模电容在测量值的1 PF内。

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