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Low phase noise microwave oscillators based on HTS shielded dielectric resonators

机译:基于HTS屏蔽介电共振器的低相位噪声微波振荡器

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To meet the specifications of future radar and communication systems we developed a low phase noise microwave oscillator. This feedback oscillator consists of a commercial MESFET-amplifier at room temperature and a LaAlO/sub 3/ dielectric resonator with high temperature superconducting (HTS) shielding at 63 K. The resonator operating at a resonance frequency of 5.6 GHz showed unloaded quality factors in the 10/sup 5/ to 10/sup 6/ range. By means of a strong resonator coupling (|S/sub 21/|=6 dB) and an amplifier gain of 20 dB we obtained an output power of +15 dBm. The phase noise L(f/sub m/) of the oscillator was below the detection limit for offset frequencies beyond 10 kHz. For offset frequencies below 5 kHz measurements revealed perfect L(f/sub m/)/spl prop/f/sub m//sup .3/-behaviour according to the Leeson model. The phase noise was -110 dBc/Hz at 1 kHz offset and -130 dBc/Hz at 10 kHz. This phase noise performance is superior to state of the art SAW- or quartz oscillators for f/sub m/<10 kHz. To further reduce the phase noise performance close to the carrier we investigated the implementation of a phase locked loop (PLL). The long term temperature stability of the oscillator frequency can be enhanced by introducing a central cylinder made from rutile (TiO/sub 2/). We present numerical and experimental results on this compensation.
机译:为了满足未来雷达和通信系统的规格,我们开发了一种低相位噪声微波振荡器。该反馈振荡器由室温下的商用MESFET放大器和在63 K下具有高温超导(HTS)屏蔽的LaAlO / sub 3 /介质谐振器组成。谐振器在5.6 GHz的谐振频率下显示出空载质量因数。 10 / sup 5 /至10 / sup 6 /范围。通过强大的谐振器耦合(| S / sub 21 / | = 6 dB)和20 dB的放大器增益,我们获得了+15 dBm的输出功率。振荡器的相位噪声L(f / sub m /)低于10 kHz以上偏移频率的检测极限。对于低于5 kHz的偏移频率,根据Leeson模型,测量显示出完美的L(f / sub m /)/ spl prop / f / sub m // sup 0.3 /-性能。相位噪声在1 kHz偏移时为-110 dBc / Hz,在10 kHz时为-130 dBc / Hz。对于f / sub m / <10 kHz,该相位噪声性能优于现有的SAW或石英振荡器。为了进一步降低接近载波的相位噪声性能,我们研究了锁相环(PLL)的实现。通过引入由金红石(TiO / sub 2 /)制成的中心圆柱,可以提高振荡器频率的长期温度稳定性。我们提出了关于这种补偿的数值和实验结果。

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