Design of Multi-gigabit/s Clock and Data Recovery Circuits for Optical Communication

Design of Multi-gigabit/s Clock and Data Recovery Circuits for Optical Communication PDF Author: Mahmoud Reza Ahmadi
Publisher:
ISBN:
Category :
Languages : en
Pages : 200

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Design of Multi-gigabit/s Clock and Data Recovery Circuits for Optical Communication

Design of Multi-gigabit/s Clock and Data Recovery Circuits for Optical Communication PDF Author: Mahmoud Reza Ahmadi
Publisher:
ISBN:
Category :
Languages : en
Pages : 200

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Book Description


CMOS Multichannel Single-Chip Receivers for Multi-Gigabit Optical Data Communications

CMOS Multichannel Single-Chip Receivers for Multi-Gigabit Optical Data Communications PDF Author: Paul Muller
Publisher: Springer Science & Business Media
ISBN: 1402059124
Category : Technology & Engineering
Languages : en
Pages : 207

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Book Description
In the world of optical data communications this book will be an absolute must-read. It focuses on optical communications for short and very short distance applications and discusses the monolithic integration of optical receivers with processing elements in standard CMOS technologies. What’s more, it provides the reader with the necessary background knowledge to fully understand the trade-offs in short-distance communication receiver design and presents the key issues to be addressed in the development of such receivers in CMOS technologies. Moreover, novel design approaches are presented.

Analysis and Design of Robust Multi-Gb/s Clock and Data Recovery Circuits

Analysis and Design of Robust Multi-Gb/s Clock and Data Recovery Circuits PDF Author: David James Rennie
Publisher:
ISBN:
Category :
Languages : en
Pages :

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CMOS Multichannel Single-Chip Receivers for Multi-Gigabit Optical Data Communications

CMOS Multichannel Single-Chip Receivers for Multi-Gigabit Optical Data Communications PDF Author: Paul Muller
Publisher: Springer Science & Business Media
ISBN: 1402059116
Category : Computers
Languages : en
Pages : 207

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Book Description
In the world of optical data communications this book will be an absolute must-read. It focuses on optical communications for short and very short distance applications and discusses the monolithic integration of optical receivers with processing elements in standard CMOS technologies. What’s more, it provides the reader with the necessary background knowledge to fully understand the trade-offs in short-distance communication receiver design and presents the key issues to be addressed in the development of such receivers in CMOS technologies. Moreover, novel design approaches are presented.

Monolithic Phase-Locked Loops and Clock Recovery Circuits

Monolithic Phase-Locked Loops and Clock Recovery Circuits PDF Author: Behzad Razavi
Publisher: John Wiley & Sons
ISBN: 9780780311497
Category : Technology & Engineering
Languages : en
Pages : 516

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Book Description
Featuring an extensive 40 page tutorial introduction, this carefully compiled anthology of 65 of the most important papers on phase-locked loops and clock recovery circuits brings you comprehensive coverage of the field-all in one self-contained volume. You'll gain an understanding of the analysis, design, simulation, and implementation of phase-locked loops and clock recovery circuits in CMOS and bipolar technologies along with valuable insights into the issues and trade-offs associated with phase locked systems for high speed, low power, and low noise.

Design of Clock Data Recovery Integrated Circuit for High Speed Data Communication Systems

Design of Clock Data Recovery Integrated Circuit for High Speed Data Communication Systems PDF Author: Jinghua Li
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Demand for low cost Serializer and De-serializer (SerDes) integrated circuits has increased due to the widespread use of Synchronous Optical Network (SONET)/Gigabit Ethernet network and chip-to-chip interfaces such as PCI-Express (PCIe), Serial ATA(SATA) and Fibre channel standard applications. Among all these applications, clock data recovery (CDR) is one of the key design components. With the increasing demand for higher bandwidth and high integration. Complementary metal-oxidesemiconductor (CMOS) implementation is now a design trend for the predominant products in this research work, a fully integrated 10Gb/s (OC-192) CDR architecture in standard 0.18 um CMOS is developed. The proposed architecture integrates the typically large off-chip filter capacitor by using two feed-forward paths configuration to generate the required zero and poles and satisfies SONET jitter requirements with a total power dissipation (including the buffers) of 290mW. The chip exceeds SONET OC-192 jitter tolerance mask, and high frequency jitter tolerance is over 0.31 UIpp by applying PRBS data with a pattern length of 231-1. The implementation is the first fully integrated 10Gb/s CDR IC which meets/exceeds the SONET standard in the literature. The second proposed CDR architecture includes an adaptive bang-bang control algorithm. For 6MHz sinusoidal jitter modulation, the new architecture reduces the tracking error to 11.4ps peak-to-peak, versus that of 19.7ps of the conventional bangbang CDR. The main contribution of the proposed architecture is that it optimizes the loop dynamics by adjusting the bang-bang bandwidth adaptively to minimize the steady state jitter of the CDR, which leads to an improved jitter tolerance performance. According to simulation, the jitter performance is improved by more than 0.04UI, which alleviates the stringent 0.1UI peak to peak jitter requirements in the PCIe/Fibre channel/Sonet Standard.

CMOS Receiver Front-ends for Gigabit Short-Range Optical Communications

CMOS Receiver Front-ends for Gigabit Short-Range Optical Communications PDF Author: Francisco Aznar
Publisher: Springer Science & Business Media
ISBN: 1461434645
Category : Technology & Engineering
Languages : en
Pages : 204

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Book Description
This book describes optical receiver solutions integrated in standard CMOS technology, attaining high-speed short-range transmission within cost-effective constraints. These techniques support short reach applications, such as local area networks, fiber-to-the-home and multimedia systems in cars and homes. The authors show how to implement the optical front-end in the same technology as the subsequent digital circuitry, leading to integration of the entire receiver system in the same chip. The presentation focuses on CMOS receiver design targeting gigabit transmission along a low-cost, standardized plastic optical fiber up to 50m in length. This book includes a detailed study of CMOS optical receiver design – from building blocks to the system level.

Circuits at the Nanoscale

Circuits at the Nanoscale PDF Author: Krzysztof Iniewski
Publisher: CRC Press
ISBN: 1420070630
Category : Technology & Engineering
Languages : en
Pages : 602

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Book Description
Circuits for Emerging Technologies Beyond CMOS New exciting opportunities are abounding in the field of body area networks, wireless communications, data networking, and optical imaging. In response to these developments, top-notch international experts in industry and academia present Circuits at the Nanoscale: Communications, Imaging, and Sensing. This volume, unique in both its scope and its focus, addresses the state-of-the-art in integrated circuit design in the context of emerging systems. A must for anyone serious about circuit design for future technologies, this book discusses emerging materials that can take system performance beyond standard CMOS. These include Silicon on Insulator (SOI), Silicon Germanium (SiGe), and Indium Phosphide (InP). Three-dimensional CMOS integration and co-integration with Microelectromechanical (MEMS) technology and radiation sensors are described as well. Topics in the book are divided into comprehensive sections on emerging design techniques, mixed-signal CMOS circuits, circuits for communications, and circuits for imaging and sensing. Dr. Krzysztof Iniewski is a director at CMOS Emerging Technologies, Inc., a consulting company in Vancouver, British Columbia. His current research interests are in VLSI ciruits for medical applications. He has published over 100 research papers in international journals and conferences, and he holds 18 international patents granted in the United States, Canada, France, Germany, and Japan. In this volume, he has assembled the contributions of over 60 world-reknown experts who are at the top of their field in the world of circuit design, advancing the bank of knowledge for all who work in this exciting and burgeoning area.

Tools for Design, Implementation and Verification of Emerging Information Technologies

Tools for Design, Implementation and Verification of Emerging Information Technologies PDF Author: Shui Yu
Publisher: Springer Nature
ISBN: 3031334582
Category : Computers
Languages : en
Pages : 169

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Book Description
This book constitutes the refereed post-conference proceedings of the 17th EAI International Conference on Tools for Design, Implementation and Verification of Emerging Information Technologies, TridentCom 2022, which was held in Melbourne, Australia, in November 23-25,2022. The 11 full papers were selected from 30 submissions and deal the emerging technologies of big data, cyber-physical systems and computer communications. The papers are grouped in thematical sessions on network security; network communication; network services; mobile and ad hoc networks; blockchain; machine learning.

High-Speed CMOS Circuits for Optical Receivers

High-Speed CMOS Circuits for Optical Receivers PDF Author: Jafar Savoj
Publisher: Springer Science & Business Media
ISBN: 079237388X
Category : Technology & Engineering
Languages : en
Pages : 132

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Book Description
With the exponential growth of the number of Internet nodes, the volume of the data transported on the backbone has increased with the same trend. The load of the global Internet backbone will soon increase to tens of terabits per second. This indicates that the backbone bandwidth requirements will increase by a factor of 50 to 100 every seven years. Transportation of such high volumes of data requires suitable media with low loss and high bandwidth. Among the available transmission media, optical fibers achieve the best performance in terms of loss and bandwidth. High-speed data can be transported over hundreds of kilometers of single-mode fiber without significant loss in signal integrity. These fibers progressively benefit from reduction of cost and improvement of perf- mance. Meanwhile, the electronic interfaces used in an optical network are not capable of exploiting the ultimate bandwidth of the fiber, limiting the throughput of the network. Different solutions at both the system and the circuit levels have been proposed to increase the data rate of the backbone. System-level solutions are based on the utilization of wave-division multiplexing (WDM), using different colors of light to transmit s- eral sequences simultaneously. In parallel with that, a great deal of effort has been put into increasing the operating rate of the electronic transceivers using highly-developed fabrication processes and novel c- cuit techniques.