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Characteristics of Double Planar Micro-Inductor with Patterned NiFe Thin-Films for DC/DC Integration

机译:具有图案化NiFe薄膜的双平面微电感器的DC / DC集成特性

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This paper proposes a double-planar-coil microinductor with patterned permalloy magnetic film for high frequency DC?¢????DC integration. The effects of magnetic film?¢????s patterning and thickness on the inductance and quality factor of the micro-inductor are investigated by using COMSOL Multiphysics software. Simulation results indicate that the magnetic film improves the inductance of microinductor effectively and patterning of the magnetic film reduces eddy current loss in high frequency range. The micro-inductor is fabricated by using micro-electro-mechanical systems (MEMS) technique. The inductance of approximately 2.17 ????H at 1.5 MHz and the quality factor of 2.8 are achieved for the microinductor with patterned magnetic film. The performances of the micro-inductor applied in a low-power DC/DC converter are tested. The results indicate that the micro-inductor with the patterned magnetic film effectively has improved inductance and quality factor compared to that with non-patterned magnetic film. The maximum efficiency of measured converter is 67% at 1.5 MHz and the output current is 100 mA.
机译:本文提出了一种带有图案化坡莫合金磁膜的双平面线圈微电感器,用于高频直流¢直流积分。使用COMSOL Multiphysics软件研究了磁性膜的构图和厚度对微电感器的电感和品质因数的影响。仿真结果表明,磁性薄膜有效地提高了微电感的电感,并且磁性薄膜的图案化减少了高频范围内的涡流损耗。通过使用微机电系统(MEMS)技术来制造微电感器。对于具有图案化磁性膜的微电感器,在1.5MHz时的电感约为2.17Ω·H,质量因数为2.8。测试了应用于低功率DC / DC转换器的微电感的性能。结果表明,与未图案化的磁性膜相比,具有图案化的磁性膜的微电感有效地改善了电感和品质因数。在1.5 MHz时,测得的转换器的最大效率为67%,输出电流为100 mA。

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