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Monolithic SLA-Based Capacitively-loaded High-Q Coaxial Resonators and Bandpass Filters

机译:基于单片SLA的电容负载高Q同轴谐振器和带通滤波器

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This paper discusses the design, manufacturing and testing of additively-manufactured coaxial resonators and filters with high unloaded quality factor (Qu). A stereolithographic (SLA)-based integration concept that facilitates the realization of monolithic 3D printed coaxial-resonator-based bandpass filters (BPFs) is explored in detail. In particular, we present a study on alternative resonator sizes and non-radiating perforations for monolithic coaxial resonators and BPFs in the frequency range of 1-12 GHz. The applicability of the SLA-based concept to complex frequency-dependent couplings is also explored with the purpose of enhancing the BPF’s out-of-band rejection. For proof-of-concept demonstration, various resonator and BPF prototypes— with and without frequency-dependent couplings—were designed, manufactured and measured. They exhibited Qu between 1638-3520 and passbands centered at 5 GHz with fractional bandwidths between 13-14.2% and insertion loss < 0.35 dB.
机译:本文讨论了具有高卸载质量因子的加粘连的同轴谐振器和过滤器的设计,制造和测试(Q U )。甲立体光刻(SLA)为基础的集成有利于实现单片3D的概念印刷基于同轴电缆的谐振器带通滤波器(BPF)中详细进行了探索。特别地,我们展示了关于单片同轴谐振器的替代谐振器尺寸和非辐射穿孔的研究,并且在1-12GHz的频率范围内的单片同轴谐振器和BPF。 SLA的概念对复杂频率依赖耦合的适用性也是探索的,目的是增强BPF的带外抑制。对于概念证明演示,各种谐振器和BPF原型 - 设计,制造和测量了与无频率依赖的联轴器。他们展出了Q. U 在1638-3520之间,通带以5 GHz为中心,分数带宽为13-14.2%,插入损耗<0.35 dB。

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