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Efficiency enhancement using adaptive bias control for 60GHz power amplifier

机译:使用60GHz功率放大器的自适应偏置控制效率提升

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A single-stage 60GHz class-A bipolar power amplifier (PA) is fabricated in a BiCMOS 55nm technology. In order to enhance the power added efficiency (PAE) behavior of the PA, a bias control loop, based on direct power detection, is implemented in order to dynamically adjust the DC bias current of the PA according to its output power level. A power detector (PD) is connected directly at the output of the amplifier in order to track the envelope variation of its output signal. The employed PD has a dynamic range of more than 30dB, and a maximum power consumption of 0.8mW. Under constant bias conditions, the PA has a power gain of around 7dB, a maximum PAE of 16%, and an output compression point of around 7.5dBm while driving 25.8mA under 1.2V supply voltage. Under adaptive bias control, the mean value of the DC current is reduced down to 20.8mA, while maintaining high power gain, leading to a significant enhancement of the PAE over the linear input dynamic range of the PA. System level simulations show that the applied technique enhances the average PAE and DC power consumption by 18% without significant discrepancies on the EVM, ACPR, and power gain.
机译:单级的60GHz类-A双极功率放大器(PA)是在55纳米的BiCMOS技术制造。为了增强的PA,一个偏置控制回路,基于直接功率检测的功率附加效率(PAE)的行为,以便被实现为根据其输出功率电平动态地调整PA的DC偏置电流。功率检测器(PD),以便跟踪其输出信号的包络线变动在放大器的输出端直接相连。所采用的PD具有大于30dB的动态范围,和0.8MW的最大功率消耗。下恒定偏置条件下,PA具有大约7分贝功率增益,为16%的最大PAE,虽然1.2V电源电压下驱动25.8毫安围绕7.5dBm的输出压缩点。下自适应偏置控制,直流电流的平均值降低至20.8毫安,保持高功率增益,同时,导致PAE超过PA的线性输入动态范围的增强显著。系统级仿真结果表明,应用技术18%提高平均PAE和DC功耗,而不对EVM,ACPR显著的差异,以及功率增益。

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