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An Improved Overtone Crystal Oscillator with Microprocessor Temperature Compensation

机译:具有微处理器温度补偿的改进的泛音晶体振荡器

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For improving the frequency-temperature characteristic of temperature compensation overtone crystal oscillator (TCOXO), a novel 120MHz TCOXO design is described in this paper. It is different from general methods, in which a compensated 40MHz 3th overtone crystal oscillator is frequency tripled. This design utilizes a 100MHz AT-cut 5th overtone crystal oscillator mixing with a 20MHz AT-cut VCXO, then the 120MHz signal is gained through the filter. In this design, AT89S52 microprocessor is chosen to control and supply the adjusted voltage which the 20MHz VCXO needs, consequently, frequency deviations of the two crystal oscillators are compensated so that the 120MHz is the stable output frequency. As the frequency deviation of the 100MHZ overtone crystal oscillator and the 20MHz VCXO is both compensated simply by the latter, which makes frequency deviations of total system even more, the piecewise linear interpolation method is used. In this work, verified experiment results of the compensation are presented The stability of the experimental 120MHz TCOXO with microprocessor temperature compensation achieves ± 2 × 10{sup}(-7) within the temperature range from -30 to +70°C. The adding inductance method in the common design is not contained, therefore, this novel design is helpful for improving frequency-temperature performances of TCOXO. Synchronously, frequency multiplication is substituted by mixing so that it is possible to reduce the phase noise of the high-frequency TCOXO with this method.
机译:为了提高温度补偿的谐波晶体振荡器(TCOXO)的频率 - 温度特性,一种新型的120MHz的TCOXO设计在本文中所描述。它是从一般方法,其中,补偿的40MHz的3TH谐波晶体振荡器是频率三倍不同。这种设计采用了100MHz的AT切割第五谐波晶体振荡器采用20MHz的AT切割VCXO混合,然后将120MHz的信号通过过滤器获得的。在此设计中,AT89S52微处理器被选择来控制并提供其中的20MHz VCXO需要,因此,两个晶体振荡器的频率偏差被补偿,使得在120MHz是稳定的输出频率调整电压。作为100MHZ谐波晶体振荡器的频率偏差和20MHz的VCXO不但由后者简单地补偿,这使得更加整个系统的频率偏差,将使用分段线性插值方法。在这项工作中,补偿的验证实验结果呈现实验的120MHz TCOXO与微处理器温度补偿达到±2×10 {SUP}稳定性( - 7)的温度范围内从-30至+ 70℃。在常见设计加法电感方法不包含,因此,这种新颖的设计是用于提高TCOXO的频率温度性能有帮助。同步,倍频是通过混合,使得其能够降低用该方法的高频TCOXO的相位噪声取代。

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