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Dynamic range considerations for high-temperature superconducting filter applications to receiver front-ends

机译:接收器前端的高温超导滤波器应用的动态范围注意事项

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Planar thin-film high-temperature superconducting (HTS) filters offer very low loss and, when multiplexed into filterbanks, the potential for smaller volume than conventional technology filters of comparable performance. In this paper the issues concerning the application of HTS filters to preselection in microwave receiver front ends are addressed. These issues include noise figure, third order intermodulation distortion and spur-free dynamic range. The reasons to evaluate HTS filters for these applications are: 1) HTS filters contribute negligible system noise figure because they not only have low loss but operate around 77 K and 2) they are nonlinear devices. Our measurements and calculations show that HTS filters in the front end of microwave receivers will allow all the advantages of preselection without contributing significantly to the system noise figure. On the other hand, even though HTS filters are nonlinear, the upper end of the dynamic range will most likely be set by the rest of the receiver chain, not by the HTS preselector.
机译:平面薄膜高温超导(HTS)滤波器的损耗非常低,并且当多路复用到滤波器组中时,其体积可能比性能可比的传统技术滤波器更小。在本文中,解决了将HTS滤波器应用于微波接收机前端的预选问题。这些问题包括噪声系数,三阶互调失真和无杂散的动态范围。在这些应用中评估HTS滤波器的原因是:1)HTS滤波器的系统噪声系数可忽略不计,因为它们不仅损耗低而且在77 K左右工作,并且2)它们是非线性器件。我们的测量和计算表明,微波接收器前端的HTS滤波器将具有预选的所有优点,而不会显着影响系统的噪声系数。另一方面,即使HTS滤波器是非线性的,动态范围的上限也很可能由其余的接收器链来设置,而不是由HTS预选择器来设置。

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