首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Novel Low-Loss Millimeter-Wave Transition From Waveguide-to-Microstrip Line Suitable for MMIC Integration and Packaging
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Novel Low-Loss Millimeter-Wave Transition From Waveguide-to-Microstrip Line Suitable for MMIC Integration and Packaging

机译:从波导到微带线的新型低损耗毫米波过渡,适用于MMIC集成和封装

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摘要

This letter presents a unique low-loss transition from microstrip to full height rectangular waveguide at W-band. This microstrip transition can be made as a part of the mm-wave monolithic microwave integrated circuit (MMIC) of arbitrary size, and thus, avoid the use of bond wires at the high-frequency port of the MMIC circuit. As a result, the MMIC can be coupled directly to the waveguide. The working principle of the transition is based on electromagnetic coupling, where the coupling between the microstrip mode and the TE10 waveguide mode is achieved via a resonant cavity. A perfect magnetic conductor (PMC) surface is placed over the cavity to facilitate the smooth coupling of electromagnetic energy from the microstrip line to the cavity and then from the cavity to the waveguide. The PMC surface also suppresses the unwanted waveguide mode coupling to the oversized MMIC substrate. The measured back-to-back transition works over the frequency band of 80-114 GHz (relative BW of 35%) with minimum return loss of 13.5 dB. The total insertion loss of the manufactured prototype is found to be varying from 0.54 to 0.803 dB, which implies a single transition loss of less than 0.27-0.4015 dB in W-band.
机译:这封信提出了在W波段从微带到全高矩形波导的独特低损耗过渡。该微带过渡可以作为任意大小的毫米波单片微波集成电路(MMIC)的一部分进行,因此避免在MMIC电路的高频端口使用接合线。结果,MMIC可以直接耦合到波导。过渡的工作原理基于电磁耦合,其中微带模式和TE10波导模式之间的耦合是通过谐振腔实现的。完美的磁导体(PMC)表面放置在腔体上方,以促进电磁能从微带线到腔体,然后从腔体到波导的平滑耦合。 PMC表面还抑制了与超大尺寸MMIC基板耦合的不必要的波导模式。测得的背对背过渡在80-114 GHz频带(相对带宽35%)上工作,最小回波损耗为13.5 dB。发现制造的原型的总插入损耗在0.54至0.803 dB之间变化,这意味着W波段的单跃迁损耗小于0.27-0.4015 dB。

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