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首页> 外文期刊>Microwave and optical technology letters >NOVEL APPROACH TO OPTIMIZING A BROADBAND RIGHT-ANGLE COAXIALTO-MICROSTRIP TRANSITION
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NOVEL APPROACH TO OPTIMIZING A BROADBAND RIGHT-ANGLE COAXIALTO-MICROSTRIP TRANSITION

机译:优化宽带宽带直角同轴到微带过渡的新方法

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摘要

A new approach to the optimization of a broadband right-angle coaxial-to-microstrip transition is presented. The right-angle transition finds many applications where printed circuits need to be fed from behind the ground plane using coaxial connectors. To obtain low reflections over the whole operating frequency range of the transition, dimensional parameters, such as ground aperture and probe diameters, ground aperture offset, and microstrip stub length are optimized using a commercial electromagnetic simulation software. Results are presented for the optimum right-angle transition from an SMA connector to a 50-Ω microstrip line on common reinforced PTFE substrates. Measurements of a fabricated transition on a 31-mil thick substrate show that its reflection coefficient is less than -20 dB and the insertion loss is less than 0.5 dB over 0.05-20 GHz.
机译:提出了一种优化宽带直角同轴到微带过渡的新方法。直角过渡找到了许多应用,其中需要使用同轴连接器从接地层的后面馈入印刷电路。为了在过渡的整个工作频率范围内获得低反射,使用商用电磁仿真软件优化了尺寸参数,例如接地孔径和探头直径,接地孔径偏移和微带线根长度。给出了在普通增强PTFE基板上从SMA连接器到50Ω微带线的最佳直角过渡的结果。在31密耳厚的基板上对预制过渡进行的测量表明,在0.05-20 GHz范围内,其反射系数小于-20 dB,插入损耗小于0.5 dB。

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