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Design and realisation of a 100 MHz synthesis chain from an X-band reference signal

机译:X波段参考信号设计和实现100 MHz合成链

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LPMO has undertaken the building of a cryogenic sapphire oscillator with the support of the french space and metrology agencies (CNES and BNM). The aim of this project is to provide a reference oscillator presenting short frequency stability better than 5.10/sup -14/ in order to fulfill reference tests requirements for spatial and metrological applications. The cryogenic oscillator can operate on different frequencies ranging from 8 to 13 GHz depending on the sapphire resonator mode chosen as reference. The exact output signal frequency is not 'a priori' known with a great accuracy due to the large relative uncertainties (of the order of 10/sup -4/) affecting the resonator frequencies theoretical determination. Then a special synthesis chain has to be designed in order to transform the cryogenic oscillator performances to a reference signal whose frequency is fully compatible with most of time and frequency instrumentation. In this paper, we present the design, realization and preliminary tests of a synthesis chain generating a 100 MHz signal from an X-band reference. The performances of the two realized prototypes will enable to transform better than 5.10/sup -14/ short term frequency stability.
机译:LPMO在法国航天和计量机构(CNES和BNM)的支持下,进行了低温蓝宝石振荡器的建造。该项目的目的是提供一种参考振荡器,其短期频率稳定性优于5.10 / sup -14 /,以满足空间和计量应用的参考测试要求。低温振荡器可以工作在8至13 GHz的不同频率上,具体取决于选择作为参考的蓝宝石谐振器模式。由于会影响谐振器频率理论确定值的相对不确定性较大(约为10 / sup -4 /),因此无法以很高的精度“准确地知道”确切的输出信号频率。然后,必须设计一条特殊的合成链,以便将低温振荡器的性能转换为参考信号,该参考信号的频率与大多数时间和频率仪器完全兼容。在本文中,我们介绍了从X波段参考生成100 MHz信号的合成链的设计,实现和初步测试。两个已实现原型的性能将使转换性能优于5.10 / sup -14 /短期频率稳定性。

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