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Process and temperature compensated wideband injection locked frequency dividers and their application to low-power 2.4-GHz frequency synthesizers.

机译:工艺和温度补偿宽带注入锁定分频器及其在低功率2.4 GHz频率合成器中的应用。

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摘要

There has been a dramatic increase in wireless awareness among the user community in the past five years. The 2.4-GHz Industrial, Scientific and Medical (ISM) band is being used for a diverse range of applications due to the following reasons. It is the only unlicensed band approved worldwide and it offers more bandwidth and supports higher data rates compared to the 915-MHz ISM band. The power consumption of devices utilizing the 2.4-GHz band is much lower compared to the 5.2-GHz ISM band. Protocols like Bluetooth and Zigbee that utilize the 2.4-GHz ISM band are becoming extremely popular.; Bluetooth is an economic wireless solution for short range connectivity between PC, cell phones, PDAs, Laptops etc. The Zigbee protocol is a wireless technology that was developed as an open global standard to address the unique needs of low-cost, low-power, wireless sensor networks. Wireless sensor networks are becoming ubiquitous, especially after the recent terrorist activities. Sensors are employed in strategic locations for real-time environmental monitoring, where they collect and transmit data frequently to a nearby terminal. The devices operating in this band are usually compact and battery powered. To enhance battery life and avoid the cumbersome task of battery replacement, the devices used should consume extremely low power. Also, to meet the growing demands cost and sized has to be kept low which mandates fully monolithic implementation using low cost process.; CMOS process is extremely attractive for such applications because of its low cost and the possibility to integrate baseband and high frequency circuits on the same chip. A fully integrated solution is attractive for low power consumption as it avoids the need for power hungry drivers for driving off-chip components. The transceiver is often the most power hungry block in a wireless communication system. The frequency divider (prescaler) and the voltage controlled oscillator in the transmitter's frequency synthesizer are among the major sources of power consumption. There have been a number of publications in the past few decades on low-power high-performance VCOs. Therefore this work focuses on prescalers.; A class of analog frequency dividers called as Injection-Locked Frequency Dividers (ILFD) was introduced in the recent past as low power frequency division. ILFDs can consume an order of magnitude lower power when compared to conventional flip-flop based dividers. However the range of operation frequency also knows as the locking range is limited. ILFDs can be classified as LC based and Ring based. Though LC based are insensitive to process and temperature variation, they cannot be used for the 2.4-GHz ISM band because of the large size of on-chip inductors at these frequencies. This causes a lot of valuable chip area to be wasted. Ring based ILFDs are compact and provide a low power solution but are extremely sensitive to process and temperature variations. Process and temperature variation can cause ring based ILFD to loose lock in the desired operating band.; The goal of this work is to make the ring based ILFDs useful for practical applications. Techniques to extend the locking range of the ILFDs are discussed. A novel and simple compensation technique is devised to compensate the ILFD and keep the locking range tight with process and temperature variations. The proposed ILFD is used in a 2.4-GHz frequency synthesizer that is optimized for fractional-N synthesis. Measurement results supporting the theory are provided.
机译:在过去的五年中,用户社区的无线意识有了极大的提高。由于以下原因,2.4 GHz工业,科学和医学(ISM)频段已用于多种应用。它是全球唯一获得批准的非授权频段,与915 MHz ISM频段相比,它提供更多的带宽并支持更高的数据速率。与5.2 GHz ISM频段相比,使用2.4 GHz频段的设备的功耗要低得多。利用2.4 GHz ISM频段的协议如Bluetooth和Zigbee变得非常流行。蓝牙是一种经济的无线解决方案,可用于PC,手机,PDA,笔记本电脑等之间的短距离连接。Zigbee协议是一项无线技术,已开发为一种开放的全球标准,可满足低成本,低功耗,无线传感器网络。无线传感器网络变得无处不在,尤其是在最近的恐怖活动之后。传感器用于重要的地点,以进行实时环境监控,在那里传感器经常收集数据并将其传输到附近的终端。在此频段运行的设备通常是紧凑型的,并且由电池供电。为了延长电池寿命并避免繁琐的电池更换任务,所使用的设备应消耗极低的功率。另外,为了满足不断增长的需求,必须将成本和尺寸保持在较低水平,这要求使用低成本工艺完全实现整体。 CMOS工艺对于此类应用极为有吸引力,因为它的低成本以及将基带和高频电路集成在同一芯片上的可能性。完全集成的解决方案对于低功耗具有吸引力,因为它避免了用于驱动片外组件的耗电驱动器。收发器通常是无线通信系统中最耗电的模块。发射机频率合成器中的分频器(预分频器)和压控振荡器是功耗的主要来源。在过去的几十年中,已经有许多关于低功耗高性能VCO的出版物。因此,这项工作着重于预分频器。近年来,称为低功耗分频器的一类模拟分频器被称为注入锁定分频器(ILFD)。与传统的基于触发器的分频器相比,ILFD的功耗降低了一个数量级。然而,由于锁定范围是有限的,因此操作频率的范围也已知。 ILFD可以分为基于LC和基于Ring。尽管基于LC的器件对过程和温度变化不敏感,但由于在这些频率下片上电感器的尺寸较大,因此它们不能用于2.4 GHz ISM频段。这导致浪费了许多宝贵的芯片面积。基于环的ILFD紧凑且提供低功耗解决方案,但对工艺和温度变化极为敏感。工艺和温度变化会导致基于环的ILFD松开锁定在所需的工作频带。这项工作的目标是使基于环的ILFD对实际应用有用。讨论了扩展ILFD锁定范围的技术。设计了一种新颖而简单的补偿技术来补偿ILFD,并随着过程和温度变化而保持锁定范围紧密。所提出的ILFD用于2.4 GHz频率合成器中,该频率合成器针对小数N合成进行了优化。提供了支持该理论的测量结果。

著录项

  • 作者

    Vijayaraghavan, Rajagopal.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:39:51

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