2020
DOI: 10.1109/access.2020.2970209
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Dual-Band Bandpass Filter and Filtering Power Divider With Ultra-Wide Upper Stopband Using Hybrid Microstrip/DGS Dual-Resonance Cells

Abstract: In this paper, two types (i.e., type-A and type-B) of hybrid microstrip/defected ground structure (DGS) cells are proposed for passive circuit implementation with ultra-wide stopband. Both cells consist of the stepped-impedance DGS and embedded folded slotline on the ground, which could obtain the dual-resonances. In type-A cell, a microstrip T-stub on the top side is introduced, which can not only allocate a strong coupling to the DGS with slotline on the bottom side, but also act as the input/output port. To… Show more

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Cited by 32 publications
(21 citation statements)
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“…Note that the electric fields' contribution of SIDGS is mainly restricted in a quasi-cavity by ground II and metal-vias. With such characteristics, the SIDGS can effectively reduce the radiation loss compared with the conventional DGS [25]. Besides, the proposed SIDGS can be easily integrated into passive circuits design due to the surrounding of a complete ground plane.…”
Section: Schematic and Operationmentioning
confidence: 98%
“…Note that the electric fields' contribution of SIDGS is mainly restricted in a quasi-cavity by ground II and metal-vias. With such characteristics, the SIDGS can effectively reduce the radiation loss compared with the conventional DGS [25]. Besides, the proposed SIDGS can be easily integrated into passive circuits design due to the surrounding of a complete ground plane.…”
Section: Schematic and Operationmentioning
confidence: 98%
“…Two-way integrated FPDs with equal output power ratio have been proposed and achieved in [5]- [7], while those with unequal or arbitrary power ratios have been reported in [8]- [10]. Other papers have reported integrated FPDs that exhibit dual-band filtering characteristics [11], [12]. The integrated FPD reported in this paper is designed to equally divide the input power between the two output ports in the ratio of 1:1.…”
Section: Introductionmentioning
confidence: 96%
“…Microstrip filters play a significant role in the multiband microwave filter design because of their advantages in terms of fabrication simplicity, miniaturization, low loss, and low cost [6,7]. Some attractive methods frequently used for the MB-BPF design include quarter-wavelength step impedance resonators (SIRs) [8], trisection SIRs [9][10][11][12], cascaded multiband resonators [13], loaded crossed resonators [14], stub-loaded resonators (SLRs) [15], trimode SLRs [16], stub-loaded quarter-wavelength resonators [17], stub-loaded and defected ground resonators (DGSs) [18,19], and crossed open stubs (COSs) [20][21][22]. e most challenging part of an MB-BPF design is to allow several passbands simultaneously without sacrificing any design freedom or additional drawbacks such as complex geometry and increasing size.…”
Section: Introductionmentioning
confidence: 99%
“…e most challenging part of an MB-BPF design is to allow several passbands simultaneously without sacrificing any design freedom or additional drawbacks such as complex geometry and increasing size. Recently, some studies of an MB-BPF have been published in [8][9][10][11][12][13][14][15][16][17][18][19][20][21][22]. e results show a good electrical performance; however, the additional passbands would make the size of the BPF greater and the bandwidth narrower.…”
Section: Introductionmentioning
confidence: 99%