Impedance control for critically coupled cavities

B. Riddle, C. Nelson
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引用次数: 7

Abstract

Cavity resonators are often used in low phase noise oscillators that utilize carrier suppression. These oscillators are employed in systems that measure phase noise in frequencies as high as 100 GHz. In order to achieve the maximum suppression needed in these low noise designs, the cavity must be operated at critical coupling. However, this large coupling level loads the cavity, which significantly lowers its quality factor and shifts its resonant frequency. In this paper, we present a matching technique that can be used to minimize these loading effects by controlling the input impedance of the cavity and optimizing its response at resonance, thus producing the maximum amount of carrier suppression
临界耦合腔的阻抗控制
腔谐振器常用于利用载波抑制的低相位噪声振荡器中。这些振荡器用于测量频率高达100ghz的相位噪声的系统中。为了达到这些低噪声设计所需的最大抑制,腔体必须在临界耦合下工作。然而,这种大的耦合水平对腔体产生了载荷,显著降低了腔体的质量因子,并使腔体的谐振频率发生偏移。在本文中,我们提出了一种匹配技术,可以通过控制腔的输入阻抗和优化谐振响应来最小化这些负载效应,从而产生最大数量的载流子抑制
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