毫米波混频器用低势垒肖特基二极管的特性

Subash Khanal, T. Kiuru, M. Hoefle, J. Montero, O. Cojocari, J. Mallat, P. Piironen, A. Raisanen
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引用次数: 10

摘要

本文介绍了ACST InGaAs低势垒肖特基二极管用于毫米波混频应用的表征测量和模拟。虽然这些低势垒肖特基二极管已经成功地用于毫米波探测器设计,但它们作为混频器的性能尚未经过测试。本文给出了这类二极管在基本混频结构下的性能,并对转换损耗和噪声温度进行了评估。采用基频混频器测试夹具作为测量平台,配合低损耗E-H阻抗调谐器进行射频和本振信号匹配。除了测量外,还进行了三维HFSS和ADS电路的仿真,并给出了仿真结果。在181ghz ~ 183ghz混频器工作时,0.1 mW的LO功率获得小于5db的转换损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterisation of low-barrier Schottky diodes for millimeter wave mixer applications
This paper presents the characterization measurements and simulations performed with ACST InGaAs low-barrier Schottky diodes for millimeter wave mixing applications. While these low-barrier Schottky diodes have been successfully used for millimeter wave detector design, their performance when acting as mixers has not been tested yet. This paper shows the performance for this type of diodes in a fundamental mixing configuration with evaluation of conversion loss and noise temperature. A fundamental mixer test-jig is used as the measurement platform with low-loss E-H impedance tuners for RF and LO signal matching. In addition to the measurements, 3D HFSS and ADS circuit simulations are also performed and results are presented. Conversion loss of less than 5 dB is obtained for 0.1 mW LO power in mixer operation at 181-183 GHz.
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