An Enhanced Skirt Characteristics Triple-Mode Filter
This paper presents a compact microstrip triple-mode filter with enhanced skirt characteristics. The presented triple-mode filter configuration supports three transmission poles and three transmission zeros within the nearby passband. Two of transmission zeros are generated by a triple-mode resonato...
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Veröffentlicht in: | Journal of Electromagnetic Engineering and Science 2012, 12(3), , pp.210-215 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | This paper presents a compact microstrip triple-mode filter with enhanced skirt characteristics. The presented triple-mode filter configuration supports three transmission poles and three transmission zeros within the nearby passband. Two of transmission zeros are generated by a triple-mode resonator itself, and the third one is generated by small cross-couplings between the I/O ports. Each resonance condition and the transmission zero generation conditions are analyzed using an equivalent circuit. The bandpass filter is designed for a 2.4 GHz WLAN. The filter was fabricated with a relative dielectic constant of 3.5 and a thickness of 0.76 mm. The fabricated filter has a small size (7.9 mm×7.2 mm, i.e., 0.107λg×0.098λg, where λg is guided wavelength at a center frequency) and shows high performing skirt characteristics.
This paper presents a compact microstrip triple-mode filter with enhanced skirt characteristics. The presented triple-mode filter configuration supports three transmission poles and three transmission zeros within the nearby passband. Two of transmission zeros are generated by a triple-mode resonator itself, and the third one is generated by small cross-couplings between the I/O ports. Each resonance condition and the transmission zero generation conditions are analyzed using an equivalent circuit. The bandpass filter is designed for a 2.4 GHz WLAN. The filter was fabricated with a relative dielectic constant of 3.5 and a thickness of 0.76 mm. The fabricated filter has a small size (7.9 mm×7.2 mm, i.e., 0.107λg×0.098λg, where λg is guided wavelength at a center frequency) and shows high performing skirt characteristics. KCI Citation Count: 1 |
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ISSN: | 2671-7255 2234-8409 2671-7263 |
DOI: | 10.5515/JKIEES.2012.12.3.210 |