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『三味书屋』元旦送礼之七:著名的Kluwer丛书系列 Volume 494~672

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发表于 2008-1-5 00:40:11 | 显示全部楼层 |阅读模式
 楼主| 发表于 2008-1-5 00:41:35 | 显示全部楼层
A Computer-Aided Design and Synthesis Environment for Analog Integrated Circuits-.jpg
A Computer-Aided Design and Synthesis Environment for Analog Integrated Circuits

Series: The Springer International Series in Engineering and Computer Science , Vol. 672

Van der Plas, Geert, Gielen, Georges, Sansen, Willy M.C.


2002, 236 p., Hardcover
ISBN: 978-0-7923-7697-2


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A Computer-Aided Design and Synthesis Environment for Analog Integrated Circuits addresses the design methodologies and CAD tools that are available for the systematic design and design automation of analog integrated circuits. Two complementary approaches are discussed.
In the first part the AMGIE analog synthesis system is described. AMGIE is the first analog synthesis system that automates the full design process from specifications down to verified layout. It is targeted to the design of moderate-complexity circuits. It relies on design and circuit knowledge stored in the tool's libraries and can be used by both novice and experienced analog designers as well as system-level designers. The inner workings are explained in detail, with (practical) examples to demonstrate how the implemented algorithms and techniques work. Experimental results obtained with the AMGIE system are reported, including actual fabricated and measured circuits.
The second approach, i.e. the systematic design of high-performance analog circuits, is discussed in the second part of the book. This approach is supported by tools to boost the productivity of the designer. An example of such a tool is Mondriaan, that is targeted towards the automatic layout generation of highly regular analog blocks. The proposed systematic design methodology is then applied to the design of high-accuracy current-steering digital to analog converters (DACs). The full design path is discussed in detail. By using the Mondriaan tool and other in-house developed and commercially available tools, the first 14-bit accurate current-steering DAC without tuning or trimming in CMOS technology has been fabricated and measured.
Both complementary approaches increase analog design productivity. Design times of the different design experiments undertaken are reported throughout the book to demonstrate this.

Written for:
Electrical and electronic engineers

[ 本帖最后由 benemale 于 2008-1-5 01:29 编辑 ]

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 楼主| 发表于 2008-1-5 00:43:47 | 显示全部楼层

On-Chip Cover_resize.jpg
On-Chip ESD Protection for Integrated Circuits An IC Design Perspective

Series: The Springer International Series in Engineering and Computer Science , Vol. 663

Wang, Albert Z.H.


2002, 320 p., Hardcover
ISBN: 978-0-7923-7647-7


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This comprehensive and insightful book discusses ESD protection circuit design problems from an IC designer's perspective. On-Chip ESD Protection for Integrated Circuits: An IC Design Perspective provides both fundamental and advanced materials needed by a circuit designer for designing ESD protection circuits, including:
  • Testing models and standards adopted by U.S. Department of Defense, EIA/JEDEC, ESD Association, Automotive Electronics Council, International Electrotechnical Commission, etc.
  • ESD failure analysis, protection devices, and protection of sub-circuits
  • Whole-chip ESD protection and ESD-to-circuit interactions
  • Advanced low-parasitic compact ESD protection structures for RF and mixed-signal IC's
  • Mixed-mode ESD simulation-design methodologies for design prediction ESD-to-circuit interactions, and more!
Many real world ESD protection circuit design examples are provided. The book can be used as a reference book for working IC designers and as a textbook for students in the IC design field.
Written for:
Researchers, scientists, IC design engineers

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 楼主| 发表于 2008-1-5 00:47:53 | 显示全部楼层
Direct Conversion Receivers in Wide-Band Systems_resize.jpg
Direct Conversion Receivers in Wide-Band Systems

Series: The Springer International Series in Engineering and Computer Science , Vol. 655

Pärssinen, Aarno


2002, 256 p., Hardcover
ISBN: 978-0-7923-7607-1


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Wide-band systems will be the next significant generation in wireless communications. Those include both wireless local area networks and cellular systems with a large coverage area. They will provide a higher data rate and access to internet and video services, for example. Although most of the data processing is performed digitally, also the requirements and possibilities to implement the analog part of the radio receiver will be different compared to the second-generation narrow-band receivers. Direct conversion architecture is a distinct candidate for wide-band systems because some non-idealities involved in baseband signal processing are significantly relaxed. The requirements and feasibility of direct conversion in wide-band systems are analyzed in this work. The main emphasis is on cellular systems based on direct sequence code division multiple access, but the same principles are generally valid in all receivers for different applications.
The basic principles and design methods involved in receiver design are overviewed as well as the most common radio architectures. In a detailed analysis, the fundamental limitations of the direct conversion architecture are analyzed in wide-band signal processing. Especially, the effect of envelope distortion is characterized both with respect to the specific modulation and to the implementation of a downconversion mixer. Downconversion mixer is the key component in direct conversion because it transfers the radio frequency signal immediately down into the baseband after a relatively small gain at the preceding signal processing blocks, which do not provide filtering of the unwanted radio channels within the system band. Both switching mixers and subsampling mixers are analyzed.
Direct Conversion Receivers in Wide-Band Systems consists of four different circuit implementations. A subharmonic sampler operating up to 2 GHz is implemented with a GaAs MESFET technology. The second IC is a CMOS low-noise amplifier with an optimized interface to a subsampling mixer. Two BiCMOS implementations of the wide-band direct conversion receiver are given. The first consists of four different chips: RF front-end, analog baseband circuitry and two analog-to-digital converters. In the second chip, all blocks from the low-noise amplifier to the A/D converters are placed on the same die. In that case, an excellent isolation is required between rail-to-rail clock signals and the sensitive RF input.

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 楼主| 发表于 2008-1-5 00:49:15 | 显示全部楼层
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Automated Calibration of Modulated Frequency Synthesizers

Series: The Springer International Series in Engineering and Computer Science , Vol. 650

McMahill, Dan


2002, 176 p., Hardcover
ISBN: 978-0-7923-7589-0


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In recent years, there has been considerable interest in highly integrated, low power, portable wireless devices. There are three primary areas to be addressed when higher performance and lower power is desired. The first area is the device technology. Scaling of devices has realized steady improvements for many years. The second area is improved circuit design techniques. The final area is at the architectural level. This monograph focuses on the problem of low power GFSK/GMSK modulation and presents an architectural approach for improved performance. The new architecture is a modulated S-D fractional-N frequency synthesizer. The key innovation is an automatic calibration technique, which operates in the background. The availability of the calibration circuit makes high data rate, low power modulation possible.
From the Foreword: "The key contribution of the work presented in this monograph is a technique for in service automatic calibration of the modulated frequency synthesizer by ensuring that the digital emphasis filter and analog loop filter characteristics are matched. The automatic calibration circuit operates while the transmitter is in service and compensates for process and temperature variation. GFSK and 4-GFSK modulation was demonstrated at data rates of 2.5 Mb/s and 5 Mb/s respectively at an RF output carrier frequency of 1.8 GHz. ... In addition, he presents some valuable tools for the practicing engineer in this field." by Charles G. Sodini

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 楼主| 发表于 2008-1-5 00:50:48 | 显示全部楼层

论坛已经有了,纯属。。。

Model Engineering in Mixed-Signal Circuit Design_resize.jpg
Model Engineering in Mixed-Signal Circuit Design  A Guide to Generating Accurate Behavioral Models in VHDL-AMS
(直接点击论坛附件链接)
Series: The Springer International Series in Engineering and Computer Science , Vol. 649

Huss, Sorin Alexander


2002, 180 p., Hardcover
ISBN: 978-0-7923-7598-2


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The purpose of Model Engineering in Mixed-Signal Circuit Design is - for the first time - to combine the main issues of the hardware description language VHDL-AMS aimed at model representation of mixed-signal circuits and systems, of characterization methods and tools for the extraction of model parameters, and of modeling methodologies for accurate high-level behavioral models. This up to date text offers a comprehensive and clear presentation of modeling flow as part of the design effort for mixed-signal circuits. The work emphasizes an engineering view on model generation and handling, thus providing an unique guide both for the practitioner and for students of electrical and computer engineering at graduate level.

[ 本帖最后由 benemale 于 2008-1-5 18:44 编辑 ]
 楼主| 发表于 2008-1-5 00:52:42 | 显示全部楼层
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Power Trade-offs and Low Power in Analog CMOS ICs

Series: The Springer International Series in Engineering and Computer Science , Vol. 662

Sanduleanu, Mihai A.T., van Tuijl, Ed A.J.M.


2002, 240 p., Hardcover
ISBN: 978-0-7923-7642-2


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The work presented in Power Trade-offs and Low Power in Analog CMOS ICs concerns power, noise and accuracy in CMOS Analog IC Design. In the presented material it is shown that power, noise and accuracy should be treated in an unitary way, the three terms being well inter-related. The book is divided in a theoretical part which covers sub-micron digital and sub-micron analog followed by an applicative part where accuracy related power and noise related power is encountered.
The main part of the book deals with analog circuits working in a digital environment where the process has been optimized for digital applications. The general trend, in digital, to scale down the power supply makes the process of designing analog circuits a difficult task since most of the solutions valid for large supply voltages are not anymore useful due to the low voltage limitations. At low supply voltage, the key problem of analog signal processing functions is dynamic range reduction. In all cases this yields in an increase of power consumption. Besides, analog designers have to cope with second order effects generated by the incompatibility of the process with analog performance.
To get the best performance, knowing the limits of power in analog circuits and clearly defining the environment where analog circuits should work is a must. Starting from fundamental/physical limits we are discussing the practical limits of power in digital, mostly at the architecture level and practical limits of power in analog at circuit and architecture level. The fundamental limits are asymptotic limits and they cannot provide realistic comparisons between possible solutions. That is why the approach here provides a step further into power analysis by discussing all possible practical specs related to power at circuit and architecture level. For analog circuits Dynamic-Range*Speed product is limited by power, topology and supply voltage regardless of the type of circuits: continuous time or sampled data, current-mode or voltage mode.
Written for:
Researchers, scientists, circuits and systems

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 楼主| 发表于 2008-1-5 00:53:57 | 显示全部楼层
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Design and Analysis of Analog Filters  A Signal Processing Perspective

Series: The Springer International Series in Engineering and Computer Science , Vol. 617

Paarmann, Larry D.


2001, 456 p., Hardcover
ISBN: 978-0-7923-7373-5


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Design and Analysis of Analog Filters: A Signal Processing Perspective includes signal processing/systems concepts as well as implementation. While most books on analog filter design briefly present the signal processing/systems concepts, and then concentrate on a variety of filter implementation methods, the present book reverses the emphasis, stressing signal processing concepts. Filter implementation topics are presented in Part II: passive filters, and operational amplifier active filters. However, greater emphasis on signal processing/systems concepts is included in Part I of the book than is typical. This emphasis makes the book very appropriate as part of a signal processing curriculum.
Useful Aspects of Design and Analysis of Analog Filters: A Signal Processing Perspective extensive use of MATLAB® throughout, with many homework problems involving the use of MATLAB.
  • over 200 figures;
  • over 100 examples;
  • a total of 345 homework problems, appearing at the ends of the chapters;
  • complete and thorough presentation of design characteristics;
  • complete catalog of design approaches.
Audience: Design and Analysis of Analog Filters: A Signal Processing Perspective will interest anyone with a standard electrical engineering background, with a B.S. degree or beyond, or at the senior level. While designed as a textbook, its numerous practical examples make it useful as a reference for practicing engineers and scientists, particularly those working in systems design or communications.
MATLAB® Examples: A valuable relationship between analog filter theory and analysis and modern digital signal processing is made by the application of MATLAB to both the design and analysis of analog filters. Throughout the book, computer-oriented problems are assigned. The disk that accompanies this book contains MATLAB functions and m-files written specifically for this book. The MATLAB functions on the disk extend basic MATLAB capabilities in terms of the design and analysis of analog filters. The m-files are used in a number of examples in the book. They are included on the disk as an instructional aid.

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 楼主| 发表于 2008-1-5 00:57:54 | 显示全部楼层

Niknejad的书,论坛已有不过是扫描的,这里是文字版。

Design, Simulation and Applications of Inductors and Transformers for Si RF-ICs_resize.jpg
Design, Simulation and Applications of Inductors and Transformers for Si RF ICs

Series: The Springer International Series in Engineering and Computer Science , Vol. 586

Niknejad, Ali M., Meyer, Robert G.


2000, 216 p., Hardcover
ISBN: 978-0-7923-7986-7


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Wireless RF and microwave ICs depend critically on passive devices, such as inductors, capacitors, and transformers. Passive devices allow the optimization of key RF circuit building blocks by minimizing noise, maximizing gain and frequency of operation, and minimizing power.
The integration of passive devices on the Si IC substrate requires a critical understanding of substrate coupling and loss, including electrically induced conductive and displacement current flowing in the substrate as well as magnetically induced eddy currents.
Design, Simulation and Applications of Inductors and Transformers for Si RF ICs provides a deep understanding of the physics involved in the operation of these devices at microwave frequencies. Additionally, the book tackles two critical blocks that depend critically on the passive devices, the voltage-controlled oscillator and a distributed amplifier.
Design, Simulation and Applications of Inductors and Transformers for Si RF ICs will be of interest to RF and microwave integrated circuit engineers, computer aided designers, device physicists, and electromagnetic researchers, as well as power electronics engineers.

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 楼主| 发表于 2008-1-5 01:00:15 | 显示全部楼层
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Systematic Design for Optimisation of Pipelined ADCs

Series: The Springer International Series in Engineering and Computer Science , Vol. 607

Goes, João, Vital, João C., Franca, José E.


2001, 176 p., Hardcover
ISBN: 978-0-7923-7291-2


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Systematic Design for Optimisation of Pipelined ADCs proposes and develops new strategies, methodologies and tools for designing low-power and low-area CMOS pipelined A/D converters. The task is tackled by following a scientifically-consistent approach. First of all, the state of the art in pipeline A/D converters is analysed with a double purpose: a) to identify the best suited among different strategies reported in literature and taking into account the objectives pursued; b) to identify the drawbacks of these strategies as a basic first step to improve them. Then, the book proposes a top-down design approach for implementing high-performance low-power and low-area CMOS pipelined A/D converters through: The conception, development and implementation of self-calibrated techniques to extend the linearity of some critical stages in the architecture of pipelined ADCs. The detailed analysis and modelling of some major non-idealities that limit the physical realisation of pipelined ADCs and the proposal, development and implementation of design methodologies to support systematic design of optimised instances of these converters which combine maximum performance with minimum power dissipation and minimum area occupation. £/LIST£ Several implementations together with consistent measured results are presented. In particular, a practical realisation of a low-power 14-bit 5MS/s CMOS pipelined ADC with background analogue self-calibration is fully described.
The proposed approach is fully in line with the best practice regarding the design of mixed-signal integrated circuits. On the one hand, drawbacks of currently existing solutions are overcame through innovative strategies and, on the other hand, the expert knowledge is packaged and made available for re-usability by the community of circuit designers. Finally, feasibility of the strategies and the associated encapsulated knowledge is granted through experimental validation of working silicon.
Systematic Design for Optimisation of Pipelined ADCs serves as an excellent reference for analogue design engineers especially designers of low-power CMOS A/D converters. The book may also be used as a text for advanced reading on the subject.

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