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Titlebook: CMOS Data Converters for Communications; Mikael Gustavsson,J. Jacob Wikner,Nianxiong Nick T Book 2002 Springer Science+Business Media New

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書目名稱CMOS Data Converters for Communications
編輯Mikael Gustavsson,J. Jacob Wikner,Nianxiong Nick T
視頻videohttp://file.papertrans.cn/221/220345/220345.mp4
叢書名稱The Springer International Series in Engineering and Computer Science
圖書封面Titlebook: CMOS Data Converters for Communications;  Mikael Gustavsson,J. Jacob Wikner,Nianxiong Nick T Book 2002 Springer Science+Business Media New
描述.CMOS Data Converters for Communications. distinguishesitself from other data converter books by emphasizing system-relatedaspects of the design and frequency-domain measures. It explains indetail how to derive data converter requirements for a givencommunication system (baseband, passband, and multi-carrier systems).The authors also review CMOS data converter architectures and discusstheir suitability for communications. The rest of the book isdedicated to high-performance CMOS data converter architecture andcircuit design. Pipelined ADCs, parallel ADCs with an improved passivesampling technique, and oversampling ADCs are the focus for ADCarchitectures, while current-steering DAC modeling and implementationare the focus for DAC architectures. The principles of theswitched-current and the switched-capacitor techniques are reviewedand their applications to crucial functional blocks such asmultiplying DACs and integrators are detailed. The book outlines thedesign of the basic building blocks such as operational amplifiers,comparators, and reference generators with emphasis on the practicalaspects. To operate analog circuits at a reduced supply voltage,special circuit techniques are n
出版日期Book 2002
關(guān)鍵詞CMOS; Generator; analog; analog circuit design; communication; communication system; modeling
版次1
doihttps://doi.org/10.1007/b117690
isbn_softcover978-1-4419-4968-4
isbn_ebook978-0-306-47305-0Series ISSN 0893-3405
issn_series 0893-3405
copyrightSpringer Science+Business Media New York 2002
The information of publication is updating

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Mikael Gustavsson,J. Jacob Wikner,Nianxiong Nick T
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Springer Series in Materials Sciencem, we usually need to add 1~2 bit (or even more) design margin depending on the system trade-offs. Also coding can reduce the data converter requirements by 3~6 dB, which has not been treated in this chapter but can be easily added to the equations. As far as distortions are concerned, they usually
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Pavel Topala,Vitalie Besliu,Laurentiu Marinrelation to the input signal and linearity errors in the multi-bit DAC will cause noise, not distortion. In addition to this the DAC linearity error is noise shaped, which significantly reduces the required linearity of the DAC. We have also discussed SC implementations of oversampled sigma-delta co
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Data Converter Requirements for Communications, requirements. In order to meet a communication system specification, we have derived minimum data converter requirements that are mostly influenced by the error probability and the peak-to-average ratio. We have also discussed optimum data converters for ADSL that are a function of application envi
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Overview of D/A Converter Architectures,outlined some possible techniques for implementation, such as the charge-redistribution, current-steering, etc. As a guidance, we have summarized a number of reported performances of DACs that are suitable for higher-speed applications in an overviewing figure and table.
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