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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Frequency Analysis and Multiline Implementation of Compensated Impedance Inverter for Wideband Doherty High-Power Amplifier Design
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Frequency Analysis and Multiline Implementation of Compensated Impedance Inverter for Wideband Doherty High-Power Amplifier Design

机译:宽带Doherty大功率放大器设计的补偿阻抗逆变器的频率分析和多线实现

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摘要

In this paper, we present a frequency analysis of a compensated impedance inverter and its effective implementation in the context of high-power Doherty amplifier (DPA) design. On the basis of an idealized DPA model, we calculate the expected operative bandwidth and the corresponding maximum drain efficiency as a function of the modulated signal statistics. In addition, we introduce an effective technique for the implementation of the compensated impedance inverter, suitable for preserving its broadband characteristics in the presence of large device’s output capacitance. The implementation technique is based on the generalized equivalent transmission-line equivalence principle, which considers both shortening and lengthening the equivalent transmission lines. We demonstrate that, by the proposed approach, parasitic absorption is possible maintaining a low -factor of the equivalent network. The technique is validated by the development of a silicon laterally diffused metal–oxide–semiconductor DPA with optimized peak power and efficiency for applications in the 650–950-MHz band. The fabricated prototype is characterized by an LTE signal with a 20-MHz bandwidth and peak-to-average-power ratio of 7.5 dB and features an average drain efficiency between 37% and 47%, with an average power of 49 dBm across 37.5% of the bandwidth.
机译:在本文中,我们介绍了补偿阻抗逆变器的频率分析及其在大功率Doherty放大器(DPA)设计中的有效实现。在理想化的DPA模型的基础上,我们根据调制信号统计数据计算了预期的工作带宽和相应的最大漏极效率。此外,我们介绍了一种用于实施补偿阻抗逆变器的有效技术,该技术适用于在大型设备输出电容存在的情况下保持其宽带特性。该实现技术基于广义等效传输线等效原理,该原理考虑了缩短和延长等效传输线。我们证明,通过提出的方法,寄生吸收有可能保持等效网络的低因数。该技术已通过开发硅横向扩散金属氧化物半导体DPA进行了验证,该DPA具有针对650-950 MHz频段应用的最佳峰值功率和效率。所制造的原型的特点是具有20MHz带宽的LTE信号和7.5dB的峰均功率比,其平均漏极效率在37%至47%之间,在37.5%的平均功率为49 dBm。带宽。

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