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Combining method of two filtering circuits based on isolation circuits for five-channel multiplexers

机译:三通道多路复用器基于隔离电路的两个滤波电路的组合方法

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This paper presents a design method of combining two multiplexers using isolation circuits such that the number of channels is increased. An isolation circuit is composed of a synthesized (metamaterial) transmission line (TL) connected to a multiplexer, while the combination of two isolation circuits has multiplexer functionality. Using this concept, the number of channels can easily be increased because the number is the sum of the channels of two isolation circuits. The freedom to choose any commercial band-pass filter or multiplexer is another positive aspect. Furthermore, it is not necessary to use a complex optimization process because of the straightforward design method. In this paper, a composite right/left-handed (CRLH) TL (having dual-band characteristics), and a double-Lorentz (DL) TL (having tri-band characteristics) are used for a five-channel multiplexer.
机译:本文介绍了一种使用隔离电路组合两个多路复用器的设计方法,使得通道的数量增加。隔离电路由连接到多路复用器的合成(超材料)传输线(TL)组成,而两个隔离电路的组合具有多路复用器功能。使用此概念,可以很容易地增加通道的数量,因为该数字是两个隔离电路的信道的总和。选择任何商业带通滤波器或多路复用器的自由是另一个正面。此外,由于直接的设计方法,不必使用复杂的优化过程。在本文中,复合右/左手(CRLH)T1(具有双频带特性)和双路LorentZ(DL)TL(具有三带特性)用于五通道多路复用器。

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