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Printed spiral winding inductor with wide frequency bandwidth

机译:印刷螺旋绕组电感,具有宽频带宽

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摘要

Winding parasitic capacitance is a major factor limiting the bandwidth of an inductor. In this paper, 1) the traditional, 2) the alternating, and 3) the partial alternating winding methods are evaluated for the multilayer printed spiral winding inductors for megahertz operations. The self-capacitances of various winding structures are estimated by the summation of parasitic capacitance among the turns of a winding. The electric field energy distributions in the inductors are derived from the voltage profiles to illustrate the relative magnitudes of winding parasitic capacitances. The results show that parasitic capacitance reduction can be achieved by reducing stored electric field energy. The partial alternating winding method is found to have the widest frequency bandwidth with reduced number of through-hole vias for multilayer printed spiral winding design. The theoretical analysis has been confirmed with practical measurements. The results provide useful information for the optimal design of coreless or core-based high-frequency planar magnetics. © 2011 IEEE.
机译:绕组寄生电容是限制电感器带宽的主要因素。在本文中,针对兆赫兹操作的多层印刷螺旋绕组电感器,对1)传统绕组,2)交流绕组和3)部分交流绕组方法进行了评估。各种绕组结构的自电容通过绕组匝之间的寄生电容的总和来估算。感应器中的电场能量分布是从电压曲线得出的,以说明绕组寄生电容的相对大小。结果表明,可以通过减小存储的电场能量来实现寄生电容的减小。已发现部分交替绕组方法具有最宽的频率带宽,并减少了用于多层印刷螺旋绕组设计的通孔数量。理论分析已通过实际测量得到证实。研究结果为无芯或基于芯的高频平面磁器件的优化设计提供了有用的信息。 ©2011 IEEE。

著录项

  • 作者

    Hui SYR; Su YP; Lee CK;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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