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Optimization design of wideband asymmetric Doherty power amplifiers with different LDMOS devices

机译:不同LDMOS器件的宽带非对称电台功率放大器优化设计

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In this paper, a wideband asymmetric Doherty power amplifier (WADPA), which has different LDMOS devices for the carrier and the peaking power amplifiers(MRF7S19080 and MRF8S19140), is designed with the stepped impedance transformer. The carrier and peaking amplifiers of the proposed Doherty amplifier operates in class-AB (2.76V) and class-C (1.3V) bias conditions, respectively, with a drain voltage of 27 V. By the help of the computer optimum design, the maximum PAE of 65.407% and the maximum output power of 54.953dBm at 1960MHz are obtained. At about 8dB back-off point, the PAE reaches 55.245%. When Pout equals to 47dBm, the wideband asymmetric Doherty power amplifier covers a bandwidth of 180MHz ranging from 1.87GHz to 2.05GHz while the gain flatness is between −0.3dB to 0.3dB, and the PAE of the whole band is more than 50%.
机译:在本文中,具有用于载波和峰值功率放大器的不同LDMOS器件的宽带非对称电流功率放大器(WADPA)(MRF7S19080和MRF8S19140),采用阶梯式阻抗变压器设计。 所提出的Doherty放大器的载波和峰值放大器分别在AB类(2.76V)和C组(1.3V)偏置条件下,漏极电压为27 V.通过计算机的优化设计, 获得的最大PAE为65.407%,获得1960MHz的最大输出功率为54.953DBM。 在大约8dB后关点,PAE达到55.245%。 当POUT等于47dBm时,宽带非对称电流功率放大器占地180MHz的带宽,范围为1.87GHz至2.05GHz,而增益平整度在− 0.3db至0.3db之间,并且整个频段的PAE比 50%。

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