首页> 外文期刊>IEEE Journal of Solid-State Circuits >Analysis and Design of a 260-MHz RF Bandwidth +22-dBm OOB-IIP3 Mixer-First Receiver With Third-Order Current-Mode Filtering TIA
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Analysis and Design of a 260-MHz RF Bandwidth +22-dBm OOB-IIP3 Mixer-First Receiver With Third-Order Current-Mode Filtering TIA

机译:具有三阶电流模式过滤TIA的260-MHz RF带宽+ 22-DBM OOB-IIP3混合器 - 第一接收器的分析与设计

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摘要

The design of a mixer-first wideband receiver with RF bandwidth of 260 MHz suitable for 5G applications below 6 GHz is presented. The transimpedance amplifier immediately following the passive mixer is based on a low-power modified regulated cascode with enhanced selectivity, instead of a conventional shunt-feedback architecture. At the mixer output, thanks to a positive feedback capacitance multiplication, a third-order low-pass filtering in the current domain is performed. A simplified non-linear model is used to demonstrate that, thanks to the improved selectivity, linearity close to the band edge is highly improved. Wide bandwidth, high linearity, and low power are thus achieved. Measurements on a 28-nm CMOS chip prototype show alternate channel IIP3, IIP2, and P1 dB of +22, +70, and +3 dBm, respectively. Receiver (RX) noise figure (NF) is 5.5 dB, while power consumption is 21.6 mW (in the signal path) and 7.8 mW/GHz (for local oscillator (LO) generation) with 1.8-/1.2-V supply.
机译:呈现了适用于6GHz以下6GV的5G应用的RF带宽的混频器 - 第一宽带接收器的设计。在无源混频器之后的跨阻抗放大器基于低功耗修改的调节CASCODE,具有增强的选择性,而不是传统的分流反馈架构。在混频器输出,由于正反馈电容乘法,执行当前域中的三阶低通滤波。简化的非线性模型用于证明,由于改善的选择性,高度改善了靠近带边的线性。因此实现了宽带宽,高线性度和低功率。 28-NM CMOS芯片原型的测量分别显示分别为+22,+70和+3 dBm的交替信道IIP3,IIP2和P1 dB。接收器(RX)噪声系数(NF)为5.5 dB,而功耗为21.6 MW(在信号路径中)和7.8 MW / GHz(用于本地振荡器(LO)生成),电源1.8- / 1.2V。

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