Application of CPW based spiral-shaped defected ground structure to the reduction of phase noise in V-band MMIC oscillator

Young-Taek Lee, Jongsik Lim, Sungwon Kim, Jaechun Lee, S. Nam, K. Seo, D. Ahn
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引用次数: 24

Abstract

A CPW based spiral-shaped defected ground structure (DGS) is used in a MMIC for the first time to reduce the phase noise in a V-band MMIC oscillator. The parallel equivalent L-C components, resulting from defects on both ground planes in the CPW, produce a band rejection property. Hence the spiral-shaped DGS can be employed at the gate circuit of the series feedback oscillator to improve the quality factor of the oscillator. A V-band CPW MMIC oscillator, incorporated with this DGS resonator, was designed, fabricated and measured. To demonstrate the effect of the spiral-shaped DGS on phase noise, another oscillator with only a conventional open stub CPW line was also tested. The phase noise performance of the oscillator with the spiral-shaped DGS is improved by 8 dB compared to that of the oscillator without the DGS.
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基于CPW的螺旋形缺陷接地结构在v波段MMIC振荡器相位噪声降低中的应用
为了降低v波段MMIC振荡器的相位噪声,首次将基于CPW的螺旋形缺陷接地结构(DGS)应用于MMIC中。由于CPW中两个接平面上的缺陷而产生的平行等效L-C分量产生带抑制特性。因此,螺旋形DGS可用于串联反馈振荡器的门电路,以提高振荡器的品质因子。设计、制作并测量了与该DGS谐振器相结合的v波段CPW MMIC振荡器。为了证明螺旋形DGS对相位噪声的影响,还测试了另一个仅使用传统开路CPW线的振荡器。与不加DGS的振荡器相比,加了螺旋DGS的振荡器的相位噪声性能提高了8 dB。
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