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Self-heating and memory effects in RF power amplifiers explained through electro-thermal

机译:RF功率放大器中的自热和记忆效应通过电热解释

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摘要

Self-heating has already been proven to be one of the key sources to memory effects in RF power amplifiers (PAs). However, mechanisms behind the generation of memory effects, as caused by self-heating have not been well documented. On basis of transistor physical properties this paper proposes a simple electro-thermal model and shows how self-heating can generate different types of memory effects, such as bandwidth dependent intermodulation components and hysteresis loops. In addition, it is shown that self-heating can result in generation of new spectral components even in an otherwise linear PA. A time domain modeling framework is implemented to investigate memory effects generated by self-heating and simulation results are shown to agree with theoretical analysis.
机译:已经证明,自发热是RF功率放大器(PA)产生记忆效应的关键来源之一。但是,由自热引起的记忆效应产生背后的机制尚未得到充分证明。基于晶体管的物理特性,本文提出了一个简单的电热模型,并展示了自热如何产生不同类型的存储效应,例如与带宽有关的互调分量和磁滞回线。此外,已经表明,即使在线性PA中,自热也会导致产生新的光谱分量。实施时域建模框架以研究自热产生的记忆效应,并且仿真结果表明与理论分析一致。

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