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LNA and mixer designs for multi-band receiver front-ends.

机译:适用于多频段接收器前端的LNA和混频器设计。

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摘要

With the proliferation of wireless standards and frequency bands, the manufacturers of consumer electronics have tried to integrate many features in a single hand-held device. This has given rise to a need for receivers that are compatible with as many standards and frequency bands as possible. Most current integrated multi-band receivers rely on multiple receiver front-ends to process signals at different bands. The major drawback of this approach is that each front-end must be individually optimized, resulting in longer design-time and higher silicon die areas. This is due to the number of circuit blocks and interface complexity. In addition, this type of implementation is highly standard-specific: thus, it is likely that a major redesign would be required if the same topology were used for different standards.;The primary objective of this research is to investigate efficient ways of implementing such a receiver front-end with minimal cost, power consumption, and design complexity. CMOS will be the targeted process technology for this design, due to the opportunities for analog-digital system integration and cost-reduction. Despite its attractiveness, designing a front-end for multi-band operations in deep-submicron CMOS technology is non-trivial. The main challenge lies in maintaining moderate gain, noise figure, and linearity at minimum current consumption across a wide frequency spectrum with the abating supply voltage.;In this work, we investigate and discuss several receiver front-end building blocks and system designs, with a focus on the issues that arise when designing a multiband receiver front-end. In addition, we propose several circuit building blocks and systems, and implement design prototypes to validate the possibilities. The results suggest that by exploiting high-speed CMOS transistors and innovative low-voltage design techniques, it is possible to design a low-voltage, low-power, wideband receiver front-end path that is capable of processing signals using the proposed architectures.
机译:随着无线标准和频带的激增,消费电子产品制造商已尝试将许多功能集成到单个手持设备中。这引起了对与尽可能多的标准和频带兼容的接收机的需求。当前大多数集成多频带接收器都依靠多个接收器前端来处理不同频带上的信号。这种方法的主要缺点是必须分别优化每个前端,从而导致更长的设计时间和更大的硅芯片面积。这是由于电路块的数量和接口的复杂性。此外,这种类型的实现是高度特定于标准的:因此,如果将相同的拓扑用于不同的标准,则可能需要进行重大的重新设计。;本研究的主要目标是研究实现此类拓扑的有效方法具有最小成本,功耗和设计复杂性的接收器前端。由于模数系统集成和降低成本的机会,CMOS将成为该设计的目标工艺技术。尽管具有吸引力,但在深亚微米CMOS技术中为多频带操作设计前端并非易事。主要的挑战在于在较低的电源消耗和宽泛的电源电压下保持适度的增益,噪声系数和线性度;在这项工作中,我们研究和讨论了几种接收机前端构建模块和系统设计,将重点放在设计多频带接收器前端时出现的问题上。此外,我们提出了几种电路构建模块和系统,并实现了设计原型以验证可能性。结果表明,通过利用高速CMOS晶体管和创新的低压设计技术,可以设计一种能够使用所提出的架构处理信号的低压,低功耗,宽带接收机前端路径。

著录项

  • 作者

    Poobuapheun, Nuntachai.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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