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A High-Linearity Energy-Efficient CMOS PA for Wireless Environment Monitoring

机译:用于无线环境监控的高线性节能CMOS PA

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For power amplifier in wireless sensor network (WSN) nodes used for environment monitoring, there are three important factors, i.e. maximum output power, power efficiency and linearity. In this paper, two techniques are proposed to achieve good linearity, i.e. a negative feedback path with 180 degree phase shift, and a capacitance compensation technology to keep the overall input capacitance of driver stage constant. Furthermore, bond wire inductors with a high quality factor are proposed as chock inductors, which enhance both efficiency and linearity by raising drain voltage of common-gate transistors and cutting down the power loss in chock inductors. Simulation results demonstrate the PAachieves a maximumoutput power of 23.5 dBmwith 42 % power added efficiency (PAE) and a 23 dBm output 1-dB compression point with 35% PAE. The two-tone test shows 5-10 dBc improvement in the third-order intermodulation distortion (IMD3) compared to a PA with on-chip chock inductors.
机译:对于用于环境监测的无线传感器网络(WSN)节点中的功率放大器,有三个重要因素,即最大输出功率,功率效率和线性度。本文提出了两种技术来实现良好的线性度,即具有180度相移的负反馈路径和一种电容补偿技术,以使驱动器级的总输入电容保持恒定。此外,提出了具有高品质因数的键合线电感器作为扼流圈电感器,其通过提高共栅晶体管的漏极电压并降低扼流圈电感器的功率损耗来提高效率和线性度。仿真结果表明,PA的最大输出功率为23.5 dBm,功率附加效率(PAE)为42%,PAE值为35%时,输出为23 dBm的1-dB压缩点。两音测试表明,与带有片上扼流电感的PA相比,三阶互调失真(IMD3)改善了5-10 dBc。

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