首页> 外文期刊>Journal of circuits, systems and computers >DESIGN AND OPTIMIZATION OF A FULLY DIFFERENTIAL CMOS VARIABLE-GAIN LNA WITH DIFFERENTIAL EVOLUTION ALGORITHM FOR WLAN APPLICATIONS
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DESIGN AND OPTIMIZATION OF A FULLY DIFFERENTIAL CMOS VARIABLE-GAIN LNA WITH DIFFERENTIAL EVOLUTION ALGORITHM FOR WLAN APPLICATIONS

机译:WLAN应用具有差分进化算法的全差分CMOS可变增益LNA的设计与优化

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摘要

In this paper, we optimized the performance of a 2.4 GHz variable gain low-noise amplifier for WLAN applications which provides high dynamic range with relatively low power consumption. First, the differential evolution algorithm was used to optimize the width of input transistors, then the tunable on-chip switching stage method was applied to control the amplifier gain when the input signal increases. The optimization was performed in terms of gain, noise figure (NF), IIP3 and power dissipation. The LNA has achieved a variable gain from 16.55 to 20.45 dB with excellent NF between 1.63 and 1.74dB. Furthermore, the proposed circuit achieves a third order input intercept point of 6.6dBm. It consumes only 10mW from a 1.5 V supply.
机译:在本文中,我们针对WLAN应用优化了2.4 GHz可变增益低噪声放大器的性能,该放大器可提供高动态范围且功耗相对较低。首先,使用差分演化算法优化输入晶体管的宽度,然后采用可调的片上开关级方法来控制输入信号增加时的放大器增益。在增益,噪声系数(NF),IIP3和功耗方面进行了优化。 LNA实现了从16.55到20.45 dB的可变增益,在1.63和1.74dB之间具有出色的NF。此外,所提出的电路实现了6.6dBm的三阶输入截取点。 1.5 V电源仅消耗10mW的功率。

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