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Designs of K-Band Divide-by-2 and Divide-by-3 Injection-Locked Frequency Divider With Darlington Topology

机译:具有达林顿拓扑结构的K频段二分频和三分频注入锁定分频器的设计

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This paper presents divide-by-2 and divide-by-3 injection-locked frequency dividers (ILFDs) using a Darlington cell in a TSMC 0.18-m CMOS process. The Darlington cell has higher transconductance than the traditional cross-coupled common source cell for free-running oscillator that reduces the power consumption of ILFDs. Besides, an LC resonance technique is used in the proposed divide-by-2 ILFD to achieve lower power consumption and wide locking range. This work provides an analytic method to choose the injector size for widening the locking range and lowering the power consumption. The measured locking range of the proposed divide-by-2 ILFD is from 20.5 to 22.9 GHz. The measured operation range of the divide-by-3 ILFD is from 24.71 to 28 GHz. The measured phase noises of two dividers under locked condition are and dBc/Hz at an offset of 1 MHz when the input referred signals have phase noises of and dBc/Hz, respectively. Meanwhile, both phase noise differences with respect to injection signal are 5.76 and 8.85 dBc, which are close to the theoretical values of 6 and 9.5 dBc. The core power consumptions are 1.73 and 5.13 mW with the supply voltages of 1.2 and 1.45 V, and the chip sizes are 0.80.75 mm and 0.770.79 mm, respectively.
机译:本文提出了一种采用达林顿单元的台积电0.18米CMOS工艺中的2分频和3分频注入锁定分频器(ILFD)。与用于自由运行振荡器的传统交叉耦合公共源单元相比,达林顿单元具有更高的跨导,从而降低了ILFD的功耗。此外,在所建议的二分频ILFD中使用了LC谐振技术,以实现更低的功耗和更宽的锁定范围。这项工作为选择喷油器尺寸提供了一种分析方法,以扩大锁定范围并降低功耗。建议的2分频ILFD的测量锁定范围为20.5至22.9 GHz。三分频ILFD的测量工作范围为24.71至28 GHz。当输入参考信号的相位噪声分别为和dBc / Hz时,在锁定条件下两个分频器在锁定条件下测得的相位噪声为和,dBc / Hz为1 MHz。同时,相对于注入信号的两个相位噪声差分别为5.76和8.85 dBc,接近6和9.5 dBc的理论值。内核功耗分别为1.73和5.13 mW,电源电压为1.2和1.45 V,芯片尺寸分别为0.80.75 mm和0.770.79 mm。

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