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- W2013315168 abstract "(equal to 0.39 0.39 g, where g is the guided wavelength at the center frequency). The filter responses are characterized by using an HP 8510C network analyzer and compared with the EM simulation, as also shown in Figure 4. The measured passband has a center frequency f0 of 2.4 GHz, a minimum S11 of 15 dB, a maximum S21 of 1.7 dB, and a 3-dB fractional bandwidth (FBW) of 4.9%. A pair of transmission zeros can be obviously observed near the two-side skirt of passband at 2.2 and 2.7 GHz, thus the selectivity of the proposed design is much better than that of the BPF using the H-shaped fractal [4]. The slight difference between the simulation and measurement might be due to fabrication errors or the variation of material properties. It is verified that the proposed BPF with the SFR has a good potential for the mobile wireless communication system. 4. CONCLUSION A new microstrip dual mode BPF using the Sierpinski fractalbased resonator (SFR) has been designed and fabricated. When increasing the iteration order of the SFR from 0th to 3rd, the resonant peak of the SFR is shifted to lower frequency. Therefore, a 3rd order SFR is used to design a high performance dual mode BPF due to its miniaturized property. A miniature and low insertion dual-mode BPF centered at 2.4 GHz using the proposed 3rd SFR is designed, fabricated, and characterized to verify the design concept. The measured results have a minimum S11 of 15 dB, a maximum S21 of 1.7 dB, a 3-dB FBW of 4.9%, and a pair of transmission zeros observed near the two-side skirt of passband at 2.2 and 2.7 GHz, thus improving the selectivity of the proposed design. Additionally, the measurement results are in agreement with the simulation results." @default.
- W2013315168 created "2016-06-24" @default.
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- W2013315168 date "2008-09-01" @default.
- W2013315168 modified "2023-09-25" @default.
- W2013315168 title "Electrically long rectangular patch antenna fed by meandering probe with wideband and high gain characteristics" @default.
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- W2013315168 doi "https://doi.org/10.1002/mop.23640" @default.
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