Huang Xianhe, Wei Wei, Tan Feng, Fu Wei
University of Electronic Science and Technology of China, Cheng'du, Sichuan, China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Jun;54(6):1103-7. doi: 10.1109/tuffc.2007.364.
To implement a high-stability and high-frequency overtone temperature-compensated crystal oscillator (TCXO) conveniently, an improved design of the novel overtone TCXO is described in this paper. A 120-MHz TCXO based on mixing of dual crystal oscillators is implemented. It utilizes a 100-MHz AT-cut 5th-overtone crystal oscillator mixed with a 20-MHz AT-cut voltage-controlled crystal oscillator (VCXO). The 120-MHz mixed product is filtered to produce the output signal. The total frequency deviation of 20-MHz and 100-MHz crystal oscillators is compensated by adjusting the output frequency of the 20-MHz oscillator to produce the stable 120-MHz output frequency. In this work, verifying experimental results of the compensation are presented. The stability of the experimental 120-MHz overtone TCXO with microprocessor temperature compensation achieves +/-2 X 10(-7) over the temperature range from -30 degrees C to +70 degrees C. A phase noise level of -133 dBc/Hz at 1 kHz offset has been initially measured for the prototype TCXO. The experimental result demonstrates this approach can conveniently implement the high-frequency overtone temperature compensation with a relatively high stability, and it is available for a wider frequency range as well.
为方便地实现高稳定性、高频泛音温度补偿晶体振荡器(TCXO),本文介绍了一种新型泛音TCXO的改进设计。实现了一种基于双晶体振荡器混频的120MHz TCXO。它利用一个100MHz AT切5次泛音晶体振荡器与一个20MHz AT切压控晶体振荡器(VCXO)混频。对120MHz的混频产物进行滤波以产生输出信号。通过调整20MHz振荡器的输出频率来补偿20MHz和100MHz晶体振荡器的总频率偏差,从而产生稳定的120MHz输出频率。在这项工作中,给出了补偿的验证实验结果。采用微处理器温度补偿的实验型120MHz泛音TCXO在-30℃至+70℃的温度范围内稳定性达到±2×10⁻⁷。对原型TCXO初步测量得到在1kHz频偏处的相位噪声水平为-133dBc/Hz。实验结果表明,该方法能够方便地实现具有较高稳定性的高频泛音温度补偿,并且适用于更宽的频率范围。