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Analysis and Design of a Phase-Tunable Source Injection-Coupled LC Quadrature Oscillator

机译:相可调源注入耦合LC正交振荡器的分析和设计

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This paper presents the design and analysis of phase-tunable injection-coupled quadrature oscillator (PT-IC-QO). Like other LC QOs, the mismatches between LC tanks are the main source of phase error in this oscillator. Using tail current in network coupling is novel approach to design new IC-QO. One of the advantages using added extra tail current in coupling network is control of coupling factor and also that it drastically reduces supply noise over classic IC-QO. Analysis and simulation result show that phase error can be controlled and cancelled simply by using tunable tail current in network coupling while that is difficultly controlled in the previse work. The basic idea of the presented design to reduce phase error due to tank mismatches is its compensation with an intentional mismatch between -side injection current. Based on the equations, a new tunable source-injected QO is proposed which is able to cancel the phase errors up to , without undesirable impact on phase noise. To evaluate the proposed analysis and consequent designed quadrature oscillator, a 5.4-GHz CMOS PT-QO is designed and simulated using the practical TSMC CMOS technology.
机译:本文介绍了相位可调注入耦合正交振荡器(PT-IC-QO)的设计和分析。像其他LC QO一样,LC振荡电路之间的失配是相位误差的主要来源。在网络耦合中使用尾电流是设计新型IC-QO的新颖方法。在耦合网络中使用额外的额外尾电流的优点之一是控制耦合因数,并且与传统的IC-QO相比,它可以大大降低电源噪声。分析和仿真结果表明,通过在网络耦合中使用可调节的尾电流,可以简单地控制和消除相位误差,而在前期工作中很难控制相位误差。提出的设计以减少由于储罐失配引起的相位误差的基本思想是通过有意侧注入电流之间的失配进行补偿。基于这些方程,提出了一种新的可调谐源注入QO,该QO可以抵消高达±0的相位误差,而不会对相位噪声产生不良影响。为了评估提出的分析和随后设计的正交振荡器,使用实际的TSMC CMOS技术设计并仿真了5.4 GHz CMOS PT-QO。

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