60 ghz SiGe BiCMOS双转换下变频:肖特基二极管射频混频器和模拟吉尔伯特中频混频器与微波正交发生器

Jen-Chieh Kao, C. Meng, H. Wei, G. Huang
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引用次数: 4

摘要

本文介绍了一种采用0.35 μm SiGe BiCMOS工艺的60 GHz双变换下变频器。带有宽带Marchand balun的肖特基二极管环形混频器作为60 ghz射频混频器,而两个具有LO端口的模拟Gilbert微混频器由两个正交耦合器泵浦作为中频混频器。由于SiGe BiCMOS工艺中n+埋层有效降低了肖特基二极管的串联电阻,因此肖特基二极管的截止频率使基频环形混频器成为可能。带中频缓冲器的吉尔伯特微混频器用于容纳射频环形混频器的单端输出。通过结合这些优点,实现了双变换下变频器。当LO1功率为8 dBm, LO2功率为2 dBm时,转换器的转换增益约为8db, 10 GHz射频带宽为50-60 GHz,中频带宽为100 MHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
60-GHz SiGe BiCMOS dual-conversion down-converter: Schottky diode RF mixer and analog Gilbert IF mixer with microwave quadrature generator
A 60 GHz dual-conversion down-converter using 0.35 μm SiGe BiCMOS process is demonstrated in this paper. A Schottky diode ring mixer with wideband Marchand balun works as the 60-GHz RF mixer while two analog Gilbert micromixers with LO port pumped by two quadrature couplers work as IF mixers. The cut-off frequency of a Schottky diode makes a fundamental RF ring mixer possible because the series resistance of a Schottky diode is effectively reduced by the n+ buried layer in SiGe BiCMOS process. A Gilbert micromixer with an IF buffer is used to accommodate the single-ended output of the RF ring mixer. By combining these advantages, a dual-conversion down-converter is achieved. The converter has about 8 dB conversion gain, 10 GHz RF bandwidth of 50-60 GHz, 100 MHz IF bandwidth when LO1 power is 8 dBm and LO2 power is 2 dBm.
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