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Liquid-crystal-based amplitude tuner and tunable SIW filter fabricated in LTCC technology

机译:采用LTCC技术制造的基于液晶的幅度调谐器和可调谐SIW滤波器

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摘要

Tunable microwave devices will play an important role in future wireless systems, in which high-frequency bands, e.g. millimeter waves, will become promising, due to its huge spectrum availability. At such frequency bands, liquid crystals (LCs) exhibit low microwave loss, which is excellent compared with the other tuning elements. In this paper, LC-based microwave components are fabricated by using low temperature co-fired ceramic technology, allowing the integration of the LC into microwave structures. The first component, the amplitude tuner, controls the signal's amplitude by using the interference concept, which exhibits a tunable attenuation range from 11 dB to 30 dB at 30 GHz. The second component is a 3-pole tunable bandpass filter, which is realized by using a substrate integrated waveguide topology, enabling a device with comparatively high-quality factors (Q-factors). The measurement results show Q-factors in the range of 68 to 100 for a frequency tuning of 29.4-30.1 GHz, i.e. a tuning range of 700 MHz, accompanied by an insertion loss 2 dB to 4 dB.
机译:可调谐微波设备将在未来的无线系统中扮演重要角色,在未来的无线系统中,高频频段例如由于其巨大的频谱可用性,毫米波将成为有希望的。在这样的频带下,液晶(LC)的微波损耗低,与其他调谐元件相比非常好。在本文中,通过使用低温共烧陶瓷技术来制造基于LC的微波组件,从而可以将LC集成到微波结构中。第一个组件是幅度调谐器,它通过使用干扰概念来控制信号的幅度,该概念在30 GHz时的衰减范围从11 dB到30 dB。第二个组件是一个三极可调带通滤波器,它是通过使用集成了基板的波导拓扑结构实现的,从而使设备具有相对较高的品质因数(Q系数)。测量结果表明,对于29.4-30.1 GHz的频率调谐,Q因子在68至100的范围内,即700 MHz的调谐范围,并伴有2 dB至4 dB的插入损耗。

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