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Design and Analysis of Frequency-Tunable Amplifiers using Varactor Diode Topologies

机译:使用变容二极管拓扑结构的频率可调放大器的设计和分析

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The design of frequency-tunable amplifiers is investigated and the tradeoff between linearity, efficiency and tunability is revealed. Several tunable amplifiers using various varactor diode topologies as tunable devices are designed by using load-pull techniques and their performances are compared. The amplifier using anti-series distortion-free varactor stack topology achieves 38% power added efficiency and it may be tuned from 1.74 to 2.36 GHz (about 35% tunable range). The amplifier using anti-series/anti-parallel topology is tunable from 1.74 to 2.14 GHz (about 23% tunable range) and provides 42% power added efficiency. It is demonstrated that tunable amplifiers using distortion-free varactor stack topologies provide better power added efficiency than the tunable amplifiers using reverse biased varactor diodes and their linearity is similar to that of a conventional amplifier. These amplifiers may facilitate the realization of frequency agile radio frequency transceiver front-ends and may replace several parallel connected amplifiers used in conventional multimode radios.
机译:研究了频率可调放大器的设计,并揭示了线性,效率和可调性之间的权衡。通过使用负载拉技术设计了几种使用各种变容二极管拓扑作为可调器件的可调放大器,并对其性能进行了比较。使用抗串联无失真变容二极管堆叠拓扑的放大器可实现38%的功率附加效率,并且可以在1.74 GHz至2.36 GHz的范围内进行调谐(可调范围约为35%)。使用反串联/反并联拓扑的放大器可在1.74至2.14 GHz的范围内进行可调(可调范围约为23%),并提供42%的功率附加效率。事实证明,与使用反向偏置变容二极管的可调放大器相比,使用无失真变容二极管堆叠拓扑的可调放大器可提供更高的功率附加效率,并且其线性度与常规放大器的线性度相似。这些放大器可以促进频率捷变射频收发器前端的实现,并且可以代替常规多模无线电中使用的几个并行连接的放大器。

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