Design of low phase noise 7.7 GHz dielectric resonator oscillator

Oguzhan Kizilbey, O. Palamutçuogullari, B. Yarman
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引用次数: 3

Abstract

In this work, a dielectric resonator stabilized oscillator with output frequency at 7.7 GHz is designed, simulated and measured. The oscillator topology is based on the series feedback dielectric resonator oscillator (DRO) structure. The precise design procedure of the series feedback dielectric resonator oscillator is presented. A λ/4 open stub microstrip line is arranged at the output port in order to improve the suppressions of harmonic frequencies. The simulation results show that, the phase noise exhibits about -100 dBc/Hz@10KHz while the output power at 7.7 GHz is 10 dBm and the suppression of harmonic frequencies are better than -50dBc. In the practical measurements, the phase noise exhibits -95dBc/Hz@10KHz while the output power is 9.4 dbm and the suppression of harmonic frequencies are better than -40 dBc.
7.7 GHz低相位噪声介质谐振振荡器的设计
本文设计了一种输出频率为7.7 GHz的介质谐振腔稳定振荡器,并对其进行了仿真和测量。振荡器拓扑结构基于串联反馈介质谐振振荡器(DRO)结构。介绍了串联反馈介质谐振振荡器的精确设计过程。在输出端设置λ/4开路微带线,以提高对谐波频率的抑制。仿真结果表明,当7.7 GHz输出功率为10 dBm时,相位噪声约为-100 dBc/Hz@10KHz,谐波抑制效果优于-50dBc。在实际测量中,当输出功率为9.4 dbm时,相位噪声为-95dBc/Hz@10KHz,谐波抑制效果优于-40 dBc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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