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A 10 mW, 4 GHz CMOS phase-locked loop with dual-mode tuning technique and partly-integrated loop filter

机译:具有双模调谐技术和部分集成环路滤波器的10 mW,4 GHz CMOS锁相环

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This publication presents the design of a 4 GHz Integer-N frequency synthesizer with dual-mode tuning technique. The 3/sup rd/ order loop filter is partly integrated. The intended application is a direct conversion UMTS transmitter. The design has been realized using a 0.12 /spl mu/m standard CMOS-process. The proposed advanced dual-mode tuning technique is based on digital coarse-tuning with subsequent analog fine-tuning. Therefore, the voltage controlled oscillator (VCO) features both, a digital and an analog tuning interface. This results in eight equidistant frequency bands. During coarse-tuning a digital control unit selects the correct frequency band for a certain frequency channel. The remaining frequency deviation is canceled through fine tuning, which is done by a conventional charge pump phase-locked loop (PLL). This results in lower spurious emission due to the smaller VCO gain. Lock-in times of 125 /spl mu/s were achieved. The output frequency can be tuned from 3.8 GHz to 4.05 GHz with a channel spacing of 400 kHz. Except for the VCO with a supply voltage of 2.2 V and a current consumption of 1.9 mA to achieve higher output swing, the synthesizer is biased at 1.5 V consuming 4 mA. Thus, the overall power consumption can be stated with 10.2 mW.
机译:该出版物介绍了具有双模调谐技术的4 GHz Integer-N频率合成器的设计。 3 / suprd /阶环路滤波器已部分集成。预期的应用是直接转换UMTS发射机。该设计已使用0.12 / spl mu / m的标准CMOS工艺实现。提出的高级双模式调谐技术基于数字粗调和随后的模拟精调。因此,压控振荡器(VCO)具有数字和模拟调谐接口。这导致八个等距频带。在粗调期间,数字控制单元会为某个频道选择正确的频段。剩余的频率偏差可以通过微调来消除,这可以通过传统的电荷泵锁相环(PLL)来完成。由于VCO增益较小,因此杂散发射较低。锁定时间为125 / spl mu / s。输出频率可以在3.8 GHz至4.05 GHz的范围内以400 kHz的通道间隔进行调谐。除了VCO具有2.2 V的电源电压和1.9 mA的电流消耗以实现更高的输出摆幅之外,该合成器的偏置电压为1.5 V,消耗了4 mA的电流。因此,总功耗可以表示为10.2 mW。

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