A low cost oscillator for high data rate E-band transceivers

E. Ruscito, H. Chuang, R. Amaya, L. Roy, B. Syrett
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引用次数: 2

Abstract

This paper proposes an oscillator design capable of achieving high data transmission rates of up to 1.5 Gbps with a modulation scheme of 256 QAM at E-band frequencies. A low phase noise oscillator and high quality factor resonator are implemented in this work. The proposed cavity resonator design is embedded in a low cost gold plated brass casing. Eigenmode simulations yield an unloaded quality factor in excess of 5800 at 20 GHz. The low phase noise oscillator comprises of commercially available and low cost components surface mounted on a low loss millimeter-wave substrate. The proposed 20 GHz oscillator makes use of a frequency doubler to drive a sub-harmonically pumped mixer aimed for E-band frequencies of 80 GHz. The expected phase noise of the oscillator is better than −103 dbc/Hz with 100 kHz offset while operating at 80 GHz.
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一种用于高数据速率e波段收发器的低成本振荡器
本文提出了一种能够在e波段频率下采用256 QAM调制方案实现高达1.5 Gbps的高数据传输速率的振荡器设计。实现了低相位噪声振荡器和高品质因数谐振器。所提出的腔谐振器设计嵌入在低成本的镀金黄铜外壳中。特征模式模拟在20 GHz时产生的无负载质量因子超过5800。低相位噪声振荡器由市售的低成本元件组成,表面安装在低损耗毫米波衬底上。所提出的20 GHz振荡器利用倍频器驱动针对80 GHz e频段频率的次谐波泵浦混频器。在工作于80 GHz时,振荡器的相位噪声预期优于- 103 dbc/Hz,偏移量为100 kHz。
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