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Low Power and High Efficiency VCO and Quadrature VCO Circuits Constructed with Transconductance-Enhanced Colpitts Oscillator Feature

机译:具有跨导增强的Colpitts振荡器功能的低功耗,高效率VCO和正交VCO电路

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摘要

This work presents a technique to enhance the performance of the conventional PMOS Colpitts VCO circuit. This technique is accomplished by adding an NMOS cross-coupled pair under the traditional differential Colpitts VCO to enhance the oscillator startup condition and its efficiency. The analytics also support this viewpoint and present a device-choosing method to optimize the output power and phase noise. This new VCO can also be applied to realize the QVCO circuit, because the coupling transistors can be placed in parallel, connecting with the transistors in the NMOS cross-coupled pair, to achieve the proper coupling between individual VCOs. To verify the proposed design concept, two prototypes, which are VCO and QVCO operated at 2.4 GHz and fabricated in CMOS 0.25-μm technology, are designed and tested. The measurement results show that the performance of VCO demonstrates a FOM of about 180dBC/Hz, and the phase noise of QVCO is -116 dBc/Hz at the 1 MHz offset from oscillation frequency.
机译:这项工作提出了一种增强传统PMOS Colpitts VCO电路性能的技术。通过在传统的差分Colpitts VCO下添加NMOS交叉耦合对来增强振荡器的启动条件及其效率,可以实现该技术。分析也支持这种观点,并提出了一种设备选择方法来优化输出功率和相位噪声。这种新的VCO还可用于实现QVCO电路,因为可以将耦合晶体管并联放置,并与NMOS交叉耦合对中的晶体管连接,以实现各个VCO之间的正确耦合。为了验证所提出的设计概念,设计并测试了两个原型,分别是工作在2.4 GHz的VCO和QVCO,并采用CMOS0.25-μm技术制造。测量结果表明,VCO的性能表现出约180dBC / Hz的FOM,在偏离振荡频率1 MHz的情况下,QVCO的相位噪声为-116 dBc / Hz。

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