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Analog-Baseband Architectures and Circuits for Multistandard and Low-Voltage Wireless Transceivers

ISBN-13: 9781402064326 / Angielski / Twarda / 2007 / 178 str.

Seng-Pan U; Rui Paulo Martins; Pui-In Mak
Analog-Baseband Architectures and Circuits for Multistandard and Low-Voltage Wireless Transceivers Seng Pan U Rui Paulo Martins Pui-In Mak 9781402064326 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Analog-Baseband Architectures and Circuits for Multistandard and Low-Voltage Wireless Transceivers

ISBN-13: 9781402064326 / Angielski / Twarda / 2007 / 178 str.

Seng-Pan U; Rui Paulo Martins; Pui-In Mak
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The prospect of initializing a network-ubiquitous society in the years to come has led to the development of multistandard-compliant wireless transceivers for seamless roaming among multiple networks. To ensure a commercial success of such a development, the manufacturing cost and power consumption of the system chips have to be minimized. The use of an advanced technology and a high level of integration have continued to be the most effective ways for cost and power minimization, given that wireless chips integrate large amounts of digital logic for computation. Regrettably, entering into the nanoelectronics era, the thinner transistor gate oxide implicates great challenges in the design of the analog front-ends. While a low-voltage supply is imposed to maintain device reliability, a relatively large threshold voltage is also necessitated to limit the leakage current. Thus, transceiver architectures and circuits which will befit future full integration of multistandard wireless transceivers in sub-1V nanoscale CMOS processes must be highly reconfigurable and robustly operational underneath a l- voltage supply. This book presents novel analog-baseband architectures and circuits that help realizing multistandard and low-voltage wireless transceivers. The main contents are presented from Chapter 2 to Chapter 6, as pictorially outlined in Figure 1. Chapter 1 overviews the current wireless-IC developments and presents the motivation and research objectives of this book. xi xii Preface Figure 1.

Kategorie:
Technologie
Kategorie BISAC:
Technology & Engineering > Electronics - Circuits - General
Technology & Engineering > Electrical
Technology & Engineering > Microwaves
Wydawca:
Springer
Seria wydawnicza:
Analog Circuits and Signal Processing
Język:
Angielski
ISBN-13:
9781402064326
Rok wydania:
2007
Wydanie:
2007
Numer serii:
000108233
Ilość stron:
178
Waga:
0.46 kg
Wymiary:
23.39 x 15.6 x 1.27
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Wydanie ilustrowane

Dedication. Preface. Acknowledgements. List of Abbreviations. 1: Introduction. 1.1. Evolution of wireless communications. 1.2. Wireless-IC developments – design challenges and future prospects. 1.3. Research objectives. References. 2: Transceiver Architecture Selection – Review, State-of-the-Art Survey and Case Study. 2.1. Introduction. 2.2. Receiver (RX) architectures. 2.3. Transmitter (TX) architectures. 2.4. RX and TX architectures for modern wireless communication systems. 2.5. Survey of the state-of-the-art works for modern wireless standards. 2.6. Case study. 2.7. Summary. References. 3: Two-Step Channel Selection – A Technique for Multistandard Transceiver Front-Ends. 3.1. Introduction. 3.2. Conventional and proposed channel-selection schemes. 3.3. Low-IF/zero-IF reconfigurable receiver design. 3.4. Direct-up/two-step-up reconfigurable transmitter design. 3.5. Reconfigurable IF AFE design. 3.6. Summary. References. 4: System Design of a SiP Receiver for IEEE 802.11a/b/g WLAN. 4.1. Introduction. 4.2. System design. 4.3. Translating the 802.11a, b and g standards to receiver design specification. 4.4. Gain plan. 4.5. Specification of analog baseband. 4.6. ADC requirement. 4.7. Summary. References. 5: Low-Voltage Analog-Baseband Techniques. 5.1. Introduction. 5.2. OpAmp. 5.3. CT level shifter. 5.4. Linear R-to-I converter. 5.5. CT CMFB. 5.6. Current switch. 5.7. MOS Capacitor. 5.8. Inside-OpAmp dc-offset canceler (DOC). 5.9. Series-switching mixer-quad, multi-phase I/Q generator and CSF (co-design). 5.10. SCR programmable-gain amplifier. 5.11. Techniques reusability in advanced technology nodes. 5.12. Summary. References. 6: An Experimental 1-V SiP Receiver Analog-Baseband IC for IEEE 802.11a/b/g WLAN. 6.1. Introduction. 6.2. Receiver architecture. 6.3. Simulation methodology. 6.4.Circuit implementation. 6.5. Simulation results. 6.6. Silicon implementation and test strategy. 6.7. Experimental results. 6.8. Summary. References. 7: Conclusions. 7.1. Concluding remarks. 7.2. Benchmarks. 7.3. Recommendations for future work. References.

With the past few decade efforts on lithography and integrated-circuit (IC) technologies, very low-cost microsystems have been successfully developed for many different applications. The trend in wireless communications is toward creating a networkubiquitous era in the years to come. Many unprecedented opportunities and challenges, such as Design for multi-standardability and low-voltage (LV) compliance, are rapidly becoming the mainstream directions in wireless-IC research and development, given that the former can offer the best connectivity among different networks, while the latter can facilitate the technology migration into the sub-1-V nanoscale regimes for further cost and power reduction.

Analog-Baseband Architecturees and Circuits presents architectural and circuit techniques for wireless transceivers to achieve multistandard and low-voltage compliance. The first part of the book reviews the physical layer specifications of modern wireless communication standards, presents the fundamental tradeoffs involved in transceiver architecture selection, and provides case studies of the state-of-the-art multistandard transceivers, where the key techniques reinforced are highlighted and discussed. A statistical summary (with 100+ references cited) of most used transmitter and receiver architectures for modern communication standards is provided. All the references are citied from the leading forums, i.e., ISSCC, CICC, VLSI and ESSCIRC, from 1997 to 2005.

The second part focuses on the architectural design of multistandard transceivers. A coarse-RF fine-IF (two-step) channelselection technique is disclosed. It, through the reconfiguration of receiver and transmitter analog basebands, enables not only a relaxation of the RF frequency synthesizer’s and local oscillator’s design specifications, but also an efficient multistandard compliance by synthesizing the low-IF and zero-IF in the receiver; and the direct-up and two-step-up in the transmitter. The principle is demonstrated in few design examples. One of them is a system-in-a-package (SiP) receiver analog  baseband for IEEE 802.11a/b/g WLAN. It not only has the two-step channel selection embedded, but also features a flexible-IF topology, a unique 3D-stack floorplan, and a particular design methodology for high testability and routability.

The third part deals with the circuit design. In addition to the methodical description of many LV circuit techniques, 3 tailormade LV-robust functional blocks are presented. They include: 1) a double-quadrature-downconversion filter (DQDF) – it realizes concurrently clock-rate-defined IF reception, I/Q demodulation, IF channel selection and baseband filtering. 2) A switched-current-resistor (SCR) programmable-gain amplifier (PGA) – it offers a transient-free constant-bandwidth gain adjustment. 3) An inside-OpAmp dc-offset canceler – it saves the silicon area required for realizing a large time constant on chip while maximizing its highpass-pole switchability for fast dc-offset transient.

The last part presents experimental results of the 3 tailor-made building blocks and a fully-integrated analog-baseband IC fabricated in a standard-VTH CMOS process. Previously untold on-/off-chip co-setup for both full-chip and building blocks measurements are described. Not only the building blocks have successfully extended the state-of-the-art boundary in terms of signal bandwidth and supply voltage, the analog-baseband IC has been so far the lowest-voltage-reported solution for IEEE 802.11a/b/g WLAN receivers.



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