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A Fully Integrated Multi-Band Multi-Output Synthesizer with Wide-Locking-Range 1/3 Injection Locked Divider Utilizing Self-Injection Technique for Multi-Band Microwave Systems

机译:具有自锁技术的宽锁定范围1/3注入锁定分频器的全集成多频带多输出合成器,用于多频带微波系统

摘要

This dissertation reports the development of a new multi-band multi-output synthesizer, 1/2 dual-injection locked divider, 1/3 injection-locked divider with phase-tuning, and 1/3 injection-locked divider with self-injection using 0.18-micrometer CMOS technology. The synthesizer is used for a multi-band multi-polarization radar system operating in the K- and Ka-band.The synthesizer is a fully integrated concurrent tri-band, tri-output phase-locked loop (PLL) with divide-by-3 injection locked frequency divider (ILFD). A new locking mechanism for the ILFD based on the gain control of the feedback amplifier is utilized to enable tunable and enhanced locking range which facilitates the attainment of stable locking states. The PLL has three concurrent multiband outputs: 3.47-4.313 GHz, 6.94-8.626 GHz and 19.44-21.42-GHz. High second-order harmonic suppression of 62.2 dBc is achieved without using a filter through optimization of the balance between the differential outputs. The proposed technique enables the use of an integer-N architecture for multi-band and microwave systems, while maintaining the benefit of the integer-N architecture; an optimal performance in area and power consumption. The 1/2 dual-ILFD with wide locking range and low-power consumption is analyzed and designed together with a divide-by-2 current mode logic (CML) divider. The 1/2 dual-ILFD enhances the locking range with low-power consumption through optimized load quality factor (QL) and output current amplitude (iOSC) simultaneously. The 1/2 dual-ILFD achieves a locking range of 692 MHz between 7.512 and 8.204 GHz. The new 1/2 dual-ILFD is especially attractive for microwave phase-locked loops and frequency synthesizers requiring low power and wide locking range. The 3.5-GHz divide-by-3 (1/3) ILFD consists of an internal 10.5-GHz Voltage Controlled Oscillator (VCO) functioning as an injection source, 1/3 ILFD core, and output inverter buffer. A phase tuner implemented on an asymmetric inductor is proposed to increase the locking range.The other divide-by-3 ILFD utilizes self-injection technique. The self-injection technique substantially enhances the locking range and phase noise, and reduces the minimum power of the injection signal needed for the 1/3 ILFD. The locking range is increased by 47.8 % and the phase noise is reduced by 14.77 dBc/Hz at 1-MHz offset.
机译:本文报道了一种新型的多频带多输出合成器,1/2双注入锁定分频器,带相位调谐的1/3注入锁定分频器和1/3注入锁定自分频器的开发。 0.18微米CMOS技术。该合成器用于在K波段和Ka波段运行的多波段多极化雷达系统。该合成器是完全集成的并发三频,三输出锁相环(PLL),具有分频比。 3个注入锁定分频器(ILFD)。利用基于反馈放大器的增益控制的ILFD的新锁定机制,可以实现可调范围和增强的锁定范围,从而有助于实现稳定的锁定状态。 PLL具有三个并发的多频带输出:3.47-4.313 GHz,6.94-8.626 GHz和19.44-21.42-GHz。通过优化差分输出之间的平衡,无需使用滤波器即可实现62.2 dBc的高二阶谐波抑制。所提出的技术使得能够在多频带和微波系统中使用整数N架构,同时保持整数N架构的优势。面积和功耗方面的最佳性能。与2分频电流模式逻辑(CML)分压器一起分析和设计了具有宽锁定范围和低功耗的1/2双ILFD。 1/2双ILFD通过同时优化的负载质量因子(QL)和输出电流幅度(iOSC)来以低功耗增强锁定范围。 1/2双ILFD在7.512和8.204 GHz之间实现692 MHz的锁定范围。新型1/2 Dual-ILFD特别适合要求低功耗和宽锁定范围的微波锁相环和频率合成器。 3.5 GHz 3分频(1/3)ILFD由一个内部10.5 GHz压控振荡器(VCO)充当注入源,1/3 ILFD内核和输出反相器缓冲器组成。提出了一种在非对称电感器上实现的相位调谐器,以增加锁定范围。另一种三分频ILFD利用自注入技术。自注入技术极大地增加了锁定范围和相位噪声,并降低了1/3 ILFD所需的注入信号的最小功率。在1MHz偏移下,锁定范围增加了47.8%,相位噪声降低了14.77 dBc / Hz。

著录项

  • 作者

    Lee Sang Hun;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 19:41:57

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