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Analysis and Design of a High-Efficiency Class-EM Power Amplifier

机译:高效E M 功率放大器的分析与设计

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The Class-EM power amplifier (PA) offers the possibility of achieving high-efficiency operations at high operating frequencies while using slow-switching transistors. This is made possible by the adoption of the ZVS/ZVDS/ZCS and ZCDS conditions on the main circuit and the adoption of the ZVS condition on the auxiliary circuit. In this paper, we present the analysis and design of a new topology of the Class-EM PA incorporating a finite DC-feed inductance and an isolation circuit, rendering it more attractive for implementations. Furthermore, we propose a novel transmission-line load network that provides the drain of the transistor with the required load impedances at the fundamental frequency as well as at even and odd harmonic frequencies for the main and the auxiliary circuits. The concept is verified through harmonic-balance simulations with the PA exhibiting a peak drain efficiency of 90.3%, a peak power added efficiency of 86.7%, and a peak output power of 41.2 dBm at an operating frequency of 1.5 GHz.
机译:E级 M 功率放大器(PA)提供了在使用慢速开关晶体管的同时在高工作频率下实现高效率工作的可能性。这可以通过在主电路上采用ZVS / ZVDS / ZCS和ZCDS条件以及在辅助电路上采用ZVS条件来实现。在本文中,我们介绍了Class-E新拓扑的分析和设计 M 集成了有限的直流馈电电感和隔离电路的PA,使其对实施更具吸引力。此外,我们提出了一种新颖的传输线负载网络,该网络为晶体管的漏极提供了主电路和辅助电路在基频以及偶数和奇数谐波频率下所需的负载阻抗。该概念通过谐波平衡仿真得到了验证,在1.5 GHz的工作频率下,PA的峰值漏极效率为90.3%,峰值功率附加效率为86.7%,峰值输出功率为41.2 dBm。

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