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A high efficiency fully-monolithic 2-stage C-band GaN power amplifier for 5G microcell applications

机译:适用于5G微电池应用的高效全单片2级C波段GaN功率放大器

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A highly efficient two-stage 6 GHz fully-integrated GaN power amplifier (PA) designed for 5G microcell communication is reported in this work. Post-layout SPICE simulations show this two-stage PA achieves an output 1 dB compression Pout, idb above 33 dBm and greater than 31 dB gain and 34% PAE (power-added efficiency) for CW operation at 6 GHz. When the PA is driven with 5/10/20 MHz LTE 16QAM modulated signals, the simulated output spectra and adjacent channel leakage ratio (ACLR) at 4 dB below Pout, 1dbpassed the LTE spectrum emission mask (SEM) without any predistortion. Operated at a 28 V supply, this fully monolithic PA achieves reasonable frequency performance and linearity while it did not adopt the Doherty architecture for backoff efficiency enhancement; however, simulations suggest it may deliver good PAE values at power backoff when supply modulation is used to make it competitive for 5G PA microcell applications.
机译:这项工作报告了专为5G微蜂窝通信设计的高效两级6 GHz全集成GaN功率放大器(PA)。布局后的SPICE仿真表明,对于6 GHz的CW操作,该两级PA实现了输出1 dB压缩Pout,idb高于33 dBm且增益大于31 dB,PAE(功率附加效率)达到34%。当用5/10/20 MHz LTE 16QAM调制信号驱动PA时,模拟输出频谱和相邻信道泄漏比(ACLR)低于P 4 dB out,1db 通过LTE频谱发射模板(SEM),没有任何预失真。该全单片PA在28 V电源下工作,可实现合理的频率性能和线性度,而未采用Doherty架构来提高后退效率。但是,仿真表明,当使用电源调制使它在5G PA微蜂窝应用中具有竞争力时,它可以在功率回退时提供良好的PAE值。

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