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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Design of Adaptive Multimode RF Front-End Circuits
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Design of Adaptive Multimode RF Front-End Circuits

机译:自适应多模射频前端电路的设计

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摘要

Migration towards higher data rates and higher capacities for multimedia applications, and provision of various services (text, audio, video) from different wireless standards with the same device require integrated designs that work across multiple standards, can easily be reused, and achieve maximum hardware share at minimum power consumption. This can be achieved by using adaptive circuits that are able to trade off power consumption for performance. The design of an adaptive multimode image-reject downconverter (oscillator and two mixers) is presented in this paper. In the highest performance mode, the image-reject downconverter (the quadrature mixers) has an IIP3 of +5.5 dBm, a single-side band noise figure of 13.9dB and a conversion gain of 1.4 dB, while drawing 10mA from a 3 V supply. The adaptive oscillator achieves -123 dBc/Hz phase noise at 1MHz offset from a 2.1 GHz carrier with a bias current of 6 mA in the highest performance mode. Adaptivity in the downconverter is achieved by trading off RF performance for current consumption, ranging from 10 mA for the relaxed mode (e.g., DECT) to 20 mA in the highest performance mode (e.g., DCS1800) of operation
机译:朝着更高的数据速率和更高的多媒体应用容量迁移,以及使用同一设备从不同的无线标准提供各种服务(文本,音频,视频)需要跨多个标准工作的集成设计,可以轻松地重用并获得最大的硬件以最小的功耗共享。这可以通过使用能够在功耗与性能之间进行权衡的自适应电路来实现。本文提出了一种自适应多模图像抑制下变频器(振荡器和两个混频器)的设计。在最高性能模式下,镜像抑制下变频器(正交混频器)的IIP3为+5.5 dBm,单边带噪声系数为13.9dB,转换增益为1.4 dB,同时从3 V电源汲取10mA电流。在最高性能模式下,与2.1 GHz载波相比,自适应振荡器在1MHz偏移下可获得-123 dBc / Hz的相位噪声,偏置电流为6 mA。通过权衡射频性能与电流消耗,可以实现下变频器的适应性,从松弛模式(例如DECT)的10 mA到最高性能模式(例如DCS1800)的20 mA不等。

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