RF LNA设计的黑盒方法

Michele Spasaro, F. Alimenti, D. Zito
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引用次数: 0

摘要

本文提出了一种新的射频低噪声放大器(LNAs)功率约束算法设计方法。该方法基于晶体管的矩阵描述,首次推导了输入阻抗匹配和换能器增益优化的精确合成方程。这些方程被嵌入到一个算法中,用于在噪声性能和增益之间进行设计权衡。特别地,给出了具有归纳退化的级联码拓扑结构的综合方程。数学描述所需的矩阵是通过模拟得出的,允许算法设计方法准确,灵活(即适用于任何双端口有源设备),并且符合知识产权保护的需要,因为不需要直流,小信号或噪声模型参数。该方法通过在预测的90纳米CMOS技术中设计一个2 mW 2.45 GHz LNA来验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A black-box approach to RF LNA design
This paper presents a novel power-constrained algorithmic design methodology for radiofrequency (RF) low-noise amplifiers (LNAs). The methodology is based on matrix descriptions of the transistors allowing for the first time the derivation of exact synthesis equations for input impedance matching and transducer gain optimization. The equations are embedded in an algorithm for design tradeoffs between noise performance and gain. In particular, the synthesis equations are demonstrated for the cascode topology with inductive degeneration. The matrices required by the mathematical description are derived through simulations, allowing the algorithmic design methodology to be accurate, flexible (i.e. applicable to any two-port active device), and compliant with the needs of intellectual property protection since no dc, small-signal, or noise model parameters are required. The methodology is validated through the design of a 2 mW 2.45 GHz LNA in a predictive 90 nm CMOS technology.
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