基于对双环频率预置技术和谐波混频技术的理论分析,将混频锁相合成方式与高次倍频合成方式相结合,采用鉴相极性可变的非常规设计,提出一种宽带小步进超低相位噪声频率合成器的低成本实现方案,并对合成器的相位噪声和杂散抑制指标进行了...基于对双环频率预置技术和谐波混频技术的理论分析,将混频锁相合成方式与高次倍频合成方式相结合,采用鉴相极性可变的非常规设计,提出一种宽带小步进超低相位噪声频率合成器的低成本实现方案,并对合成器的相位噪声和杂散抑制指标进行了理论分析。试验证明,在8 GHz输出频率下,方案实现了低于-132 d Bc/Hz@10 k Hz的相位噪声和70 d B以上的杂散抑制性能。对宽带超低相位噪声频率合成器的设计具有借鉴意义。展开更多
A frequency mixing system including microwave coupling and intermediate frequency (IF) measurement arrangements is designed. In lieu of liquid nitrogen, a pulse tube cryocooler is used to cool the whole system. With Y...A frequency mixing system including microwave coupling and intermediate frequency (IF) measurement arrangements is designed. In lieu of liquid nitrogen, a pulse tube cryocooler is used to cool the whole system. With YBa2Cu3O7/Yttrium stabilized zirconia (YBCO/YSZ) bicry-stal Josephson junction as the mixing element, 36th harmonic frequency mixing at the 8 mm waveband is obtained.展开更多
A frequency mixing and phase locking system is designed, in which electromagnetic shielding, microwave coupling, and intermediate frequency (IF) measurement arrangements are in- cluded. In lieu of liquid nitrogen, a p...A frequency mixing and phase locking system is designed, in which electromagnetic shielding, microwave coupling, and intermediate frequency (IF) measurement arrangements are in- cluded. In lieu of liquid nitrogen, a pulse tube cryo- cooler is used to cool the whole system. With Jo- sephson grain boundary junction as the mixing ele- ment, the 96th harmonic frequency mixing at 3 mm waveband is obtained, and phase-locked voltage- controlled oscillator (VCO) is realized.展开更多
文摘基于对双环频率预置技术和谐波混频技术的理论分析,将混频锁相合成方式与高次倍频合成方式相结合,采用鉴相极性可变的非常规设计,提出一种宽带小步进超低相位噪声频率合成器的低成本实现方案,并对合成器的相位噪声和杂散抑制指标进行了理论分析。试验证明,在8 GHz输出频率下,方案实现了低于-132 d Bc/Hz@10 k Hz的相位噪声和70 d B以上的杂散抑制性能。对宽带超低相位噪声频率合成器的设计具有借鉴意义。
基金This work was supported by the Ministry of Science and Technology of China (Grant No. G19990646).
文摘A frequency mixing system including microwave coupling and intermediate frequency (IF) measurement arrangements is designed. In lieu of liquid nitrogen, a pulse tube cryocooler is used to cool the whole system. With YBa2Cu3O7/Yttrium stabilized zirconia (YBCO/YSZ) bicry-stal Josephson junction as the mixing element, 36th harmonic frequency mixing at the 8 mm waveband is obtained.
基金supported by the National Natural Science Foundation of China(Grant Nos.10474036&10534060)the National Basic Research Program of China(2006CB601006).
文摘A frequency mixing and phase locking system is designed, in which electromagnetic shielding, microwave coupling, and intermediate frequency (IF) measurement arrangements are in- cluded. In lieu of liquid nitrogen, a pulse tube cryo- cooler is used to cool the whole system. With Jo- sephson grain boundary junction as the mixing ele- ment, the 96th harmonic frequency mixing at 3 mm waveband is obtained, and phase-locked voltage- controlled oscillator (VCO) is realized.