研究目的
Design of a third-order compact parallel-coupled line bandpass filter at 5.25 GHz with asymmetric perturbations to suppress the second harmonic.
研究成果
The third-order folded filter with perturbations provides 58% compactness with a second harmonic suppression level of 53 dB. The in-line filter with perturbations provides compactness of 71% and better second harmonic suppression of 58 dB. The proposed asymmetric perturbations reduce the complexity of the design and fabrication difficulty compared to sinusoidal perturbations.
研究不足
The measured insertion losses in the desired passband are slightly high due to the lossy FR4 substrate. The complexity of design and fabrication difficulty is reduced compared to sinusoidal perturbations, but still requires careful optimization.
1:Experimental Design and Method Selection:
The study involves synthesising the distributed filter network into its equivalent circuit model to understand the effects of compactness on filter characteristics.
2:Sample Selection and Data Sources:
The design starts with computing the unit cell model, leading to first-order and third-order design instances.
3:List of Experimental Equipment and Materials:
The study uses microstrip lines with specific dimensions and perturbations for harmonic suppression.
4:Experimental Procedures and Operational Workflow:
The process includes designing filters with folded and in-line geometries, incorporating rectangular perturbations for phase velocity compensation.
5:Data Analysis Methods:
The performance is evaluated based on harmonic suppression levels and compactness achieved.
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