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Design of a low phase noise oscillator based on high Q tunable dielectric resonator

机译:基于高Q可调电介质谐振器的低相位噪声振荡器的设计

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In this paper, a 3.9GHz tunable dielectric resonator oscillator (DRO) with low phase noise is presented. To minimize the phase noise of the oscillator, a high Q-factor tunable dielectric cavity resonator operating in the TE mode is designed. Analytical equations are derived to determine the resonant frequency of the cavity resonator. The calculated results and simulated ones by HFSS software are in agreement within 2 percent. A tuning metallic lead with threads is used to tune the first TE mode resonant frequency of the cavity resonator and move the spurious HE111 mode resonant frequency farther without significantly affecting the Q-factor. 13.5dB gain two stage low noise amplifier which offers a circular power 6dBm is designed to sustain the oscillator closed-loop loss. In order to occur oscillating, a mechanically tunable phase shifter is also applied. Phase noise levels of -112dBc/Hz and -136dBc/Hz are obtained at offset frequencies of 10 and 100 kHz in practical oscillator noise measurement.
机译:在本文中,提出了具有低相位噪声的3.9GHz可调电介质谐振器振荡器(DRO)。为了最小化振荡器的相位噪声,设计了在TE模式下操作的高Q因子可调介电腔谐振器。衍生分析方程以确定腔谐振器的谐振频率。 HFSS软件的计算结果和模拟结果在2%以内同意。具有螺纹的调谐金属引线用于调谐腔谐振器的第一TE模式谐振频率,并使虚假的HE111模式谐振频率远离显着影响Q因子。 13.5DB增益两个阶段低噪声放大器,其提供圆形功率6dBM,旨在维持振荡器闭环损耗。为了发生振荡,还施加机械可调谐相移器。在实际振荡器噪声测量中,在10和100kHz的偏移频率下获得-112dBc / Hz和-136dBc / Hz的相位噪声水平。

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