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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Ku -Band Channel Aggregation Waveguide Filters by RF MEMS-Based Detuning
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Ku -Band Channel Aggregation Waveguide Filters by RF MEMS-Based Detuning

机译:基于RF MEMS的失谐的Ku波段信道聚合波导滤波器

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摘要

By switching high Q-factor 3-D waveguide bandpass filters with planar radio frequency micro-electromechanical system (RF MEMS)-based elements, a channel aggregation technique is developed in this article. These planar elements play the role of generating an effective phase shift when activated, detuning the resonant cavities of the bandpass filter, and contributing minimal insertion loss when deactivated. The proposed detuning system also has the advantage of not affecting the other operating filter channels connected to manifolds in a switchable waveguide filter bank. A two-channel prototype, based on the Australian satellite Ku-band, with 500-MHz bandwidth, at 14.25-GHz (CH1) and 16.25-GHz (CH2) frequencies, is designed, fabricated, and measured demonstrating the channel aggregation operation. When using only two waveguide bandpass filters with no external switches, four different passband states are implemented, e.g., both channels disable (00), channel 2 enables only (01), channel 1 enables only (10), and both channels enable (11). The system provides excellent channel isolation of better than 35 dB over the disabled channels. For the enabled channels, the filters maintain a measured Q-factor of over 800, and better than 15 dB return loss. The measurements confirm that the detuning elements have a minimal impact on the manifolds and other channel filters, regardless of the operating states.
机译:通过使用基于平面射频微机电系统(RF MEMS)的元件切换高Q因数3-D波导带通滤波器,本文开发了一种信道聚合技术。这些平面元件起着在激活时产生有效相移,使带通滤波器的谐振腔失谐以及在失活时贡献最小的插入损耗的作用。所提出的失谐系统还具有不影响连接到可切换波导滤波器组中的歧管的其他工作滤波器通道的优点。设计,制造和测量了一个基于澳大利亚卫星Ku波段,具有500 MHz带宽,频率为14.25 GHz(CH1)和16.25 GHz(CH2)的两通道原型,演示了信道聚合操作。当仅使用两个没有外部开关的波导带通滤波器时,会实现四个不同的通带状态,例如,两个通道均禁用(00),通道2仅启用(01),通道1仅启用(10),并且两个通道均启用(11) )。该系统在禁用通道上提供了优于35 dB的出色通道隔离度。对于已启用的通道,滤波器保持的测得Q值超过800,回波损耗优于15 dB。测量结果表明,不管工作状态如何,失谐元件对歧管和其他通道滤波器的影响都最小。

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