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Miniaturized Resonator and Bandpass Filter for Silicon-Based Monolithic Microwave and Millimeter-Wave Integrated Circuits

机译:硅基单片微波和毫米波集成电路的小型谐振器和带通滤波器

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This paper introduces a unique approach for the implementation of a miniaturized on-chip resonator and its application for the first-order bandpass filter (BPF) design. This approach utilizes a combination of a broadside-coupling technique and a split-ring structure. To fully understand the principle behind it, simplified LC equivalent-circuit models are provided. By analyzing these models, guidelines for implementation of an ultra-compact resonator and a BPF are given. To further demonstrate the feasibility of using this approach in practice, both the implemented resonator and the filter are fabricated in a standard 0.13-μm (Bi)-CMOS technology. The measured results show that the resonator can generate a resonance at 66.75 GHz, while the BPF has a center frequency at 40 GHz and an insertion loss of 1.7 dB. The chip size of both the resonator and the BPF, excluding the pads, is only 0.012mm2(0.08 × 0.144 mm2).
机译:本文介绍了一种实现小型片上谐振器的独特方法及其在一阶带通滤波器(BPF)设计中的应用。这种方法利用了宽边耦合技术和开口环结构的组合。为了充分理解其原理,提供了简化的LC等效电路模型。通过分析这些模型,给出了实现超紧凑谐振器和BPF的指南。为了进一步证明在实践中使用这种方法的可行性,已实现的谐振器和滤波器均以标准的0.13-μm(Bi)-CMOS技术制造。测量结果表明,该谐振器可以在66.75 GHz处产生谐振,而BPF的中心频率为40 GHz,插入损耗为1.7 dB。谐振器和BPF的芯片尺寸(不包括焊盘)仅为0.012mm n 2 n(0.08×0.144毫米 n 2 n)。

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