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A 220 GHz frequency tripler based on 3D electromagnetic model of the schottky diode and the field-circuit co-simulation method

机译:基于肖特基二极管的3D电磁模型的220 GHz倍频器和场电路协同仿真方法

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In this article, a 220 GHz frequency tripler using three-dimensional (3D) electromagnetic simulation is designed. Due to the characteristics of extremely short working wavelength and ultra-small circuit size of terahertz frequency multipliers, complicated parasitic effect cannot be ignored, which leads to a limited optimization space for circuit matching in the design of terahertz components. In this article, a precise 3D electromagnetic (EM) model of the planar Schottky barrier diode (SBD) is established and the field-circuit co-simulation method is proposed for the design of the 220 GHz tripler. Compared with the varistor diode, the frequency multiplier based on the varactor diode will produce higher output power due to its lossless mechanism. The measured results show that the output power is higher than 5 mW in the frequency range 220 approximate to 228 GHz, with the maximum output power of 6.34 mW. Typical conversion loss is 15 dB in the frequency range 216 approximate to 232 GHz. The frequency tripler has the characteristics of compact size, low loss, and high output power. (c) 2016 Wiley Periodicals, Inc. Microwave Opt Technol Lett 58:1647-1651, 2016
机译:在本文中,设计了使用三维(3D)电磁仿真的220 GHz倍频器。由于太赫兹倍频器的工作波长极短且电路尺寸极小,因此无法忽略复杂的寄生效应,从而导致太赫兹元件设计中电路匹配的优化空间有限。在本文中,建立了平面肖特基势垒二极管(SBD)的精确3D电磁(EM)模型,并为220 GHz三路复用器的设计提出了场电路协同仿真方法。与变阻二极管相比,基于变容二极管的倍频器由于其无损机制而将产生更高的输出功率。测量结果表明,在大约228 GHz的频率范围220中,输出功率高于5 mW,最大输出功率为6.34 mW。在接近232 GHz的频率范围216中,典型的转换损耗为15 dB。三倍频器具有体积小,损耗低,输出功率高的特点。 (c)2016 Wiley Periodicals,Inc.微波选择技术通讯,2016年58:1647-1651

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