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楼主: handchief581

Springer Analog circuits and signal processing serials (总共36本, 搜集了30本)

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 楼主| 发表于 2009-2-26 19:28:34 | 显示全部楼层
第二十八本
RF Power Amplifiers for Mobile Communications

                               
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RF Power Amplifiers for Mobile CommunicationsSeries: Analog Circuits and Signal Processing
Reynaert, Patrick, Steyaert, Michiel

2006, X, 251 p., Hardcover
ISBN: 978-1-4020-5116-6

About this book
RF Power Amplifiers for Mobile Communications fits in the quest for fully integrated CMOS transceivers. The book tackles both high efficiency and high linearity PA design in low-voltage CMOS, and has a strong emphasis on theory, design and implementation. The book is conceived as a design guide for those actively involved in the design of CMOS wireless transceivers.

RF Power Amplifiers for Mobile Communications starts from the basic theory of power amplification from the viewpoint of CMOS integration. The design of switching RF power amplifiers in CMOS is explored and CMOS PA design at low supply voltage using parallel amplification is discussed. Combining both efficiency and linearity is one of the major issues in CMOS PA design for wireless and mobile communications and is subsequently tackled. Different linearization techniques and approaches are discussed and polar modulation is clarified in greater detail. Finally, two CMOS PA implementations are thoroughly covered.

RF Power Amplifiers for Mobile Communications offers the reader an intuitive insight in Power Amplification as well as the necessary mathematical background. The book is essential reading for RF design engineers and researchers in the field and is also suitable as a text book for an advanced course on the subject.

Written for:
RF and Microwave design engineers and researchers, wireless system developers

[ 本帖最后由 handchief581 于 2009-2-26 19:29 编辑 ]

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 楼主| 发表于 2009-2-26 19:41:10 | 显示全部楼层
第二十九本
Silicon-Based RF Front-Ends for Ultra Wideband Radios

                               
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Silicon-Based RF Front-Ends for Ultra Wideband RadiosSeries: Analog Circuits and Signal Processing
Safarian, Aminghasem, Heydari, Payam

2008, VIII, 100 p., Hardcover
ISBN: 978-1-4020-6721

About this book
Ultra-wideband (UWB) is a promising technology for high speed short distance communication, as well as low data-rate low power communication for object localization and sensor networks. The most important characteristic of UWB is the operation in power-limited regime while achieving high channel capacity. The main challenge lies in designing transceivers for wideband signals.
Distributed integrated circuits provide intrinsic wideband characteristics, which makes them potential candidate for use in UWB transceivers. Recent advances in high-speed IC design with continuous scaling of minimum feature sizes of silicon technologies have renewed the interest in distributed circuits using on-chip transmission lines.
Silicon-Based RF Front-Ends for UWB Radios comprehensively studies silicon-based distributed architectures in wideband circuits.
The book begins with an introduction of several transceiver architectures for UWB. The discussion then focuses on RF front-end of the UWB radio. First, the design and analysis of a performance-optimized CMOS distributed LNA is presented. This is followed by design of novel distributed RF front-ends for UWB IF-receivers (UWB-DRF). The book continues with the introduction of a novel distributed direct conversion RF front-end (DDC-RF). The DDC-RF power and area-efficiently combines the wideband distributed approach with IQ requirement of a direct conversion receiver. Furthermore, deploying merged LNA/mixer enables low-power design, while achieving superior linearity over the conventional distributed amplifiers. The baseband output signals are zero/ low-IF, hence the output transmission lines in conventional distributed circuits are omitted, resulting in less area of the DDC-RF.
To increase data rate and to achieve immunity to multi-path fading, UWB systems employs multi-antenna configuration at receiver/transmitter. Innovative wideband variable delay and gain stages are then introduced to receive and transmit in desired direction. Finally, experimental results of the fabricated prototypes are presented.
Silicon-Based RF Front-Ends for UWB Radios will be of interest to RF circuit designers and students.

Written for:
Analog and radio-frequency (RF) integrated circuit (IC) designers; circuit researchers and educators; education of graduate and undergraduate students

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 楼主| 发表于 2009-2-26 19:46:20 | 显示全部楼层
第三十本
Structured Analog CMOS Design

                               
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Structured Analog CMOS DesignSeries: Analog Circuits and Signal Processing
Stefanovic, Danica, Kayal, Maher

2009, XII, 284 p., Hardcover
ISBN: 978-1-4020-8572-7

About this book
Structured Analog CMOS Design describes a structured analog design approach that makes it possible to simplify complex analog design problems and develop a design strategy that can be used for the design of large number of analog cells. It intentionally avoids treating the analog design as a mathematical problem, developing a design procedure based on the understanding of device physics and approximations that give insight into parameter interdependences.
The proposed transistor-level design procedure is based on the EKV modeling approach and relies on the device inversion level as a fundamental design variable. Since all important design parameters can be expressed as continuous functions of the device inversion level, the design optimum as well as the technology limits can be easily found.
The basic design concept consists in analog cell partitioning into the basic analog structures and sizing of these basic analog structures in a predefined procedural design sequence. The procedural design sequence ensures the correct propagation of design specifications, the verification of parameter limits and the local optimization loops. The proposed design procedure is also implemented as a CAD tool that follows this book.
Finally, as a practical example, the design of analog amplifiers in a hybrid multi-bit Delta-Sigma modulator system is described in detail from system level to transistor level.

Written for:
Analog designers and analog design teachers as well as electrical engineering / microelectronics students at masters and PhD levels

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 楼主| 发表于 2009-2-26 20:01:13 | 显示全部楼层
第三十一本
Substrate Noise Coupling in RFICs

                               
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Substrate Noise Coupling in RFICsSeries: Analog Circuits and Signal Processing
Helmy, Ahmed, Ismail, Mohammed

2008, XVI, 120 p., Hardcover
ISBN: 978-1-4020-8165-1
About this book
Substrate Noise Coupling in RFICs addresses substrate noise coupling in RF and mixed signal ICs when used in a system on chip (SoC) containing digital ICs as well. This trend of integrating RF, mixed signal ICs with large digital ICs is found in many of today's commercial ICs such as single chip Wi-Fi or Bluetooth solutions and is expected to grow rapidly in the future. The book reports modeling and simulation techniques for substrate noise coupling effects in RFICs and introduces isolation structures and design guides to mitigate such effects with the ultimate goal of enhancing the yield of RF and mixed signal SoCs . This is particularly critical when process feature sizes scale down to the nano meter range.
Substrate Noise Coupling in RFICs reports silicon measurements, new test and noise isolation structures as well as calibration of a design flow used in the design and debug phases of RFICs. A design guide is articulated to be used by RFIC designers to maximize signal isolation and optimize chip floor plan, power and ground domains. Industrial examples of RFICs are given as demonstration vehicles to validate the proposed techniques. Some emphasis is put on the design of on-chip spiral inductors and the impact of the substrate on their performance. To our knowledge, this is the first title devoted to the topic of substrate noise coupling in RFICs as part of a large SoC.

Written for:
RFIC and mixed signal system on chip designers, validation and test engineers, CAD engineers, process technology engineers, graduate students in electrical and computer engineering

Substrate Noise Coupling in RFICs.part1.rar

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 楼主| 发表于 2009-2-26 20:10:45 | 显示全部楼层
第三十二本
Switched-Capacitor Techniques for High-Accuracy Filter and ADC Design

                               
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Switched-Capacitor Techniques for High-Accuracy Filter and ADC DesignSeries: Analog Circuits and Signal Processing
Quinn, Patrick J., Roermund, Arthur H.M. van

2007, XVIII, 244 p., Hardcover
ISBN: 978-1-4020-6257-5

About this book
Switched capacitor (SC) techniques are well proven to be excellent candidates for implementing critical analogue functions with high accuracy, surpassing other analogue techniques when embedded in mixed-signal CMOS VLSI. Conventional SC circuits are primarily limited in accuracy by a) capacitor matching and b) the accuracy with which a differential amplifier can squeeze charge from one capacitor to another between clock periods.
In Switched-Capacitor Techniques for High-Accuracy Filter and ADC Design, alternative SC techniques are proposed which allow the achievement of higher intrinsic analogue functional accuracy than previously possible in such application areas as analogue filter and ADC design. The design philosophy is to create the required functionality without relying on digital calibration or correction means but instead to develop methods which have reduced dependence on both component matching (especially capacitor matching) and parasitic effects (especially parasitic capacitance). However, the proposed techniques are just as amenable to further digital accuracy enhancement via calibration and/or correction as traditional methods. Two popular application areas are explored in the course of this book for exploitation of the proposed techniques, viz. SC filters and algorithmic ADCs - both cyclic and pipelined. Furthermore, efficient system level design procedures are explored in each of these two areas.
The validity of the concepts developed and analyzed in Switched-Capacitor Techniques for High-Accuracy Filter and ADC Design has been demonstrated in practice with the design of CMOS SC bandpass filters and algorithmic ADC stages. For example, a 10.7MHz radio IF selectivity filter integrated in standard CMOS, employing the proposed methods, achieves an accuracy greater than ceramic filters. Another example is an ADC with better than 12-bit intrinsic accuracy, albeit capacitors with only 9-bits matching accuracy were used in the realization. The ADC architecture is also very robust and proven in an embedded digital VLSI application in the very newest 65nm CMOS. The power consumptions and silicon areas of the solutions proposed here are lower than other known solutions from the literature.

Written for:
Mixed-signal and analogue design engineers and researchers, IC designers who wish to further their knowledge on switched-capacitor techniques, data converter experts, filter design experts

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 楼主| 发表于 2009-2-26 20:20:59 | 显示全部楼层
第三十三本
The gm/ID Design Methodology for CMOS Analog Low Power Integrated Circuits
09年新书,没有搞定

                               
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The gm/ID Design Methodology for CMOS Analog Low Power Integrated CircuitsSeries: Analog Circuits and Signal Processing
Jespers, Paul

2009, Approx. 225 p., Hardcover
ISBN: 978-0-387-47100-6

About this book
The design of analogue integrated circuits (CMOS) requires fixing transistor sizes and current magnitudes in order to reach goal(s) such as, a given gain-bandwidth product, slew-rate, min. power consumption, etc. Designers achieve these generally by taking advantage of their own experience while performing lots of simulations and/or optimisations. How to tackle the problem when experience is lacking? How to size an Operational Amplifier, for instance, when some transistors operate in strong inversion, other in moderate or weak inversion?
The objective of The gm/ID Design Methodology for CMOS Analog Low Power Integrated Circuits is to suggest straightforward methodologies at the earliest possible design stage and find currents and sizes very close to optimality. The methodology takes advantage of compact MOS models while following classical design procedures. The key feature is the set of inversion indeces of some transistors, called the 'active' transistors. These indeces are used in order to build the so-called performance space that complies with the dominant constraints. The other transistors are contingent to the first group and their sizes fixed through additional constraints. The idea is to postpone final decisions until some high level figures like band width, overal gain, etc. are met simultaneously.
The link between compact model and physical model plays an important role, which enables investigation of the impact of mismatch impairments and temperature. The reference model, the so-called ‘charge sheet model’, is considered in a separate section. A dedicated MATLAB toolbox is provided offering the possisibility to perform virtual hands-on experiments related to MOS transistor physics as well as finding currents and transistor sizes for well-known CMOS circuits. The users guide, described in the annex, should enable the reader to run his own tests as well.

Written for:
Scientists, professionals, graduate students, academics, PhDs, professors, design houses
 楼主| 发表于 2009-2-26 20:32:06 | 显示全部楼层



                               
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Ultra Low Power Capacitive Sensor InterfacesSeries: Analog Circuits and Signal Processing
Bracke, Wouter, Puers, Robert, Van Hoof, Chris

2007, X, 104 p., Hardcover
ISBN: 978-1-4020-6231-5
第三十四本
Ultra Low Power Capacitive Sensor Interfaces
About this book
An increasing number of medical diagnostics, comfort, entertainment, and sports applications are making use of capacitive sensor systems in and around the body. These sensor systems should work as small distributed units that can collect data over a long period of time. So, ultra low power electronics are a major challenge in these applications.
Ultra Low Power Capacitive Sensor Interfaces describes the design and theory of ultra low power capacitive sensor interfaces. The book’s major asset is the realization of a very low power generic sensor interface chip, that is adaptable to a broad range of capacitive sensors.
The book starts with an overview on the most important design aspects for autonomous sensor systems. The different building blocks are discussed and the modular architecture for the generic sensor interface chip is presented. Furthermore, the design of the analog components, such as capacitance-to-voltage converters, switched capacitor amplifier, Sigma Delta modulator, oscillators and reference circuits, is described in more detail. Finally, the generic sensor interface chip is applied in several state-of-the-art pressure sensor and accelerometer applications.
Ultra Low Power Capacitive Sensor Interfaces is essential reading for anybody with an academic or professional interest in semiconductor design.

Written for:
IC designers, system designers, electronic engineers, electronic product developers for autonomous systems, research students, academia

[ 本帖最后由 handchief581 于 2009-2-26 20:34 编辑 ]

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 楼主| 发表于 2009-2-26 20:41:07 | 显示全部楼层
第三十五本
Ultra Low-Power Biomedical Signal Processing,An Analog Wavelet Filter Approach for Pacemakers
09年新书

                               
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Ultra Low-Power Biomedical Signal ProcessingAn Analog Wavelet Filter Approach for Pacemakers
Series: Analog Circuits and Signal Processing
Haddad, Sandro A.P., Serdijn, Wouter A.

2009, Approx. 250 p., Hardcover
ISBN: 978-1-4020-9072-1

About this book
Ultra Low-Power Biomedical Signal Processing describes signal processing methodologies and analog integrated circuit techniques for low-power biomedical systems. Physiological signals, such as the electrocardiogram (ECG), the electrocorticogram (ECoG), the electroencephalogram (EEG) and the electromyogram (EMG) are mostly non-stationary. The main difficulty in dealing with biomedical signal processing is that the information of interest is often a combination of features that are well localized temporally (e.g., spikes) and others that are more diffuse (e.g., small oscillations). This requires the use of analysis methods sufficiently versatile to handle events that can be at opposite extremes in terms of their time-frequency localization.

Wavelet Transform (WT) has been extensively used in biomedical signal processing, mainly due to the versatility of the wavelet tools. The WT has been shown to be a very efficient tool for local analysis of non-stationary and fast transient signals due to its good estimation of time and frequency (scale) localizations. Being a multi-scale analysis technique, it offers the possibility of selective noise filtering and reliable parameter estimation.
Often WT systems employ the discrete wavelet transform, implemented on a digital signal processor. However, in ultra low-power applications such as biomedical implantable devices, it is not suitable to implement the WT by means of digital circuitry due to the relatively high power consumption associated with the required A/D converter. Low-power analog realization of the wavelet transform enables its application in vivo, e.g. in pacemakers, where the wavelet transform provides a means to extremely reliable cardiac signal detection.

In Ultra Low-Power Biomedical Signal Processing we present a novel method for implementing signal processing based on WT in an analog way. The methodology presented focuses on the development of ultra low-power analog integrated circuits that implement the required signal processing, taking into account the limitations imposed by an implantable device.


Written for:
Academic and industrial researchers in signal processing, electronic circuit design, low-power circuit design, biomedical circuits and systems; graduate students in electrical engineering, computer engineering and biomedical engineering
 楼主| 发表于 2009-2-26 20:50:08 | 显示全部楼层
最后一本,喜欢的可以在http://www.eetop.cn/bbs/thread-164472-1-1.html下载
UWB Pulse-based Radio

                               
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UWB Pulse-based RadioReliable Communication over a Wideband Channel
Series: Analog Circuits and Signal Processing
Vereecken, Wim, Steyaert, Michiel

2009, Approx. 200 p., Hardcover
ISBN: 978-90-481-2449-

About this book
Today's booming expanse of personal wireless radio communications is a rich source of new challenges for the designer of the underlying enabling technologies. Because the wireless channel is a shared transmission medium with only very limited resources, a trade-off must be made between mobility and the number of simultaneous users in a confined geographical area.

Ultra-Wideband Pulse-based Radio lays the foundations of a new radio transceiver architecture, based on the Ultra-Wideband pulse-based radio principle. Instead of a continuous-time modulated carrier, the pulse-based radio system uses short electromagnetic pulses with a wide spectral footprint. This has considerable advantages for the reliability of a wireless link in an indoor environment. However, what is not accounted for in most high-level theoretical perspectives, is that a wide transmission bandwidth opens up a Pandora's box of many complications at receiver side. A real-world wireless channel, for example, suffers from multipath reflections: multiple, delayed versions of the same signal arrive at the receive antenna and start to interfere with one another, an effect that is known as intersymbol interference. Also, a wide transmission band is a wide open door for in-band interfering signals, caused by other transmitters in the same frequency band.

A specially crafted interferer suppression and signal reconstruction (ISSR) algorithm is presented in this book. Without active intervention from the transmitter, the ISSR algorithm is capable of on-the-fly cleaning of frequency bands which have fallen victim to multipath fading or narrowband interference. The unique blend of pulse-based radio, a simple modulation scheme and a powerful signal reconstruction system make the presented pulse-based radio system a very promising alternative for the high-end (but complex) OFDM-based modulation schemes currently used in many WLAN applications.

Written for:
Researchers, graduate students, academics, R&D research industry on analog/RF design for wireless communications

[ 本帖最后由 handchief581 于 2009-4-28 13:19 编辑 ]
发表于 2009-2-26 20:53:39 | 显示全部楼层
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