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Self-sustaining High-power RF Signal Generation Using LDMOS Based Power Amplifier and Nonlinear Transmission Line

机译:使用基于LDMOS的功率放大器和非线性传输线的自持式大功率RF信号生成

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Nonlinear transmission lines (NLTL) are gaining extensive research focus as a way to generate high-power radio frequency (RF) signals. NLTLs can be classified into two groups: lumped transmission lines containing L-C sections, and external magnetic field-biased line loaded with continuous ferromagnetic materials known as gyromagnetic lines. Traditionally, without a continuous supply of input excitation, NLTLs cannot produce self-sustaining RF signals. In this regard, the authors present a design and demonstration of a self-sustaining soliton generator. The design is based on a 16-section Schottky diode-based NLTL prototype complemented by a solid-state switch (LDMOS) based 1.5 kW (continuous) rated power amplifier (PA), and a custom-made high voltage (650 V) pulse generator. A closed-loop configuration constructed from these components can produce a continuous stream of RF signals from a single input excitation. The prototype is able to generate a peak pulsed RF power of 2.1 kW across a 50 Ω resistive load. To the best of the authors’ knowledge, solid-state switch-based PA has not been introduced in any NLTL design until now to produce self-sustaining RF signals.
机译:非线性传输线(NLTL)作为产生高功率射频(RF)信号的一种方式正受到广泛的研究重点。 NLTL可分为两类:包含L-C部分的集总传输线,以及装载有称为铁磁线的连续铁磁材料的外部磁场偏置线。传统上,如果不连续提供输入激励,则NLTL无法产生自持的RF信号。在这方面,作者提出了一种自持孤子发生器的设计和演示。该设计基于16节基于肖特基二极管的NLTL原型,并辅以基于1.5 kW(连续)额定功率放大器(PA)的固态开关(LDMOS)和定制的高压(650 V)脉冲发电机。由这些组件构成的闭环配置可以从单个输入激励产生连续的RF信号流。该原型能够在50Ω电阻负载上产生2.1 kW的峰值脉冲RF功率。据作者所知,到目前为止,尚未在任何NLTL设计中引入基于固态开关的PA来产生自持RF信号。

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