Broadband millimeter-wave receiver front-ends in silicon-germanium technology for multi-band communication systems

I. Nasr, R. Weigel, D. Kissinger
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引用次数: 5

Abstract

Millimeter-wave frequency-agile front-ends capable of operating at different frequency bands offer an attractive solution for multiband communications. In this paper we present a fully integrated wide-band quadrature receiver covering the two point to point communication bands from 71 to 76 GHz and 81 to 86 GHz and the automotive radar band at 77 GHz. The receiver was fabricated using a low-cost SiGe technology with an ft/fmax of 200/250 GHz. The chip contains a wide-band LNA, Wilkinson power divider, down conversion mixers, two stage polyphase network, VCO, and frequency prescaler. The VCO achieves an ultra high tuning range of 33% between 64 and 89 GHz. Each receiver path (I/Q) has a measured conversion gain between 17 to 23 dB over the operating frequency range. The receiver has a minimum NF of 8dB, and an input referred compression point of -22 dBm. The complete chip consumes 220mA of current from a 3.3 V supply.
多波段通信系统中宽带毫米波接收机前端的硅锗技术
能够在不同频段工作的毫米波频率敏捷前端为多频段通信提供了一个有吸引力的解决方案。在本文中,我们提出了一个完全集成的宽带正交接收机,覆盖了71至76 GHz和81至86 GHz两个点对点通信频段以及77 GHz的汽车雷达频段。该接收机采用低成本SiGe技术制造,ft/fmax为200/250 GHz。该芯片包含宽带LNA、威尔金森功率分配器、下变频混频器、两级多相网络、压控振荡器和频率预分频器。VCO在64和89 GHz之间实现了33%的超高调谐范围。在工作频率范围内,每个接收器路径(I/Q)的测量转换增益在17至23 dB之间。接收机的最小NF为8dB,输入参考压缩点为- 22dbm。整个芯片从3.3 V电源中消耗220mA电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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