在0.18 /spl mu/m的数字CMOS工艺中,最佳变压器耦合,5 GHz正交压控振荡器

A. Ravi, K. Soumyanath, R. Bishop, B. Bloechel, L. Carley
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引用次数: 27

摘要

我们提出了一种基于正交元件之间变压器耦合的5 GHz压控正交振荡器。该振荡器采用0.18 /spl mu/m的低电压数字CMOS工艺制造,具有损耗衬底(/spl rho//spl sim/10mohm-cm)和薄的高电阻率金属化。完全集成的低Q (/spl sim/4)螺旋形成谐振器中的变压器绕组。对耦合进行了优化,以最小的相位噪声退化获得正交精度。该VCO实现了/spl sim/1 GHz的调谐范围,在1 MHz偏移时相位噪声高达-123 dBc/Hz,同时在1.6 V时吸收7.5 mA。利用片上正交信号构建的图像抑制接收机可提供43 dB的图像抑制,比1/sup / 0/正交匹配效果更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An optimally transformer coupled, 5 GHz quadrature VCO in a 0.18 /spl mu/m digital CMOS process
We present a 5 GHz, voltage controlled quadrature oscillator, based on transformer coupling between the quadrature components. The oscillator is fabricated in a 0.18 /spl mu/m, low voltage digital CMOS process with a lossy substrate (/spl rho//spl sim/10mohm-cm) and thin, high resistivity metallization. Fully integrated low Q (/spl sim/4) spirals form the transformer windings in the resonators. The coupling has been optimized to obtain quadrature accuracy with minimum phase noise degradation. The VCO achieves a tuning range of /spl sim/1 GHz, and a phase noise of up to -123 dBc/Hz at a 1 MHz offset, while drawing 7.5 mA at 1.6 V. An image reject receiver built using the onwafer quadrature signals, provides 43 dB of image rejection, confirming better than 1/sup 0/ of quadrature matching.
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