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RF receiver front-ends in deep sub-m...
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The University of Texas at Dallas.
RF receiver front-ends in deep sub-micron CMOS for mobile terminal.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
RF receiver front-ends in deep sub-micron CMOS for mobile terminal.
作者:
Yanduru, Naveen Krishna.
面頁冊數:
220 p.
附註:
Source: Dissertation Abstracts International, Volume: 72-07, Section: B, page: .
附註:
Advisers: Poras T. Balsara; Ranjit Gharpurey.
Contained By:
Dissertation Abstracts International72-07B.
標題:
Engineering, Electronics and Electrical.
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3455606
ISBN:
9781124635958
RF receiver front-ends in deep sub-micron CMOS for mobile terminal.
Yanduru, Naveen Krishna.
RF receiver front-ends in deep sub-micron CMOS for mobile terminal.
- 220 p.
Source: Dissertation Abstracts International, Volume: 72-07, Section: B, page: .
Thesis (Ph.D.)--The University of Texas at Dallas, 2011.
RF receiver front-end design for the mobile terminals has become a challenging task. The need to share the receiver hardware over multiple RF frequency bands and RF standards; the drive toward reduction in external components and filters; low power consumption targets; deep sub-micron CMOS implementation for SoC applications; and high dynamic range requirements have created an imposing design challenge for the RF receiver front-end. In this research we have taken an objective look at this design challenge and addressed it at various levels.
ISBN: 9781124635958Subjects--Topical Terms:
226981
Engineering, Electronics and Electrical.
RF receiver front-ends in deep sub-micron CMOS for mobile terminal.
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RF receiver front-ends in deep sub-micron CMOS for mobile terminal.
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Source: Dissertation Abstracts International, Volume: 72-07, Section: B, page: .
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Advisers: Poras T. Balsara; Ranjit Gharpurey.
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RF receiver front-end design for the mobile terminals has become a challenging task. The need to share the receiver hardware over multiple RF frequency bands and RF standards; the drive toward reduction in external components and filters; low power consumption targets; deep sub-micron CMOS implementation for SoC applications; and high dynamic range requirements have created an imposing design challenge for the RF receiver front-end. In this research we have taken an objective look at this design challenge and addressed it at various levels.
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In this research, multiple RF receiver front-ends in various deep sub-micron CMOS process technologies have been designed for various cellular standards. The designs utilize different architectures in order to assess the trade-offs involved with architecture selection. Innovative circuit design techniques and a novel compensation/calibration scheme have been presented.
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Comprehensive system analysis of W-CDMA using modulated signals has been detailed in this work to illustrate the significance of system level analysis in achieving optimized RF receiver front-end design. Most notably, high dynamic range multi-standard capable designs in deep sub-micron CMOS that achieved high levels of integration by eliminating inter-stage SAW filters and sometimes external LNAs that have been otherwise used in state-of-the-art designs are demonstrated in this research.
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