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Design of a Low Phase Noise VCO for Rubidium Atomic Frequency Standard

机译:铷原子频率标准低相位噪声VCO设计

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Compared to the size and the power consumption of the traditional atomic clocks, the ones based on coherent population trapping (CPT) can provide improvement by two orders of magnitude in both aspects above, making them needed urgently in many fields. Among different CPT atomic clocks, the one made with the rubidium atom are used widely, and their operating performance largely depends on its internal voltage-controlled oscillator (VCO) which is used to provide a proper microwave signal. Based on this, a small size and low phase noise 3.035GHz VCO is designed with a modified Clapp circuit topology using low-cost surface-mount components, including a coaxial resonant (COAX) with high quality factor. The designed VCO is simulated and optimized with the combined use of the negative resistance analysis method and the transmission analysis with a virtual-ground. In order to obtain the desired results, different values of key capacitor elements are tried according to their concrete influences on the VCO during the process of the circuit tuning. The test results show that the phase noises of the VCO are -60.49dBc/Hz@300Hz, -73.08dBc/Hz@1KHz and -97.48dBc/Hz@10KHz, the output power is -1.13dBm and the voltage-controlled tuning sensitivity is about 12MHz/V.
机译:与传统原子钟的大小和功耗相比,基于相干群体捕获(CPT)的尺寸可以在上述两个方面在两个方面提供改进,使其在许多领域迫切需要。在不同的CPT原子时钟中,用铷原子制成的一个广泛使用,并且它们的操作性能很大程度上取决于其内部电压控制的振荡器(VCO),其用于提供适当的微波信号。基于此,小尺寸和低相位噪声3.035GHz VCO使用低成本的表面安装部件的改进的CLAPP电路拓扑设计,包括具有高质量因数的同轴谐振(同轴电缆)。通过使用负电阻分析方法的组合使用和虚拟地的传输分析,模拟和优化了设计的VCO。为了获得所需的结果,在电路调谐过程期间根据其在VCO上的具体影响,尝试不同的关键电容器元件的不同值。测试结果表明,VCO的相位噪声是-60.49dBc/hz@300hz,-73.08dbc/hz@1khz和-97.48dbc/hz@10khz,输出功率为-1.13dbm和电压控制的调谐灵敏度约为12MHz / v。

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