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本帖最后由 populbb 于 2013-7-1 20:58 编辑
Analog Circuit Design
High-Speed Analog-to-Digital Converters, Mixed Signal Design; PLLs and Synthesizers
Plassche, Rudy J. van de; Huijsing, Johan; Sansen, Willy M.C. (Eds.)
2000, VII, 408 p.
This volume of Analog Circuit Design concentrates on 3 topics:
High-Speed Analog-to-Digital Converters, Mixed Signal Design and PLLs and Synthesizers. The book comprises 6 papers on each topic written by internationally recognized experts. These papers have a tutorial nature aimed at improving the design of analog circuits. The book is divided into 3 parts:
Part I, High-Speed Analog-to-Digital Converters, describes the latest techniques for producing analog-to-digital converters for applications in disk drives, radio circuits, XDSL and super HiFi audio conversion. Converters having resolutions between 7-bit and 12-bit using CMOS techniques are presented. A 13-bit bandpass sigma-delta modulator for IF signal conversion concludes this part.
Part II, Mixed Signal Design, presents papers that detail nearly all known techniques and design issues for mixed signal circuits using CAD tools. Applications for telecom, sigma-delta converters, systems-on-a-chip and RF circuitry are described.
Part III, PLLs and Synthesizers, illustrates up-to-date techniques for combination of inductors on a CMOS chip together with PLL techniques to obtain low-noise frequency synthesizers for telecom applications. Special attention is paid to fractional N synthesizers using sigma-delta algorithms.
Analog Circuit Design is an essential reference source for analog design engineers and researchers wishing to keep abreast with the latest developments in the field. The tutorial nature of the contributions also makes it suitable for use in an advanced design course.
Table of contents
Preface. Part I: High-Speed Analog-to-Digital Converters. Introduction. Speed-Power-Accuracy Trade-off in high-speed Analog-to-digital converters: Now in the future...; M. Steyaert, K. Uyttenhove. A dual model 700 Msamples/s 6-bit, 200 Msamples/s 7-bit A/D converter in 0.25 micron digital CMOS; K. Nagaraj, et al. A 3.3 V 12b 50-Ms/s A/D converter in 0.6 micron CMOS with over 80-dB SFDR; H. Pan, et al. A 10-bit 20-30 MSPS CMOS subranging ADC with 9.5 Effective bits at Nyquist; B. Brandt, J. Lutsky. A 2.5 MHz output-rate delta-sigma ADC with 90dB SNR and 102dB SFDR; I. Fujimori, et al. A 13-bit bandpass sigma-delta modulator for 10.7 MHz digital IF with a MHz sampling rate; J. van Engelen. Part II: Mixed Signal Design. Introduction. System-level design issues for mixed-signal ICs and telecom frontends; G. Gielen. Mixed signal: Design issues; H. Casier. Top-down design of mixed-signal circuits; K. Kundert. Computer aided design for integrated systems; F.M. Stubbe. Mixed mode sigma-delta ADC design for high-quality audio; G. Cesura, et al. Mixed mode telecom design; D.M.W. Leenaerts, P.W.H. de Vreede. Part III: PLLs and Synthesizers. Introduction. On placing multiple inductor-based VCOs on the same mixed-signal substrate; J. Parker, M. Altmann. Fully integrated CMOS frequency synthesizers for wireless communications; B. De Muer, M. Steyaert. Design and optimization of RFCMOS-circuits for integrated PLL's and synthesizers; M. Tiebout. Frequency synthesis for integrated transceivers; J.-W. Eikenbroek, S. Mattison. PLL frequency synthesizers: Phase noise issues and wide-band loops; M. de Queiroz Tavares. Low-power circuits for RF-frequency synthesizers in the low GHz range; D. Pfaff, Q. Huang.
Analog Circuit Design.part1.rar
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Analog Circuit Design.part2.rar
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Analog Circuit Design.part3.rar
(5.73 MB, 下载次数: 1985 )
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