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Design of frequency synthesizers for short range wireless transceivers.

机译:短距离无线收发器的频率合成器设计。

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摘要

The rapid growth of the market for short-range wireless devices, with standards such as Bluetooth and Wireless LAN (IEEE 802.11) being the most important, has created a need for highly integrated transceivers that target drastic power and area reduction while providing a high level of integration. The radio section of the devices designed to establish communications using these standards is the limiting factor for the power reduction efforts. A key building block in a transceiver is the frequency synthesizer, since it operates at the highest frequency of the system and consumes a very large portion of the total power in the radio. This dissertation presents the basic theory and a design methodology of frequency synthesizers targeted for short-range wireless applications. Three different examples of synthesizers are presented. First a frequency synthesizer integrated in a Bluetooth receiver fabricated in 0.35mum CMOS technology. The receiver uses a low-IF architecture to downconvert the incoming Bluetooth signal to 2MHz.; The second synthesizer is integrated within a dual-mode receiver capable of processing signals of the Bluetooth and Wireless LAN (IEEE 802.11b) standards. It is implemented in BiCMOS technology and operates the voltage controlled oscillator at twice the required frequency to generate quadrature signals through a divide-by-two circuit. A phase switching prescaler is featured in the synthesizer. A large capacitance is integrated on-chip using a capacitance multiplier circuit that provides a drastic area reduction while adding a negligible phase noise contribution.; The third synthesizer is an extension of the second example. The operation range of the VCO is extended to cover a frequency band from 4.8GHz to 5.85GHz. By doing this, the synthesizer is capable of generating LO signals for Bluetooth and IEEE 802.11a, b and g standards. The quadrature output of the 5--6 GHz signal is generated through a first order RC-CR network with an automatic calibration loop. The loop uses a high frequency phase detector to measure the deviation from the 90° separation between the I and Q branches and implements an algorithm to minimize the phase errors between the I and Q branches and their differential counterparts.
机译:短距离无线设备市场的快速增长,其中最重要的标准是蓝牙和无线局域网(IEEE 802.11),这导致了对高度集成的收发器的需求,这些收发器的目标是大幅降低功耗和面积,同时提供高水平整合。设计为使用这些标准建立通信的设备的无线电部分是降低功耗的限制因素。收发器中的一个关键组成部分是频率合成器,因为它以系统的最高频率工作,并且消耗了无线电中总功率的很大一部分。本文提出了针对短距离无线应用的频率合成器的基本理论和设计方法。给出了合成器的三个不同示例。首先,一种频率合成器集成在以0.35mum CMOS技术制造的蓝牙接收器中。接收器采用低中频架构,将输入的蓝牙信号下变频为2MHz。第二个合成器集成在能够处理蓝牙和无线局域网(IEEE 802.11b)标准信号的双模接收机中。它以BiCMOS技术实现,并以所需频率的两倍运行压控振荡器,以通过二分频电路生成正交信号。合成器具有相位切换预分频器。使用电容倍增器电路将大电容集成在芯片上,该电路可以大幅度减小面积,同时增加可忽略的相位噪声。第三合成器是第二示例的扩展。 VCO的工作范围已扩展到涵盖4.8GHz至5.85GHz的频带。通过这样做,合成器能够为蓝牙和IEEE 802.11a,b和g标准生成LO信号。 5--6 GHz信号的正交输出是通过带有自动校准环路的一阶RC-CR网络生成的。该回路使用一个高频相位检测器来测量与I和Q分支之间90°间隔的偏差,并实现一种算法,以最小化I和Q分支及其差分对之间的相位误差。

著录项

  • 作者

    Valero Lopez, Ari Yakov.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 253 p.
  • 总页数 253
  • 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

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