研究目的
To design and implement a compact, highly integrated, moderate-cost yet electrically performant 4th order SIW filter centered at 36 GHz using a multilayer PCB technology.
研究成果
The use of a multilayer technology to implement an original input/output coupling transition was successful, resulting in a compact, highly integrated, moderate-cost yet electrically performant 4th order SIW filter centered at 36 GHz.
研究不足
The slight frequency shift of around 2.3% due to technological dispersions.
1:Experimental Design and Method Selection:
The design of a 4th order SIW filter using a multilayer PCB technology with microvias and PTH techniques.
2:Sample Selection and Data Sources:
The PCB substrate used is an 8-layers stack up construction with MEGTRON-6 material.
3:List of Experimental Equipment and Materials:
High Density Interconnection (HDI) PCB with laser-drilled microvias, MEGTRON-6 material.
4:Experimental Procedures and Operational Workflow:
Design of the filter using Marcuvitz synthesis, implementation of inter-resonators couplings through classical irises, and design of a novel transition between the microstrip quasi-TEM mode and the Substrate Integrated Waveguide mode.
5:Data Analysis Methods:
Comparison of simulated and measured insertion and return losses.
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