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A Cryogenic LC VCO Utilizing Cryogenic Models of Active Devices

机译:利用有源器件的低温模型的低温LC VCO

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Upcoming advances in the space research demand a better understanding of the analog and radio frequency circuit behavior at very low temperatures. For this purpose, a LC cross-coupled voltage controlled oscillator in the S-band is designed for space communications as a case study using a commercial 0.18 μm CMOS Mixed-Mode/RF device technology. At 77 K, performance variations are observed with respect to the room temperature through the model extracted from transistor measurements that have been conducted using liquid nitrogen. One notable observation indicates that by cooling down to the cryogenic temperatures, the oscillator can fall into the "waste of power" region and therefore the phase noise of the circuit does not necessarily improve in the cryogenic operation regime. Even though there is a gap in the literature about the cryogenic behavior of passive devices, it is shown that the variations on the varactor threshold value and the quiescent node voltages of the circuit can notably shift the needed control voltages. Moreover, a voltage controlled oscillator is designed, which ensures practical operation both at 300 K and 77 K, thereby demonstrating how the tuning range and phase noise performance of the oscillator changes at different temperatures.
机译:太空研究领域的最新进展要求人们更好地了解极低温下的模拟和射频电路性能。为此,使用商业0.18μmCMOS混合模式/ RF器件技术,将S波段中的LC交叉耦合压控振荡器设计为用于空间通信的案例研究。在77 K时,通过从使用液氮进行的晶体管测量中提取的模型可以观察到相对于室温的性能变化。一项值得注意的观察表明,通过冷却至低温温度,振荡器可能会落入“功率浪费”区域,因此,电路的相位噪声不一定会在低温工作状态下得到改善。即使在文献中关于无源器件的低温行为存在空白,也表明,变容二极管阈值和电路静态节点电压的变化会显着改变所需的控制电压。此外,设计了一种压控振荡器,该振荡器可确保在300 K和77 K下均能实际工作,从而证明了振荡器的调谐范围和相位噪声性能在不同温度下如何变化。

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