支持LTE的可编程接收器前端架构

Hoda Abdelsalam, E. Hegazi, H. Mostafa, Y. Ismail
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引用次数: 1

摘要

应用程序覆盖所有业务规范的愿望极大地增加了对多频段多标准接收机的需求。提出了一种适用于多频段多标准接收机的可编程接收机前端结构。接收机采用下变频正交带通FIR电荷采样混频器,通过其控制时钟编程。时变阻抗匹配网络提供了进一步的选择性。该架构在三个不同的频率上进行了模拟,跨越两个八度(2G、1G和500MHz),目标是LTE规范。本设计实现了23dB ~ 28dB的转换增益,7dB ~ 9dB的噪声系数(NF), IIP3带外为-1.9 ~ -5.6dBm, IIP3带内为-1.5 ~ -5.7dBm, S11 < -10 dB。该设计采用65nm CMOS技术实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A programmable receiver front-end architecture supporting LTE
The desire of having applications covering all service specifications tremendously increases the demand for multi-band multi-standard receivers. A programmable receiver front-end architecture for multi-band multi-standard receivers is proposed. The receiver adopts a down-conversion quadrature band-pass FIR charge sampling mixer programmed via its controlling clocks. A time varying impedance matching network provides further selectivity. The architecture is simulated over three different frequencies spanning two octaves (2G, 1G and 500MHz) targeting LTE specifications. The proposed design achieves conversion gain of 23dB to 28dB, Noise Figure (NF) of 7dB to 9dB, out of band IIP3 of -1.9dBm to -5.6dBm, in band IIP3 of -1.5dBm to -5.7dBm and S11 <;-10 dB. The design is implemented using a 65nm CMOS technology.
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