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High Data Rate Transmitter Circuits: RF CMOS Design and Techniques for Design Automation

ISBN-13: 9781402075452 / Angielski / Twarda / 2003 / 227 str.

C. de Ranter; Carl de Ranter; Carl de Ranter
High Data Rate Transmitter Circuits: RF CMOS Design and Techniques for Design Automation De Ranter, C. J. 9781402075452 Kluwer Academic Publishers - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

High Data Rate Transmitter Circuits: RF CMOS Design and Techniques for Design Automation

ISBN-13: 9781402075452 / Angielski / Twarda / 2003 / 227 str.

C. de Ranter; Carl de Ranter; Carl de Ranter
cena 605,23 zł
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High Data Rate Transmitter Circuits is a practical guide and introduction to the design of key RF building blocks used in high data rate transmitters. The emphasis lies on CMOS circuit techniques applicable to oscillators and upconvertors. Furthermore, a method for RF-specific design automation is exemplified by the CYCLONE tool for automated LC-VCO synthesis. The accuracy of a simulation depends strongly on the models used for the passive and active components. Therefore, a chapter on practical RF simulation models for MOST devices and planar inductors is included. Polyphase networks can be used for quadrature signal generation and as a complex filter. The book describes in detail the analytical calculations on such networks and includes a practical simulation-based design approach. The final manufacturing step before measuring a chip is the bonding process. In a short chapter the flip-chip bonding technique is discussed and the negative influence of X-ray inspection on chip performance is demonstrated. High data rate systems need low phase-noise oscillators. The design of a 17GHz VCO as presented in this book demonstrates the possible use of a CMOS technology for fixed-wireless or high-speed optical system integration. Using a polyphase network as a complex filter, a ringoscillator with over a decade of tuning range has been linearized for use in HFC-like cable systems. This technique is discussed elaborately in a chapter on broadband oscillators. As a typical design case of a high data rate building block, the design of a wideband CMOS transmitter circuit is presented. Starting from a market overview, the target specifications are derived. A high-level circuit design is then gradually refined down to transistor level and ultimately layout. In a concluding chapter, the measured performance is discussed. Written in an easily accessible manner, High Data Rate Transmitter Circuits is essential reading for both students and practicing engineers interested in analog RF design and RF-specific design automation. The book has been praised for its pleasant and light style of writing, without losing detail on the technical side.

Kategorie:
Technologie
Kategorie BISAC:
Technology & Engineering > Radio
Computers > Design, Graphics & Media - CAD-CAM
Technology & Engineering > Electrical
Wydawca:
Kluwer Academic Publishers
Seria wydawnicza:
Kluwer International Series in Engineering & Computer Scienc
Język:
Angielski
ISBN-13:
9781402075452
Rok wydania:
2003
Wydanie:
2003
Numer serii:
000012763
Ilość stron:
227
Waga:
1.16 kg
Wymiary:
23.5 x 15.5
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Bibliografia
Wydanie ilustrowane

From the reviews:

"This book deals with the design of CMOS integrated electronic circuits for high data rate transmissions. The authors focus on voltage-controlled oscillators (VCO), upconvertors and some functional blocks ... . The book can be viewed as a handbook for practicing engineers interested in the design of analog integrated circuits, who may find there new ideas or inspiration for their daily work." (Ivan Martinec, Zentralblatt MATH, Vol. 1044 (19), 2004)

List of Figures. List of Tables.

  • 1: Introduction. 1.1. Some Observations. 1.2. To CMOS or Not to CMOS. 1.3. Covered Topics.
  • 2: RF Modeling, Quadrature Generation and Flip-Chip Bonding. 2.1. Introduction. 2.2. Influence of Substrate Resistivity on RF-designs. 2.3. RF-Modeling. 2.4.Quadrature LO Generation. 2.5. Manufacturing. 2.6. Conclusions and Use of Presented Topics.
  • 3: Automated VCO Synthesis. 3.1. Introduction. 3.2. Structured Analog Design Methodology. 3.3. Automation in Functional-Block Design. 3.4. The CYCLONE Tool. 3.5. Final Conclusion.
  • 4: Voltage-Controlled Oscillators for High Data Rate Applications. 4.1. Oscillators for Broadband Systems. 4.2. Oscillators for RF Frequencies. 4.3. Conclusions.
  • 5: Design of an Upconverter for High-Speed Data Transmission. 5.1. Introduction: Market Perspective. 5.2. High-Speed Data Link Systems. 5.3. High-Level Design Considerations. 5.4. CMOS Implementation of a High-Bandwidth Upconvertor. 5.5. Final Conclusion.
  • 6: Conclusions. 6.1. Realized Work. 6.2. Possibilities for Future Research. References.



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