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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >LTCC Layer-to-Layer Misalignment-Tolerant Coupled Inductors and Their Application to Bandpass Filter and Helical Inductors
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LTCC Layer-to-Layer Misalignment-Tolerant Coupled Inductors and Their Application to Bandpass Filter and Helical Inductors

机译:LTCC层间耐失准耦合电感器及其在带通滤波器和螺旋电感器中的应用

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摘要

Mutual inductance between coupled inductors can provide large equivalent series inductance required by filter design. As mutual inductance is dependent on the distance between coupled metal lines within coupled inductors, mutual inductance in traditional straight line coupled inductors (SLCI) is susceptible to layer-to-layer misalignment during fabrication if two coupled lines are located at different substrate layers. Misalignment-tolerant coupled inductors (MaTCI) are proposed to alleviate the effect of misalignment on mutual inductance. Circuit model is also proposed to describe their mechanism. Their performance is verified and compared with traditional SLCI using coupled inductors based transmission zero circuits and bandpass filters. Measurement results of three samples of a transmission zero circuit based on proposed MaTCI show only 0.56% frequency variation at 1.9 GHz, while traditional SLCI give about 3.2% variation from samples at the same low temperature cofired ceramic substrate. Measured results of three samples of a bandpass filter using MaTCI also show more stable performance at transmission zero frequency, insertion loss and passband bandwidth as compared with the filter using traditional SLCI. Electromagnetic simulation also shows similar performance improvement for MaTCI under misalignment. The same concept is also applied to helical inductor and two misalignment tolerant helical inductors are proposed. Simulation results show that they are more stable than the traditional stacked helical inductor.
机译:耦合电感之间的互感可以提供滤波器设计所需的大等效串联电感。由于互感取决于耦合电感器内耦合金属线之间的距离,因此,如果两条耦合线位于不同的基板层上,则传统直线耦合电感器(SLCI)中的互感容易受到层到层未对准的影响。提出了防偏心耦合电感器(MaTCI),以减轻未对准对互感的影响。还提出了电路模型来描述其机理。使用基于耦合电感的传输零电路和带通滤波器,对它们的性能进行了验证并与传统SLCI进行了比较。基于提出的MaTCI的零传输电路的三个样本的测量结果显示,在1.9 GHz频率下,频率变化仅为0.56%,而传统SLCI在相同的低温共烧陶瓷基板上的样本变化约为3.2%。与使用传统SLCI的滤波器相比,使用MaTCI的三个带通滤波器样本的测量结果还显示出在传输零频率,插入损耗和通带带宽方面更稳定的性能。电磁仿真还显示了在未对准情况下MaTCI的类似性能改进。相同的概念也适用于螺旋电感器,并提出了两个允许不准对准的螺旋电感器。仿真结果表明,它们比传统的堆叠螺旋电感器更稳定。

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