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K-Band Frequency Synthesizer with Subharmonic Signal Generation and LTCC Frequency Tripler

机译:具有亚谐波信号生成和LTCC频率三倍频器的K频段频率合成器

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A subsystem implementation study of a fractional-N frequency synthesizer for K-band satellite communications is presented. The architecture is based on a subharmonic frequency generation implemented with commercially available voltage-controlled oscillator, phase-locked loop chip and a custom designed frequency tripler implemented in low temperature cofired ceramics with vertical integration techniques. As a key component, the frequency multiplier is analyzed in terms of conversion efficiency and suppression of undesired harmonic signals. With the entire subsystem, a reference-stabilized signal in the range of 19...21GHz with phase noise of -80 dBc/Hz at 10 kHz offset and a 25 kHz channel spacing is achieved. The output power is -1 dBm and the spectral purity better than 25 dBc over the entire range. With the presented approach it is demonstrated that the employed technology can be used to successfully design customized, packaged modules and subsystems in the upper microwave frequency range.
机译:提出了用于K波段卫星通信的分数N频率合成器的子系统实现研究。该架构基于亚谐波频率生成,该亚谐波频率生成由市售压控振荡器,锁相环芯片和定制设计的三频器实现,并采用垂直集成技术在低温共烧陶瓷中实现。作为关键组件,从转换效率和抑制不希望的谐波信号的角度分析了倍频器。借助整个子系统,可实现19 ... 21GHz范围内的参考稳定信号,在10 kHz偏移和25 kHz通道间隔下具有-80 dBc / Hz的相位噪声。在整个范围内,输出功率为-1 dBm,光谱纯度优于25 dBc。通过提出的方法,证明了所采用的技术可以成功地设计出微波频率范围较高的定制,封装模块和子系统。

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