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Design of Wideband Microstrip to SICL Transition for Millimeter-Wave Applications

机译:毫米波应用宽带微带设计宽带微带

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摘要

In this communication, the design and working principle of a wideband microstrip to substrate integrated coaxial line (SICL) planar transition for millimeter-wave applications is presented. In the proposed work, along with tapering of microstrip line, two triangular slots in the top ground plane are utilised to compensate for the discontinuity arising at the microstrip-SICL junction minimize reflections over a wide bandwidth. To confirm the theoretical claims, the proposed microstrip to SICL transition is fabricated using standard multilayer PCB process. The measured results of the prototype indicate return loss better than 14 dB with a maximum insertion loss of 1.78 dB for DC to 40 GHz band (19 dB bandwidth up to 20 GHz with insertion loss less than 0.71 dB). The modeling of proposed transition is presented versatility of the design is illustrated for different dielectric constant thickness. Effortless integration of SICL with the widely used microstrip transmission line simplifies the feeding process of SICL based broadband antennas microwave circuits.
机译:在这种通信中,介绍了宽带微带的设计和工作原理与毫米波应用的衬底集成同轴线(SICL)平面过渡。在所提出的工作中,随着微带线的锥形,顶部接地平面中的两个三角形槽用于补偿微带-SiCl结的不连续性最小化宽带宽的反射。为了确认理论索赔,使用标准多层PCB工艺制造所提出的微带转换到SICL转换。原型的测量结果指示优于14 dB的返回损耗,最大插入损耗为1.78 dB,对于40 GHz带(19dB带宽高达20GHz,插入损耗小于0.71dB)。提出了所提出的转变的建模,其呈现设计的多功能性,示出了不同的介电常数厚度。用广泛使用的微带传输线轻松集成SICL简化了基于SICL的宽带天线微波电路的进给过程。

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