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Microwave and Millimeter-Wave LTCC Filters Using Discriminating Coupling for Mode Suppression

机译:微波和毫米波LTCC滤波器,采用区分耦合来抑制模式

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摘要

In this paper, a new discriminating coupling mechanism, which is realized by choosing suitable coupling region between the feeding lines and resonators, is proposed to suppress the unwanted resonance modes without affecting the desirable operating modes. Utilizing such a coupling mechanism, two low-temperature cofired ceramic (LTCC) bandpass filters (BPFs) are designed operating at microwave and millimeter-wave bands. One BPF realizes a wide stopband, since the third and fifth harmonics are suppressed by the discriminating coupling. The other one is an oversized 60-GHz BPF with the fundamental mode suppressed by the discriminating coupling. Due to the multilayer characteristics of the LTCC techniques, the circuit layout can be controlled flexibly to realize desirable discriminating coupling. The two filters are theoretically analyzed and implemented. Good agreement between the simulation and the measurement validates the proposed method.
机译:在本文中,提出了一种新的区分耦合机制,该机制通过在馈线和谐振器之间选择合适的耦合区域来实现,以抑制不需要的谐振模式而不影响所需的工作模式。利用这种耦合机制,设计了两个在微波和毫米波波段工作的低温共烧陶瓷(LTCC)带通滤波器(BPF)。一个BPF实现了很宽的阻带,因为通过区分耦合抑制了三次谐波和第五次谐波。另一个是超大的60 GHz BPF,其基本模式被差分耦合抑制。由于LTCC技术的多层特性,可以灵活地控制电路布局,以实现理想的区分耦合。理论上分析并实现了这两个滤波器。仿真和测量之间的良好一致性验证了所提出的方法。

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