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Design of Dualband Class-F PAs for Cellular and WLAN Applications

机译:适用于蜂窝和WLAN应用的双频F类功率放大器的设计

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In this paper, highly efficient class-F power amplifiers(PAs) with harmonic-controlling transmission lines(TLs) were built for cellular and WLAN applications at 840 MHz and 2.4 GHz each. Also, based on these single-band PAs, a dualband class-F PA was designed after a careful investigation into the harmonics of the two frequencies. The harmonic-controlling TL was designed for the class-F operation at dualband by switching the length of the shunt $lambda$/4 TL part, while the series $lambda$/4 TL is optimized for both frequencies. To verify the performance, two class-F PAs optimized at each frequency and a dualband class-F PA at the corresponding frequencies were built with the secondand the third-harmonic control circuits at each frequencies. As a result, the PA#1 at 840 MHz has a peak drain efficiency of 81.2 % with an output power of 24.4 dBm, while the PA#2 at 2.35 GHz shows a drain efficiency of 94.5 % with an output of 22.8 dBm. Finally, the dualband class-F PA#3 showed 60.5 % and 50.9 % drain efficiencies at 840 MHz and 2.4 GHz, with powers of 23.8 dBm and 19.62 dBm, respectively.
机译:本文中,针对蜂窝和WLAN应用(分别为840 MHz和2.4 GHz)构建了具有谐波控制传输线(TL)的高效F类功率放大器(PA)。同样,基于这些单频段功率放大器,在仔细研究了两个频率的谐波之后,设计了双频段F类功率放大器。通过切换并联$ lambda $ / 4 TL部分的长度,谐波控制TL被设计用于双频F级操作,而$ lambda $ / 4 TL系列则针对两个频率进行了优化。为了验证性能,分别在每个频率上使用第二和第三谐波控制电路构建了两个在每个频率上优化的F类PA和在相应频率下的双频F类PA。结果,在840 MHz时,PA#1的峰值漏极效率为81.2%,输出功率为24.4 dBm,而在2.35 GHz时,PA#1的漏极效率为94.5%,输出功率为22.8 dBm。最后,双频F类PA#3在840 MHz和2.4 GHz频率下显示60.5%和50.9%的漏极效率,功率分别为23.8 dBm和19.62 dBm。

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