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Investigations on the rectangular waveguide to SIW transition for terahertz applications

机译:矩形波导对太赫兹应用的矩形波导进行调查

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In this paper, the performance of a terahertz rectangular waveguide to substrate integrated waveguide (SIW) transition using fin line coupling structure is investigated. Two prototypes working at 140 GHz and 180 GHz frequency bands are both designed, and fabricated by using the low-cost printed-circuit-board (PCB) technology. Full-wave simulations have been used to synthesize and optimize the transitions. In order to evaluate effectively the insertion loss of the transition, three different lengths of transitions are designed and measured for D-band and G-band, respectively. Measurement results show that from 110 GHz to 150 GHz and from 169 GHz to 193 GHz, the average insertion loss of the terahertz transition is around 0.54 dB and 0.89 dB, respectively. And their measured return losses are both larger than 10 dB. This work demonstrates that the investigated SIW to WR6/WR5 waveguide transitions can be used for developing future planar terahertz components by using the low cost PCB process.
机译:本文研究了使用翅片线耦合结构的太赫兹矩形波导对基板集成波导(SIW)转换的性能。在140 GHz和180GHz频带工作的两个原型都设计,并通过使用低成本印刷电路板(PCB)技术来制造和制造。全波模拟已被用于综合和优化过渡。为了有效地评估过渡的插入损耗,分别为D波段和G波段设计和测量三种不同的过渡。测量结果表明,从110GHz到150 GHz和169 GHz到193 GHz,太赫兹过渡的平均插入损失分别为0.54 dB和0.89 dB。它们测量的回报损耗均大于10 dB。这项工作表明,通过使用低成本PCB工艺,调查的SIW至WR6 / WR5波导转换可用于开发未来的平面太赫兹组件。

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