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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Microfluidically Tunable Microstrip Filters
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Microfluidically Tunable Microstrip Filters

机译:微流控微带滤波器

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摘要

A new approach for the development of tunable and reconfigurable microstrip (MS) devices is proposed. The basic idea consists of using a suspended substrate with an integrated network of plastic tubes, which can be selectively filled in with a high-permittivity dielectric fluid, e.g., water. The local change of the substrate effective permittivity achieved in such a way enables one to change, in a controlled and reversible manner, the electrical length of certain elements of MS circuits. As a proof-of-concept, tunable stub resonators based on suspended and inverted MS lines are designed and characterized in frequency and time domains. The same principle is then applied for the development of a fourth-order bandpass filter with 40% fractional bandwidth operating at 5 GHz. A tunable range of 19.5% with the insertion loss of 0.6 dB is demonstrated. The performance of the stub resonators and filter is validated successfully via prototyping.
机译:提出了一种开发可调谐和可重构微带(MS)设备的新方法。基本思想是使用带有塑料管集成网络的悬浮基板,该塑料网络可以选择性地填充高介电常数的介电流体,例如水。以这种方式实现的基板有效介电常数的局部改变使得人们能够以可控和可逆的方式改变MS电路的某些元件的电长度。作为概念验证,设计了基于悬浮和反向MS线路的可调短线谐振器,并在频域和时域进行了表征。然后,将相同的原理应用于在40 GHz频率下工作于5 GHz的四阶带通滤波器的开发。演示了19.5%的可调范围,插入损耗为0.6 dB。残余谐振器和滤波器的性能已通过原型验证成功。

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