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Designing power amplifiers for spectral compliance using spectral mask load-pull measurements

机译:使用频谱模板负载拉力测量设计功率放大器以实现频谱一致性

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This paper demonstrates power amplifier design using load-pull measurements to determine spectral mask compliance as a function of load impedance. In most cases demonstrated in the open literature, the spectral spreading of the device is indirectly assessed by a metric such as the adjacent-channel power ratio or third-order intermodulation product. In the present paper, a spectral mask compliance metric is introduced that is less than or equal to zero for compliant spectra and positive for noncompliant spectra. The paper first examines the load-pull measurement for the spectral mask compliance metric, including the use of averaging to smooth the contours. Direct, dual-objective design of power amplifiers for spectral mask compliance and efficiency is then demonstrated by choosing the load impedance that provides the highest measured power-added efficiency while maintaining spectral compliance. With the device terminated in the chosen optimum impedance, measurement of the output spectrum and comparison with a spectral mask are performed to demonstrate spectral compliance at the selected design impedance.
机译:本文演示了使用负载拉力测量来确定频谱模板顺应性与负载阻抗的函数关系的功率放大器设计。在公开文献中证明的大多数情况下,设备的频谱扩展是通过度量(例如邻道功率比或三阶互调产物)间接评估的。在本文中,引入了一种频谱掩码顺应性度量标准,对于顺应谱,该度量应小于或等于零,对于不顺应谱的该属性应为正。本文首先检查了频谱模板顺应性度量的负载拉测量,包括使用平均来平滑轮廓。然后,通过选择可提供最高测得的功率附加效率并同时保持频谱柔顺性的负载阻抗,演示了功率放大器针对频谱模板柔顺性和效率的直接,双目标设计。在设备终止于所选的最佳阻抗的情况下,进行输出频谱的测量并与频谱模板进行比较,以证明所选设计阻抗下的频谱符合性。

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