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A novel SiGe BiCMOS variable-gain active predistorter using current steering topologies

机译:利用电流控制拓扑的新型SiGe BiCMOS可变增益有源预失真器

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This paper presents the novel design of a 2.4-GHz variable-gain active predistorter (PD) using a 0.35-μm SiGe BiCMOS technology. Current steering topologies are selected for this design to provide dual functions of: (1) an active predistorter for power amplifier linearization; and (2) a variable gain amplifier (VGA) for transmitter power control. Unlike other traditional "passive" predistorters, this active predistorter does not need an additional buffer amplifier to compensate the loss. Furthermore, through the bias voltage control in the low current region, the amount of gain expansion from this predistorter becomes programmable, to compensate for the PA non-linearity. Finally, this variable-gain predistorter could be used as a VGA in a multi-stage power amplifier design and it is well suitable for RF-SOC applications. The PA experimental results of 16-QAM modulated signals show that the compressed constellation can be uniformly spread out into a "square", the spectral re-growth is suppressed by 7-9 dB, and the EVM can be reduced from 9.9 % to 5.7 %.
机译:本文介绍了一种采用0.35-μmSiGe BiCMOS技术的2.4GHz可变增益有源预失真器(PD)的新颖设计。为此设计选择了电流转向拓扑,以提供以下双重功能:(1)有源预失真器,用于功率放大器的线性化; (2)用于发射机功率控制的可变增益放大器(VGA)。与其他传统的“无源”预失真器不同,该有源预失真器不需要额外的缓冲放大器来补偿损耗。此外,通过低电流区域中的偏置电压控制,来自该预失真器的增益扩展量变得可编程,以补偿PA非线性。最后,该可变增益预失真器可用作多级功率放大器设计中的VGA,非常适合RF-SOC应用。 16-QAM调制信号的PA实验结果表明,压缩后的星座图可以均匀地扩展为一个“正方形”,频谱重新增长被抑制7-9 dB,并且EVM可以从9.9%降低到5.7 %。

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