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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >160 GHz Balanced Frequency Quadruplers Based on Quasi-Vertical Schottky Varactors Integrated on Micromachined Silicon
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160 GHz Balanced Frequency Quadruplers Based on Quasi-Vertical Schottky Varactors Integrated on Micromachined Silicon

机译:基于微加工硅上集成的准垂直肖特基变容二极管的160 GHz平衡频率四倍频器

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摘要

This work reports on an integrated frequency quadrupler operating at 160 GHz with maximum efficiency of 30% and corresponding output power of 70 mW. The quadrupler design includes two frequency doubler stages in cascade and is based on a balanced circuit architecture that addresses degradation issues often arising from impedance mismatches between multiplier stages. A unique quasi-vertical diode fabrication process consisting of transfer of GaAs epitaxy to a thin silicon support substrate is used to implement the quadrupler, resulting in an integrated drop-in chip module that incorporates 18 varactors, matching networks and beamleads for mounting. The chip is tailored to fit the multiplier waveguide housing, resulting in high reproducibility and consistency in manufacture and performance. Estimates of the varactor temperature for the multiplier were made using the diodes as integrated thermometers. These measurements estimate the operating temperature of the varactors in the quadrupler input stage to be 35 .
机译:这项工作报告了一个集成的四倍频器,其工作频率为160 GHz,最大效率为30%,相应的输出功率为70 mW。四倍频器设计包括级联的两个倍频器级,并且基于平衡电路架构,该架构解决了通常由乘法器级之间的阻抗失配引起的降级问题。独特的准垂直二极管制造工艺包括将GaAs外延转移到薄硅支撑衬底上,以实现四倍频器,从而形成集成的嵌入式芯片模块,该模块包含18个变容二极管,匹配网络和用于安装的束线引线。该芯片经过定制以适合倍频器波导壳体,从而实现了高再现性以及制造和性能方面的一致性。使用二极管作为集成温度计来估算倍增管的变容二极管温度。这些测量估计四倍输入级的变容二极管的工作温度为35。

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