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Highly Efficient Broadband Continuous Inverse Class-F Power Amplifier Design Using Modified Elliptic Low-Pass Filtering Matching Network

机译:利用改进的椭圆形低通滤波匹配网络的高效宽带连续反向F类功率放大器设计

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摘要

This paper proposes a design approach for a broadband and high-efficiency continuous inverse Class-F (CCF−1) power amplifier (PA) based on a modified elliptic low-pass filtering (LPF) matching network (MN). From theoretical and practical perspectives, the importance of a swift impedance transition from the higher end of the fundamental frequency band to the lower end of the second harmonic band is discussed, when designing a broadband single-mode PA. After being compared with widely used Chebyshev LPF MNs, a modified elliptic LPF MN, which provides a sharp roll-off, is utilized to provide the required rapid transition. A step-by-step design procedure of the proposed modified elliptic LPF MN is presented. Experimental results show that a high-efficiency CCF−1 PA is realized from 1.35 to 2.5 GHz (fractional bandwidth = 60%) with measured drain efficiency of 68%–82% and output power of 41.1–42.5 dBm. When stimulated by a 20-MHz LTE signal with an average output power of approximately 34.5 dBm, the proposed PA, combined with digital pre-distortion, achieved adjacent channel leakage ratios (ACLRs) below −45 dBc, with average efficiency (AE) ranging from 37% to 45.8%. Similar performance is measured when the proposed PA is driven by a dual-band dual-mode modulated signal with a 100-MHz instantaneous bandwidth at a center frequency of 2.14 GHz.
机译:本文提出了一种基于改进的椭圆低通滤波(LPF)匹配网络(MN)的宽带和高效连续F类逆向CC(CCF-1)功率放大器(PA)的设计方法。从理论和实践的角度,在设计宽带单模功率放大器时,讨论了从基本频带的高端到二次谐波频带的低端快速阻抗转换的重要性。在与广泛使用的切比雪夫LPF MN进行比较之后,利用提供了急剧滚降的改良椭圆LPF MN来提供所需的快速过渡。提出了一种改进的椭圆形LPF MN的逐步设计程序。实验结果表明,在1.35至2.5 GHz(分数带宽= 60%)范围内实现了高效率的CCF-1 PA,测量的漏极效率为68%–82%,输出功率为41.1–42.5 dBm。当被平均输出功率约为34.5 dBm的20 MHz LTE信号激励时,建议的PA与数字预失真相结合,实现了低于-45 dBc的相邻信道泄漏比(ACLR),平均效率(AE)范围为从37%升至45.8%。当所建议的PA由中心频率为2.14 GHz时具有100MHz瞬时带宽的双频双模调制信号驱动时,可以测量到类似的性能。

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