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Efficiency Enhancement of Feedforward Amplifiers by Employing a Negative Group-Delay Circuit

机译:采用负群时延电路提高前馈放大器的效率

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We will demonstrate an alternative topology for the feedforward amplifier. This amplifier does not use a delay element, thus providing an efficiency enhancement and a size reduction by employing a distributed-element negative group-delay circuit. The insertion loss of the delay element in the conventional feedforward amplifier seriously degrades the efficiency. Usually, a high-power coaxial cable or a delay-line filter is utilized for a low loss, but the insertion loss, cost, and size of the delay element still act as a bottleneck. The proposed negative group-delay circuit removes the necessity of the delay element required for a broadband signal suppression loop. With the fabricated two-stage distributed-element negative group-delay circuit with 30 MHz of bandwidth and $-$9 ns of group delay for a wideband code-division multiple-access downlink band, the feedforward amplifier with the proposed topology experimentally achieved 19.4% power-added efficiency and $-$53.2-dBc adjacent channel leakage ratio with 44-dBm average output power.
机译:我们将演示前馈放大器的替代拓扑。该放大器不使用延迟元件,因此通过采用分布式元件负组延迟电路来提供效率提高和尺寸减小。传统前馈放大器中的延迟元件的插入损耗严重降低了效率。通常,使用大功率同轴电缆或延迟线滤波器来降低损耗,但是延迟元件的插入损耗,成本和尺寸仍然是瓶颈。提出的负组延迟电路消除了宽带信号抑制环路所需的延迟元件的必要性。对于宽带码分多址下行链路频带,利用制造的具有30 MHz带宽和$-$ 9 ns组延迟的两级分布式元件负组延迟电路,具有所建议拓扑的前馈放大器在实验上达到了19.4%高功率效率和$-$ 53.2-dBc邻道泄漏比,平均输出功率为44-dBm。

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