2013
DOI: 10.1109/tmtt.2012.2237036
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New Bandstop Filter Circuit Topology and Its Application to Design of a Bandstop-to-Bandpass Switchable Filter

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Cited by 59 publications
(22 citation statements)
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“…The coupling matrix method is widely used to design narrow band filters with different functionalities such as tunable center frequency (f 0 ) and bandwidth, switchable filter from bandstop to all-pass filter, and bandstop to bandpass switchable filter [26][27][28].…”
Section: Introductionmentioning
confidence: 99%
“…The coupling matrix method is widely used to design narrow band filters with different functionalities such as tunable center frequency (f 0 ) and bandwidth, switchable filter from bandstop to all-pass filter, and bandstop to bandpass switchable filter [26][27][28].…”
Section: Introductionmentioning
confidence: 99%
“…Therefore, 4-pole bandstop filters based on Fig. 1(a) result in more compact size compared to a 4-pole filter using two 270 transmission lines and one 90 transmission line [15], and to a 4-pole filter using two 90 transmission lines [16]. Reexamining Fig.…”
Section: A Coupling Structuresmentioning
confidence: 99%
“…Under the condition of the same coupling coefficients, the 2-pole bandstop filter results in a bandwidth of 3.1%. The 2and 4-pole bandpass filters also result in a bandwidth of 5.4% and 4.5%, respectively [15]. Note that this reconfigurable filter topology does not allow for independent bandwidth design for each filter mode, except for the 4-pole bandpass filter.…”
Section: A Tunable Filter Designmentioning
confidence: 99%
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“…Hence, studies have also been expanded to explore multifunction filter. In [5,6], it is shown that reconfigurable filters can have two functionalities by utilizing a number of switches, but having multiple switches in filter structures is one of drawbacks sacrificing insertion loss performance.…”
Section: Introductionmentioning
confidence: 99%