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New Mixed-Mode Design Methodology for High-Efficiency Outphasing Chireix Amplifiers

机译:高效相异的Chireix放大器的新型混合模式设计方法

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A new design methodology providing optimal mixed-mode operation for dual-input class-F outphasing Chireix amplifiers is presented. The design starts with single-transistor class-F simulations at the intrinsic I-V reference planes to directly select the optimal peak and backoff resistive loads R-min and R-max and input RF gate drives yielding the best combination of efficiencies and output powers without needing to perform a load pull simulation or measurement. New analytic equations expressed only in terms of R-min and R-max are given for designing the Chireix combiner at the current source reference planes. Nonlinear embedding is then used to predict the incident power and multi-harmonic source and load impedances required at the package reference planes to physically implement the power amplifier (PA). An analytic formula solely expressed in terms of R-min and R-max is reported for the peak and backoff outphasing angles required at the PA input reference planes. A Chireix outphasing PA is designed using two 15-W GaN HEMTs. A Chireix outphasing PA exhibits a peak efficiency of 72.58% with peak power of 43.97 dBm and a 8-dB backoff efficiency of 75.22% at 1.9 GHz. Measurements with 10-MHz LTE signals with 9.6-dB PAPR yield 59.4% average drain efficiency at 1.9 GHz while satisfying the 3GPP linearity requirements.
机译:提出了一种新的设计方法,可为双输入F类移相Chireix放大器提供最佳的混合模式操作。该设计从在固有IV参考平面上的单晶体管F类仿真开始,以直接选择最佳的峰值和补偿电阻负载R-min和R-max,以及输入RF栅极驱动器,从而在不需要效率和输出功率的情况下实现了最佳组合进行负载拉动仿真或测量。给出了仅用R-min和R-max表示的新解析方程,用于在电流源参考平面上设计Chireix合成器。然后,非线性嵌入可用于预测在封装参考平面上实际实现功率放大器(PA)所需的入射功率以及多谐波源和负载阻抗。报告了仅用R-min和R-max表示的解析公式,用于计算PA输入参考平面上所需的峰值和补偿相移角。使用两个15W GaN HEMT设计了Chireix异相PA。 Chireix淘汰PA的峰值效率为72.58%,峰值功率为43.97 dBm,在1.9 GHz时的8dB补偿效率为75.22%。使用9.6 dB PAPR的10 MHz LTE信号进行测量时,在满足3GPP线性要求的同时,在1.9 GHz时的平均漏极效率为59.4%。

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