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Design of cascode topology based CMOS power amplifier for wireless applications

机译:基于CASCODE拓扑的无线应用CMOS功率放大器设计

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An Radio Frequency (RF) Power Amplifier (PA) plays a key role in front end of RF Transmitter. It's role is to convert low power RF Signal into high Power signal so that it can drive the antenna of the transmitter. The PA exhibits certain desirable characteristics such as enormous output Power, reduced heat dissipation, nominal input and output return loss and eminent gain. It is necessary to cut down Power consumption of PA, since PA depletes majority of Power at the transmitter. A two stage cascode topology based 0.18μm Complementary Metal Oxide Semiconductor (CMOS) PA with driver and power stages has been designed using Agilent Advanced Design System (ADS 2009) simulation tool. Here PA needs dc power supply of 1.8V and designed to operate at 2.4 GHz. Current mirror biasing is used at both the stages. The circuit uses source degeneration for input matching and tank circuit for output matching. Interstage matching is provided by a capacitor.
机译:射频(RF)功率放大器(PA)在RF发射器的前端播放了关键作用。它的作用是将低功率RF信号转换为高功率​​信号,使其可以驱动发射器的天线。 PA表现出某些理想的特性,如巨大的输出功率,降低散热,标称输入和输出回波损耗和卓越的增益。由于PA在变送器处耗尽大部分电力,因此有必要减少PA的功耗。使用Agilent Advanced Design System(ADS 2009)仿真工具设计了基于018μm的互补金属氧化物半导体(CMOS)PA的0.18μm互补金属氧化物半导体(CMOS)PA。这里PA需要直流电源1.8V,旨在以2.4 GHz运行。在两个阶段使用电流镜偏置。该电路使用用于输出匹配的输入匹配和罐电路的源退化。级间匹配由电容器提供。

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